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WO2024212905A1 - 一种防喷式定量挤压结构及挤压容器 - Google Patents

一种防喷式定量挤压结构及挤压容器 Download PDF

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Publication number
WO2024212905A1
WO2024212905A1 PCT/CN2024/086461 CN2024086461W WO2024212905A1 WO 2024212905 A1 WO2024212905 A1 WO 2024212905A1 CN 2024086461 W CN2024086461 W CN 2024086461W WO 2024212905 A1 WO2024212905 A1 WO 2024212905A1
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WO
WIPO (PCT)
Prior art keywords
liquid
liquid outlet
wall
outlet pipe
blocking
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Application number
PCT/CN2024/086461
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English (en)
French (fr)
Inventor
苏俊浩
郑宇航
郑桂彬
吴柏嫦
Original Assignee
珠海智润护理用品有限公司
海尔衣联生态科技(上海)有限公司
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Application filed by 珠海智润护理用品有限公司, 海尔衣联生态科技(上海)有限公司 filed Critical 珠海智润护理用品有限公司
Publication of WO2024212905A1 publication Critical patent/WO2024212905A1/zh

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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W90/00Enabling technologies or technologies with a potential or indirect contribution to greenhouse gas [GHG] emissions mitigation
    • Y02W90/10Bio-packaging, e.g. packing containers made from renewable resources or bio-plastics

Definitions

  • the utility model relates to the technical field of liquid containers, in particular to a spray-proof quantitative extrusion structure and an extrusion container.
  • a press pump installed on the opening of a hard bottle.
  • the press pump is pressed by hand, and the liquid in the bottle is squeezed out through the press pump for use.
  • containers for shower gel, shampoo, detergent, etc. all use a press extrusion structure.
  • the purpose of the utility model is to provide a spray-proof quantitative extrusion structure, including a measuring cup and a cup cover, the cup cover and the top of the measuring cup are sealed together, a liquid outlet pipe is formed inside the measuring cup, a liquid outlet is opened on one side of the upper part of the liquid outlet pipe, and the liquid outlet is connected to a liquid outlet cavity formed inside the liquid outlet pipe, the cup cover includes an inner cover and an outer cover, the inner cover is snapped on the upper end of the measuring cup, the outer cover is rotatably connected to one end of the inner cover, a liquid storage cavity is formed in the measuring cup outside the liquid outlet pipe, a liquid blocking cavity is formed on the inner cover and is opposite to the liquid outlet, and the liquid squeezed into the liquid outlet pipe is sprayed out through the liquid outlet and is blocked and restricted by the liquid blocking cavity, and is slowly collected in the liquid storage cavity along the outer wall of the liquid outlet pipe.
  • a liquid blocking upper wall is formed on the upper part of the liquid blocking cavity, and a liquid blocking inner wall and a liquid blocking outer wall are respectively formed at the inner and outer ends of the liquid blocking upper wall, the inner side of the liquid blocking outer wall is sealed and clamped with the outer side of the upper part of the measuring cup, and the liquid blocking inner wall forms a liquid inlet for receiving the liquid sprayed from the liquid outlet.
  • a liquid outlet nozzle is formed at the upper end of the inner cover, the liquid outlet nozzle is communicated with the liquid storage cavity, and an arc-shaped guide portion extending outward is formed on the upper edge of the liquid outlet nozzle.
  • the interior of the outer cover has a first sealing tube that matches the liquid outlet pipe, the first sealing tube is inserted from the liquid outlet nozzle, and the inner wall of the first sealing tube is sealed and fitted with the outer wall of the liquid outlet pipe.
  • a second sealing cylinder is formed on the outer cover outside the first sealing cylinder, and the outer wall of the second sealing cylinder is sealingly fitted to the liquid blocking inner wall.
  • the measuring cup is transparent.
  • scale lines are provided on the outer wall of the liquid storage chamber.
  • a squeezing container including a spray-proof quantitative squeezing structure, the squeezing container also includes a bottle body and a squeezing tube, the measuring cup is screwed and installed on the upper end of the bottle body, the squeezing tube is inserted into the liquid outlet tube and extends into the bottle body.
  • the pressure inside the bottle body is greater than the external pressure, and the liquid enters the squeezing tube and is obliquely ejected from the liquid outlet to the liquid blocking cavity.
  • the liquid is restricted by the liquid blocking inner wall, the liquid blocking upper wall and the liquid blocking outer wall.
  • the liquid will not be directly ejected to the outside, but will flow along the outer wall of the liquid outlet tube into the liquid storage cavity, thereby avoiding direct ejection of liquid during squeezing to hurt human eyes and improve safety of use.
  • the measuring cup is designed to be transparent, and the scale on the liquid storage cavity can be seen intuitively from the outside, so the squeezed amount can be clearly known.
  • the outer cover when not in use, the outer cover is flipped over the inner cover, and the first sealing cylinder seals the liquid outlet pipe to prevent it from tipping over.
  • the second sealing tube is tightly sealed against the liquid blocking inner wall to prevent the liquid remaining in the liquid storage cavity from leaking out from the outer cover.
  • the upper edge of the liquid outlet is an arc-shaped guide portion extending outward, which plays a better guiding role when the liquid is poured out, preventing the liquid from flowing out along the outer wall of the liquid outlet.
  • FIG1 is a top view of a blowout-proof quantitative extrusion structure in Example 1 of the utility model when the outer cover is closed;
  • FIG2 is a full cross-sectional view along direction A in FIG2 of the present invention.
  • FIG3 is a schematic structural diagram of a blowout-proof quantitative extrusion structure in Example 1 of the utility model when the outer cover is opened;
  • FIG4 is a top view of a blowout-proof quantitative extrusion structure in Example 1 of the utility model when the outer cover is opened;
  • FIG5 is a full cross-sectional view along the portion B in FIG4 ;
  • FIG6 is a schematic diagram of the structure of the measuring cup of the utility model
  • FIG. 7 is a schematic diagram of the explosion structure of the squeeze container in Example 3 of the present utility model.
  • the terms “install”, “connect”, “connect”, “fix” and the like should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, it can be the internal connection of two elements or the interaction relationship between two elements.
  • install can be a fixed connection, a detachable connection, or an integral connection
  • it can be a mechanical connection or an electrical connection
  • it can be a direct connection or an indirect connection through an intermediate medium, it can be the internal connection of two elements or the interaction relationship between two elements.
  • Figure 1 is a top view of a blowout-proof quantitative extrusion structure in Example 1 of the utility model when the outer cover is closed;
  • Figure 2 is a full sectional view along direction A in Figure 2 of the utility model;
  • Figure 3 is a structural schematic diagram of a blowout-proof quantitative extrusion structure in Example 1 of the utility model when the outer cover is opened;
  • Figure 4 is a top view of a blowout-proof quantitative extrusion structure in Example 1 of the utility model when the outer cover is opened;
  • Figure 5 is a full sectional view along portion B in Figure 4;
  • Figure 6 is a structural schematic diagram of a measuring cup in the utility model;
  • Figure 7 is a schematic diagram of the explosion structure of the extrusion container in Example 3 of the utility model.
  • this embodiment provides a spray-proof quantitative extrusion structure, including a measuring cup 1 and a cup cover, the cup cover and the top of the measuring cup 1 are sealed together, wherein the cup cover includes an inner cover 2 and an outer cover 3, the inner cover 2 is engaged with the upper end of the measuring cup 1, and the outer cover 3 is rotatably connected to one end of the inner cover 2, so that the outer cover 3 can be flipped onto the inner cover 2.
  • a liquid outlet pipe 10 is formed inside the measuring cup 1, and a liquid outlet pipe 10 is provided on one side of the upper portion thereof.
  • the liquid outlet 11 is connected to the liquid outlet cavity 12 formed inside the liquid outlet pipe 10, and a liquid storage cavity 13 is formed in the measuring cup 1 outside the liquid outlet pipe 10.
  • the liquid sucked in by the siphon principle will enter the liquid outlet cavity 12. Since the internal pressure is greater than the external pressure, the liquid will be ejected from the liquid outlet 11 to the outside.
  • a liquid blocking cavity 14 is formed on the inner cover 2 and is opposite to the liquid outlet 11.
  • the liquid squeezed into the liquid outlet pipe 10 is ejected through the liquid outlet 11 and is blocked and restricted by the liquid blocking cavity 14, and is slowly collected in the liquid storage cavity 13 along the outer wall of the liquid outlet pipe 10.
  • a liquid blocking upper wall 140 is formed on the upper part of the liquid blocking cavity 14, and a liquid blocking inner wall 141 and a liquid blocking outer wall 142 are respectively formed at the inner and outer ends of the liquid blocking upper wall 140.
  • the inner side of the liquid blocking outer wall 142 is sealed and clamped with the outer side of the upper part of the measuring cup 1, and the liquid blocking inner wall 141 forms a liquid inlet 143 for receiving liquid sprayed from the liquid outlet 11.
  • the liquid inlet 143 is opposite to the liquid outlet 11, and the squeezed liquid passes through the side liquid outlet 11 and is obliquely injected into the liquid inlet 143 to enter the liquid blocking cavity 14, and finally slowly concentrates in the liquid storage cavity 13 along the inner wall of the liquid storage cavity 13 or the outer wall of the liquid outlet pipe 10.
  • a liquid outlet nozzle 20 is formed at the upper end of the inner cover 2, and the liquid outlet nozzle 20 is connected to the liquid storage chamber 13.
  • An arc-shaped guide portion 21 extending outward is formed on the upper edge of the liquid outlet nozzle 20.
  • the liquid dispensing device may tip over during use. Therefore, a first sealing tube 30 matching the liquid outlet pipe 10 is provided inside the outer cover 3.
  • the first sealing tube 30 is inserted from the liquid outlet nozzle 20, and the inner wall of the first sealing tube 30 and the outer wall of the liquid outlet pipe 10 are sealed and fitted.
  • the outer cover 3 is flipped onto the inner cover 2, and the first sealing tube 30 seals the liquid outlet pipe 10 to prevent liquid from leaking out after tipping over.
  • a second sealing tube 31 is formed on the outer cover 3 outside the first sealing tube 30.
  • the outer wall of the second sealing tube 31 is sealed and attached to the liquid blocking inner wall 141.
  • the measuring cup 1 is designed to be transparent, preferably made of transparent PC material, to achieve a visualization effect, and scale lines (not shown in the figure) are set on the outer wall of the liquid storage chamber 13.
  • scale lines are set on the outer wall of the liquid storage chamber 13.
  • the squeeze container of this embodiment includes a spray-proof quantitative squeeze structure, the squeeze container also includes a bottle body 4 and a squeeze tube 5, a measuring cup 1 is screwed and installed on the upper end of the bottle body 4, the squeeze tube 5 is inserted into the liquid outlet tube 10 and extends into the bottle body 4, the bottle body 4 is squeezed, the pressure in the bottle body 4 is greater than the external pressure, the liquid enters the squeeze tube 5 and is ejected from the liquid outlet 11 to the liquid blocking cavity 14, the liquid is jointly resisted and restricted by the liquid blocking inner wall 141, the liquid blocking upper wall 140 and the liquid blocking outer wall 142, the liquid will not be directly ejected to the outside, but flows along the outer wall of the liquid outlet tube 10 to the liquid storage cavity 13, so as to avoid direct ejection of liquid during squeezing to hurt human eyes, thereby improving the safety of use.

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  • Closures For Containers (AREA)
  • Containers And Packaging Bodies Having A Special Means To Remove Contents (AREA)

Abstract

本实用新型涉及一种防喷式定量挤压结构及挤压容器,包括量杯和杯盖,杯盖和量杯顶部密封配合,量杯内部成型出液管,出液管上部一侧开设出液口,出液口连通出液管内部形成的出液腔,杯盖包括内盖和外盖,内盖卡合在量杯上端,外盖和内盖一端转动连接,在出液管外侧的量杯内形成储液腔,内盖上成型有和出液口相对置配合的挡液腔,受挤压进入出液管内的液体经出液口喷出受挡液腔所抵挡限制,而沿出液管外壁缓集于储液腔中。经过挤压瓶身,瓶身内压力大于外界压力,液体进入挤压管内从出液口斜射向挡液腔,液体受挡液内壁、挡液上壁和挡液外壁的共同抵挡限制,液体不会直接往外部喷射,而沿出液管外壁流到储液腔中。

Description

一种防喷式定量挤压结构及挤压容器 技术领域
本实用新型涉及液体容器技术领域,具体涉及一种防喷式定量挤压结构及挤压容器。
背景技术
日常生活中常见到在硬质瓶身的开口上安装有按压泵,使用时,用手按压按压泵,瓶内的液体经按压泵挤出,供人使用,例如装沐浴露、洗发露、洗洁精等容器都运用到按压的挤压结构。
定量挤压时通过压力按照一定量进行挤出,现有的挤压机构在挤压瓶盖打开后,挤压瓶身液体直接从喷嘴外往喷射,容易射到眼睛,造成严重的伤害,使用危险性搞且不便。
实用新型内容
为了克服现有技术的不足,本实用新型的目的在于提供一种防喷式定量挤压结构,包括量杯和杯盖,所述杯盖和所述量杯顶部密封配合,所述量杯内部成型出液管,所述出液管上部一侧开设出液口,所述出液口连通所述出液管内部形成的出液腔,所述杯盖包括内盖和外盖,所述内盖卡合在所述量杯上端,所述外盖和所述内盖一端转动连接,在所述出液管外侧的所述量杯内形成储液腔,所述内盖上成型有和所述出液口相对置配合的挡液腔,受挤压进入所述出液管内的液体经所述出液口喷出受所述挡液腔所抵挡限制,而沿所述出液管外壁缓集于所述储液腔中。
本实施方案中,进一步的,所述挡液腔上部形成挡液上壁,所述挡液上壁里外两端分别成型有挡液内壁和挡液外壁,所述挡液外壁内侧和所述量杯上部外侧密封卡接,所述挡液内壁形成用于接收自所述出液口喷出液体的进液口。
本实施方案中,进一步的,所述内盖上端形成出液嘴,所述出液嘴和所述储液腔相连通,所述出液嘴上沿形成往外侧延伸的弧形导流部。
本实施方案中,进一步的,所述外盖的内部具有和所述出液管相匹配的第一密封筒,所述第一密封筒从所述出液嘴插入,且所述第一密封筒的内壁和所述出液管外壁密封贴合。
本实施方案中,进一步的,所述外盖上位于所述第一密封筒外部成型有第二密封筒,所述第二密封筒外壁密封贴合于所述挡液内壁。
本实施方案中,进一步的,所述量杯为透明设置。
本实施方案中,进一步的,所述储液腔外壁设置刻度线。
另外,还提供一种挤压容器,包括一种防喷式定量挤压结构,所述挤压容器还包括瓶身和挤压管,所述量杯旋紧安装在所述瓶身上端,所述挤压管插接在所述出液管内且伸入所述瓶身中。
相比现有技术,本实用新型的有益效果在于:
其一,经过挤压瓶身,瓶身内压力大于外界压力,液体进入挤压管内从出液口斜射向挡液腔,液体受挡液内壁、挡液上壁和挡液外壁的共同抵挡限制,液体不会直接往外部喷射,而沿出液管外壁流到储液腔中,避免挤压时液体直接射出,伤害人眼,提高使用安全性。
其二,高出出液口的液体会被重新回吸到瓶身中,保持最大的出液量限制,量杯为透明状设计,在外部直观看到储液腔上刻度,可以清楚得知挤出量。
其三,不使用时外盖翻盖在内盖上,第一密封筒将出液管密封住,避免倾
倒后液体渗出,第二密封筒同时和挡液内壁密封紧贴,防止残余在储液腔的液体从外盖渗出。
其四,出液嘴上沿为往外侧延伸的弧形导流部,在液体倒出时,起到较佳导流作用,防止液体沿出液嘴外壁流出。
下面结合附图和具体实施方式对本实用新型作进一步详细说明。
附图说明
图1为本实用新型实施例1中一种防喷式定量挤压结构在外盖关闭时的俯视图;
图2为本实用新型图2中沿A方向的全剖视图;
图3为本实用新型实施例1中一种防喷式定量挤压结构在外盖打开时的结构示意图;
图4为本实用新型实施例1中一种防喷式定量挤压结构在外盖打开时的俯视图;
图5为图4中沿B部位的全剖视图;
图6为本实用新型中量杯的结构示意图;
图7为本实用新型实施例3中挤压容器的爆炸结构示意图。
具体实施方式
下面将结合本实用新型实施例中的附图,对本实用新型实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本实用新型一部分实施例,而不是全部的实施例。
所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施 例是示例性的,旨在用于解释本实用新型,而不能理解为对本实用新型的限制。
在本实用新型的描述中,需要理解的是,术语“中心”、“纵向”、“横向”、“长度”、“宽度”、“厚度”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”、“内”、“外”、“顺时针”、“逆时针”、“轴向”、“径向”、“周向”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本实用新型和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本实用新型的限制。
在本实用新型中,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”、“固定”等术语应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或成一体;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通或两个元件的相互作用关系。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本实用新型中的具体含义。
本实用新型中,图1为本实用新型实施例1中一种防喷式定量挤压结构在外盖关闭时的俯视图;图2为本实用新型图2中沿A方向的全剖视图;图3为本实用新型实施例1中一种防喷式定量挤压结构在外盖打开时的结构示意图;图4为本实用新型实施例1中一种防喷式定量挤压结构在外盖打开时的俯视图;图5为图4中沿B部位的全剖视图;图6为本实用新型中量杯的结构示意图;图7为本实用新型实施例3中挤压容器的爆炸结构示意图。
实施例1
参阅图1-图4,是本实施例提供一种防喷式定量挤压结构,包括量杯1和杯盖,杯盖和量杯1顶部密封配合,其中,杯盖包括内盖2和外盖3,内盖2卡合在量杯1上端,外盖3和内盖2一端转动连接,以此外盖3可翻盖在内盖2上。
本实施例中,如图5,量杯1内部成型出液管10,出液管10上部一侧开设
出液口11,出液口11连通出液管10内部形成的出液腔12,在出液管10外侧的量杯1内形成储液腔13,经过虹吸原理被吸入的液体会进入到出液腔12,由于内部压力大于外界压力,使得液体会从出液口11射出外部。
使用时,如图3,翻开外盖3,直接射出的液体会伤害人眼,危险系数高,为此,在内盖2上成型有和出液口11相对置配合的挡液腔14,受挤压进入出液管10内的液体经出液口11喷出受挡液腔14所抵挡限制,而沿出液管10外壁缓集于储液腔13中。
具体的,如图3和图5所示,挡液腔14上部形成挡液上壁140,挡液上壁140里外两端分别成型有挡液内壁141和挡液外壁142,挡液外壁142内侧和量杯1上部外侧密封卡接,挡液内壁141形成用于接收自出液口11喷出液体的进液口143,进液口143和出液口11相对,被挤出的液体经过侧部的出液口11斜射入进液口143进入挡液腔14内,最后随着储液腔13内壁或者出液管10外壁缓缓集中到储液腔13。
其中,内盖2上端形成出液嘴20,出液嘴20和储液腔13相连通,出液嘴20上沿形成往外侧延伸的弧形导流部21,液体倒出时,起到较佳导流作用,液体沿导流部21延伸的方向集流倒出,防止液体沿出液嘴20外壁流出,使用可靠。
另外,如图2,使用时有可能会发生倾倒,因此,在外盖3的内部具有和出液管10相匹配的第一密封筒30,第一密封筒30从出液嘴20插入,且第一密封筒30的内壁和出液管10外壁密封贴合,不使用时外盖3翻盖在内盖2上,第一密封筒30将出液管10密封住,避免倾倒后液体渗出。
残余在储液腔13的液体可能会渗出外部,对此,在外盖3上位于第一密封筒30外部成型有第二密封筒31,第二密封筒31外壁密封贴合于挡液内壁141,
防止残余在储液腔13的液体从外盖3渗出。
实施例2
本实施例在实施例1的基础上,如图5,,将量杯1设计为透明设置,优选透明的PC材质,实现可视化效果,并且,在储液腔13外壁设置刻度线(图中未示出),挤出液体时,高出出液口11的液体会被重新回吸,保持最大的出液量限制,在外部直观看到储液腔13上刻度,可以清楚得知挤出量。
实施例3
提供一种挤压容器,不限定为用于洗发露、沐浴露、洗洁精等各类日用品的剩装容器,如图7,本实施例的挤压容器包括一种防喷式定量挤压结构,挤压容器还包括瓶身4和挤压管5,量杯1旋紧安装在瓶身4上端,挤压管5插接在出液管10内且伸入瓶身4中,挤压瓶身4,瓶身4内压力大于外界压力,液体进入挤压管5内从出液口11射向挡液腔14,液体受挡液内壁141、挡液上壁140和挡液外壁142的共同抵挡限制,液体不会直接往外部喷射,而沿出液管10外壁流到储液腔13中,避免挤压时液体直接射出,伤害人眼,提高使用安全性。
上述实施方式仅为本实用新型的优选实施方式,不能以此来限定本实用新型保护的范围,本领域的技术人员在本实用新型的基础上所做的任何非实质性的变化及替换均属于本实用新型所要求保护的范围。

Claims (8)

  1. 一种防喷式定量挤压结构,包括量杯和杯盖,所述杯盖和所述量杯顶部密封配合,其特征在于:
    所述量杯内部成型出液管,所述出液管上部一侧开设出液口,所述出液口连通所述出液管内部形成的出液腔,所述杯盖包括内盖和外盖,所述内盖卡合在所述量杯上端,所述外盖和所述内盖一端转动连接,在所述出液管外侧的所述量杯内形成储液腔,所述内盖上成型有和所述出液口相对置配合的挡液腔,受挤压进入所述出液管内的液体经所述出液口喷出受所述挡液腔所抵挡限制,而沿所述出液管外壁缓集于所述储液腔中。
  2. 根据权利要求1所述的一种防喷式定量挤压结构,其特征在于:所述挡液腔上部形成挡液上壁,所述挡液上壁里外两端分别成型有挡液内壁和挡液外壁,所述挡液外壁内侧和所述量杯上部外侧密封卡接,所述挡液内壁形成用于接收自所述出液口喷出液体的进液口。
  3. 根据权利要求2所述的一种防喷式定量挤压结构,其特征在于:所述内盖上端形成出液嘴,所述出液嘴和所述储液腔相连通,所述出液嘴上沿形成往外侧延伸的弧形导流部。
  4. 根据权利要求3所述的一种防喷式定量挤压结构,其特征在于:所述外盖的内部具有和所述出液管相匹配的第一密封筒,所述第一密封筒从所述出液嘴插入,且所述第一密封筒的内壁和所述出液管外壁密封贴合。
  5. 根据权利要求4所述的一种防喷式定量挤压结构,其特征在于:所述外盖上位于所述第一密封筒外部成型有第二密封筒,所述第二密封筒外壁密封贴合于所述挡液内壁。
  6. 根据权利要求1所述的一种防喷式定量挤压结构,其特征在于:所述量杯为透明设置。
  7. 根据权利要求6所述的一种防喷式定量挤压结构,其特征在于:所述储液腔外壁设置刻度线。
  8. 一种挤压容器,其特征在于:包括权利要求1-7中任意一项所述的一种防喷式定量挤压结构,所述挤压容器还包括瓶身和挤压管,所述量杯旋紧安装在所述瓶身上端,所述挤压管插接在所述出液管内且伸入所述瓶身中。
PCT/CN2024/086461 2023-04-08 2024-04-07 一种防喷式定量挤压结构及挤压容器 WO2024212905A1 (zh)

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JPH0966956A (ja) * 1995-09-01 1997-03-11 Toppan Printing Co Ltd 計量キャップ
JP2005047567A (ja) * 2003-07-29 2005-02-24 Kao Corp キャップ
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CN219468519U (zh) * 2023-04-08 2023-08-04 珠海智润护理用品有限公司 一种防喷式定量挤压结构及挤压容器

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JP2005047567A (ja) * 2003-07-29 2005-02-24 Kao Corp キャップ
JP2017074958A (ja) * 2015-10-13 2017-04-20 アース製薬株式会社 計量キャップ
CN205891483U (zh) * 2016-08-17 2017-01-18 吉林省吴太感康药业有限公司 一种液体包装瓶
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