Cap
10308403 ยท 2019-06-04
Assignee
Inventors
- Takehisa Hashimoto (Nara, JP)
- Eisuke Miura (Nara, JP)
- Hirotaka Hori (Nara, JP)
- Aya Sakanoue (Nara, JP)
- Hiroaki Mori (Nara, JP)
- Denmi Kuwagaki (Noda, JP)
Cpc classification
B65D47/0838
PERFORMING OPERATIONS; TRANSPORTING
B65D77/06
PERFORMING OPERATIONS; TRANSPORTING
B65D47/20
PERFORMING OPERATIONS; TRANSPORTING
B65D51/16
PERFORMING OPERATIONS; TRANSPORTING
B65D47/40
PERFORMING OPERATIONS; TRANSPORTING
B65D83/0055
PERFORMING OPERATIONS; TRANSPORTING
B65D47/2081
PERFORMING OPERATIONS; TRANSPORTING
B65D41/04
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65D47/20
PERFORMING OPERATIONS; TRANSPORTING
B65D41/04
PERFORMING OPERATIONS; TRANSPORTING
B65D47/08
PERFORMING OPERATIONS; TRANSPORTING
B65D51/16
PERFORMING OPERATIONS; TRANSPORTING
B65D77/06
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A cap includes a main unit fit onto the mouth of a double-walled container, a spout cylinder provided on the main unit, an inner stopper that is provided in the main unit, and a first inner valve. The inner stopper includes a communicating part that communicates with the inside of the inner container and the inside of the spout cylinder. The first inner valve includes a first valve body that covers the communicating part. The first valve body has passage holes. The first valve body being deformed from a closing position S toward an opening position O keeps acting as a partition between the communicating part and the spout cylinder.
Claims
1. A container assembly comprising a cap attached to a mouth of a double-walled container having a deformable inner container and a deformable outer container, the cap comprising: a main unit attached to the mouth of the double-walled container; a spout cylinder provided on the main unit; a lid that opens and closes a spout formed at a tip end of the spout cylinder; an inner stopper that is provided in the main unit so as to be fit into the mouth of the double-walled container; and a first inner valve retained in the main unit, wherein the inner stopper includes a communicating part that communicates with an inside of the inner container and an inside of the spout cylinder, the first inner valve includes a first valve body that covers the communicating part of the inner stopper; the first valve body has at least one passage hole, the first valve body is deformable to an opening position where the first valve body deforms into the spout cylinder in an opening direction and to a closing position where the first valve body retracts opposite to the opening direction, the first valve body being biased in a closing direction, the first valve body at the closing position acts as a partition between the communicating part of the inner stopper and the spout cylinder, the first valve body at the opening position causes the communicating part of the inner stopper and the spout cylinder to communicate with each other through the at least one passage hole of the first valve body, and the first valve body being deformed from the closing position toward the opening position keeps acting as a partition between the communicating part of the inner stopper and the spout cylinder, wherein the communicating part is an inner cylinder with one end communicating with the inside of the inner container and the other end communicating with the inside of the spout cylinder, the first valve body covers an opening of the inner cylinder, the first valve body is deformable to the closing position where the first valve body retracts concavely into the inner cylinder and to the opening position where the first valve body deforms convexly into the spout cylinder, the first valve body at the closing position acts as a partition between the inside of the inner cylinder and the inside of the spout cylinder, the first valve body at the opening position causes the inside of the inner cylinder and the inside of the spout cylinder to communicate with each other through the passage hole of the first valve body, and the first valve body being deformed from the closing position toward the opening position keeps acting as a partition between the inside of the inner cylinder and the inside of the spout cylinder, and wherein the spout cylinder includes a storage part that stores the first valve body and a spout passage that communicates with the spout from the storage part, the spout passage has a smaller diameter than the storage part, the passage hole includes multiple passage holes formed on a circumference of the first valve body facing the end of the inner cylinder, and the spout cylinder has a guide surface that is formed so as to guide, to the spout passage, a fluid having flown to the storage part in the spout cylinder from the inside of the inner cylinder through the passage holes.
2. A container assembly comprising a cap attached to a mouth of a double-walled container having a deformable inner container and a deformable outer container, the cap comprising: a main unit attached to the mouth of the double-walled container; a spout cylinder provided on the main unit; a lid that opens and closes a spout formed at a tip end of the spout cylinder; an inner stopper that is provided in the main unit so as to be fit into the mouth of the double-walled container; and a first inner valve retained in the main unit, wherein the inner stopper includes a communicating part that communicates with an inside of the inner container and an inside of the spout cylinder, the first inner valve includes a first valve body that covers the communicating part of the inner stopper; the first valve body has at least one passage hole, the first valve body is deformable to an opening position where the first valve body deforms into the spout cylinder in an opening direction and to a closing position where the first valve body retracts opposite to the opening direction, the first valve body being biased in a closing direction, the first valve body at the closing position acts as a partition between the communicating part of the inner stopper and the spout cylinder, the first valve body at the opening position causes the communicating part of the inner stopper and the spout cylinder to communicate with each other through the at least one passage hole of the first valve body, and the first valve body being deformed from the closing position toward the opening position keeps acting as a partition between the communicating part of the inner stopper and the spout cylinder, wherein the communicating part is an inner cylinder with one end communicating with the inside of the inner container and the other end communicating with the inside of the spout cylinder, the first valve body covers an opening of the inner cylinder, the first valve body is deformable to the closing position where the first valve body retracts concavely into the inner cylinder and to the opening position where the first valve body deforms convexly into the spout cylinder, the first valve body at the closing position acts as a partition between the inside of the inner cylinder and the inside of the spout cylinder, the first valve body at the opening position causes the inside of the inner cylinder and the inside of the spout cylinder to communicate with each other through the passage hole of the first valve body, and the first valve body being deformed from the closing position toward the opening position keeps acting as a partition between the inside of the inner cylinder and the inside of the spout cylinder, and wherein the first valve body has a protrusion that is circumferentially pressed to the end of the inner cylinder at the closing position, the passage hole is located outside the protrusion in a radial direction of the first valve body, the first valve body at the closing position presses the protrusion to the end of the inner cylinder so as to act as a partition between the inside of the inner cylinder and the inside of the spout cylinder, the first valve body at the opening position separates the protrusion from the end of the inner cylinder, causing the inside of the inner cylinder and the inside of the spout cylinder to communicate with each other through the passage holes of the first valve body, and the first valve body being deformed from the closing position toward the opening position presses the protrusion to the end of the inner cylinder so as to keep acting as a partition between the inside of the inner cylinder and the inside of the spout cylinder.
3. A container assembly comprising a cap attached to a mouth of a double-walled container having a deformable inner container and a deformable outer container, the cap comprising: a main unit attached to the mouth of the double-walled container; a spout cylinder provided on the main unit; a lid that opens and closes a spout formed at a tip end of the spout cylinder; an inner stopper that is provided in the main unit so as to be fit into the mouth of the double-walled container; and a first inner valve retained in the main unit, wherein the inner stopper includes a communicating part that communicates with an inside of the inner container and an inside of the spout cylinder, the first inner valve includes a first valve body that covers the communicating part of the inner stopper; the first valve body has at least one passage hole, the first valve body is deformable to an opening position where the first valve body deforms into the spout cylinder in an opening direction and to a closing position where the first valve body retracts opposite to the opening direction, the first valve body being biased in a closing direction, the first valve body at the closing position acts as a partition between the communicating part of the inner stopper and the spout cylinder, the first valve body at the opening position causes the communicating part of the inner stopper and the spout cylinder to communicate with each other through the at least one passage hole of the first valve body, and the first valve body being deformed from the closing position toward the opening position keeps acting as a partition between the communicating part of the inner stopper and the spout cylinder, wherein the main unit has an air inlet port that draws outside air into a clearance between the inner container and the outer container, the main unit contains a communication passage that communicates with the air inlet port and the clearance between the inner container and the outer container, and contains a second inner valve that opens and closes the air inlet port, and the second inner valve is integrated with the first inner valve, and wherein the air inlet port and the communication passage are formed at a point in a circumferential direction of the main unit, the second inner valve includes a support member that is fixed between the main unit and the inner stopper and a second valve body that is provided on the support member so as to be elastically deformed, the second valve body has a proximal end that is provided on the support member, when a pressure of the clearance between the inner container and the outer container exceeds an atmospheric pressure, a free end of the second valve body is pressed to an inner surface of the main unit so as to close the air inlet port, and when the pressure of the clearance between the inner container and the outer container falls below an atmospheric pressure, the free end of the second valve body separates from the inner surface of the main unit so as to open the air inlet port.
4. The container assembly according to claim 3, wherein when the pressure of the clearance between the inner container and the outer container is equal to an atmospheric pressure, a clearance is formed between the free end of the second valve body and the inner surface of the main unit, and the air inlet port and the communication passage communicate with each other through the clearance.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
(11)
(12)
(13)
(14)
(15)
(16)
(17)
(18)
(19)
(20)
(21)
(22)
(23)
(24)
(25)
(26)
(27)
(28)
(29)
(30)
(31)
(32)
DESCRIPTION OF THE EMBODIMENTS
(33) Embodiments of the present invention will be described below with reference to the accompanying drawings.
First Embodiment
(34) In a first embodiment, as shown in
(35) The cap 5 includes a main unit 11 fit onto the mouth 4, a circular spout cylinder 12 provided on the main unit 11, a lid 14 that opens and closes a spout 13 formed at the tip end of the spout cylinder 12, an inner stopper 15 that is provided in the main unit 11 so as to be fit into the mouth 4, and an inner valve device 16 provided in the main unit 11.
(36) The main unit 11 includes a cylindrical body 20 and a circular top 21 provided at the end of the body 20. The body 20 is screwed onto the outer container 3 with a screw 22. The spout cylinder 12 is integrated with the top 21. Moreover, the top 21 has an air inlet port 23 that draws outside air into a clearance 37 between the inner container 2 and the outer container 3.
(37) The main unit 11 contains a communication passage 38 that communicates with the air inlet port 23 and the clearance 37 between the inner container 2 and the outer container 3. The air inlet port 23 and the communication passage 38 are formed at a point in the circumferential direction of the main unit 11.
(38) The outer container 3 has a sealing protrusion 6 that is formed around the outer container 3 so as to provide sealing between the inside of the body 20 of the main unit 11 and the outer periphery of the mouth 4 of the outer container 3. The lid 14 is provided on the main unit 11 so as to open and close with a hinge 25.
(39) As shown in
(40) The inner cylinder 29 is an example of a communicating part. One end (lower end) of the inner cylinder 29 communicates with the inside of the inner container 2 and the other end (upper end) of the inner cylinder 29 communicates with the inside of the spout cylinder 12.
(41) As shown in
(42) A plurality of passage holes 35 are formed on the circumference of the first valve body 33 facing the other end of the inner cylinder 29. The first valve body 33 can be deformed to a closing position S where the first valve body 33 retracts concavely into the inner cylinder 29 and an opening position O where the first valve body 33 expands convexly from the inside of the inner cylinder 29 into the spout cylinder 12. The first valve body 33 is biased in a closing direction A.
(43) As indicated by solid lines in
(44) As shown in
(45) The second valve body 41 is a square thin plate whose proximal end is provided on the outer periphery of the second support cylinder 40. When the pressure of the clearance 37 between the inner container 2 and the outer container 3 exceeds an atmospheric pressure, as shown in
(46) When the pressure of the clearance 37 between the inner container 2 and the outer container 3 is equal to an atmospheric pressure, as shown in
(47) As shown in
(48) A guide surface 48 shaped like an arc in cross section is formed in the spout cylinder 12 so as to guide a content fluid 47 into the spout passage 46 after the content fluid 47 flows into the storage part 45 in the spout cylinder 12 from the inside of the inner cylinder 29 through the passage holes 35. Thus, the inside diameter of the spout cylinder 12 gradually decreases from the storage part 45 toward the spout passage 46.
(49) The effect of the configuration will be described below.
(50) As shown in
(51) At this point, as shown in
(52) This causes a time lag (delay) between a press to the double-walled container 1 by the user and the discharge of the content fluid 47 in the inner container 2 from the spout 13. Thus, the user can obtain sufficient time to discharge the content fluid 47 from the spout 13 after pressing the double-walled container 1, thereby preventing rapid discharge of the content fluid 47 from the spout 13.
(53) At this point, the content fluid 47 in the inner container 2 flows into the storage part 45 in the spout cylinder 12 from the inside of the inner cylinder 29 through the passage holes 35. The content fluid 47 is then guided to the guide surface 48, is smoothly collected from the storage part 45 into the spout passage 46, and is discharged from the spout 13 through the spout passage 46. This radially discharges the content fluid 47 from the spout 13 without disturbing the flow of the content fluid 47 in the spout cylinder 12.
(54) The user releases pressure on the double-walled container 1 to restore the outer container 3 to an original shape obtained before the press to the double-walled container 1. Moreover, the pressure of the clearance 37 between the inner container 2 and the outer container 3 falls below an atmospheric pressure. At this point, as shown in
(55) In this way, the first valve body 33 being closed is considerably deformed from a convex shape to a concave shape in a vertical direction. Thus, as shown in
(56) The air inlet port 23 and the communication passage 38 are formed at a point in the circumferential direction of the main unit 11, the proximal end of the second valve body 41 is provided on the second support cylinder 40, and the free end of the second valve body 41 can be pressed to or separated from the inner surface of the main unit 11. With this structure, the second valve body 41 can sensitively react with a pressure change of the clearance 37 between the inner container 2 and the outer container 3 so as to quickly open or close the air inlet port 23.
(57) Under normal conditions where a user does not press the double-walled container 1 and the outer container 3 is not deformed (including the state where the user releases pressure on the double-walled container 1 to restore the outer container 3 to the original shape obtained before the press), as shown in
Second Embodiment
(58) In a second embodiment, as shown in
(59) When the first valve body 33 is deformed to the closing position S, the protrusion 60 is pressed to the other end of the inner cylinder 29, causing the first valve body 33 to act as a partition between the inside of the inner cylinder 29 and the inside of a spout cylinder 12. As shown in
(60) The function of the configuration will be described below.
(61) When a user opens a lid 14 and then presses a double-walled container 1 with a hand, the first valve body 33 is deformed from the closing position S (see
(62) The user releases pressure on the double-walled container 1 so as to deform the first valve body 33 from the opening position O to the closing position S. As shown in
(63) As shown in
Third Embodiment
(64) In a third embodiment, as shown in
(65) The cap 105 includes a main unit 111 fit onto the mouth 104, a cylindrical spout cylinder 112 provided on the main unit 111, a lid 114 that opens and closes a spout 113 formed at the tip end of the spout cylinder 112, an inner stopper 115 that is provided in the main unit 111 so as to be fit into the mouth 104, and an inner valve device 116 provided in the main unit 111.
(66) The main unit 111 includes a cylindrical body 120 and a circular top 121 provided at the end of the body 120. The body 120 is screwed onto an outer container 103 with a screw 122. The spout cylinder 112 is integrated with the top 121. The top 121 has an air inlet port 123 that draws outside air into a clearance 137 between the inner container 102 and the outer container 103.
(67) The main unit 111 contains a communication passage 138 that communicates with the air inlet port 123 and the clearance 137 between the inner container 102 and the outer container 103.
(68) The lid 114 is provided on the main unit 111 so as to open and close with a hinge 125, and contains a protrusion 154. When the lid 114 is closed, the protrusion 154 is inserted into the spout cylinder 112 from the spout 113, thereby sealing the spout cylinder 112.
(69) As shown in
(70) The closing member 151 is a rod member disposed at the center of the interior of the inner cylinder 129. The closing member 151 is attached to the inner cylinder 129 with a plurality of mounting plates 152 spaced every 90. The four mounting plates 152 are provided in
(71) As shown in
(72) A circular first passage hole 135 is formed at the center of the first valve body 133. A plurality of second passage holes 136 are formed like slits circumferentially on the outer edge of the first valve body 133. The second passage holes 136 are formed around the first passage hole 135.
(73) The first valve body 133 can be deformed to a closing position S1 (solid lines in
(74) As shown in
(75) As shown in
(76) As shown in
(77) The second support cylinder 140 is integrally connected to the outer circumference of the first support cylinder 134 and is inserted into the depressed part 128 of the inner stopper 115. The feeding part 141 is formed inside the support cylinder 140 and communicates with the inside of the inner container 102 through a hole 153 (see
(78) The second valve body 142 is integrally provided on one end of the second support cylinder 140. The second valve body 142 can be elastically deformed to a closing position S2 (virtual lines in
(79) As shown in
(80) The spout cylinder 112 has a guide surface 148 shaped like an arc in cross section. The guide surface 148 is formed so as to guide, to the spout passage 146, the content fluid 106 having flown to the storage part 145 in the spout cylinder 112 from the inside of the inner cylinder 129 through the second passage hole 136. Thus, the inside diameter of the spout cylinder 112 gradually decreases from the storage part 145 toward the spout passage 146.
(81) The function of the configuration will be described below.
(82) As shown in
(83) At this point, first as shown in
(84) Just after that, as shown in
(85) At this point, the content fluid 106 having flown to the storage part 145 in the spout cylinder 112 through the first and second passage holes 135 and 136 is guided to the guide surface 148, is smoothly collected into the spout passage 146 from the storage part 145, and then is discharged from the spout 113 through the spout passage 146. This can prevent a flow of the content fluid 106 from being disturbed in the spout cylinder 112.
(86) The user releases pressure on the double-walled container 101 to restore the outer container 103 to an original shape obtained before the press to the double-walled container 101. When the pressure of the clearance 137 between the inner container 102 and the outer container 103 falls below an atmospheric pressure, as shown in
(87) Thus, air is fed into the clearance 137 between the inner container 102 and the outer container 103 from the air inlet port 123 through the communication passage 138, and the first valve body 133 is deformed downward from the opening position O1 (see
(88) At this point, the content fluid 106 in the spout cylinder 112 first passes through the first and second passage holes 135 and 136 and then returns into the inner container 102 through the inner cylinder 129. Immediately after that, as shown in
(89) Just after that, as shown in
(90) In this way, the first valve body 133 being closed is considerably deformed from a convex shape (see
(91) Even if the content fluid 106 remains in the spout cylinder 112, the amount of the remaining fluid 106 can be reduced thus. Hence, when the lid 114 is closed to insert the protrusion 154 into the spout cylinder 112, the content fluid 106 remaining in the spout cylinder 112 can be prevented from leaking out of the spout cylinder 112.
(92) Under normal conditions where a user does not press the double-walled container 101 and the outer container 103 is not deformed (including the state where the user releases pressure on the double-walled container 101 to restore the outer container 103 to an original shape obtained before the press), as shown in
(93) Hence, for example, even if an inside of the double-walled container 101 reaches a higher temperature than outside and air thermally expands in the clearance 137 between the inner container 102 and the outer container 103, the thermally expanding air flows into the air inlet port 123 from the communication passage 138 and then is discharged out of the air inlet port 123. Thus, an internal pressure of the double-walled container 101 and an external pressure can be balanced under the normal conditions. This can prevent air in the clearance 137 between the inner container 102 and the outer container 103 from thermally expanding so as to raise a pressure in the double-walled container 101, thereby preventing the level of the content fluid 106 in the double-walled container 101 from rising without a press to the double-walled container 101 by a user.
(94) When a user presses the double-walled container 101 to deform the outer container 103, a pressing force is lowered to reduce the deformation amount of the outer container 103. Thus, as shown in
(95) In the foregoing embodiments, as shown in