FIELD OF THE INVENTION
[0001] The present invention relates to containers. Specifically, the present invention
relates to easy operating containers.
BACKGROUNG OF THE INVENTION
[0002] There are many types of containers in the market. These containers are, in general,
divided into four categories: spray type, pump type, squeeze type and pouring type.
Spray types are mainly used for insecticide sprays, air refresher, deodorants, in
contrast, pump types and squeeze types are mainly used for dishwashing detergents,
shampoos, rinses and conditioners, hand wash detergents and body wash detergents.
Pouring types are used for general liquids or powders.
[0003] It has now been found that users would like at least dual functions for pump type
containers: table top usage and portable usage. Table top usage means that users place
the container on a surface and push the pump to dispense the product to the target
location, such as a sponge, their hands or towels. Portable usage means that users
apply the product directly to the target location such as pans, cutting boards or
hairs.
[0004] However, it is not always easy to use containers designed for table top usage as
a portable usage because sometimes the body of the container is too thick to hold.
Even if the body of the container is sufficiently thin, users hands are usually slippery
in a kitchen or bathroom because of dishwashing detergents or shampoos and thus, users
may feel it difficult to hold and operate the container of detergents or shampoos.
In those situations, users need to operate the pump with one hand because the other
hand is occupied with a sponge or is taking care of their hair.
[0005] Therefore, there is a need to provide a container which not only can be used for
table top usage but also can easily dispense products while being held for portable
usage with one hand.
SUMMARY OF THE INVENTION
[0006] The present invention relates to a container comprising a body, a foam pump, a nozzle
and a hand rest. The body of the container has a top end and a bottom end. The pump
of the container has an upper end and a lower end. The lower end of the pump is connected
to the top end of the body. The nozzle is connected to the upper end of the pump.
Also, the nozzle comprising a finger position thereupon. The hand rest is located
between the nozzle and the body for allowing one finger operation to push the upper
end of the pump when the body is held at one hand. The hand rest is an oval projection,
which minimum diameter is orientated in substantially the same direction as the dispersing
orifice.
[0007] The container of the present invention provides a container which can easily dispense
products in conditions on which users need to dispense the product by one hand. For
example, such conditions are: holding a sponge at one hand, holding a plate in a kitchen
sink at one hand, Wishing or rinsing hairs at one hand etc. In these situations, users'
hand or containers themselves are very slippery by attached detergents or water, so
if users use nominal containers, users may feel difficulty to hold containers. Even
if they can hold containers, they cannot push nozzles of containers by one hand. However,
as the container of the present invention has a hand rest, even in these slippery
conditions, users easily push the nozzle and dispense products by one hand.
[0008] The container of the present invention can contain any types of products, however,
to show the strong benefit of the container, the container of the present invention
preferably, contain a dishwashing composition, a shampoo composition, a rising composition,
conditioners, hand wash detergents or body wash detergents because these products
may be used either containers or users' hands are wet or slippery.
BRIEF DESCRIPTION OF THE FIGURES
[0009]
Fig. 1 shows a preferred embodiment of the container of the present invention having a hand
rest which is a projection.
Fig. 2 shows a preferred embodiment of the container of the present invention having a body
and a hand rest which is a projection.
Fig. 5 shows a right view of a preferred embodiment of the container of the present invention
having a hand rest which is a projection.
Fig. 6 shows a front view of a preferred embodiment of the container of the present invention
having a hand rest which is a projection.
Fig. 7 shows a left view of a preferred embodiment of the container of the present invention
having a hand rest which is a projection.
Fig. 8 shows a back view of a preferred embodiment of the container of the present invention
having a band rest which is a projection.
Fig. 9 shows a perspective view of a preferred embodiment of the container of the present
invention having a hand rest which is a projection.
Fig. 10 shows a bottom view of a preferred embodiment of the container of the present invention
having a hand rest which is a projection.
Fig. 11 shows a top view of a preferred embodiment of the container of the present invention
having a hand rest which is a projection.
Fig. 12 shows a right view of another preferred embodiment of the container of the present
invention having a hand rest which is a projection.
Fig. 13 shows a front view of another preferred embodiment of the container of the present
invention having a hand rest which is a projection.
Fig. 14 shows a left view of another preferred embodiment of the container of the present
invention having a hand rest which is a projection.
Fig. 15 shows a back view of another preferred embodiment of the container of the present
invention having a hand rest which is a projection.
Fig. 16 shows a perspective view of another preferred embodiment of the container of the
present invention having a hand rest which is a projection.
Fig. 17 shows a bottom view of another preferred embodiment of the container of the present
invention having a hand rest which is a projection.
Fig. 18 shows a top view of another preferred embodiment of the container of the present
invention having a hand rest which is a projection.
Fig. 19 shows a right view of another preferred embodiment of the container of the present
invention having a hand rest which is a projection.
Fig. 20 shows a front view of another preferred embodiment of the container of the present
invention having a hand rest which is a projection.
Fig. 21 shows a left view of another preferred embodiment of the container of the present
invention having a hand rest which is a projection.
Fig. 22 shows a back view of another preferred embodiment of the container of the present
invention having a hand rest which is a projection.
Fig. 23 shows a perspective view of another preferred embodiment of the container of the
present invention having a hand rest which is a projection.
Fig. 24 shows a bottom view of another preferred embodiment of the container of the present
invention having a hand rest which is a projection.
Fig. 25 shows a top view of another preferred embodiment of the container of the present
invention having a hand rest which is a projection.
Fig. 26 shows a right view of another preferred embodiment of the container of the present
invention having a hand rest which is a projection.
Fig. 27 shows a front view of another preferred embodiment of the container of the present
invention having a hand rest which is a projection.
Fig. 28 shows a left view of another preferred embodiment of the container of the present
invention having a hand rest which is a projection.
Fig. 29 shows a back view or another preferred embodiment of the container of the present
invention having a hand rest which is a projection.
Fig. 30 shows a perspective view of another preferred embodiment of the container of the
present invention having a hand rest which is a projection.
Fig. 31 shows a bottom view of another preferred embodiment of the container of the present
invention having a hand rest which is a projection.
Fig. 32 shows a top view of another preferred embodiment of the container of the present
invention having a hand rest which is a projection.
Fig. 33 shows a right view of another preferred embodiment of the container of the present
invention having a hand rest which is a projection.
Fig. 34 shows a front view of another preferred embodiment of the container of the present
invention having a hand rest which is a projection.
Fig. 35 shows a left view of another preferred embodiment of the container of the present
invention having a hand rest which is a projection.
Fig. 36 shows a back view of another preferred embodiment of the container of the present
invention having a hand rest which is a projection.
Fig. 37 shows a perspective view of another referred embodiment of the container of the present
invention having a hand rest which is a projection.
Fig. 38 shows a bottom view of another referred embodiment of the container of the present
invention having a hand rest which is a projection.
DETAILED DESCRIPTION OF THE INVENTION
[0010] All percentages, ratios and proportion herein are by weight of the final dishwashing
composition, unless otherwise specified. All temperatures are in degrees Celsius (°C)
unless otherwise specified.
[0011] As used herein, the term "comprising" and its derivatives means are intended to be
open ended terms that specify the presence of the stated feature, elements, component,
groups, integers, and/or steps, but do not exclude the presence of other, unstated
features, elements, components, groups, integers, and/or steps. This definition also
applies to words of similar meaning, for example, the term "have", "include", "be
provided with" and their derivatives. This term encompasses the terms "consisting
of" and "consisting essentially of".
[0012] As used herein, the term "dish" means any dishware, tableware, cookware, glassware,
cutlery, cutting board, food preparation equipment, etc. which is washed prior to
or after contacting food, being used in a food preparation process and/or in the serving
of food.
[0013] As used herein, the term "one finger operation" means that a nozzle is pushed by
one finger selected from a thumb, an index finger, and the middle finger without slipping
the nozzle, bottle and/or finger.
[0014] As used herein, the term "hand rest" means a portion which can stop, prevent or reduce
slipping of the container from the user's fingers or hands and allow one finger operation
to push the pump when the body of the container is held at one hand.
[0015] As used herein, the term "projection" means one type of the hand rest. The projection
type hand rest makes users' hands or fingers contact a body of a container when users
hold the container.
[0016] As used herein, the term "table top" means a condition in which users can push a
nozzle of the container without contacting the body of the container.
[0017] As used herein, the term "portable" means a condition in which users can push the
nozzle of the container while they are contacting the body of the container.
[0018] Referring to
Fig. 1, a container, generally indicated at
100, is illustrated which has a body
200, a pump
300, a nozzle 400 and a hand rest
500. The container
100 is a hollow
[0019] The shape of the body
200 of the present invention is not limited to any particular shape. The unrestricted
example of the shape of the body
200 can be an elongated tube, cone or partial cone. The material of the body
200 of the present invention may be, for example, plastic, resin, glass, metal or combinations
thereof. The body
200 has a top end
210 and bottom end
220.
[0020] The pump
300 has an upper end
310 and a lower end
320 and which is connected to the top end
210 of the body
200. The pump
300 of the present invention is a foam pump. Preferred foam pumps are available from
Air Spray Corporation (Alkmaar, Netherland), K&K Corporation (Osaka, Japan), Keltee
Corporation (Druen, Netherland). Preferred liquid pumps are available from Air Spray
Corporation, Yoshino Seisakusho Kabushiki Kaisha (Tokyo, Japan), Toyo Scikan Kabushiki
Kaisha (Tokyo, Japan). The pump material may be, for example, plastics, resins, glass,
metal or combinations thereof.
[0021] The nozzle
400 is connected to the upper end
310 of the pump
300 and has a finger position
410 thereupon. The distance
600 between the finger position
410 and the top end
210 is important because if the distance
600 is too far, finger may not be able to reach the finger position
410 of the nozzle 400, while if the distance
600 is too short, the nozzle
400 may not have sufficient depression distance and may not be able to provide sufficient
amount of product from the container
100. The distance
600 is, preferably, from 10 mm to 100 mm, more prefeably, from 10 mm to 70 mm, and further
more preferably, from 20 mm to 50 mm.
[0022] The finger position
410 can be located anywhere on the nozzle
400 as long as user can push the finger position. The finger position
410 can be indicated by, for example, different coloring, a recess or a different texture.
[0023] The hand rest
500 is located between the nozzle
400 and the body
200 for allowing one finger operation to, push the upper end
310 of the pump
300 when the body
200 is held with one hand. The hand rest
500 can be in any form as long as the hand rest
500 can allow one finger operation. The hand rest
500 is a projection.
[0024] The hand rest
500 shown in
Fig. 1 is a preferred example of a projection. The minimum diameter
530 of the hand rest
500 is from 10 mm to 100 mm, preferably, from 20 mm to 60 mm. If the minimum diameter
is too big, users may not be able to hold the container If the minimum diameter is
too small, users feel difficulty to push the nozzle since all finger is placing too
close, However, this situation can be avoided by having big enough minimum diameter
for tube hand rest, so that user can adjust the holding position.
[0025] The hand rest
500 has a first surface
510 and a second surface
520. One or more fingers from user's hand preferably contact the second surface
520 of the hand rest
500 so that users can hold the container
100 more stably and securely.
[0026] An initial radius of curvature of the inside of the hand rest
500 is from 0.1 mm to 80 mm, preferably from 0.1 mm to 24 mm, more preferably, from 5.5
mm to 12 mm. A radius or curvature is defined in
Dictionary of Plastic Technology, p684, published by Kabushiki Kaisha Kogyo Chosakai
in 1994. According to the reference, a radius of curvature is defined as a circle radius
which is the most closest to the given curve at the given point on the curve. The
initial radius is shown in
Fig. 1.
[0027] Fig. 2 shows a preferred embodiment of the container of the present invention having a body
and a hand rest which is a projection.
EXAMPLE
Preparation
[0028]
- (1) Two containers for test were prepared: Container A (normal container-no hand rest);
and Container B (with a hand rest, projection type shown in Fig. 1).
- (2) To make the containers slippery condition, 0.2 g of liquid dish washing detergent
was poured onto a paper towel, then applied to the outside of the test containers,
then wiped off the excess detergent.
- (3) To eliminate influence of nozzle length, 1.5(W) x 2.5(>L) cm of thick paper with
white tape was attached and the total length of the nozzle was adjusted to about 6.8
cm
Test 1: Container four table top usage
[0029]
- 1) 10 well-trained panelists were asked to hold a sponge with one hand and to push
the nozzle of each container (Container A and B) with the other hand, twice, so as
to dispense product.
- 2) Product preference for ease of pushing the nozzle was rated on a 0-100 scale by
the panelists. "0" means "almost impossible" to push the nozzle, while "100" means
"very easy" to push the nozzle.
The result is shown in TABLE 1. As shown in TABLE 1., the containers of the present
invention (container B) shows almost equal easiness for pushing nozzle as a table
top usage.
Test 2: Container for portable usage
[0030]
1) One plate was prepared in a sink.
1) The same panelist of test 1 were prepared and asked them to hold the same containers
with one hand and to push the nozzle of each container with the 'index fingers' so as to dispense the product onto the plate in the sink.
2) Product preference for ease of holding degree of slipperiness were rated on a 0-100
scale by the panelists. "0" means "almost impossible" to push the nozzle, with one
finger, while "100" means "very easy" to push the nozzle with one finger.
[0031] The result between Container A and B is shown in TABLE 2-A. In test 2, panelists
needed to push the nozzle with one finger. When they use Container A, they could not
hold the container well (See the result of the average score). As a result, panelists
could not push the nozzle well due to the slippery body of the container. However,
as Container B has the hand rests of the present invention, users may easily hold
the body of the container and as a result, one finger operation was easily performed.
TABLE 1-A
| Panelist number |
Easiness or Push (0-100) |
| |
Container A |
Container B |
| 1 |
60 |
50 |
| 2 |
70 |
70 |
| 3 |
50 |
50 |
| 4 |
90 |
80 |
| 5 |
60 |
70 |
| 6 |
50 |
50 |
| 7 |
50 |
60 |
| 8 |
90 |
90 |
| 9 |
50 |
50 |
| 10 |
40 |
40 |
| Average |
61 |
61 |
TABLE 2-A
| Panelist number |
Easiness of Hold (0-100) |
Non-Slippery degree (0-100) |
| |
Container A |
Container B |
Container A |
Container B |
| |
20 |
0 |
20 |
20 |
| 2 |
20 |
90 |
0 |
90 |
| 3 |
20 |
50 |
20 |
60 |
| 4 |
40 |
70 |
20 |
90 |
| 5 |
40 |
80 |
30 |
90 |
| 6 |
0 |
80 |
0 |
80 |
| 7 |
50 |
40 |
0 |
80 |
| 8 |
30 |
40 |
10 |
70 |
| 9 |
10 |
50 |
10 |
50 |
| 10 |
10 |
30 |
10 |
70 |
| Average |
24 |
53 |
12 |
70 |
[0032] While particular embodiments of the present invention have been illustrated and described,
it would be obvious to those skilled in the art that various other changes and modifications
can be made without departing from the spirit and scope of the invention. It is therefore
intended to cover in the appended claims all such changes and modifications that are
within the scope of this invention.
1. A container (100) comprising:
(a) a body (200) comprising a top end (210) and a bottom end (220);
(b) a foam pump (300) comprising an upper end (310) and a lower end (320) wherein
the lower end of the pump (320) is connected to the top end of the body (210);
(c) a nozzle (400) connected to the upper end of the pump (310), the nozzle (400)
comprising a finger position thereupon; and
(d) a hand rest (500) being an oval projection which is located between the nozzle
(400) and the body (200) for allowing one finger operation to push the upper end of
the pump (310) when the body (200) is held at one hand, and which minimum diameter
(530) is orientated in substantially the same direction as the dispersing orifice.
2. The container (100) according to Claim 1, wherein the hand rest (500) comprises a
first surface (510) and a second surface (520) and wherein a finger contacts the second
surface (520) of the hand rest (500) when the body is held with one hand.
3. The container (100) according to Claim 1, wherein the distance (600) between the finger
position (410) to the top end (210) is from 10 mm to 100 mm, preferably from 10 mm
to 70 mm and more preferably, from 20 mm to 50 mm.
4. The container according to any of the preceding Claim, wherein the minimum diameter
(530) of the hand rest (500) is from 10 mm to 100 mm, preferably, from 20 mm to 60
mm.
5. The container according to any of the preceding Claim, wherein the inital radius of
curvature of the inside of the hand rest (500) is from 0.1 mm to 80 mm, preferably
from 0.1 mm to 24 mm, and more preferably, from 5.5 mm to 12 mm.
6. The container (100) according to any of the preceding claims wherein the maximum diameter
of the hand rest (500) is orientated in a substantially perpendicular direction versus
the dispersing orifice.
7. The container (100) according to any of the preceding claim, wherein the lenght of
the nozzle (400) is larger than the minimum diameter (530) of the hand rest (500).
1. Behälter (100), der Folgendes umfasst:
(a) einen Körper (200), der ein oberes Ende (210) und ein unteres Ende (220) umfasst;
(b) eine Schaumpumpe (300), die ein oberes Ende (310) und ein unteres Ende (320) umfasst,
wobei das untere Ende der Pumpe (320) mit dem oberen Ende des Körpers (210) verbunden
ist;
(c) eine Düse (400), die mit dem oberen Ende der Pumpe (310) verbunden ist, wobei
sich auf der Düse (400) eine Fingerposition befindet; und
(d) eine Handablage (500), die ein ovaler Vorsprung ist, der sich zwischen der Düse
(400) und dem Körper (200) befindet, um eine Fingerbetätigung zwecks Drücken des oberen
Endes der Pumpe (310) zu ermöglichen, wenn der Körper (800) mit einer Hand gehalten
wird, und dessen Mindestdurchmesser (530) im Wesentlichen in die gleiche Richtung
ausgerichtet ist wie die Abgabeöffnung.
2. Behälter (100) nach Anspruch 1, wobei die Handablage (500) eine erste Oberfläche (510)
und eine zweite Oberfläche (520) umfasst und wobei ein Finger die zweite Oberfläche
(520) der Handablage (500) berührt, wenn der Körper mit einer Hand gehalten wird.
3. Behälter (100) nach Anspruch 1, wobei der Abstand (600) zwischen der Fingerposition
(410) bis zum oberen Ende (210) von 10 mm bis 100 mm beträgt, vorzugsweise von 10
mm bis 70 mm und mehr bevorzugt von 20 mm bis 50 mm.
4. Behälter nach einem der vorgenannten Ansprüche, wobei der Mindestdurchmesser (530)
der Handablage (500) von 10 mm bis 100 mm beträgt, vorzugsweise von 20 mm bis 60 mm.
5. Behälter nach einem der vorgenannten Ansprüche, wobei der Anfangskrümmungsradius des
Inneren der Handablage (500) von 0,1 mm bis 80 mm beträgt, vorzugsweise von 0,1 mm
bis 24 mm und mehr bevorzugt von 5,5 mm bis 12 mm.
6. Behälter (100) nach einem der vorstehenden Ansprüche, wobei der Höchstdurchmesser
der Handablage (500) in einer im Wesentlichen senkrechten Richtung im Vergleich zur
Abgabeöffnung ausgerichtet ist.
7. Behälter (100) nach einem der vorstehenden Ansprüche, wobei die Länge der Düse (400)
länger ist als der Mindestdurchmesser (530) der Handablage (500).
1. Récipient (100) comprenant :
(a) un corps (200) comprenant une extrémité supérieure (210) et une extrémité inférieure
(220) ;
(b) une pompe profilée (300) comprenant une extrémité supérieure (310) et une extrémité
inférieure (320) dans laquelle l'extrémité inférieure de la pompe (320) est attachée
à l'extrémité supérieure du corps (210) ;
(c) une buse (400) attachée à l'extrémité supérieure de la pompe (310), la buse (400)
comprenant une position pour le doigt au-dessus ; et
(d) un repose-main (500) qui est une saillie ovale qui est située entre la buse (400)
et le corps (200) pour permettre une opération à un doigt pour pousser l'extrémité
supérieure de la pompe (310) lorsque le corps (200) est maintenu à une main, et dont
le diamètre minimum (530) est orienté essentiellement dans la même direction que l'orifice
de dispersion.
2. Récipient (100) selon la revendication 1, dans lequel le repose-main (500) comprend
une première surface (510) et une deuxième surface (520) et dans lequel un doigt vient
en contact avec la deuxième surface (520) du repose-main (500) lorsque le corps est
tenu d'une main.
3. Récipient (100) selon la revendication 1, dans lequel la distance (600) entre la position
pour le doigt (410) et l'extrémité supérieure (210) va de 10 mm à 100 mm, de préférence
de 10 mm à 70 mm et plus préférablement, de 20 mm à 50 mm.
4. Récipient selon l'une quelconque des revendications précédentes, dans lequel le diamètre
minimum (530) du repose-main (500) va de 10 mm à 100 mm, de préférence, de 20 mm à
60 mm.
5. Récipient selon l'une quelconque des revendications précédentes, dans lequel le rayon
de courbure initial de l'intérieur du repose-main (500) va de 0,1 mm à 80 mm, de préférence
de 0,1 mm à 24 mm, et plus préférablement, de 5,5 mm à 12 mm.
6. Récipient (100) selon l'une quelconque des revendications précédentes, dans lequel
le diamètre maximum du repose-main (500) est orienté dans une direction essentiellement
perpendiculaire par rapport à l'orifice de dispersion.
7. Récipient (100) selon l'une quelconque des revendications précédentes, dans lequel
la longueur de la buse (400) est plus grande que le diamètre minimum (530) du repose-main
(500).