[0001] The present invention relates to a removable lid of the type that may be applied
to and removed from a foodstuff container by a twisting action, and where the container
is packed such that a negative pressure exists within the container with respect to
the external pressure. More particularly, this invention relates to a removable lid
that is easier to remove from the container.
[0002] Twist-off removable lids are often used with containers in order to provide a hermetic
seal for holding foodstuffs such as cooking sauces, preserves and the like. Typically
such lids are formed of a metallic body, usually steel, with a circular top surface
and skirt portion. Threads or lugs are incorporated into the inside of lid to compliment
a corresponding helical thread on the outside of the top of the container to be closed.
During production the container may be "vacuum sealed" so improve the seal between
the lid and the body. The lid may then be removed by a consumer by twisting the lid
to unscrew it from the container. A flexible "vacuum button" may be formed in the
lid to provide an indication that the vacuum is present.
[0003] Conventional twist-off removable lids have a reputation for being difficult to open
for consumers. The reason for this is that in order to remove the lid, the consumer
must apply significant grip and torque to overcome the frictional force between the
lid and the container which is accentuated by the axial load provided by the vacuum
inside the container. This can prove troublesome for some people, particularly those
who are elderly, young or suffer from a physical disability or impairment such as
arthritis.
[0004] In an attempt to address this, consumers have come up with a large number of methods
to more easily remove twist-off lids, including tapping the corner of the lid against
a hard surface, striking the corner of the lid with a knife or running hot water over
the lid before twisting. These methods are not always successful and can be dangerous
if the container is made of glass. In addition to these methods, numerous utensils
have been manufactured with the specific intention of aiding in opening twist-off
lids. However, most of these utensils work by simply increasing the consumer's grip
on the lid, and do not reduce the amount of torque required to overcome the frictional
force.
[0005] It is an object of the present invention to overcome or at least mitigate the difficulties
experienced by the consumer when removing lids from food-storage containers as described
above. This object is achieved by providing an improved removable lid that enables
consumers to first release the vacuum within the container before attempting to remove
the lid.
[0006] According to a first embodiment of the present invention there is provided a removable
lid for use with a food-storage container, the lid having a user-actuable vacuum-release
button provided by a curved score line.
[0007] A range of curved profiles have been tested and it was found that one curved generally
around the finger actuation point gives the lowest opening force for a given score
residual and is therefore the easiest to open closure with minimal chance of accidental
opening.
[0008] Embodiments of the present invention provide an easy-to-use, integrated solution
that, when in use, allows consumers to more easily remove lids from containers, without
the need for separate utensils or for carrying out potentially unsafe methods.
[0009] The curved score line may be such that the user-actuable vacuum-release button can
be actuated to fracture along the score line by finger pressure. The length of curved
score line may be less than 2cm.
[0010] The lid may further comprise a centrally located pop-up button to indicate whether
or not a vacuum is present, and said curved score line is located radially outward
of the button.
[0011] The surface of the lid proximate to the curved score line may be decorated and contain
an embossed pattern, which may comprise ridges formed in the material of the lid.
Also, the surface of the lid within the curved score line may be raised to form a
button.
[0012] The force required to actuate the vacuum-release button may be between 10N and 40N,
and it may be 20N. Too small a force may lead to accidental opening in transit or
capping and too great a force will make the button difficult to open.
[0013] The lid may further comprise one or more formations or lugs for engaging screw threads
on the food-storage container.
[0014] The curved score line may be formed by laser scoring, or by mechanical scoring, and
the depth of the curved score line may extend between 50% and 100% through the thickness
of the lid.
[0015] The thickness of the lid may be substantially 0.16mm, and the curved score line may
cut the thickness to substantially 0.02mm.
[0016] The depth of the curved score line may extend 100% through the thickness of the lid.
[0017] A sealing compound may be provided on the underside of the removable lid underneath
the user-actuable vacuum-release button. The sealing compound may peel away from part
of the lid during actuation of the vacuum-release button to expose an opening.
[0018] The removable lid may be substantially metal, for example it may be substantially
steel.
[0019] According to a second embodiment of the invention there is provided a product comprising
a food-storage container and a removable lid as described in any of the previous statements.
[0020] The interior of the container may be at a negative pressure with respect to the atmosphere
such that the removable lid is removably sealed to the food-storage container by a
pressure differential.
[0021] For a better understanding of the present invention and in order to show how the
same may be carried into effect reference will now be made, by way of example, to
the accompanying drawings in which:
Figure 1 shows a perspective view of a removeable lid according to an embodiment of
the invention;
Figure 2 shows an enlarged cross-sectional detail of the score line in the removable
lid of Figure 1;
Figure 3 shows a perspective view of the removable lid of Figure 1 attached to a container;
Figure 4 shows a perspective view of a removable lid according to another embodiment
of the invention;
Figure 5 shows an enlarged cross-sectional detail of the embodiment of Figure 4;
Figures 6a and 6b show a perspective view of a removable lid according to a further
embodiment of the invention from above and below respectively;
Figure 7 shows an enlarged cross-sectional detail of the user-actuated vacuum-release
button of the embodiment of Figures 6a and b; and
Figures 8a and 8b show enlarged cross-sectional details of the user-actuated vacuum-release
button of Figure 7 before and after a force is applied.
[0022] As discussed above, conventional removable lids can be difficult to remove from foodstuff
containers due to the need to overcome the frictional force between the lid and container
which is accentuated by the vacuum inside the container.
[0023] A removable lid will now be described with reference to the figures that can overcome
this difficulty by allowing the consumer to first easily release the vacuum within
the container before attempting to twist off the lid. This is facilitated by providing
a weakened score line on the top surface of the lid. The score line is generally curved,
e.g. arcuate, in shape to match the shape of a finger tip, and can take the form of
an arc segment. Figure 1 shows a perspective view from above of a removable lid 1
comprising a top surface 2 that is circular in shape, and a "skirt" 3 that extends
down from the edges of the top surface 2. The top surface 2 and the skirt 3 together
form an interior recess underneath the lid, and the inside walls of the skirt 3 comprise
a helical thread that engages with a corresponding helical thread on a container.
Alternatively, instead of a full helical thread being formed into the lid, there may
be a number of formations or lugs that engage with helical threads on the container.
[0024] The lid 2 is intended to be used with vacuum-sealed foodstuff containers, for example
glass mason jars used to contain cooking sauces, preserves or similar. The lid will
typically be made of steel. During the production process in which the foodstuff is
introduced into the jar, the lid hermetically seals the jar with a negative pressure
("vacuum") inside to strengthen the seal and possibly aid in the preservation of the
food. The top surface 2 comprises a "pop-up" button 4 formed as part of the top surface.
If there is a vacuum inside the jar then the pop-up button 4 remains depressed. If
there is no longer a vacuum in the jar, then the pop-up button will be released and
the consumer can press it down to feel and hear a "click" or "pop" which acts as an
indication to the consumer that the jar has been opened.
[0025] Figure 1 also shows a curved score 5 on the top surface 2 of the lid. This score
provides a weakened line in the steel of the lid that can be broken when a force is
applied to it. The score is made in the top surface during manufacture of the lid,
and is made off-centre such that it doesn't overlap with the pop-up button 4. In this
way, pressing the pop-up button 4 will not fracture the curved score line 5. There
are numerous ways in which the score can be formed, examples of which are laser scoring,
machining, or mechanical scoring (e.g. using a press and anvil). By fracturing the
top surface of the lid at the curved score line, air is allowed to enter the jar through
the newly made opening, therefore releasing the vacuum inside.
[0026] Also shown formed on the top surface in Figure 1 is an embossment pattern that comprises
ridges formed into the top surface of the lid. This embossment pattern acts as an
indicator to the consumer where best to place a finger in order to apply pressure
to the score line and fracture it.
[0027] Figure 2 shows an enlarged section of the top surface 2 containing the score line
5 in cross-section, taken perpendicular to the score line. Typically the thickness
of the steel, as indicated by the distance α, is around 0.16mm. At the score line
5, the thickness of the steel, indicated by the distance β, will be reduced to about
0.02mm. However, α can be a thickness in the range 0.10 to 0.3mm, and β can be between
0.005 and 0.1 mm.
[0028] Figure 3 shows the lid 1 as shown in Figure 1 attached to a jar 10. Arrows A to C
indicate the events that take place when a consumer first opens the jar. Initially
the jar is unopened, therefore the vacuum within is intact and the pop-up button 4
has not been released. The consumer first applies a force A to the area indicated
by the embossed pattern 6 in the top surface 2. This causes the top surface to fracture
at the score line 5, and air enters the jar through the resulting opening. As a result,
the vacuum within the jar is released, and the pop-up button 4 is released as indicated
by arrow B. The release of the pop-up button 4 is often accompanied by a "pop" or
"click" "click" type sound which acts as an audible indication to the consumer that
the vacuum has been released. Now the consumer can proceed with twisting off the lid
1 from the top of the jar 10 in the normal fashion, as indicated by arrow C. As there
is no longer a vacuum seal to overcome at the twisting off stage, the force required
is significantly reduced.
[0029] The resulting opening that is formed in the top surface when the score line is fractured
may be sharp and so, to avoid consumers injuring themselves, the area of the top surface
that contains the score line may be slightly lower compared to the rest of the top
surface. The resulting opening does not need to be large as it only requires that
air is able to enter the jar to equalise the pressure difference, and so the part
of the top surface that is displaced by the force applied by the consumer does not
need to be displaced by very much. Typically the maximum displacement will be less
than 1 mm, and once the force is removed the resilience of the material will return
that part of the top surface substantially to its previous position. Thus the consumer
will not see a hole in the closure after opening.
[0030] An alternative embodiment is shown in Figure 4. Instead of the embossed pattern of
the first embodiment, a raised button 12 is provided adjacent to the score line 5,
and the shape of the button compliments the shape of the score line, i.e. the score
line extends partially around the button. The raised button may be formed from extra
material added to the top surface. However, the embodiment shown is formed by shaping
the steel top surface to incorporate the raised button at the desired location. Figure
5 shows a cross section of the lid of Figure 4 along the dotted line D.
[0031] The score line can, in a further alternative, reduce the thickness of the lid down
to 0mm, i.e. the score line breaks through the lid. Figures 6a and 6b show the top
and underneath respectively of such a lid. From the top, the lid looks the same as
previous embodiments. There is a generally arcuate score line 5, with a raised button
12 formed in the top surface 2, along with a pop-up button 4. Underneath, however,
there is an area of compound 14 underneath the button and score line. This compound
14 seals the lid, maintaining the vacuum and protecting the cut edge provided by the
score line 5. Figure 7 shows a cross section through the score line 5 and raised button
12, and includes the compound 14 on the underside of the top surface. This compound
can be made from a plastic, foil patch, hot melt or rubber-type material. Figures
8a and 8b show how the seal provided by the compound 14 is peeled away from the top
surface when a force F is applied to the top of the raised button, and an opening
15 is created through which air can enter the container to release the vacuum.
[0032] It will be appreciated by the person of skill in the art that various modifications
may be made to the above described embodiments without departing from the scope of
the present invention.
1. A removable lid for use with a food-storage container, the lid having a user-actuable
vacuum-release button provided by a curved score line.
2. A removable lid as claimed in claim 1, wherein the curved score line is such that
the user-actuable vacuum-release button can be actuated to fracture along the score
line by finger pressure.
3. A removable lid as claimed in any one of the preceding claims, wherein the lid further
comprises a centrally located pop-up button to indicate whether or not a vacuum is
present, and said curved score line is located radially outward of the button.
4. A removable lid as claimed in any one of the preceding claims, wherein the surface
of the lid within the curved score line is raised to form a button.
5. A removable lid as claimed in any one of the preceding claims, wherein the force required
to actuate the vacuum-release button is between 10N and 40N.
6. A removable lid as claimed in any one of the preceding claims, wherein the lid further
comprises one or more formations or lugs for engaging screw threads on the food-storage
container.
7. A removable lid as claimed in any one of the preceding claims, wherein the curved
score line is formed by laser scoring.
8. A removable lid as claimed in any one of the preceding claims, wherein a sealing compound
is provided on the underside of the removable lid underneath the user-actuable vacuum-release
button.
9. A product comprising a food-storage container and a removable lid as described in
any one of the preceding claims attached to the container.
10. A product as claimed in claim 9, wherein the interior of the container is at a negative
pressure with respect to the atmosphere such that the removable lid is removably sealed
to the food-storage container by a pressure differential.