Pressing type liquid guide bottle
By designing the vertical motion constraint of the limiting seat and the movable seat, and the vertical connection structure of the conduit, the problems of tilting and laborious operation of the liquid delivery bottle during vertical pressure application are solved, achieving stable quantitative output and convenient replacement, thus improving the user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANGZHOU DEHE TECH CO LTD
- Filing Date
- 2025-06-09
- Publication Date
- 2026-05-08
AI Technical Summary
Existing liquid delivery bottles are prone to tilting during vertical pressure application, making operation laborious and replacement inconvenient, thus affecting the accuracy of use and the permeation promotion effect.
The design employs a vertical motion constraint system with a limiting seat and a movable seat, combined with a vertical connection structure between the elastic pressing sleeve and the conduit, to shorten the stroke of the elastic element and ensure the stability and quantitative output of the pressing process.
It improves the operational precision and ease of use of the liquid delivery bottle, reduces the force required for pressing, and increases the resource recycling rate.
Smart Images

Figure CN224211619U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of liquid delivery bottle technology, and more particularly to a press-type liquid delivery bottle. Background Technology
[0002] With the continuous improvement of living standards, people's demands for quality of life are also constantly increasing, and beauty essence products have gradually developed into daily care products. Current technology for liquid dispensing bottles used in beauty care typically incorporates a nanocrystal structure at the dispensing port, enhancing the transdermal absorption of beauty essences or liquids through microporous penetration. To improve safety and ease of use, existing dispensing bottles generally feature a telescopic sleeve component at the bottle opening. When used, the sleeve compresses, allowing the nanocrystals to contact the skin surface, thereby achieving targeted application and enhanced penetration of the beauty essence. However, the existing liquid guiding bottle structure has several shortcomings: First, the assembly stability between the movable sleeve and the pressing sleeve is insufficient. During the vertical pressure process, the movable sleeve is prone to skewing, which directly affects the user's operating accuracy and penetration effect. Second, since the bottom of the upper liquid guiding structure needs to be inserted into the container holding the beauty essence for installation and fixation, such as by buckle or threaded connection, the bottom needs to be extended in height. At the same time, the elastic protective sleeve needs to reserve a certain amount of movement stroke, resulting in a relatively high overall height of the liquid guiding structure. The internal spring component has a long overall stroke to cooperate with the extension and retraction of the movable sleeve, making the pressing operation more laborious and inconvenient for users. Utility Model Content
[0003] The purpose of this utility model is to solve the above-mentioned technical problems and provide a press-type liquid guide bottle. The liquid guide bottle of this application has high stability during the extension and retraction process and effectively reduces the stroke of the elastic element, making it convenient for users to use.
[0004] To achieve the above objectives, the technical solution of this utility model is as follows:
[0005] A press-type liquid guide bottle includes a press sleeve, a connecting seat, a limiting seat, and a movable seat. The press sleeve is made of an elastic material. The connecting seat is snapped into the upper opening of the press sleeve. A conduit communicating with the inner cavity of the press sleeve is provided in the middle of the connecting seat, and a liquid guide is connected to the top of the conduit. The limiting seat passes through the conduit, and its sidewall matches the inner cavity of the connecting seat. The gap between the lower bottom of the limiting seat and the bottom of the connecting seat forms an installation cavity. The limiting seat is fixed to a fixed post extending from the installation cavity. The movable seat is located inside the limiting seat and surrounds the liquid guide. An elastic element abuts between the upper bottom of the limiting seat and the bottom of the movable seat, so that the movable seat can move up and down in the inner cavity of the limiting seat when pressed. The limiting seat limits the horizontal movement of the movable seat. A container bottle communicating with the inner cavity of the press sleeve is sealed and fitted into the lower opening of the connecting seat.
[0006] In this application, the press-type liquid guide bottle utilizes a limiting seat design to constrain the vertical movement of the movable seat, ensuring that the movable seat moves only vertically along the inner cavity of the limiting seat during pressing. This prevents the movable seat from tilting due to horizontal offset, ensuring operational accuracy during use. Furthermore, because an installation cavity is formed between the bottom of the limiting seat and the connecting seat, the axial height of the pressing sleeve to the liquid guide component is significantly compressed while the limiting seat is fixed within the installation cavity. This significantly shortens the working stroke of the elastic component, effectively reducing the force required for the user to extend or retract the movable sleeve. The vertical connection design between the conduit and the liquid guide component, combined with the deformation characteristics of the elastic pressing sleeve, allows for direct liquid output along the conduit via the deformation pressure of the pressing sleeve during pressing. Controllable liquid guide can be achieved without relying on the tilting of the pressing sleeve, effectively solving the problems of unstable liquid output and low operational reliability in traditional liquid guide bottles. In addition, the plug-in assembly of the connecting seat and the pressing sleeve, and the modular structure of the container bottle and the lower end of the pressing sleeve engaging, form independently detachable and replaceable liquid storage and functional component units, significantly improving resource recycling rates.
[0007] In one embodiment, the top edge of the limiting seat is provided with a limiting edge, which abuts against the upper end of the connecting seat. When the movable seat is compressed, its edge is limited by the limiting edge to control the compression stroke of the elastic element.
[0008] In one embodiment, the outer wall of the limiting edge is inclined.
[0009] In one embodiment, the inner cavity of the connecting seat is a mounting groove, the side wall of the mounting groove is provided with an arc-shaped step, and the bottom of the limiting seat abuts against the step.
[0010] In one embodiment, the mounting groove forms the mounting cavity with the limiting seat in the lower region of the step position. The limiting seat is provided with a mounting hole, which is fixedly connected to the fixing post by a threaded connection.
[0011] In one embodiment, the pressing sleeve has symmetrically distributed arc-shaped protruding pressing portions in the middle.
[0012] In one embodiment, the upper opening of the pressing sleeve is provided with a mating groove, and the bottom of the connecting seat is provided with a mating rib, which engages with the mating groove.
[0013] In one embodiment, the lower opening of the pressing sleeve is provided with a connecting groove, the container bottle is snapped into the connecting groove, and the edge of the lower opening of the pressing sleeve is inclined towards the center.
[0014] In one embodiment, a nanocrystal is mounted on the upper end of the liquid guiding component, and a connecting post is located in the middle of the liquid guiding component. The connecting post is sleeved on the conduit and communicates with the conduit. In its natural state, the upward extension of the movable seat is limited by the connecting post.
[0015] In one embodiment, the pressing sleeve is made of silicone. Attached Figure Description
[0016] Figure 1 A schematic diagram of the overall structure of the liquid guiding bottle provided by this utility model in its natural state;
[0017] Figure 2 A structural cross-sectional view of the liquid delivery bottle provided by this utility model under stress.
[0018] Figure 3 This is an exploded view of the structure of the liquid delivery bottle provided by this utility model;
[0019] Figure 4 This is an exploded view of the connecting seat and pressing sleeve provided by this utility model. Detailed Implementation
[0020] This application provides a press-type liquid guide bottle to solve the problems of insufficient assembly stability between the elastic protective sleeve and the press sleeve, which easily causes structural skew during vertical pressure application, directly affecting the user's operating accuracy and penetration effect. Secondly, the delivery of beauty essence to the bottle mouth requires the press sleeve to tilt to guide the liquid, which is quite troublesome in actual use. In addition, replacing beauty essence is also quite troublesome, which is inconvenient for users.
[0021] To make the inventive objectives, features, and advantages of this application more apparent and understandable, the technical solutions in the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the embodiments described below are only some embodiments of this application, and not all embodiments. Based on the embodiments in this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0022] Please see Figures 1 to 4This application provides a press-type liquid delivery bottle, including a press sleeve 100, a connecting seat 200, a limiting seat 300, and a movable seat 400. The press sleeve 100 is made of an elastic material. The connecting seat 200 is inserted into the upper opening of the press sleeve 100. A conduit 210 communicating with the inner cavity of the press sleeve 100 is provided in the middle of the connecting seat 200. A liquid delivery component 500 is connected to the top of the conduit 210. The limiting seat 300 passes through the conduit 210, and its sidewall matches the inner cavity of the connecting seat 200. The gap between the lower bottom of the limiting seat 300 and the bottom of the connecting seat 200 forms an installation cavity 200. The limiting seat 300 is fixed to the fixed post 221 extending inside the mounting cavity 200; the movable seat 400 is located inside the limiting seat 300 and surrounds the liquid guiding member 500. The movable seat 400 surrounds the liquid guiding member 500. An elastic member 600 abuts between the upper bottom side of the limiting seat 300 and the bottom of the movable seat 400, so that the movable seat 400 can move up and down in the inner cavity of the limiting seat 300 when pressed. The limiting seat 300 limits the movement of the movable seat 400 in the horizontal direction. The lower end opening of the connecting seat 200 is sealed and fitted with a container bottle 700 that communicates with the inner cavity of the pressing sleeve 100.
[0023] Specifically, the pressing sleeve 100 is made of an elastic material that can deform. In this embodiment, the pressing sleeve 100 is made of silicone, with openings at both the top and bottom. The connecting seat 200 is inserted into the upper opening, and the container bottle 700 containing beauty essence or medicine is inserted into the lower opening, guiding the medicine into the inner cavity of the pressing sleeve 100. Through the conduit 210 extending from the middle of the connecting seat 200, the connecting seat 200 can connect to the inner cavity of the pressing sleeve 100, guiding the beauty essence to the guide tube located at the top of the conduit 210. Liquid component 500; Due to the deformation characteristics of the pressing sleeve 100 under pressure, the liquid is directly driven to be metered out along the conduit 210 by the deformation pressure of the pressing sleeve 100 during pressing, which is convenient for users; After the limiting seat 300 passes through the conduit 210, it abuts against the connecting seat 200, and there is a certain gap between the bottom of the limiting seat 300 and the bottom of the connecting seat 200 to form an installation cavity 220. The space inside the installation cavity 220 extends into the fixing post 221, so that the limiting seat 300 can be fixedly connected to the fixing post 221. Furthermore, the limiting seat 300 and the connecting seat 200 have high structural stability and efficiently utilize space. This allows for a reduction in the height of the movable seat 400 within the inner cavity of the connecting seat 200. The diameter of the movable seat 400 forms a clearance fit with the limiting seat 300. An elastic element 600 abuts against the bottom of the movable seat 400 and the bottom of the limiting seat 300. In this embodiment, the elastic element 600 is preferably a spring, which is easy to assemble and has low cost. While limiting the position of the limiting seat 300, the stroke height is reduced, lowering the user's pressing operation. The movable seat 400 extends outward and surrounds the liquid guide 500 in its natural state, effectively protecting the nanochip 510 installed on the liquid guide 500 from damage. In use, the movable seat 400 is compressed by the elastic element 600, allowing the liquid guide 500 to come into contact with the skin. Under the limit of the limiting seat 300, the movable element is not easy to deviate during movement, which would affect the use. In addition, since both the connecting seat 200 and the container bottle 700 can be directly inserted into the pressing sleeve 100, the convenience of user replacement is improved.
[0024] Furthermore, the top edge of the limiting seat 300 is provided with a limiting edge 310, which abuts against the upper end of the connecting seat 200. When the movable seat 400 is compressed, its edge is limited by the limiting edge 310 to control the compression stroke of the elastic member 600. The limiting edge 310 formed by the outward extension of the top edge of the limiting seat 300 abuts against the upper end of the connecting seat 200, and the outer wall of the limiting edge 310 is inclined, resulting in a high degree of overall tightness. During use, the beauty liquid is less likely to seep into the internal gaps and affect the interior, thus preventing bacterial growth. In addition, the edge of the movable seat 400 is folded outward. When compressed, when the edge of the movable seat 400 abuts against the limiting edge 310, the compression of the elastic member 600 stops, thereby limiting the stroke of the movable seat 400 and ensuring that the liquid guiding member 500 can be used normally.
[0025] Furthermore, the inner cavity of the connecting seat 200 is a mounting groove 230, and the side wall of the mounting groove 230 is provided with an arc-shaped step 221. The bottom of the limiting seat 300 abuts against the step 221. The bottom edge of the limiting seat 300 is arc-shaped, which cooperates with the step 221 to form an abutment state, facilitating installation. The mounting groove 230 and the limiting seat 300 form the mounting cavity 220 in the lower area of the step 231. The limiting seat 300 is provided with a mounting hole 320, which is fixedly connected to the fixing post 221 by a threaded connection. The bottom of the limiting seat 300 is provided with a mounting hole 320 that cooperates with the fixing post 222, and is locked to the connecting seat 200 by screws or studs passing through the mounting hole 320, resulting in high overall structural stability and preventing displacement during use that could affect product quality.
[0026] Furthermore, the pressing sleeve 100 has symmetrically distributed arc-shaped protruding pressing portions 110 in the middle. The pressing sleeve 100 is made of silicone and is elastic, so it can produce elastic deformation when pressed. The pressing portions 110 formed in the middle of the pressing sleeve 100 are arc-shaped protrusions, which makes it easier for the user to press.
[0027] See Figure 4 The upper opening of the pressing sleeve 100 is provided with a mating groove 120, and the bottom of the connecting seat 200 is provided with a mating rib 230, which is engaged with the mating groove 120. The upper end of the pressing sleeve 100 extends with an annular edge, and the inner side of the annular edge is provided with the mating groove 120. The bottom of the connecting seat 200 corresponds to the annular edge, and the mating rib 230 is inserted into the mating groove 120 to form a snap-fit connection. An abutment position is formed at the upper end of the mating rib 230, abutting against the upper end of the pressing sleeve 100 to ensure a tight seal and prevent leakage of internal liquid. The lower opening of the pressing sleeve 100 is provided with a connecting groove 130, and the container bottle 700 is engaged with the connecting groove 130. The edge of the lower opening of the pressing sleeve 100 is inclined towards the center. The connecting groove 130 at the lower end of the pressing sleeve 100 can be engaged with the bottle mouth of the container bottle 700 to guide the liquid in the container bottle 700 into the inner cavity of the pressing sleeve 100. The connection is convenient and easy for users to replace.
[0028] Furthermore, a nanocrystal 510 is installed at the upper end of the liquid guiding component 500, and a connecting post 520 is located in the middle of the liquid guiding component 500. The connecting post 520 is sleeved on and communicates with the conduit 210. In its natural state, the upward extension of the movable seat 400 is limited by the connecting post 520. The connecting post 520 in the middle of the liquid guiding component 500 is hollow and connects to the conduit 210, guiding beauty essence or medicine to the nanocrystal 510 installed at the top of the liquid guiding component 500. During use, the liquid can be better introduced into the skin, improving the penetration rate. In addition, the size of the connecting post 520 is larger than the middle hole of the movable component, and the movable component is limited by the connecting post 520 in its natural state, ensuring that the movement of the movable component is within the normal range. The overall structure of the liquid guiding bottle is simple, and the reasonable structural layout improves the structural stability of the liquid guiding bottle and optimizes the user experience.
[0029] Based on the disclosure and teachings of the above specification, those skilled in the art can make changes and modifications to the above embodiments. Therefore, this utility model is not limited to the specific embodiments disclosed and described above, and some modifications and changes to this utility model should also fall within the protection scope of the claims of this utility model. Furthermore, although some specific terms are used in this specification, these terms are only for convenience of explanation and do not constitute any limitation on this utility model.
Claims
1. A press-type liquid delivery bottle, characterized in that, The device includes a pressing sleeve, a connecting seat, a limiting seat, and a movable seat. The pressing sleeve is made of an elastic material. The connecting seat is snapped into the upper opening of the pressing sleeve. The middle part of the connecting seat has a conduit that communicates with the inner cavity of the pressing sleeve, and the top of the conduit is connected to a liquid guiding element. The limiting seat passes through the conduit, and its sidewall matches the inner cavity of the connecting seat. The gap between the lower bottom of the limiting seat and the bottom of the connecting seat forms an installation cavity. The limiting seat is fixed to a fixed post extending from the installation cavity. The movable seat is located inside the limiting seat and surrounds the liquid guiding element. An elastic element abuts between the upper bottom of the limiting seat and the bottom of the movable seat, so that the movable seat can move up and down in the inner cavity of the limiting seat when pressed. The limiting seat limits the horizontal movement of the movable seat. The lower opening of the connecting seat is sealed with a container bottle that communicates with the inner cavity of the pressing sleeve.
2. The press-type liquid delivery bottle according to claim 1, characterized in that, The top edge of the limiting seat is provided with a limiting edge, which abuts against the upper end of the connecting seat. When the movable seat is pressed, its edge is limited by the limiting edge to control the compression stroke of the elastic element.
3. The press-type liquid delivery bottle according to claim 2, characterized in that, The outer wall of the limiting edge is inclined.
4. The press-type liquid delivery bottle according to claim 1, characterized in that, The inner cavity of the connecting seat is a mounting groove, and the side wall of the mounting groove is provided with an arc-shaped step. The bottom of the limiting seat abuts against the step.
5. The press-type liquid delivery bottle according to claim 4, characterized in that, The mounting groove forms the mounting cavity with the limiting seat in the lower area of the step position. The limiting seat is provided with a mounting hole, which is fixedly connected to the fixing post by a threaded connection.
6. The press-type liquid delivery bottle according to claim 1, characterized in that, The pressing sleeve has symmetrically distributed arc-shaped protruding pressing parts in the middle.
7. The press-type liquid delivery bottle according to claim 1, characterized in that, The upper opening of the pressing sleeve is provided with a mating groove, and the bottom of the connecting seat is provided with a mating rib, which is engaged with the mating groove.
8. The press-type liquid delivery bottle according to claim 1, characterized in that, The lower opening of the pressing sleeve is provided with a connecting groove, and the container bottle is snapped into the connecting groove. The edge of the lower opening of the pressing sleeve is inclined towards the center.
9. The press-type liquid delivery bottle according to claim 1, characterized in that, The upper end of the liquid guiding component is equipped with a nanocrystal, and the middle part of the liquid guiding component is a connecting post. The connecting post is sleeved on the conduit and communicates with the conduit. In its natural state, the upward extension of the movable seat is limited by the connecting post.
10. The press-type liquid delivery bottle according to claim 1, characterized in that, The pressing sleeve is made of silicone.