Dispensing pump and manufacturing method thereof
11338988 · 2022-05-24
Inventors
Cpc classification
B05B12/1409
PERFORMING OPERATIONS; TRANSPORTING
B05B11/1081
PERFORMING OPERATIONS; TRANSPORTING
B05B11/1094
PERFORMING OPERATIONS; TRANSPORTING
B65D83/0055
PERFORMING OPERATIONS; TRANSPORTING
B65D83/0005
PERFORMING OPERATIONS; TRANSPORTING
B05B11/1047
PERFORMING OPERATIONS; TRANSPORTING
B05B11/1032
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A dispensing pump mechanism is provided. The pump comprises integrally molded temper-evidence part between a container collar and a spout; said collar has multiple off-centre outlet channel for dispensing one or more products from the container; said collar also comprises an integrated air vent to be blocked and opened by the rotation of the spout. The whole pump can be over-molded one-piece structure with elastic parts as being actuating parts. The pump improves the functions of the pump, such as lower restitution rate, less structural parts, lower cost, water/dust proof, lightweight, easy assembly.
Claims
1. A pump for dispensing product from a container comprising: a container collar having at least one off-centre outlet channel connectable to said container; an actuating part, rotatably mounted on top of said collar; said actuating part has a corresponding passage to said outlet channel, said passage rotating with the rotation of said actuating part follows an arcuate path away from center, wherein the rotation of said actuating part in different positions (A, B, C) causes one of said at least one outlet channel to be selectively blocked (A) and in communication with said passage (B, C), wherein two or more outlet channels are set on the collar, the rotation of said actuating part in different positions causes one of the following situations: all of said outlet channels to be blocked; and all the other of said outlet channels to be blocked except one outlet channel, wherein a connecting portion is set around one of said outlet channels for a pipe to suck the product from low part of the container, the other of said outlet channels is configured to accept a product flow in an upside-down position.
2. The pump claimed in claim 1, wherein said two or more outlet channels are evenly distributed on said collar.
3. The pump claimed in claim 1, said actuating part is above the top opening of the container.
4. A pump for dispensing product from a container comprising: a container collar having at least one off-centre outlet channel connectable to said container and at least one air vent integrated on said collar; and an actuating part, rotatably mounted on top of said collar, said actuating part having a spout and a corresponding passage to said outlet channel, said actuating part being configured to draw liquid from said outlet channel and expel said liquid through said spout, said passage rotating with the rotation of said actuating part follows an arcuate path away from center, wherein the rotation of said actuating part in different positions (A, B, C) causes one of said at least one outlet channel to be selectively blocked (A) and in communication with said passage (B, C), and wherein said at least one air vent reduces the negative pressure in said container said at least one air vent being switched between blocked (A-A) and opened (B-B) when said actuating part is rotated in different positions.
5. The pump claimed in claim 4, wherein said at least one air vent is blocked by the said actuating part when said actuating part is rotated to a close position (A-A).
6. A pump for dispensing product from a container comprising: a container collar having at least one off-centre outlet channel connectable to said container; and an actuating part, rotatably mounted on top of said collar, said actuating part having a spout and a corresponding passage to said outlet channel, said actuating part being configured to draw liquid from said outlet channel and expel said liquid through said spout, said passage rotating with the rotation of said actuating part follows an arcuate path away from center, wherein the rotation of said actuating part in different positions (A, B, C) causes one of said at least one outlet channel to be selectively blocked (A) and in communication with said passage (B, C), and wherein said actuating part comprises an actuator integrally molded with a first part and a second part, such that: said first part of said actuator is molded with a first material; said second part of said actuator is molded over said first part of said actuator with a second material, said first material being more elastic than said second material, and wherein the integrally molded actuator is folded at least one time to form a working state actuator.
7. The pump claimed in claim 6, wherein said first part of said integrally molded actuator is an elastic actuating part having an elastic membrane and at least one valve flap.
8. The pump claimed in claim 6, wherein said second part of said integrally molded actuator is a housing of a dispensing chamber and a collar of said pump.
9. The pump claimed in claim 6, wherein said integrally molded actuator comprises a dispensing chamber, an actuating part, a tamper-evidence linkage and a collar; said actuating part is connected between said dispensing chamber and said linkage; said linkage links between said actuating part and said collar.
10. The pump claimed in claim 6, wherein said integrally molded actuator is folded at least one time between said dispensing chamber and said actuating part to snap said actuating part onto said dispensing chamber; wherein two ends of said tamper-evidence linkage are folded to rotate said collar 180 degrees to connect to said dispensing chamber from its bottom.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention will be better understood by way of the following detailed description of proposed embodiments with reference to the appended drawings, in which:
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DETAILED DESCRIPTION
(80) In
(81) Before starting to use the product in the sealed container (not shown in the figures), the collar 103 is mounted on the container, and the spout 102 is also screwed in a lower position, a sealed position. The linkage 101 is connected between the spout 102 and the container collar 103, and said connection is in a tight manner so as to the spout 102 cannot turn a significant angle without breaking said linkage 101, such as 45 degrees.
(82) When the user starts to use the product, the spout 102 is turned/unscrewed from said sealed position to a using position, normally turned more than 180 degrees. Therefore the linkage 101 is broken as tamper evidence.
(83) In this embodiment, the integrally molded component for the pump 100 comprising: a container collar 103 having attachment structure to connect to the container, such as thread (e.g. 225 in
(84) The tamper-evidence part has two frangible parts 104 on its two ends.
(85) A pump for a product container, comprising: an actuating part 105 and said integrally molded component 100; said tamper-evidence part of said integrally molded component is broken when said spout is rotated an angle from its initial installation position after said pump installed on said product container.
(86) In
(87) As shown in
(88) As shown in
(89) The top side of the pump 210 is an elastic membrane 213. The membrane 213 is also the top side of the dispensing chamber 211. The up-down movement of the membrane 213 is actuating force of the pump 210.
(90) The collar 220 is connected, mounted (such as screwed or snapped) onto a container of at least one product (not shown in figures), which contains two kinds of products separately. The two holes 221 and 222 are outlet openings for the two products.
(91) When the pump 210 turns to the open 1 position (as
(92) When the pump 210 turns to the open 2 position (as
(93) When the pump 210 turns to the close 1 or 2 positions (as
(94) In this embodiment, a pump for dispensing product from a container comprising: a container collar 220 having at least one off-centre outlet channel (holes 221 and 222), connectable to said container; an actuating part (pump 210), rotatably mounted on top of said collar; said actuating part has a corresponding passage (chamber 211) to said outlet channel, said passage rotating with the rotation of said actuating part follows an arcuate path away from center, wherein the rotation of said actuating part in different positions causes one of said at least one outlet channel to be selectively blocked and in communication with said passage.
(95) The skilled person in the art can understand, a variation can be made to achieve a single product dispensing by a single off-centered hole on the collar, and a rotation of 180 degrees can switch on and off the pump. Another variation can be made to achieve a three-products dispensing by three off-centered holes on the collar, and a rotation of every 60 degrees can switch on (open 1, open 2, open 3) and off the pump.
(96) Basically, if the container contains multiple (N) kinds of products, and N off-centered holes are set on the collar, a rotation of every 180/N degrees can switch on (open 1, open 2 . . . open N) and off the pump.
(97) In another embodiment of the proposed solution, the collar 220 is connected to a container having one product within. A ring rib 223 is set on the bottom surface of the collar, around one of the holes (221). A pipe can be mounted to the ring rib 223 to extend to the bottom of the container for sucking up the product into the chamber 211.
(98) When the volume of the product in the container is relatively high, such as more than 15%, the dispensing pump should be placed in the open 1 position and the container is in upright position. The product will be sucked up through the pipe and the hole 221, then delivered to the user.
(99) Otherwise when the volume of the product in the container is relatively low, such as less than 15%, the dispensing pump should be placed in the open 2 position and the container is in upside-down position. The product will flow through the hole 222 by gravity, then delivered to the user.
(100) By the upside-down position dispensing, the pump can achieve a lower restitution rate, almost close to 100%.
(101) As shown in
(102) In
(103) The collar 300 has two off-centered holes 301, 302 as the outlet openings of the products from a container/bottle (not shown in figures). The collar 300 is mounted on the container and a pump (e.g. pump 210) is fastened onto the collar 300 by connecting to ribs 303 on the top of the collar.
(104) When the pump (210) is at the open position, the structure of the pump near the two air vent holes 304, 305 causes the chamber of the container connected with the outside air, then reduces the negative pressure inside the container. The detailed structure will be discussed hereafter together with
(105) The air vent hole 304 is set correspondingly for the outlet hole 302, when the pump is rotated to the open position for hole 302; similarly, when the pump is rotated to the open position for hole 301, the air vent hole 305 is set correspondingly to connect the container chamber of hole 301.
(106) When the pump is at the close position, the outlet holes 301, 302 are closed, meanwhile the air vent holes 304, 305 are also covered/blocked by the wall (e.g. 216) of the pump.
(107) In
(108) The outer part 410 includes a cylinder shape housing 411, a nozzle 412 and a ring shape pressing part 413. The nozzle 412 connects to the housing 411 on one side of the housing 411, the pressing part 413 connects rotatably to the housing 411 on the opposite side.
(109) The inner part 420 includes a chamber part 422 and an elastic membrane 423. The chamber part 422 is cylinder shaped with said off-centered pump chamber 421. On the side of the chamber part 422, near the pump chamber 421, there is a one-way valve 424, which positions corresponding to the nozzle 412, to forming a dispensing outlet together.
(110) There are ribs 425 and corresponding grooves 415 set, respectively on the out surface of the chamber part 422 and the inner surface of the housing 411, so as to fasten the chamber part 422 into the housing 411, as shown in
(111) The membrane 423 is bowl shaped, its structure and movement are similar as membrane 213. An elastic flap 426 is set on the bottom side of the pump chamber 421 as an inlet.
(112) As shown in
(113) When the pressing part 413 rotates 180 degrees with the membrane 423, the pressing part 413 is fastened to the upper edge of the outer part 410, while the membrane 423 is pressed onto the chamber part 422 to form an air-tight pump chamber 421 for dispensing the product.
(114) The inner part 420 and the outer part 410 can be made of same or different materials, preferably the material for the inner part 420 is more elastic than that of the outer part 410.
(115) In
(116) Said pump part 510 comprises a nozzle 512 and a dispensing chamber 511. A one-way valve 514 is connected between the nozzle 512 and the dispensing chamber 511 as an outlet. An elastic flap 515 is set on the bottom side of the dispensing chamber 511 as an inlet.
(117) A collar 520 is connected between a product container (not shown) and said pump part 510. An opening hole 521 is set on the top surface of the collar 520.
(118) As shown in
(119) The top side of the pump 510 is an elastic membrane 513. The membrane 513 is also the top side of the dispensing chamber 511. The up-down movement of the membrane 513 is actuating force of the pump 510.
(120) When the pump 510 turns to the open position (as
(121) When the pump part 510 turns to the close position (as
(122) In
(123) The collar 520 is mounted on the container and said pump 510 is fastened onto the collar 520 by connecting to ribs 522 on the top of the collar.
(124) A part of the ribs 522b is taller than the rest 522a, as shown in
(125) In
(126) This embodiment in
(127) The pump part 710 is fastened onto the collar 720 by connecting to ribs 723 on the top of the collar.
(128) Parts of the ribs 723b are taller than the rest 723a, as shown in
(129) In this embodiment, a pump for dispensing product from a container comprising: a collar 720, connectable to an opening of said container; an actuating part (pump 710), rotatably mounted onto said collar; an air vent 704, integrated on said collar for reducing the negative pressure in said container; wherein said air vent is switched between blocked and opened when said actuating part (pump 710) is rotated in different positions.
(130) Said actuating part (pump 710) is turned 180 degrees and fastened to said collar, said tamper-evidence part 730 has fork shaped linkages, said fork shaped linkages locate by the two sides of said nozzle 712.
(131) The detailed structure of the air vent in this embodiment is discussed with
(132) As shown in
(133) When the pump 710 turns to the close 1 position as shown in
(134) Preferably, as shown in
(135) In
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(137) The one-piece pump 800 comprises: a pump housing 810 having a nozzle 811 on its side, a pump pressing part 820 having an elastic membrane 821, a linkage 830 and a collar 840.
(138) The pump pressing part 820 is connected to the pump housing 810 on the opposite side to said nozzle 811. The pump pressing part 820 is rotatably to be fastened onto the pump housing 810 to form a pump part 850 having an air-tight dispensing chamber within (similar as
(139) In
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(141) In this embodiment, a method for producing a dispensing pump 900, comprises: molding a first part (910) of said pump with a first material; on said first part, over-molding a second part (920) of said pump with a second material, to form an unfolded one-piece pump structure as
(142) The inner part 910 and the outer part 920 can be made of same or different materials, preferably the material for the inner part 910 is more elastic than that of the outer part 920.
(143) The outer part 920 includes a cylinder shape housing 921 with a nozzle, a ring shape pressing part 922, a linkage 923 as the tamper-evidence, and a collar 924.
(144) The structure of the inner part 910 is similar as the inner part 420 in
(145) Preferably, in
(146) Preferably, said air vent holes 9242 can be blocked by the rotation of the pump chamber, such as described above and in
(147) The inner part 910 is set in the outer part 920, forming the pump 900 as shown in
(148) As shown in
(149) In
(150) The outer part 1010 includes a cylinder shape housing 1011, a nozzle 1012 and a ring shape pressing part 1013. The nozzle 1012 connects to the housing 1011 on one side of the housing 1011, the pressing part 1013 connects rotatably to the housing 1011 on the opposite side.
(151) The inner part 1020 includes a chamber part 1022 and an elastic membrane 1023. The chamber part 1022 is cylinder shaped with said off-centered pump chamber 1021. On the side of the chamber part 1022, near the pump chamber 1021, there is a one-way valve 1024, which positions corresponding to the nozzle 1012, to forming a dispensing outlet together.
(152) The chamber part 1022 can fasten in the housing 1011, as shown in
(153) The membrane 1023 is bowl shaped, its structure and movement are similar as membrane 213. An elastic flap 1026 is set on the bottom side of the pump chamber 1021 as an inlet.
(154) As shown in
(155) When the pressing part 1013 rotates 180 degrees with the membrane 1023, the pressing part 1013 is fastened to the upper edge of the outer part 1010, while the membrane 1023 is pressed onto the chamber part 1022.
(156) The inner part 1020 and the outer part 1010 can be made of same or different materials, preferably the material for the inner part 1020 is more elastic than that of the outer part 1010.
(157) By comparing the pump 100 and the pumps 800, 900, the core of the pump is moved out of the container, it increase the volume of the product of a same container, correspondingly the standard volume product requires a smaller container, thus it saves the material and reduces the cost of packaging.
(158) While the invention has been shown and described with reference to preferred embodiments thereof, it will be recognized by those skilled in the art that various changes in form and detail may be made therein without departing from the spirit and scope of the invention as defined by the appended claims.