TECHNICAL FIELD
[0001] The present invention relates to methods useful for cleaning and refreshing fabrics
in a non-immersion cleaning process. Temperature and relative humidity are controlled
in the multi-step processes of this invention.
BACKGROUND OF THE INVENTION
[0002] Certain delicate fabrics are not suitable for conventional in-home immersion cleaning
processes. Home washing machines, which provide excellent cleaning results for the
majority of fabrics used in today's society, can, under certain conditions, shrink
or otherwise damage silk, linen, wool and other delicate fabrics. Consumers typically
have their delicate fabric items "dry-cleaned". Unfortunately, dry-cleaning usually
involves immersing the fabrics in various hydrocarbon and halocarbon solvents that
require special handling and the solvent must be reclaimed, making the process unsuitable
for in-home use. Hence, dry-cleaning has traditionally been restricted to commercial
establishments making it less convenient and more costly than in-home laundering processes.
[0003] Attempts have been made to provide in-home dry-cleaning systems that combine the
fabric cleaning and refreshing of in-home, immersion laundering processes with the
fabric care benefits of dry-cleaning processes. One such in-home system for cleaning
and refreshing garments comprises a substrate sheet containing various liquid or gelled
cleaning agents, and a plastic bag. The garments are placed in the bag together with
the sheet, and then tumbled in a conventional clothes dryer. In a current commercial
embodiment, multiple single-use flat sheets comprising a cleaning/refreshing agent
and a single multi-use plastic bag are provided in a package.
[0004] Unfortunately, these prior processes often involved only one step with regards to
temperature and relative humidity. That is, the tumble dryer was set for a particular
temperature and time. The humidity in the bag was a function of the moisture loaded
in the bag and the temperature setting. But once the time and temperature were selected,
the one step process was set. Moreover, when using a conventional tumble dryer, the
consumer is often limited to the manufacturer's pre-set temperature conditions, which
are established for drying clothes, not for cleaning and refreshing them. Often these
manufacturer's conditions are sub-optimal with respect to one or more of dewrinkling,
deodorizing, and optionally perfume deposition.
[0005] Moreover, such in-home processes are designed for use in a conventional clothes dryer,
or the like apparatus. Such apparatuses are not always readily available, they are
often uneconomical, and in many countries clothes dryers are simply unnecessary. For
example, in many warm tropical regions people do not typically own clothes dryers
because their clothes can be dried year-round by hanging them outside in the sun.
In the areas of the world where people do not typically own clothes dryers, products
that require a heating apparatus, such as a clothes dryer, are of little or no value.
[0006] Steamer cabinets have also been utilized in the art to treat fabric articles with
heavy doses of steam. Unfortunately, these high temperature, high relative humidity
processes can have negative effects on fabric articles. In addition to the harsh effect
on fabrics, a drying step is often required that puts even further strain on the fabrics.
The drying step also requires additional time and energy, and often results in undesirable
shrinkage. And finally, steamer cabinets are typically wasteful with respect to steam
because it is only water.
[0007] DE 2433909 discloses a garment care device that comprises a fresh air filter that
takes the form of a drawer built-in the device, and therefore takes wherein little
space. D1 does not disclose or suggest the possibility of pre-treating the garments
prior to placing them into the device.
[0008] US 5649372 discloses a drying cycle controller that includes a processor connected
to humidity and temperature sensors. D2 is completely silent about the possibility
of pre-treating the garments prior to placing them into the tumble dryer for a drying
cycle.
[0009] US 4761305 discloses a method for finishing clothes in a sealed chamber comprising
spraying fine parties of hydrophilic finishing agent that is water soluble onto garments,
after these garments were washed and/or dried. In the description of D3, it is not
mentioned nor suggested that the finishing process could be preceded by a pre-treatment
of the garments, prior to placing them into the sealed chamber.
[0010] US 5305484 discloses a cloth steaming and drying cabinet comprising a main housing
with a compartment and steam delivering means. In the description of D4, it is not
mentioned nor suggested that the steaming process could be preceded by a pre-treatment
of the garments, prior to placing them into the steaming cabinet.
[0011] US 5815961 discloses a cloth treating apparatus for subjecting clothes to moisture,
heat, pressure and tension, for refreshing and dewrinkling them. The whole description
of D5 is however silent about the possibility to pre-treat the clothes prior to placing
them into the apparatus for a refreshing/dewrinkling cycle.
[0012] DE 2357646 discloses a cloth drying and refreshing apparatus that is made of a flexible
and thus foldable container, which can be arranged into two rigid end-portions. D6
is however silent about the fact that the possibility of a pre-treatment of the clothes,
prior to placing them into the apparatus for a drying/deodorizing cycle.
[0013] Thus, there is a need to develop a domestic, non-immersion cleaning and refreshing
process, and cleaning and refreshing compositions for use therein, which provides
acceptable cleaning without the need for a tumble dryer.
[0014] It has now also been unexpectedly discovered that by regulating temperature and relative
humidity within a container during a domestic, non-immersion cleaning and refreshment
process, dry clean only fabrics are cleaned, dewrinkled and refreshed. The present
invention provides such methods for cleaning and refreshing fabrics.
SUMMARY OF THE INVENTION
[0015] In one aspect of the present invention there is provided a method for treating at
least one fabric article comprising the steps of: pretreating said fabric with a pretreatment
composition, and then a) placing the fabric article in a container having an opening
and at least one wall that defines an interior void space; b) raising the temperature
and relative humidity of the air within the interior void space of the container to
a predetermined first temperature and a predetermined first relative humidity for
a predetermined first period of time; and c) changing at least one of the temperature
or the relative humidity of the air within the interior void space of the container
at the end of the first period of time to a predetermined second temperature and a
predetermined second relative humidity for a predetermined second period of time.
[0016] In this invention, the fabrics are contacted with an aqueous composition prior to
be placed in a container according to step a) defined below.
[0017] In a preferred aspect of this invention vapor is used to raise the temperature and
relative humidity of the air within the interior void space of the container, and
more preferably the vent remains open at all times. In another aspect of this invention
the vapor introduced into the interior void space of the container comprises water
and a perfume.
[0018] In another aspect of the present invention there is provided a method for treating
a fabric article comprising the steps of: a) placing the fabric article in a container
having an opening and at least one wall that defines an interior void space; b) introducing
ozone into the interior void space for a predetermined first period of time; and c)
changing at least one of the temperature or the relative humidity of the air within
the interior void space of the container at the end of the first period of time to
a predetermined second temperature and a predetermined second humidity for a predetermined
second period of time. The ozone can be generated by an ozone source, such as an ultraviolet
lamp, or even a high voltage source, within the interior void space of the container.
Preferably, the level of ozone that is provided within the container is between 0.5
and 200ppm, preferably between 0.5 and 50ppm, more preferably between 0.5 and 20ppm.
Levels lower than 0.5 ppm are not preferred as they would not provide sufficient bleaching
performance and consequently not provide sufficient performance of the benefit linked
to the bleach property.
[0019] The present invention provides benefits over the prior art by defining the optimal
process steps for cleaning and refreshing delicate fabric articles in an in-home non-immersion
cleaning process. The methods of this invention can be carried out in any appropriate
container, such as a plastic bag, a wardrobe, a cabinet, or a tumble dryer.
[0020] Unlike many prior processes, the methods of this invention involve at least two distinct
steps, and preferably three steps. It has been surprisingly found that the optimal
conditions for deodorizing a fabric article differ from the conditions that are best
for dewrinkling. Likewise, perfume deposition onto a fabric article requires a third
set of conditions for optimal performance. In the multi-step processes of this invention
temperature, relative humidity or both can be manipulated and controlled. Furthermore,
one step of the process can involve the introduction of ozone into the container to
neutralize odor causing chemicals on the fabric articles being cleaned and refreshed.
[0021] Further the present invention provides a method of delivering an active ingredient,
for example, perfume, to the fabrics being treated. Simultaneously, the methods herein
minimize the amount of vapor delivered so that the actives are not wasted. And finally,
the methods herein are designed to deliver only enough vapor to accomplish the fabric
treatment process, without the need for additional mechanical drying.
DETAILED DESCRIPTION OF THE INVENTION
[0022] The present invention provides methods for cleaning and refreshing fabric articles
in a domestic, non-immersion process. The methods require at least two steps, and
preferably three. The methods can be carried out in any appropriate apparatus wherein
temperature and relative humidity can be manipulated and controlled. In another aspect
of this invention, one of the method steps involves the introduction of ozone into
the container to neutralize odor causing chemicals on the fabric articles being cleaned
and refreshed.
[0023] A warm, humid environment inside the container volatilizes malodor components in
the manner of a "steam distillation" process, and moistens fabrics and the soils thereon.
This moistening of fabrics can loosen pre-set wrinkles, and because the fabric articles
are hung in the container new wrinkles do not form. Proper selection of the amount
of the vapor, and specifically the amount of water used in the process and, importantly,
proper venting of the container in the present manner can minimize shrinkage of the
fabrics. Moreover, if the container is not vented, the volatilized malodorous materials
removed from the fabrics, which are not captured by the filter if present, can undesirably
be redeposited thereon.
[0024] Relative humidity is a well known concept to those in the fabric care arts. As used
herein, "relative humidity" means the ratio of the actual amount of water vapor in
the air to the greatest amount possible at the same temperature.
[0025] Temperature and relative humidity controllers are well known to those skilled in
the art, as are passive and active controllers. As used herein, an "active" controller
is a controller that reads an input and supplies feedback to the device being controlled
and that device adjusts based on the feedback received. A "passive" controller, as
used herein, is a controller that turns a device on or off, or opens or closes a device,
based on a predetermined setting such as time. For example, a passive temperature
controller would turn on a heating element or close a vent to increase the temperature
in a given environment and after a certain period of time the heating element is turned
off or the vent is opened. In contrast, an active temperature controller reads the
temperature and if, for example, the temperature is too low, the power to the heating
element is increased or the vent is closed to increase the temperature.
Method
[0026] To properly clean and refresh a fabric article, one must address many aspects of
the article's appearance. Specifically, the fabric article should at least be substantially
free of odor and wrinkles after a cleaning and refreshing operation. It is often preferred
that the article be perfumed to give it a pleasant odor, and it should be free of
localized stains. The methods of this invention require at least two steps designed
toward deodorizing, dewrinkling and/or perfume deposition on a fabric article. Additionally,
a manual spot removal process for removing localized stains is provided, but the spot
removal process is conducted outside of the apparatus The conditions for each of these
methods steps are described in greater detail below.
[0027] While the method steps of this invention can be carried out in any appropriate order,
the deodorization step will be discussed first. Deodorization must be distinguished
from odor-masking, which involves applying a pleasant scent to a fabric to mask, or
cover up the odors on the fabric. Deodorization, as used herein, involves the actual
removal or neutralization of malodor causing chemicals. When the malodor causing constituents
are removed or neutralized, the fabric article should have little or no residual odor.
This step of the process can be carried out with ozone, which neutralizes odors, or
with high temperatures and venting, and/or by filter capturing, which removes the
odor causing constituents. The advantages of using ozone as a bleaching system is
that this component provides an overall satisfactory colour safety, especially on
cellulosic fabrics, a malodour reduction, stain removal, as well as sanitistion of
the articles treated therewith.
[0028] The deodorization step, is described herein as the first step as a matter of convenience.
It is understood that the deodorization and dewrinkling steps can be carried out in
any order. If a perfume deposition step is employed, it necessarily should follow
the deodorization step, so that the perfume is not stripped off of the fabric immediately
after it is laid down.
[0029] Thus, when deodorization is the first step, the first temperature should be at least
about 45°C, preferably at least about 60°C, and most preferably at least about 70°C
and the first relative humidity should be least about 20%. At these relatively high
temperatures, odor causing chemicals are stripped off of fabrics, and then preferably
removed from the container via the vent. Even more preferably, the vent comprises
a filter so that the odorous emanations do not enter the environment outside of the
container. When the first temperature and first relative humidity are reached, the
process time, that is, the first time, can be from about 2 minutes to about 20 minutes,
preferably from about 5 minutes to about 15 minutes, and even more preferably from
about 8 minutes to about 12 minutes.
[0030] The deodorization step described above can be supplemented, or even replaced by treating
the fabric articles with ozone, preferably incorporated at room temperature. The use
of ozone to neutralize odors causing chemicals and to sanitize garments, for example,
medical gowns, is well known to the art. Specifically see, published patent applications
DE 24 33 909 and FR 2059 841. For purposes of the methods disclosed herein, ozone
can be introduced into the container from any appropriate source, such as an ultraviolet
lamp. One or more ozone sources can be used and they can be placed in any convenient
place in, or adjacent the exterior of the container. The ozone source must be sized
according to the volume of the container with consideration for the surface area of
the fabric articles being cleaned and refreshed. Those skilled in the art will know
what type and size of equipment to use for a given container.
[0031] The second step of the present invention is directed to dewrinkling, which requires
relatively high temperature and relative humidity. Good air circulation is beneficial
to the dewrinkling step, but not necessary. For the second step, i.e. the dewrinkling
step, the second temperature should be lower than "T" as defined by the equation:
T = 60 - (0.17 * RH
2), wherein RH
2 is the second relative humidity in percent. RH
2 is preferably of at least 50%, preferably of at least 75%, more preferably of at
least about 85%, and even more preferably at least about 90%. When the second temperature
and second relative humidity are reached, the process time, that is, the second time,
can be from about 2 minutes to about 20 minutes, preferably from about 5 minutes to
about 15 minutes, and even more preferably from about 8 minutes to about 12 minutes.
[0032] Finally, there is preferably a third step which involves a gradual cool down of the
interior void space. As the temperature decrease, the amount of vapor that the air
can retain in the air decreases, and when the air becomes saturated the vapors begin
to condense. Naturally, vapors will condense on the fabric articles on the inside
of the bag, and as these articles dry, the active ingredients, such as perfume, remain
behind. As discussed briefly above, the methods steps of this invention are designed
to deliver actives without undue waste and without saturating the fabrics to the point
where they need additional drying. Preferably, during the third step in the process
the temperature within the interior void space decreases to a third temperature wherein
the third temperature is less than about 45°C, preferably less than about 40°C, and
more preferably less than about 35°C. This third step can last for a third period
of time, which can be from about 2 minutes to about 20 minutes, preferably from about
3 minutes to about 10 minutes, and even more preferably from about 3 minutes to about
5 minutes.
[0033] As discussed in greater detail below, the vapor inside the container is preferably
a cleaning and refreshment composition. The cleaning refreshment composition can be
added to the container directly, via a sheet/substrate, in a cartridge or any other
means that will be known to those skilled in the art. Preferably, the cleaning and
refreshment composition is in a cartridge that is introduced into the interior void
space of the container and the cleaning and refreshment composition is released from
the cartridge into the interior void space of the container.
Apparatus
[0034] The methods of this invention can be conducted in any appropriate apparatus. Such
apparatuses require a container that substantially encloses the fabric articles being
cleaned and refreshed. By "substantially encloses", it is meant that the fabric articles
are enclosed in the container, but that the container can, and preferably will, include
one or more vents. The container must have an opening to access the fabric articles,
and preferably, there is a bar, hook or other device on which to hang the fabric articles.
The garments hung in treatment apparatus can also be weighted or stretched to improve
wrinkle reduction. Hanging weights and stretching devices will be known to those skilled
in the art. Preferably, the garments to be treated are mechanically stretched after
placing them into the container and before starting the process. This stretching or
so-called tensioning of the garment helps the relaxation of wrinkles during the process.
Preferred stretching systems include weighted clamps as well as light weight compactable
or retractible stretching systems, wherein the system comprises a tensioning device
like a spring. The latter systems have the benefit of not adding extra weight to the
cleaning and refreshing apparatus, along with the possibility of adjusting tensioning
force and direction as required. Preferably, these systems are mounted inside the
container at its bottom. One example of such as system is a rollerblind that is conventionally
used as sunfilter for cars and commercially available from Halfords. This system is
a rollerblind which can be extended or compacted by means of a roll-up spring mechanism.
Only slight modification of this system are needed to adapt it to the tensioning of
garment. One preferred adaptation involves attaching the housing of this system at
the bottom of the apparatus and providing one or more clamp at the other side so that
the clamping and thus the stretching or tensioning of the garment in the apparatus
is obtained. The tension of the spring can also be adjusted to the desired stretching
force for a given garment. The size of the clamp can vary so that more than one clamp
are attached to this system. Still, another variation involves having only one clamp
which run along or partly along the blind tensioning system located opposite the housing
of the system.
[0035] The container preferably has only one wall configured like an egg shell. It has been
found that the vapor, and subsequently the active ingredients, preferentially condense
in the comers and along the sharp edges of a more conventional rectangular shaped
cabinet. This is not to say that the methods of this invention cannot be conducted
in rectangular cabinets; they can. But the fewer sharp edges and comers the cabinet
has, the more efficient it is. Thus, cabinets, wardrobes, and garment bags are all
appropriate for use in the present invention. Moreover, a common tumble dryer may
be an appropriate container, but these apparatuses do not normally have humidity controllers,
nor do they have the ability to program a multi-step process with respect to both
temperature and humidity. Thus, with some additional programming and controllers,
a common tumble dryer could be used for the methods of this invention.
[0036] In addition to the at least one wall that defines an interior void space, the containers
of this invention preferably comprise: a vent and/or filter; a heating element, which
is capable of heating liquids to produce vapors and which can run dry to heat air;
a humidity provider; and an air circulation device, for example, a fan. More preferably,
the container additionally comprises an active temperature controller capable of changing
and maintaining the air temperature within the interior void space of the container;
a passive humidity controller capable of changing and maintaining the relative humidity
of the air within the interior void space of the container, and/or a humidity sink
like a condenser. Even more preferably, the air circulation device is a fan and the
fan inlet is within the interior void space of the container so that at least a portion
of the air within the void space of the container is recirculated. Preferably, for
the optimum deodorisation, it preferred to have air velocities around the garment
between 0.05 to 10 m/s, more preferably between 0.1 and 5, most preferably between
0.5 and 2 m.s-1. Also, there is preferably provided a filter in, or adjacent the exterior
of the container
[0037] The water and actives, that is, the "cleaning and refreshment composition" can be
added to the container in any appropriate way. The composition can be poured into
the bag, poured into a reservoir that feeds into the heating element/humidifier, canisters
can be used to inject the composition, or an absorbent substrate saturated with the
composition can be placed in the bag. Substrates and compositions suitable for use
in the methods of this invention are described in greater detail below. It is understood
that those skilled in the art will know of other methods of adding actives to the
container and those methods are within the scope of this invention.
Cleaning/Refreshment Composition
[0038] The cleaning/refreshment composition preferably comprises water and optionally a
member selected from the group consisting of surfactants, perfumes, preservatives,
bleaches, auxiliary cleaning agents, shrinkage reducing compositions, organic solvents
and mixtures thereof. The preferred organic solvents are glycol ethers, specifically,
methoxy propoxy propanol, ethoxy propoxy propanol, propoxy propoxy propanol, butoxy
propoxy propanol, butoxy propanol, ethanol, isopropanol and mixtures thereof. Fabric
shrinkage reducing compositions that are suitable for use in the present invention
are selected from the group consisting of ethylene glycol, all isomers of propanediol,
butanediol, pentanediol, hexanediol and mixtures thereof. More preferably, the fabric
shrinkage reducing compositions are selected from the group consisting of neopentyl
glycol, polyethylene glycol, 1,2-propanediol, 1,3-butanediol, 1-octanol and mixtures
thereof. The surfactant is preferably a nonionic surfactant, such as an ethoxylated
alcohol or ethoxylated alkyl phenol, and is present at up to about 2%, by weight of
the cleaning/refreshment composition. Typical fabric cleaning/refreshment compositions
herein can comprise at least about 80%, by weight, water, preferably at least about
90%, and more preferably at least about 95% water.
[0039] The Examples below give specilic ranges tor the individual components of preferred
cleaning/refreshment compositions for use herein. A more detailed description of the
individual components of the cleaning/refreshment compositions, that is, the organic
solvents, surfactants, perfumes, preservatives. bleaches and auxiliary cleaning agents
can be found in U.S. Patent No. 5,789,368, which issued on August 4, 1998 to You et
al. Additionally, cleaning/refreshment compositions are described in co-pending U.S.
Patent Application No. 08/789,171, which was filed on January 24, 1997, in the name
of Trinh et al. And shrinkage reducing compositions for use in this invention can
be found in co-pending U.S. Provisional Application No. 60/097,596, entitled "Cleaning
Compositions that Reduce Fabric Shrinkage", which was filed by Strang and Siklosi,
on August, 24, 1998.
Pre-treatment composition
[0040] In this invention, the cleaning/refreshment composition can be used to pre-treat
the fabrics before their placement into the container defined in step a) of the present
invention. Indeed, this pre-treatment of the fabrics has been found highly beneficial
for the removal of clay like horse mud as well as of creamy or pasty deodorant stains
that stick to localised part of the fabrics articles, e.g. fabric underarm. Further,
this pre-treatment step has also been found beneficial for improving the deodorising
as well as the dewrinkling performance of the apparatus on the treated fabrics. Accordingly,
there is provided a method for treating the fabrics, whereby the fabrics are contacted
with a cleaning/refreshing composition as defined herein prior to being placed in
the container defined in step a). Preferably, the contacting occurs by spraying the
fabrics with a handspray bottle commercially available under the reference 7292458
for the 1000ml and 7292457 for the 500ml from VEL or aerosol spray like the aluminium
aerosol cans with polyethylene coating and a 18 bar pressure resistance as commercially
available from Boxal part of the Algroup Wheaton. Suitable valves for the cans are
aluminium cup spray valves from Seaquist. Preferably, the filling of the can by propellant
is done with nitrogen at 10 bar for the initial pressure filling while the cans are
filled with the pre-treatment composition up to 60% of the can total volume. Typical
disclosure of such spray dispenser can be found in WO 96/04940 page 19 line 21 to
page 22 line 27. Optionally, for more improved deodorising performance, cyclodextrin
can be used, in particular β-cyclodextrin like the β-hydroxypropyl cyclodextrin or
the methylated cyclodextrin, while for improved dewrinkling, lubricant like the D5
cyclomethicone from Dow Coming or diester quaternary ammonium compound like di(tallowyloxyethyl)dimethyl
ammonium in the cleaning/refreshment composition. Typical levels of such cyclodextrin
are of from 0.01, preferably of from 0.1% to 5% by weight.
Substrate
[0041] In one embodiment of this invention the cleaning/refreshment composition can be releasably
absorbed in an absorbent substrate, herein after referred to as a "substrate". The
substrate releasably contains the composition. By "releasably contains" means that
the composition is effectively released from the substrate onto the soiled fabrics
as part of the cleaning and fabric refreshment processes herein. This release occurs
mainly by volatilization of the composition due to the heat from the supplemental
heat source.
[0042] The substrate can be in any desired form, such as powders, flakes, shreds, and the
like. However, it is highly preferred that the substrate be in the form of an integral
pad or "sheet" that substantially maintains its structural integrity throughout the
process. The substrates and sheets of this invention are sometimes referred to in
the literature as "carriers" or "absorbent carrier sheets"; it is understood that
all of these labels refer to liquid absorbing materials that can be used to conveniently
transport liquids. Such substrates are described in detail in U.S. Patent No. 5,789,368,
to You et al. The manufacture of these sheets forms no part of this invention and
is already disclosed in the literature. See, for example, U.S. Patents 5,009,747,
Viazmensky, et al., April 23, 1991 and 5,292,581, Viazmensky, et al., March 8, 1994.
[0043] The substrate is intended to contain a sufficient amount of the cleaning/refreshment
composition to be effective for the intended purpose. The capacity of the substrate
for such a composition will vary according to the intended usage. The size of the
substrate should not be so large as to be unhandy for the user. Typically, the dimensions
of the substrate will be sufficient to provide a macroscopic surface area (both sides
of the substrate) of at least about 360 cm
2, preferably in the range from about 360 cm
2 to about 3000 cm
2. For example, a generally rectangular substrate may have the dimensions (X-direction)
of from about 10 cm to about 35 cm, and (Y-direction) of from about 18 cm to about
45 cm.
[0044] In one preferred embodiment of this invention, the substrate is either a dark material,
or is covered with a dark material, such as a black fabric. It is well known that
dark materials absorb heat better than whiter materials. Thus, a dark substrate would
tend to absorb more heat and volatilize more cleaning and refreshing composition if,
for example, solar radiation is used as the supplemental heat source.
[0045] As discussed, the substrate can optionally be covered with a fibrous, preferably
heat resistant and, most preferably, hydrophobic, coversheet as described in detail
in U.S. Patent No. 5,789,368, to You et al. Additionally, co-pending U.S. provisional
application 60/077,556, which was filed on March 11, 1998, in the name of Wise et
al., describes certain improvements to the coversheets of this invention. Suitable
combinations of the coversheets described in You et al. with the improvements described
in Wise et al. can be employed, according to the desires of the manufacturer, without
departing from the spirit and scope of the invention.
Spot Cleaning Composition
[0046] The user of the present process can be provided with various spot cleaning compositions
to use in the pre-spotting procedure of this invention. These compositions are used
to remove localized stains from the fabrics being treated, either before or after
the cleaning and refreshing process defined herein. Necessarily, the spot cleaning
composition must be compatible with the fabric being treated. That is, no meaningful
amount of dye should be removed from the fabric during the spot treatment and the
spot cleaning composition should leave no visible stains on the fabric. Therefore,
in a preferred aspect of this invention there are provided spot cleaning compositions
which are substantially free of materials that leave visible residues on the treated
fabrics. This necessarily means that the preferred compositions are formulated to
contain the highest level of volatile materials possible, preferably water, typically
about 95%, preferably about 97.7%, and surfactant at levels of about 0.1% to about
0.7%. A preferred spot cleaning composition will also contain a cleaning solvent such
as butoxy propoxy propanol (BPP) at a low, but effective, level, typically about 1%
to about 4%, preferably about 2%.
[0047] Preferred spot cleaning methods and compositions are described in U.S. Patent No.
5,789,368. Additionally, spot cleaning methods and compositions are described in U.S.
Patent No. 5,630,847, which issued on May 20, 1997, to Roetker.
Treatment Member
[0048] In one embodiment, a treatment member is provided to assist in removing localized
stains from fabrics. In a preferred aspect of this invention, the spot cleaning composition
is provided in a dispenser, such as a bottle, and the dispenser has a distal tip that
can serve as the treatment member. Additionally, the treatment member can comprise
an absorbent base material which can be, for example, a natural or synthetic sponge,
an absorbent cellulosic sheet or pad, or the like. In contact with and extending outward
from this base material can be multiple protrusions. Specific examples of treatment
members can be found in U.S. Patent No. 5,789,368, to You et al.
Absorbent Stain Receiving Article
[0049] An absorbent stain receiving article, sometimes referred to herein as a stain receiver,
can optionally be used in the pre-spotting operations herein. Such stain receivers
can be any absorbent material which imbibes the liquid composition used in the pre-spotting
operation. Disposable paper towels, cloth towels such as BOUNTY™ brand towels, clean
rags, etc., can be used. However, in a preferred mode the stain receiver is designed
specifically to "wick" or "draw" the liquid compositions away from the stained area.
One preferred type of stain receiver consists of a nonwoven pad, such as a thermally
bonded air laid fabric ("TBAL"). Another highly preferred type of stain receiver for
use herein comprises polymeric foam, wherein the polymeric foam comprises a polymerized
water-in-oil emulsion, sometimes referred to as "poly-HIPE". The manufacture of polymeric
foam is very extensively described in the patent literature; see, for example: U.S.
Patent No. 5,260,345 to DesMarais, Stone, Thompson, Young, LaVon and Dyer, issued
November 9, 1993; U.S. Patent No. 5,550,167 to DesMarais, issued August 27, 1996,
and U.S. 5,650,222 to DesMarais et al., issued July 22, 1997. Typical conditions for
forming the polymeric foams of the present invention are described in co-pending U.S.
Patent Application Serial No. 09/042,418, filed March 13, 1998 by T. A. DesMarais,
et al., titled "Absorbent Materials for Distributing Aqueous Liquids". Additional
disclosure of conditions for forming the polymeric foams for use in the present invention
are described in co-pending U.S. Provisional Patent Application Serial No. 60/077,955,
filed March 13, 1998 by T. A. DesMarais, et al., titled "Abrasion Resistant Polymeric
Foam And Stain Receivers Made Therefrom".
[0050] The various stain receivers described herein preferably comprise a liquid impermeable
backsheet. The backsheet can be made of, for example, a thin layer of polypropylene,
polyethylene and the like. The backsheet provides protection for the surface that
the stain receiver rests on from the spot cleaning composition. For example, spot
cleaning processes are typically performed on a hard surface, such as a table top.
The stain receiver is placed on the table and the fabric to be treated in placed on
the stain receiver. Spot cleaning composition is applied to the stained area of the
fabric and then drawn into the stain receiver. But in the absence of a back sheet,
the spot cleaning composition can leak onto the table top, possibly causing damage
thereto.
[0051] The following Examples further illustrate the invention, but are not intended to
be limiting thereof.
EXAMPLE I
[0052] Two extra-large men's jackets that have been exposed to cigarette smoke and wrinkled
using standardized methods, are placed on clothes hangers. The areas with the most
wrinkles were then pre-treated with a hand-held spray commercially available under
the reference 7292457 from Vel and containing demineralised water so that the wrinkled
areas were slightly damp but not soaked. These jackets are then hung on the inside
of a plastic bag that has two co-planer flat ends (the top and bottom) with the side
walls being cylindrical and slightly outwardly bowed near the center. For illustration
purposes only, the bag can be thought of as shaped like an egg shell with the top
and bottom cut off. The container has a door for accessing the interior, and the door
is closed with a zipper. A vent is provided near the bottom of the bag, but the vent
remains closed when the ozone is present in the bag.
[0053] On the interior of the bag is a fan, an ultra violet lamp, a heating element, a thermocouple
and a receptacle for receiving a cartridge that contains a cleaning and refreshment
composition. The receptacle is in fluid communication with the heating element The
cleaning and refreshment composition comprises approximately 100 to 125 mls of a composition
comprising approximately 99% water and 1% perfume, by weight. After the cartridge
is connected to the receptacle, the door is closed.
[0054] An exterior "on/off" switch is turned on to begin the fabric refreshment process.
The switch is connected to a programmable microprocessor that controls the multi-step
process. First, the ultraviolet lamp is turned on to produce ozone. The lamp remains
lit for approximately 10 minutes. The fan is optionally run during this first step.
For the second step, the temperature is raised to about 50°C and the relative humidity
is raised to greater than about 95%. This is accomplished through the introduction
of the vaporized cleaning and refreshment composition. The fan continues to run during
this second step, which lasts for about 7 to 12 minutes.
[0055] Finally, with the fan running the heating element is turned off and the interior
of the bag cools naturally to about 45°C in less than about 10 minutes. The fan is
turned off automatically, and an indicator light signals that the process is complete.
The jackets are removed and they are substantially wrinkle free, deodorized and ready
to wear.
EXAMPLE II
Cleaning and Refreshing Compositions
[0056] While the cleaning and refreshment compositions of this invention can comprise water
and perfume only, additional fabric treatment components can also be included. For
example, fabric cleaning/refreshment compositions according to the present invention,
for use in the methods described herein, are prepared as follows:
| Ingredient |
% (wt.) |
| |
Sheet |
Cartridge |
| Emulsifier (TWEEN 20)* |
0.5 |
0 |
| Perfume |
0.5 |
0.5 |
| KATHON® |
0.0003 |
0 |
| Sodium Benzoate |
0.1 |
0 |
| Water |
Balance |
Balance |
| *Polyoxyethylene (20) sorbitan monolaurate available from ICI Surfactants. |
[0057] Additionally, preferred compositions for use in the methods of this invention are
as follows.
| Ingredient |
%(wt.) |
Range(%wt.) |
| Water |
99.0 |
95.1-99.9 |
| Perfume |
0.5 |
0.05-1.5 |
| Surfactant* |
0.5 |
0.05-2.0 |
| Ethanol or Isopropanol |
0 |
Optional to 4% |
| Solvent (e.g. BPP) |
0 |
Optional to 4% |
| Hydrogen peroxide |
0 |
Optional to 4% |
| pH range from about 6 to about 8. |
EXAMPLE III
Spot Cleaning Compositions
[0058] A spot cleaning composition for use in the present invention, preferably with a dispenser
as defined above, and with a TBAL or poly-HIPE foam stain receiver, is prepared as
follows:
| INGREDIENT |
Anionic Composition (%) |
| Hydrogen peroxide |
1.000 |
| Amino tris(methylene phosphonic acid)* |
0.0400 |
| Butoxypropoxypropanol (BPP) |
2.000 |
| NH4 Coconut E1S |
0.285 |
| Dodecyldimethylamine oxide |
0.031 |
| Magnesium chloride |
0.018 |
| Magnesium sulfate |
0.019 |
| Hydrotrope, perfume, other minors, |
0.101 |
| Kathon preservative |
0.0003 |
| Water (deionized or distilled) |
96.5 |
| Target pH |
6.0 |
| * Stabilizer for hydrogen peroxide |
[0059] Preferably, to minimize the potential for dye damage as disclosed hereinabove, H
2O
2-containing pre-spotting compositions comprise the anionic or nonionic surfactant
in an amount (by weight of composition) which is less than the amount of H
2O
2. Preferably, the weight ratio of surfactant:H
2O
2 is in the range of about 1:10 to about 1:1.5, most preferably about 1:4 to about
1:3.
1. A method of treating a fabric article comprising the steps of:
(a) placing the fabric article in a container having an opening and at least one wall
that defines an interior void space;
(b) raising the temperature and relative humidity of the air within the interior void
space of the container to a predetermined first temperature and a predetermined first
relative humidity for a predetermined first period of time, wherein said first temperature
is at least 45°C, preferably at least 60°C, more preferably at least 70°C, wherein
said first relative humidity is at least 20%, preferably at least 50%, and wherein
said first period of time is from 2 to 20 min., preferably 5 to 15 min., and more
preferably 8 to 12 min. and introducing of one into the interior void space for a
first amount of time ;
(c) changing at least one of the temperature or the relative humidity of the air within
the interior void space of the container at the end of the first period of time to
a predetermined second temperature and/or a predetermined second relative humidity
for a predetermined second period of time, wherein said second temperature, is less
than T as defined by the equation: T=60-(0.17*RH2) wherein RH2 is the second relative humidity in percent, RH2 being at least of 50%, preferably of at least 75%, more preferably of at least 85%,
more preferably of at least 90% and wherein said second period of time is from 2 to
20 min., preferably 5 to 15 min., and more preferably 8 to 12 min.;
wherein said fabric is contacted with a pre-treatment composition prior to being
placed within the container of step (a), such pre-treatment composition being an aqueous
solution of cyclodextrins, cyclomethicone, or diester queternary ammonium compounds.
2. A method according to Claim 1, wherein said contacting occurs by spraying.
3. The method according to claim 1, wherein vapor is used to raise the temperature and
relative humidity of the air within the interior void space of the container.
4. The method according to claim 1, further comprising the step of allowing the temperature
within the interior void space to decrease to a third temperature wherein the third
temperature is less than about 45°C, preferably less than about 40°C, and more preferably
less than about 35°C.
5. The method according to claim 1, wherein vapor is introduced into the interior void
space of the container comprises water and a perfume.
6. The method according to claim 1, wherein the ozone is generated by an ozone source
within the interior void space of the container.
7. The method according to claim 6, wherein the ozone source is an ultraviolet lamp or
a high voltage source.
8. The method according to Claim 6, wherein the ozone provides benefits on treated fabrics
selected from malodour reduction or removal, stain removal , sanitisation, and mixtures
thereof.
9. The method according to claim 1, wherein a cartridge containing a cleaning and refreshing
composition is introduced into the interior void space of the container and the cleaning
and refreshment composition is released from the cartridge into the interior void
space of the container.
10. The method according to claim 1, wherein the container further comprises a filter.
11. The method according to Claim 10, wherein the filter is in close proximity of the
fan.
12. The method according to any one of Claims 1-11, wherein the garments are stretched
or tensioned prior to the start of the cycle, preferably by means of one or more stretching
device.
1. Verfahren zur Behandlung eines Textilstücks mit folgenden Schritten:
a) das Textilstück wird in einen Behälter mit einer Öffnung und mindestens einer Wand
gelegt, der einen Innenhohlraum definiert,
b) die Temperatur und die relative Luftfeuchtigkeit im Innenraum des Behälters werden
auf eine vorbestimmte erste Temperatur und auf eine vorbestimmte erste relative Feuchtigkeit
für die Dauer einer vorbestimmten ersten Zeitspanne erhöht, wobei die erste Temperatur
mindestens 45°C, vorzugsweise mindestens 60°C und noch besser mindestens 70°C und
die erste relative Feuchtigkeit mindestens 20%, vorzugsweise mindestens 50% beträgt
und die erste Zeitspanne im Bereich von 2-20 Minuten, vorzugsweise im Bereich von
5-15 Minuten und noch besser im Bereich von 8-12 Minuten, liegt und Ozon in den Innenhohlraum
während einer ersten Zeitspanne eingegeben wird,
c) mindestens die Temperatur oder die relative Luftfeuchtigkeit im Innenhohlraum des
Behälters wird am Ende der ersten Zeitspanne auf eine vorbestimmte zweite Temperatur
und/oder eine vorbestimmte zweite relative Feuchtigkeit für die Dauer einer vorbestimmten
zweiten Zeitspanne abgeändert, wobei die zweite Temperatur T geringer ist, als sie
durch folgende Gleichung definiert ist: T = 60 - (0,17·RH2), wobei RH2 die zweite relative Feuchtigkeit in Prozent ist, RH2 mindestens 50%, vorzugsweise mindestens 75%, noch besser mindestens 85% und noch
besser mindestens 90%, beträgt und die zweite Zeitspanne im Bereich von 2-20 Minuten,
vorzugsweise im Bereich von 5-15 Minuten und noch besser im Bereich von 8-12 Minuten
liegt,
wobei das Textilstück mit einer Vorbehandlungszusammensetzung in Kontakt gebracht
wird, bevor es in den Behälter nach Schritt a) gelegt wird, und die Vorbehandlungszusammensetzung
eine wässerige Lösung aus Zyklodextrinen, einem Zyklomethikon oder diesterquaternären
Ammoniumverbindungen ist.
2. Verfahren nach Anspruch 1,
dadurch gekennzeichnet,
dass das Inkontaktbringen durch Sprühen erfolgt.
3. Verfahren nach Anspruch 1,
dadurch gekennzeichnet,
dass der Dampf zur Erhöhung der Temperatur und der relativen Luftfeuchtigkeit im Innenhohlraum
des Behälters verwendet wird.
4. Verfahren nach Anspruch 1,
gekennzeichnet durch den folgenden, weiteren Schritt:
es wird erlaubt, dass die Temperatur im Innenhohiraum auf eine dritte Temperatur absinkt,
die geringer als etwa 45°C, vorzugsweise geringer als 40°C und noch besser geringer
als etwa 35°C, ist.
5. Verfahren nach Anspruch 1,
dadurch gekennzeichnet,
dass der in den Innenhohlraum des Behälters eingeführte Dampf Wasser und ein Parfüm ist.
6. Verfahren nach Anspruch 1,
dadurch gekennzeichnet,
dass das Ozon mittels einer Ozonquelle im Innenhohlraum des Behälters erzeugt wird.
7. Verfahren nach Anspruch 6,
dadurch gekennzeichnet,
dass die Ozonquelle eine Ultraviolettlampe ist.
8. Verfahren nach Anspruch 6,
dadurch gekennzeichnet,
dass das Ozon Vorteile in Bezug auf die behandelten Textilien aufweist, wobei diese Vorteile
sich auf die Verminderung oder Vermeidung von üblen Gerüchen, auf die Fleckentfernung,
die Desinfektion und Mischungen daraus beziehen.
9. Verfahren nach Anspruch 1,
dadurch gekennzeichnet,
dass eine eine Reinigungs- und Auffrischungszusammensetzung aufweisende Patrone in den
Innenhohlraum des Behälters eingegeben wird und die Reinigungs- und Auffrischungszusammensetzung
aus der Patrone in den Innenhohlraum des Behälters freigelassen wird.
10. Verfahren nach Anspruch 1,
dadurch gekennzeichnet,
dass der Behälter ein Filter aufweist.
11. Verfahren nach Anspruch 10,
dadurch gekennzeichnet,
dass das Filter in unmittelbarer Nähe des Lüfters angeordnet ist.
12. Verfahren nach einem der Ansprüche 1 bis 11,
dadurch gekennzeichnet,
dass die Bekleidung vor dem Beginn des Zyklus gestreckt oder gespannt wird, vorzugsweise
mittels einer oder mehrerer Streckvorrichtungen.
1. Procédé de traitement d'un article textile comprenant les étapes consistant à :
(a) placer l'article textile dans un conteneur ayant une ouverture et au moins une
paroi qui définit un espace vide ;
(b) élever la température et l'humidité relative de l'air à l'intérieur de l'espace
vide intérieur du conteneur à une première température prédéterminée et une première
humidité relative prédéterminée pendant une première période prédéterminée, dans lequel
ladite première température vaut au moins 45°C, de préférence au moins 60°C, de manière
davantage préférée au moins 70°C, dans lequel ladite première humidité relative vaut
au moins 20%, de préférence au moins 50 %, et dans lequel
ladite première période vaut de 2 à 20 min, de préférence de 5 à 15 min et de manière
davantage préférée de 8 à 12 min, et introduire de l'ozone dans l'espace vide intérieur
pendant une première quantité de temps ;
(c) changer au moins l'une de la température ou de l'humidité relative de l'air à
l'intérieur de l'espace vide intérieur du conteneur à la fin de la première période
en une deuxième température prédéterminée et/ou une deuxième humidité relative prédéterminée
pendant une deuxième période prédéterminée, dans lequel ladite deuxième température
est inférieure à T comme définie par l'équation : T=60-(0,17*RH2) dans laquelle RH2 est la deuxième humidité relative en pour cent, RH2 étant au moins de 50 %, de préférence d'au moins 75 %, de manière davantage préférée
d'au moins 85 %, de manière préférée entre toutes d'au moins 90 % et dans lequel ladite
deuxième période vaut 2 à 20 min, de préférence 5 à 15 min et de manière davantage
préférée de 8 à 12 min ;
dans lequel ledit textile est mis en contact avec une composition de pré-traitement
avant d'être placé à l'intérieur du conteneur de l'étape (a), une telle composition
de pré-traitement étant une solution aqueuse de cyclodextrine, de cyclométhicone ou
de composés d'ammonium quaternaire de diester.
2. Procédé selon la revendication 1, dans lequel ladite mise en contact se produit par
pulvérisation.
3. Procédé selon la revendication 1, dans lequel la vapeur est utilisée pour élever la
température et l'humidité relative de l'air à l'intérieur de l'espace vide intérieur
du conteneur.
4. Procédé selon la revendication 1, comprenant en outre l'étape consistant à laisser
la température à l'intérieur de l'espace vide intérieur décroître vers une troisième
température dans lequel la troisième température est inférieure à environ 45°C, de
préférence inférieure à environ 40°C et de manière davantage préférée inférieure à
environ 35°C.
5. Procédé selon la revendication 1, dans lequel la vapeur qui est introduite dans l'espace
vide intérieur du conteneur comprend de l'eau et un parfum.
6. Procédé selon la revendication 1, dans lequel l'ozone est généré par une source d'ozone
à l'intérieur de l'espace vide intérieur du conteneur.
7. Procédé selon la revendication 6, dans lequel la source d'ozone est une lampe ultraviolette
ou une source de tension élevée.
8. Procédé selon la revendication 6, dans lequel l'ozone fournit des bénéfices sur les
textiles traités choisis parmi une réduction ou un enlèvement des mauvaises odeurs,
un enlèvement des souillures, une désinfection et des combinaisons de ceux-ci.
9. Procédé selon la revendication 1, dans lequel une cartouche contenant une composition
de nettoyage et de régénération est introduite dans l'espace vide intérieur du conteneur
et la composition de nettoyage et de régénération est libérée à partir de la cartouche
dans l'espace vide intérieur du conteneur.
10. Procédé selon la revendication 1, dans lequel le conteneur comprend, en outre, un
filtre.
11. Procédé selon la revendication 10, dans lequel le filtre et à proximité intime du
ventilateur.
12. Procédé selon l'une quelconque des revendications 1 à 11, dans lequel les vêtements
sont étirés ou mis en tension avant le début du cycle, de préférence au moyen d'un
ou plusieurs dispositifs d'étirement.