WO2020173250A1 - 一种可回流直通倒液挤捏定量容器 - Google Patents

一种可回流直通倒液挤捏定量容器 Download PDF

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Publication number
WO2020173250A1
WO2020173250A1 PCT/CN2020/072790 CN2020072790W WO2020173250A1 WO 2020173250 A1 WO2020173250 A1 WO 2020173250A1 CN 2020072790 W CN2020072790 W CN 2020072790W WO 2020173250 A1 WO2020173250 A1 WO 2020173250A1
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Prior art keywords
container
liquid
liquid storage
bellows
base
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PCT/CN2020/072790
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English (en)
French (fr)
Inventor
李红彪
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李红彪
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Publication of WO2020173250A1 publication Critical patent/WO2020173250A1/zh

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D1/00Containers having bodies formed in one piece, e.g. by casting metallic material, by moulding plastics, by blowing vitreous material, by throwing ceramic material, by moulding pulped fibrous material, by deep-drawing operations performed on sheet material
    • B65D1/32Containers adapted to be temporarily deformed by external pressure to expel contents
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D35/00Pliable tubular containers adapted to be permanently or temporarily deformed to expel contents, e.g. collapsible tubes for toothpaste or other plastic or semi-liquid material; Holders therefor
    • B65D35/22Pliable tubular containers adapted to be permanently or temporarily deformed to expel contents, e.g. collapsible tubes for toothpaste or other plastic or semi-liquid material; Holders therefor with two or more compartments
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D35/00Pliable tubular containers adapted to be permanently or temporarily deformed to expel contents, e.g. collapsible tubes for toothpaste or other plastic or semi-liquid material; Holders therefor
    • B65D35/24Pliable tubular containers adapted to be permanently or temporarily deformed to expel contents, e.g. collapsible tubes for toothpaste or other plastic or semi-liquid material; Holders therefor with auxiliary devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D35/00Pliable tubular containers adapted to be permanently or temporarily deformed to expel contents, e.g. collapsible tubes for toothpaste or other plastic or semi-liquid material; Holders therefor
    • B65D35/24Pliable tubular containers adapted to be permanently or temporarily deformed to expel contents, e.g. collapsible tubes for toothpaste or other plastic or semi-liquid material; Holders therefor with auxiliary devices
    • B65D35/40Pliable tubular containers adapted to be permanently or temporarily deformed to expel contents, e.g. collapsible tubes for toothpaste or other plastic or semi-liquid material; Holders therefor with auxiliary devices for metering discharge
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D83/00Containers or packages with special means for dispensing contents

Definitions

  • Quantitative squeezing container capable of refluxing straight through pouring
  • the present invention relates to a container, in particular to a quantitative container that can be refluxed and poured directly.
  • the present invention is researched and proposed for the shortcomings of the prior art.
  • the technical problem to be solved by the present invention is to provide a backflow straight-through liquid pouring squeezing quantitative container, which can manually pour liquid according to actual needs, and has the advantages of simple structure and convenient operation.
  • the present invention is a flow-through pouring squeeze quantitative container, which includes a squeezable and deformable container with an upper opening.
  • the mouth of the container is connected with a base with upper and lower openings, and the opening on the base can be
  • the outer cover is detached and connected, the lower end of the base is relatively fixedly connected with a liquid storage sleeve extending into the container, and the lower end of the liquid storage sleeve is connected with a pipe extending to the bottom of the container, and the upper end of the pipe is located in the storage
  • the inner side of the liquid sleeve is connected with a bellows, and the bellows extends to the mouth of the container, and the outer side wall of the bellows and the inner side wall of the liquid storage sleeve form a liquid storage cavity; so that when the liquid in the liquid storage cavity is insufficient When squeezing the container, the liquid in the container can flow through the tube and the bellows into the liquid storage cavity in turn; when
  • the quantitative container further includes a plunger for driving the bellows to move downward, the plunger is hollow, and the inner side wall of the upper end of the pipe
  • a guide post is connected to facilitate the plunger to be aligned with the bellows, the guide post is located inside the bellows and protrudes from the bellows, and a liquid guiding channel connecting the catheter and the liquid storage cavity is formed between the guide post and the bellows.
  • the guide post is hollow, the upper end of the guide post is in communication with the liquid storage cavity, and the lower end of the guide post is in communication with the inner cavity of the catheter.
  • the lower end of the guide post extends to the bottom of the container.
  • the plunger is connected to the outside of the container by a flexible connecting strip.
  • a straight-through pouring and squeezing quantitative container that can be refluxed
  • the outer cover is provided with a containing cavity
  • the plunger contains multiple plunger monomers
  • the two connected plunger monomers can be Relatively telescopic
  • the multi-section plunger is located in the accommodating cavity after being contracted.
  • a flow-through pouring liquid squeezing quantitative container said base is provided with a tear piece for closing the upper and lower openings of the base, and the upper part of the tear piece is connected to tear off the tear piece and then A pull tab connecting the upper and lower openings of the base.
  • the present invention also provides a squeezable quantitative container that can be refluxed and straight-through pouring, including a squeezable and deformable container with an upper opening, and the mouth of the container is connected with A base with upper and lower openings, the opening on the base is detachably connected with an outer cover, the lower end of the base is relatively fixedly connected with a positioning sleeve extending into the container, and the lower end of the positioning sleeve is connected with a pipe extending toward the bottom of the container
  • the upper end of the pipe extends to the mouth of the container, the inner side of the positioning sleeve is sealed with a corrugated pipe, the upper part of the pipe is located inside the corrugated pipe, and the outer side wall of the upper part of the pipe, the inner side wall of the corrugated pipe and
  • the lower end of the positioning sleeve constitutes a liquid storage cavity, and the positioning sleeve is provided with a return port A connecting the inner cavity of
  • the present invention also provides a squeezing quantitative container with flow-through direct flow pouring, comprising a squeezable and deformable container with an upper opening, the mouth of the container is connected with a base with upper and lower openings, and the base is The upper opening is detachably connected with an outer cover, the lower end opening of the base is relatively fixedly connected with a positioning sleeve extending into the container, and the lower end of the positioning sleeve is connected with a pipe extending toward the bottom of the container, and the upper end of the pipe extends to The mouth of the container, the inner side of the positioning sleeve is sealed with a corrugated tube, the upper part of the tube is located inside the corrugated tube, and the outer side wall of the upper part of the tube, the inner side wall of the corrugated tube, and the lower end of the positioning sleeve constitute the storage
  • the positioning sleeve is provided with a return port A connecting the inner cavity of the container and
  • the outer cover is screwed on the base, and the inner side of the outer cover is provided with a driving block opposite to the upper end of the bellows.
  • the present invention has the following advantages: When the liquid in the liquid storage cavity is insufficient, the present invention squeezes the container so that the liquid in the container enters the liquid storage cavity through the pipe and the bellows. When there is too much liquid in the bellows, the upper end of the bellows is lower than the liquid level of the liquid in the liquid storage chamber by driving the bellows to move downwards, so that the excessive liquid in the liquid storage chamber diffuses over the upper end of the bellows and flows through in turn The bellows and the catheter flow into the inner cavity of the container, and the liquid can be poured artificially according to actual needs, which has the advantages of simple structure and convenient operation. ⁇ Explanation of drawings ⁇
  • Figure 1 is one of the full cross-sectional schematic diagrams of Embodiment 1 of the present invention.
  • FIG. 2 is the second full cross-sectional schematic diagram of Embodiment 1 of the present invention.
  • FIG. 3 is one of the full cross-sectional schematic diagrams of Embodiment 2 of the present invention.
  • FIG. 4 is the second full cross-sectional schematic diagram of Embodiment 2 of the present invention.
  • FIG. 5 is the third full cross-sectional schematic diagram of Embodiment 2 of the present invention.
  • FIG. 6 is a schematic diagram of a full cross-section of Embodiment 3 of the present invention.
  • FIG. 7 is one of the full cross-sectional schematic diagrams of Embodiment 4 of the present invention.
  • FIG. 8 is the second full cross-sectional schematic diagram of Embodiment 4 of the present invention.
  • Figure 9 is the third full cross-sectional schematic diagram of Embodiment 4 of the present invention.
  • Figure 10 is one of the full cross-sectional schematic diagrams of Embodiment 5 of the present invention.
  • FIG. 11 is the second full cross-sectional schematic diagram of Embodiment 5 of the present invention.
  • Figure 12 is one of the full cross-sectional schematic diagrams of Embodiment 6 of the present invention.
  • FIG. 13 is the second full cross-sectional schematic diagram of Embodiment 6 of the present invention.
  • FIG. 14 is one of the full cross-sectional schematic diagrams of Embodiment 7 of the present invention.
  • FIG. 15 is the second full cross-sectional schematic diagram of Embodiment 7 of the present invention.
  • Figure 16 is an enlarged view of part A marked in Figure 14;
  • Fig. 17 is an enlarged view of part B marked in Fig. 15.
  • the present invention has seven specific embodiments.
  • a squeezing quantitative container capable of refluxing straight through pouring and pinching in this embodiment includes a squeezable and deformable container 1 with an upper opening.
  • the mouth of the container 1 is connected with a base 2 with upper and lower openings.
  • the upper opening of the base 2 is detachably connected with an outer cover 3, the lower end of the base 2 is relatively fixedly connected with a liquid storage sleeve 4 extending into the container 1, and the lower end of the liquid storage sleeve 4 is connected to the container 1
  • a duct 5 extending from the bottom, the upper end of the duct 5 and the inner side of the liquid storage sleeve 4 is connected with a corrugated tube 6, the corrugated tube 6 extends to the mouth of the container 1, and the outer side wall of the corrugated tube 6 and
  • the inner side wall of the liquid storage sleeve 4 constitutes the liquid storage chamber 100; when the liquid in the liquid storage chamber 100 is insufficient, the liquid in the container 1 can be made to flow through the conduit 5 and the bellows 6 into the liquid storage by squeezing the container 1 in sequence In the cavity 100; as shown in Figure 2, when the liquid in the liquid storage cavity 100 is too much, the bellows 6 is driven to move downward to make the bellows
  • the quantitative container further includes a plunger 7 for driving the bellows 6 to move downward, the plunger 7 is hollow, and the plunger 7 is connected to the outside of the container 1 by a flexible connecting strip .
  • the container when the liquid in the liquid storage cavity is insufficient, the container is squeezed so that the liquid in the container enters the liquid storage cavity through the pipe and the bellows. When the liquid in the liquid storage cavity is too much, the bellows is driven to move downward.
  • a guide post 8 is connected to the inner side wall of the upper end of the pipe 5 to facilitate the plunger 7 to be aligned with the bellows 6.
  • the guide post 8 is located inside the corrugated tube 6 and protrudes from the corrugated tube 6.
  • the guide post 8 and the corrugated tube 6 form a liquid guide channel 200 that connects the conduit 5 and the liquid storage cavity 100;
  • the guide post 8 is hollow, the upper end of the guide post 8 is in communication with the liquid storage cavity 100, and the lower end of the guide post 8 is in communication with the inner cavity of the catheter 5.
  • the base 2 is provided with a tear-off sheet 21 for closing the upper and lower openings of the base 2.
  • the upper part of the tear-off sheet 21 is connected with a pull-tab for tearing off the tear sheet 21 to connect the upper and lower openings of the base 2 211.
  • the guide post 8 only extends to the upper end of the duct 5, while in this embodiment, the lower end of the guide post 8 extends to the bottom of the container 1;
  • the guide post 8 is not retractable and is connected to the outside of the container by a connecting bar.
  • a receiving cavity 31 is provided on the outer cover 3, and the plunger 7 includes a multi-section post
  • the plug monomer 71, the two connected plunger monomers 71 can be relatively telescopic, and the multiple plunger monomers 71 are located in the accommodating cavity 31 after shrinking; as shown in Figures 8 and 9, only the plunger needs to be The body is withdrawn from the containing cavity, and then the bellows is driven to move downwards, so as to return the liquid in the liquid storage cavity.
  • the difference between this embodiment and Embodiment 4 is that: In this embodiment, the guide post 8 only extends to the upper end of the duct 5, while in Embodiment 4, the lower end of the guide post 8 extends to the bottom of the container 1. .
  • the difference between this embodiment and Embodiment 4 is that:
  • the guide post 8 is not telescopic and is connected to the outside of the container by a connecting bar, while in Embodiment 4,
  • the guide post 8 is telescopic and is composed of a multi-section plunger unit 71.
  • a squeezing quantitative container capable of refluxing and straight-through pouring in this embodiment includes a squeezable and deformable container 1 with an upper opening, and the mouth of the container 1 is connected with The base 2 with upper and lower openings, the opening on the base 2 is detachably connected with an outer cover 3, the lower end of the base 2 is relatively fixedly connected with a positioning sleeve 9 extending into the container 1, and the lower end of the positioning sleeve 9 is connected There is a pipe 5 extending to the bottom of the container 1, the upper end of the pipe 5 extends to the mouth of the container 1, the inner side of the positioning sleeve 9 is connected with a bellows 6 in a sealed manner, and the upper part of the pipe 5 is located at the bottom of the bellows 6.
  • the inner side, the outer side wall of the upper part of the catheter 5, the inner side wall of the corrugated tube 6, and the lower end of the positioning sleeve 9 constitute the liquid storage chamber 100, and the positioning sleeve 9 is provided with the inner cavity of the container 1 and the liquid storage chamber 100
  • the return port A3(8) so that when the liquid in the liquid storage chamber 100 is insufficient, the liquid in the container 1 can enter the liquid storage chamber 100 through the conduit 5 by squeezing the container 1; when the liquid in the liquid storage chamber 100 is too much,
  • the upper end of the bellows 6 is lower than the liquid level of the liquid in the liquid storage chamber 100, so that excessive liquid in the liquid storage chamber 100 diffuses through the upper end of the bellows 6 and flows through the return port A300.
  • the quantitative container further includes a plunger 7 for driving the bellows 6 to move downward, the plunger 7 is hollow, and the plunger 7 passes through a flexible connecting strip It is connected to the outside of the container 1 and has the advantages of simple structure and convenient operation.
  • a backflow straight-through pouring squeezing quantitative container of this embodiment includes a squeezable and deformable container 1 with an upper opening, and the mouth of the container 1 is connected with A base 2 with upper and lower openings, the opening on the base 2 is detachably connected with an outer cover 3, the lower end of the base 2 is relatively fixedly connected with a positioning sleeve 9 extending into the container 1, and the lower end of the positioning sleeve 9 is connected There is a pipe 5 extending to the bottom of the container 1, the upper end of the pipe 5 extends to the mouth of the container 1, and the inner side of the positioning sleeve 9 is sealed and connected There is a corrugated tube 6, the upper part of the tube 5 is located inside the corrugated tube 6, and the outer side wall of the upper part of the tube 5, the inner side wall of the corrugated tube 6 and the lower end of the positioning sleeve 9 constitute the liquid storage chamber 100, the positioning The sleeve
  • the outer cover 3 is threadedly connected to the base 2.
  • the inner side of the outer cover 3 is provided with a driving block 32 opposite to the upper end of the corrugated tube 6, and the lower end of the driving block 32 is provided with protruding teeth.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Ceramic Engineering (AREA)
  • Containers And Packaging Bodies Having A Special Means To Remove Contents (AREA)

Abstract

一种可回流直通倒液挤捏定量容器,包括上部开口的可挤压形变的容器(1),容器(1)口部连接有上下开口的底座(2),底座(2)上开口可拆卸连接有外盖(3),底座(2)连接有伸入容器(1)内的储液套管(4),储液套管(4)的下端连接有导管(5),导管(5)的上端且位于储液套管(4)的内侧连接有波纹管(6),波纹管(6)延伸至容器(1)的口部,且波纹管(6)的外侧壁与储液套管(4)的内侧壁构成储液腔(100);当储液腔(100)内的液体不足时,通过挤压容器(1)可使容器(1)内的液体依次流经导管(5)、波纹管(6)而进入储液腔(100)内;当储液腔(100)内的液体过多时,通过驱动波纹管(6)向下运动使波纹管(6)的上端低于储液腔(100)内液体的液面高度,进而使储液腔(100)内过多的液体依次流经波纹管(6)、导管(5)而流入容器(1)内腔。该容器能人为的根据实际需要来倒取液体,结构简单、操作方便。

Description

一种可回流直通倒液挤捏定量容器
【技术领域】
本发明涉及容器, 具体是一种可回流直通倒液挤捏定量容器。
【背景技术】
容器种类繁多, 涉及各个领域, 其中包括可定量出液的容器, 对 于现有的定量出液容器, 当人们发现所定的量过多时, 则不能进行调 整回流部分液体, 或回流调节操作繁琐, 因此存在使用不便的缺陷。
本发明即是针对现有技术的不足而研宄提出。
【发明内容】
本发明要解决的技术问题是提供一种可回流直通倒液挤捏定量 容器, 能人为的根据实际需要来倒取液体, 具有结构简单、 操作方便 的优点。
为解决上述技术问题,本发明的一种可回流直通倒液挤捏定量容 器, 包括上部开口的可挤压形变的容器, 所述容器口部连接有上下开 口的底座, 所述底座上开口可拆卸连接有外盖, 所述底座下端开口相 对固定连接有伸入容器内的储液套管,所述储液套管的下端连接有向 容器底部延伸的导管,所述导管的上端且位于储液套管的内侧连接有 波纹管, 所述的波纹管延伸至容器的口部, 且波纹管的外侧壁与储液 套管的内侧壁构成储液腔; 使得当储液腔内的液体不足时, 通过挤压 容器可使容器内的液体依次流经导管、波纹管而进入储液腔内; 当储 液腔内的液体过多时,通过驱动波纹管向下运动使波纹管的上端低于 储液腔内液体的液面高度,进而使储液腔内过多的液体漫过波纹管的 上端并且依次流经波纹管、 导管而流入容器内腔。
如上所述的一种可回流直通倒液挤捏定量容器,所述的定量容器 还包括用于驱动波纹管向下动作的柱塞, 所述柱塞为中空的, 所述导 管上端的内侧壁连接有便于柱塞对准波纹管的导柱,所述的导柱位于 波纹管的内侧且突出于波纹管,所述导柱与波纹管之间形成连通导管 与储液腔的导液通道。
如上所述的一种可回流直通倒液挤捏定量容器,所述的导柱为中 空的, 所述导柱的上端与储液腔连通, 所述导柱的下端与导管内腔连 通。
如上所述的一种可回流直通倒液挤捏定量容器,所述的导柱的下 端延伸至容器的底部。
如上所述的一种可回流直通倒液挤捏定量容器,所述的柱塞通过 可弯曲的连接条连接在容器的外侧。
如上所述的一种可回流直通倒液挤捏定量容器,所述的外盖上设 有容纳腔, 所述的柱塞包含多节柱塞单体, 相连接的两节柱塞单体可 相对伸缩, 且多节柱塞单体收缩之后位于容纳腔内。
如上所述的一种可回流直通倒液挤捏定量容器,所述的底座内设 有用于封闭底座上下开口的撕裂片,所述的撕裂片上部连接有用于将 撕裂片撕下进而使底座的上下开口连通的拉片。
基于本发明的构思下,本发明还提供了一种可回流直通倒液挤捏 定量容器, 包括上部开口的可挤压形变的容器, 所述容器口部连接有 上下开口的底座, 所述底座上开口可拆卸连接有外盖, 所述底座下端 开口相对固定连接有伸入容器内的定位套管,所述定位套管的下端连 接有向容器底部延伸的导管, 所述导管的上端延伸至容器的口部, 所 述的定位套管内侧密封连接有波纹管,所述导管的上部位于波纹管的 内侧, 且导管上部的外侧壁、波纹管的内侧壁以及定位套管的下端部 构成储液腔,所述的定位套管上设有连通容器内腔与储液腔的回流口 A; 使得当储液腔内的液体不足时, 通过挤压容器可使容器内的液体 通过导管进入储液腔内; 当储液腔内的液体过多时, 通过驱动波纹管 向下运动使波纹管上端低于储液腔内液体的液面高度,进而使储液腔 内过多的液体漫过波纹管的上端流经回流口 A而进入容器内腔。
基于本发明的构思下,本发明还提供了一种可回流直通倒液挤捏 定量容器, 包括上部开口的可挤压形变的容器, 所述容器口部连接有 上下开口的底座, 所述底座上开口可拆卸连接有外盖, 所述底座下端 开口相对固定连接有伸入容器内的定位套管,所述定位套管的下端连 接有向容器底部延伸的导管, 所述导管的上端延伸至容器的口部, 所 述的定位套管内侧密封连接有波纹管,所述导管的上部位于波纹管的 内侧, 且导管上部的外侧壁、波纹管的内侧壁以及定位套管的下端部 构成储液腔,所述的定位套管上设有连通容器内腔与储液腔的回流口 A, 所述波纹管上部的外端与定位套管滑动且密封连接, 所述的波纹 管上部设有回流口 B; 使得当储液腔内的液体不足时, 通过挤压容器 可使容器内的液体通过导管进入储液腔内; 当储液腔内的液体过多 时,通过驱动波纹管向下运动使波纹管上端的回流口 B和储液腔的回 流口 A相通, 进而使储液腔内过多的液体依次流经回流口 B、 回流口 A而进入容器内腔。
如上所述的一种可回流直通倒液挤捏定量容器,所述的外盖螺纹 连接在底座上, 所述外盖的内侧设有与波纹管上端相对的驱动块。
与现有技术相比, 本发明具有如下优点: 本发明在储液腔的液体 不足时, 通过挤压容器, 使容器内的液体经过导管、 波纹管而进入储 液腔内, 在储液腔内的液体过多时, 通过驱动波纹管向下运动使波纹 管的上端低于储液腔内液体的液面高度,进而使储液腔内过多的液体 漫过波纹管的上端并且依次流经波纹管、导管而流入容器内腔, 能人 为的根据实际需要来倒取液体, 具有结构简单、 操作方便的优点。 【附图说明】
下面结合附图对本发明的具体实施方式作进一步详细说明, 其 中:
图 1为本发明实施例 1的全剖示意图之一;
图 2为本发明实施例 1的全剖示意图之二;
图 3为本发明实施例 2的全剖示意图之一;
图 4为本发明实施例 2的全剖示意图之二;
图 5为本发明实施例 2的全剖示意图之三;
图 6为本发明实施例 3的全剖示意图;
图 7为本发明实施例 4的全剖示意图之一;
图 8为本发明实施例 4的全剖示意图之二;
图 9为本发明实施例 4的全剖示意图之三; 图 10为本发明实施例 5的全剖示意图之一;
图 11为本发明实施例 5的全剖示意图之二;
图 12为本发明实施例 6的全剖示意图之一;
图 13为本发明实施例 6的全剖示意图之二;
图 14为本发明实施例 7的全剖示意图之一;
图 15为本发明实施例 7的全剖示意图之二;
图 16为图 14中标记的 A部分的放大图;
图 17为图 15中标记的 B部分的放大图。
【具体实施方式】
下面结合附图对本发明的实施方式作详细说明。
如图 1至图 17所示, 本发明具有 7种具体的实施例。
实施例 1 :
如图 1和图 2所示,本实施例的一种可回流直通倒液挤捏定量容 器, 包括上部开口的可挤压形变的容器 1, 所述容器 1口部连接有上 下开口的底座 2, 所述底座 2上开口可拆卸连接有外盖 3, 所述底座 2下端开口相对固定连接有伸入容器 1内的储液套管 4, 所述储液套 管 4的下端连接有向容器 1底部延伸的导管 5 , 所述导管 5的上端且 位于储液套管 4的内侧连接有波纹管 6, 所述的波纹管 6延伸至容器 1的口部, 且波纹管 6的外侧壁与储液套管 4的内侧壁构成储液腔 100; 当储液腔 100内的液体不足时, 通过挤压容器 1可使容器 1内 的液体依次流经导管 5、波纹管 6而进入储液腔 100内;如图 2所示, 当储液腔 100内的液体过多时,通过驱动波纹管 6向下运动使波纹管 6的上端低于储液腔 100内液体的液面高度, 进而使储液腔 100内过 多的液体漫过波纹管 6的上端并且依次流经波纹管 6、 导管 5而流入 容器 1内腔。本实施例中, 定量容器还包括用于驱动波纹管 6向下动 作的柱塞 7 , 所述柱塞 7为中空的, 所述的柱塞 7通过可弯曲的连接 条连接在容器 1的外侧。本发明在储液腔的液体不足时, 通过挤压容 器, 使容器内的液体经过导管、波纹管而进入储液腔内, 在储液腔内 的液体过多时,通过驱动波纹管向下运动使波纹管的上端低于储液腔 内液体的液面高度,进而使储液腔内过多的液体漫过波纹管的上端并 且依次流经波纹管、导管而流入容器内腔, 能人为的根据实际需要来 倒取液体, 具有结构简单、 操作方便的优点。
实施 2 :
如图 3、 图 4和图 5所示, 实施例 2在实施例的基础上, 增加以 下技术特征: 在导管 5上端的内侧壁连接有便于柱塞 7对准波纹管 6 的导柱 8 , 所述的导柱 8位于波纹管 6的内侧且突出于波纹管 6 , 所 述导柱 8与波纹管 6之间形成连通导管 5与储液腔 100的导液通道 200; 所述的导柱 8为中空的, 所述导柱 8的上端与储液腔 100连通, 所述导柱 8的下端与导管 5内腔连通。采用上述结构, 既不影响液体 的流动, 同时方便柱塞 7对准波纹管的上端。
本实施例在底座 2内设有用于封闭底座 2上下开口的撕裂片 21, 所述的撕裂片 21上部连接有用于将撕裂片 21撕下进而使底座 2的上 下开口连通的拉片 211。 采用该结构能对容器内的液体进行良好地密 封, 同时起防伪的作用。 实施例 4:
如图 7、 图 8和图 9所示, 本实施例与实施 2的不同之处在于以 下两点:
第一、 实施例 2中, 导柱 8仅仅延伸到导管 5的上端, 而本实施 例中导柱 8的下端延伸至容器 1的底部;
第二、 实施例 2中, 导柱 8是不可伸缩的, 且通过连接条连接在 容器的外侧, 而本实施例在外盖 3上设有容纳腔 31, 所述的柱塞 7 包含多节柱塞单体 71, 相连接的两节柱塞单体 71可相对伸缩, 且多 节柱塞单体 71收缩之后位于容纳腔 31内; 如图 8和图 9所示, 仅需 要将柱塞单体从容纳腔内抽出, 然后驱动波纹管向下动作, 进而使储 液腔内的液体回流。
实施 3 :
如图 6所示, 本实施例与实施 4的不同之处在于: 本实施例中, 导柱 8仅仅延伸到导管 5的上端,而实施例 4中导柱 8的下端延伸至 容器 1的底部。
实施例 5 :
如图 10和图 11所示, 本实施例与实施 4的不同之处在于: 本实 施例中, 导柱 8是不可伸缩的, 且通过连接条连接在容器的外侧, 而 实施例 4中, 导柱 8可伸缩并且由多节柱塞单体 71组成。
实施例 6 :
如图 12和图 13所示,本实施例的一种可回流直通倒液挤捏定量 容器, 包括上部开口的可挤压形变的容器 1, 所述容器 1口部连接有 上下开口的底座 2, 所述底座 2上开口可拆卸连接有外盖 3, 所述底 座 2下端开口相对固定连接有伸入容器 1内的定位套管 9, 所述定位 套管 9的下端连接有向容器 1底部延伸的导管 5 , 所述导管 5的上端 延伸至容器 1的口部, 所述的定位套管 9内侧密封连接有波纹管 6 , 所述导管 5的上部位于波纹管 6的内侧, 且导管 5上部的外侧壁、波 纹管 6的内侧壁以及定位套管 9的下端部构成储液腔 100, 所述的定 位套管 9上设有连通容器 1内腔与储液腔 100的回流口 A3⑻; 使得 当储液腔 100内的液体不足时,通过挤压容器 1可使容器 1内的液体 通过导管 5进入储液腔 100内; 当储液腔 100内的液体过多时, 通过 驱动波纹管 6向下运动使波纹管 6上端低于储液腔 100内液体的液面 高度,进而使储液腔 100内过多的液体漫过波纹管 6的上端流经回流 口 A300而进入容器 1内腔; 本实施例中, 定量容器还包括用于驱动 波纹管 6向下动作的柱塞 7 , 所述柱塞 7为中空的, 所述的柱塞 7通 过可弯曲的连接条连接在容器 1的外侧, 具有结构简单、操作方便的 优点。
实施 7 :
图 14、 图 15、 图 16和图 17所示, 本实施例的一种可回流直通 倒液挤捏定量容器, 包括上部开口的可挤压形变的容器 1, 所述容器 1口部连接有上下开口的底座 2, 所述底座 2上开口可拆卸连接有外 盖 3 , 所述底座 2下端开口相对固定连接有伸入容器 1内的定位套管 9 , 所述定位套管 9的下端连接有向容器 1底部延伸的导管 5 , 所述 导管 5的上端延伸至容器 1的口部,所述的定位套管 9内侧密封连接 有波纹管 6 , 所述导管 5的上部位于波纹管 6的内侧, 且导管 5上部 的外侧壁、 波纹管 6的内侧壁以及定位套管 9的下端部构成储液腔 100, 所述的定位套管 9上设有连通容器 1内腔与储液腔 100的回流 口 A3⑻, 所述波纹管 6上部的外端与定位套管 9滑动且密封连接, 所述的波纹管 6上部设有回流口 B400; 使得当储液腔 100内的液体 不足时,通过挤压容器 1可使容器 1内的液体通过导管 5进入储液腔 100内; 当储液腔 100内的液体过多时, 通过驱动波纹管 6向下运动 使波纹管 6上端的回流口 B400和储液腔 100的回流口 A300相通,进 而使储液腔 100内过多的液体依次流经回流口 B4⑻、 回流口 A3⑻而 进入容器 1内腔。
本实施例在外盖 3螺纹连接在底座 2上,所述外盖 3的内侧设有 与波纹管 6上端相对的驱动块 32 ,并且在驱动块 32的下端设置凸齿。

Claims

权利要求书
1. 一种可回流直通倒液挤捏定量容器, 其特征在于包括上部开口的可挤压形变 的容器(1), 所述容器 (1) 口部连接有上下开口的底座 (2), 所述底座 (2)上 开口可拆卸连接有外盖 (3), 所述底座 (2) 下端开口相对固定连接有伸入容器
(1) 内的储液套管 (4), 所述储液套管 (4) 的下端连接有向容器 (1) 底部延 伸的导管 (5), 所述导管 (5) 的上端且位于储液套管 (4) 的内侧连接有波纹管 (6), 所述的波纹管 (6) 延伸至容器 (1) 的口部, 且波纹管 (6) 的外侧壁与 储液套管 (4) 的内侧壁构成储液腔 (100); 使得当储液腔 (100) 内的液体不足 时, 通过挤压容器 (1)可使容器 (1) 内的液体依次流经导管 (5)、 波纹管 (6) 而进入储液腔(100)内; 当储液腔(100)内的液体过多时,通过驱动波纹管(6) 向下运动使波纹管(6) 的上端低于储液腔(100) 内液体的液面高度, 进而使储 液腔 (100) 内过多的液体漫过波纹管 (6) 的上端并且依次流经波纹管 (6)、 导 管 (5) 而流入容器 (1) 内腔。
2. 根据权利要求 1所述的一种可回流直通倒液挤捏定量容器, 其特征在于所述 的定量容器还包括用于驱动波纹管 (6) 向下动作的柱塞 (7), 所述柱塞 (7)为 中空的, 所述导管 (5) 上端的内侧壁连接有便于柱塞 (7) 对准波纹管 (6) 的 导柱 (8), 所述的导柱 (8)位于波纹管 (6) 的内侧且突出于波纹管 (6), 所述 导柱(8)与波纹管(6)之间形成连通导管(5)与储液腔(100)的导液通道(200)。
3. 根据权利要求 2所述的一种可回流直通倒液挤捏定量容器, 其特征在于所述 的导柱 (8) 为中空的, 所述导柱 (8) 的上端与储液腔 (100) 连通, 所述导柱
(8) 的下端与导管 (5) 内腔连通。
4. 根据权利要求 3所述的一种可回流直通倒液挤捏定量容器, 其特征在于所述 的导柱 (8) 的下端延伸至容器 (1) 的底部。
5. 根据权利要求 2至 4任一项所述的一种可回流直通倒液挤捏定量容器, 其特 征在于所述的柱塞 (7) 通过可弯曲的连接条连接在容器 (1) 的外侧。
6. 根据权利要求 2至 4任一项所述的一种可回流直通倒液挤捏定量容器, 其特 征在于所述的外盖 (3) 上设有容纳腔 (31), 所述的柱塞 (7) 包含多节柱塞单 体 (71), 相连接的两节柱塞单体 (71) 可相对伸缩, 且多节柱塞单体 (71) 收 缩之后位于容纳腔 (31) 内。
7. 根据权利要求 1所述的一种可回流直通倒液挤捏定量容器, 其特征在于所述 的底座 (2) 内设有用于封闭底座 (2) 上下开口的撕裂片 (21), 所述的撕裂片 (21) 上部连接有用于将撕裂片 (21) 撕下进而使底座 (2) 的上下开口连通的 拉片 (211)。
8. —种可回流直通倒液挤捏定量容器, 其特征在于包括上部开口的可挤压形变 的容器(1), 所述容器 (1) 口部连接有上下开口的底座 (2), 所述底座 (2)上 开口可拆卸连接有外盖 (3), 所述底座 (2) 下端开口相对固定连接有伸入容器
(1) 内的定位套管 (9), 所述定位套管 (9) 的下端连接有向容器 (1) 底部延 伸的导管 (5), 所述导管 (5) 的上端延伸至容器(1) 的口部, 所述的定位套管 (9) 内侧密封连接有波纹管 (6), 所述导管 (5) 的上部位于波纹管 (6) 的内 侧, 且导管 (5) 上部的外侧壁、 波纹管 (6) 的内侧壁以及定位套管 (9) 的下 端部构成储液腔 (100), 所述的定位套管 (9)上设有连通容器(1) 内腔与储液 腔 (100) 的回流口 A(300); 使得当储液腔 (100) 内的液体不足时, 通过挤压 容器 (1)可使容器 (1) 内的液体通过导管 (5)进入储液腔 (100) 内; 当储液 腔 (100) 内的液体过多时, 通过驱动波纹管 (6) 向下运动使波纹管 (6) 上端 低于储液腔(100) 内液体的液面高度, 进而使储液腔(100) 内过多的液体漫过 波纹管 (6) 的上端流经回流口 A (300) 而进入容器 (1) 内腔。
9. 一种可回流直通倒液挤捏定量容器, 其特征在于包括上部开口的可挤压形变 的容器(1), 所述容器 (1) 口部连接有上下开口的底座 (2), 所述底座 (2)上 开口可拆卸连接有外盖 (3), 所述底座 (2) 下端开口相对固定连接有伸入容器
(1) 内的定位套管 (9), 所述定位套管 (9) 的下端连接有向容器 (1) 底部延 伸的导管 (5), 所述导管 (5) 的上端延伸至容器(1) 的口部, 所述的定位套管 (9) 内侧密封连接有波纹管 (6), 所述导管 (5) 的上部位于波纹管 (6) 的内 侧, 且导管 (5) 上部的外侧壁、 波纹管 (6) 的内侧壁以及定位套管 (9) 的下 端部构成储液腔 (100), 所述的定位套管 (9)上设有连通容器(1) 内腔与储液 腔 (100) 的回流口 A (300), 所述波纹管 (6) 上部的外端与定位套管 (9) 滑 动且密封连接,所述的波纹管(6)上部设有回流口 B(400);使得当储液腔(100) 内的液体不足时, 通过挤压容器 (1) 可使容器 (1) 内的液体通过导管 (5) 进 入储液腔 (100) 内; 当储液腔 (100) 内的液体过多时, 通过驱动波纹管 (6) 向下运动使波纹管(6)上端的回流口 B(400)和储液腔(100)的回流口 A(300) 相通, 进而使储液腔 (100) 内过多的液体依次流经回流口 B (400)、 回流口 A (300) 而进入容器 (1) 内腔。
10. 根据权利要求 9所述的一种可回流直通倒液挤捏定量容器, 其特征在于所述 的外盖 (3) 螺纹连接在底座 (2) 上, 所述外盖 (3) 的内侧设有与波纹管 (6) 上端相对的驱动块 (32)。
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