Press type cosmetic container
By designing a detachable box and filling device structure, the problem of the inconvenience of replacing the filling device in cosmetic containers has been solved, enabling convenient replacement and stable fluid delivery, thus improving the user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2026-01-15
- Publication Date
- 2026-03-10
AI Technical Summary
Existing cosmetic containers cannot easily replace the filling device after the fluid is depleted, resulting in resource waste and inconvenience. Furthermore, the press-type structure is prone to elastic deformation, affecting the effectiveness of use.
Design a press-type cosmetic container. Through the detachable connection between the box body and the material holding device and the setting of the bending channel, the material holding device can be detachably installed along the Y direction. The pump body assembly is connected to the bending channel. The fluid flows out of the inlet through the pump body assembly and the bending channel. The pressing action is separated from the inlet to avoid elastic deformation.
It enables convenient replacement of the material container, improves ease of use and stability of fluid delivery, enhances user experience, and avoids problems such as fluid ejection and elastic deformation.
Smart Images

Figure CN223979543U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of cosmetic containers, and in particular to a press-type cosmetic container. Background Technology
[0002] In the context of advocating a circular economy, typical cosmetic containers are usually fixed as a whole. When the fluid in the internal container (such as cushion liquid) is used up, the entire product is forced to become waste. This limits the product's functional flexibility, and users cannot easily replace the container with different formulas, textures or shades according to seasonal changes, skin type needs or makeup styles.
[0003] Therefore, there is an urgent need to provide a press-type cosmetic container to improve the problems of inconvenience in use and difficulty in replacing the container. Utility Model Content
[0004] Based on this, the present invention aims to at least solve one of the aforementioned technical problems. To this end, this application proposes a press-type cosmetic container, which has advantages such as ease of use and convenient replacement of the container.
[0005] This application discloses a press-type cosmetic container, comprising:
[0006] The box body has a material inlet along the X direction and an installation cavity in the Y direction, wherein the X direction and the Y direction are orthogonally arranged.
[0007] A material holding device is detachably installed in the mounting cavity as an integral unit along the Y direction, and can be inserted into or pulled out of the mounting cavity along the Y direction for replacement. The material holding device includes a pump body assembly and a material holding component. The pump body assembly is connected to the material holding component, and the material holding component is configured to hold fluid.
[0008] The housing is provided with a bent channel for changing the direction of fluid. One end of the bent channel is detachably connected to the pump assembly, and the other end is connected to the feed port.
[0009] The pump assembly includes:
[0010] The first tube body is provided with a snap-fit part and a first through hole. The snap-fit part is snapped into the material holding component, and the first through hole is connected to the material holding component.
[0011] The second tube has a second through hole. One end of the second tube is slidably disposed in the first through hole, and the other end is detachably connected to the bending channel.
[0012] An elastic element is disposed on the outer peripheral wall of the second tube and abuts against the first tube. The elastic element is used to provide elastic force so that the material holding part is pressed back into place.
[0013] A one-way valve is located inside the first pipe body;
[0014] The first through hole and the second through hole together form a fluid channel, which is connected to the bend channel. The one-way valve is configured to allow the fluid to flow unidirectionally through the fluid channel to the bend channel.
[0015] A sliding member is slidably sleeved on a portion of the second tube body, and its outer peripheral wall is engaged with the first tube body;
[0016] A sealing ring is fitted onto a portion of the outer peripheral wall of the second tube to restrict the flow of fluid to the outer peripheral wall of the second tube.
[0017] The sliding member and the sealing ring are arranged at intervals along the Y direction, the sliding member abuts against the elastic member, and the material receiving member is configured to allow the fluid to flow into the feed port sequentially through the pump body assembly and the bent channel by pressing.
[0018] In the press-type cosmetic container of this application, on the one hand, the box body is provided with a feed port along the X direction and an installation cavity is opened in the Y direction. The feeding device is detachably installed in the installation cavity along the Y direction. With this setting, the user can easily replace the feeding device with different formulas, textures or shades according to needs or makeup style, realizing convenient replacement of the feeding device; on the other hand, the feeding device is detachably installed in the installation cavity along the Y direction. The setting of the bent channel changes the flow direction of the fluid. Pressing the feeding device allows the fluid to flow out of the feed port in sequence through the pump body assembly and the bent channel, which is convenient to operate.
[0019] In some embodiments, the press-type cosmetic container further includes a lid, which is pivotally disposed from the box body.
[0020] In some embodiments, a cosmetic mirror is provided on one side of the cover.
[0021] In some embodiments, the snap-fit portion is configured as a raised ring, the elastic element is a spring, and the bending channel is configured as an L-shaped raised pipe.
[0022] In some embodiments, the bent channel is inserted into the second tube.
[0023] In some embodiments, both the slider and the sealing ring are configured as annular.
[0024] In some embodiments, the box body includes a main box body and a material support assembly, wherein the material support assembly is detachably mounted to the main box body along the X direction;
[0025] The mounting cavity is located on the main body of the box, and the material inlet and the bending channel are both located on the material support assembly.
[0026] In some embodiments, the side of the box body away from the material container provides an installation space, and the bending channel is adapted to the installation space and installed in the installation space.
[0027] In some embodiments, the material support assembly includes:
[0028] A first material support component, wherein the bending channel is disposed on the first material support component, and the first material support component is provided with a first material support cavity for holding the fluid flowing into the fluid through the bending channel;
[0029] The second material support component has a material inlet located thereon, which is connected to the first material support cavity.
[0030] The second material support is mounted on the first material support along the X direction.
[0031] In some embodiments, the first material receiving cavity includes:
[0032] A flow guide channel, which is connected to the bending channel;
[0033] A protruding baffle portion, which is configured as an enclosing structure and communicates with the guide channel, is used to enclose the flow of fluid directed to the feed inlet.
[0034] In some embodiments, the projected area of the baffle portion along the X direction is greater than the projected area of the feed inlet along the X direction.
[0035] In some embodiments of this application, by setting the projected area of the baffle part along the X direction to be larger than the projected area of the feed port along the X direction, the fluid can be contained in the first material support cavity and flow out along the feed port when pressed, which can improve the fluid from spraying out of the feed port due to excessive pressure and improve the user experience.
[0036] In some embodiments, the pump body assembly is snap-fitted to the material container.
[0037] In some embodiments, the material support assembly further includes a cover plate disposed between the first material support member and the second material support member, and the cover plate is adapted to the guide channel for sealing the guide channel. Attached Figure Description
[0038] Figure 1 This is a schematic diagram of the structure of the box and the material holding device in one embodiment of this application;
[0039] Figure 2This is a schematic diagram of the cross-sectional view of the box body AA in one embodiment of this application;
[0040] Figure 3 This is an exploded view of the pump body assembly in one embodiment of this application;
[0041] Figure 4 This is an exploded view of the material support assembly in one embodiment of this application;
[0042] Figure 5 This is a schematic diagram of the material support component structure in one embodiment of this application.
[0043] Explanation of reference numerals in the attached figures:
[0044] 1. Box body; 11. Main box component; 12. Material support assembly; 121. First material support component; 122. Second material support component; 123. Cover plate;
[0045] 2. Material holding device; 21. Pump body assembly; 210. First pipe body; 211. Snap-fit part; 212. First through hole; 220. Second pipe body; 221. Second through hole; 230. Elastic element; 240. One-way valve; 250. Sliding element; 260. Sealing ring; 22. Material holding component;
[0046] 3. Cover; 31. Makeup mirror;
[0047] K, feed inlet; Q1, mounting cavity; Q2, first material support cavity; Q21, guide channel; Q22, baffle; Z, bending channel; L, fluid channel. Detailed Implementation
[0048] To make the above-mentioned objectives, features, and advantages of this application more apparent and understandable, the specific embodiments of this application are described in detail below with reference to the accompanying drawings. Many specific details are set forth in the following description to provide a thorough understanding of this application. However, this application can be implemented in many other ways different from those described herein, and those skilled in the art can make similar modifications without departing from the spirit of this application. Therefore, this application is not limited to the specific embodiments disclosed below.
[0049] The inventors of this application have discovered that in the field of cosmetic containers, the filling device of the key component used to store fluids (such as foundation, cream, or cushion liquid) is usually fixed inside the shell. Once the fluid is exhausted, the user cannot replace the filling device according to their own needs and can only discard the entire container. This is not only uneconomical and wasteful of resources, but also causes inconvenience to the user.
[0050] Furthermore, in cushion products, users typically press the sponge side of the puff onto the sponge pad soaked in foundation. However, this method requires a certain amount of pressure from the user. If the pressure is not appropriate, the puff may not be able to absorb enough foundation or may absorb too much foundation, resulting in uneven application of the foundation. Therefore, the urgent challenge is to design a cosmetic container that is convenient to use and has a replaceable filling device.
[0051] During the research and development process, the applicant discovered the following: 1. Placing the pressing part on the same side as the feed inlet makes replacing the feeding device inconvenient. Understandably, if the pressing part is on the same side as the feed inlet, the box needs to be disassembled, a new feeding device replaced, and then reassembled. This assembly process is overly cumbersome and time-consuming. Testing showed that this assembly method requires at least 15 minutes to complete the replacement. 2. Using the pressing part and the feed inlet as a single component can lead to elastic deformation due to uneven pressing over time. This elastic deformation indirectly causes the fluid to flow out of the feed inlet to one side, affecting the even adhesion of the foundation to the puff and making it inconvenient to use.
[0052] In order to solve at least one of the above problems and make cosmetic containers convenient to use and easy to replace the container, the inventors of this application have developed a related structure.
[0053] The following is a detailed description of this application with reference to the accompanying drawings:
[0054] Please refer to the press-type cosmetic container proposed in this application. Figures 1-2 The system includes a housing 1 and a material holding device 2. The housing 1 has a material inlet K along the X direction and an installation cavity Q1 along the Y direction, with the X and Y directions orthogonal. The material holding device 2 is detachably installed in the installation cavity Q1 along the Y direction. The material holding device 2 includes a pump assembly 21 and a material holding component 22. The pump assembly 21 is connected to the material holding component 22, which is configured to hold fluid. For example... Figure 2 As shown, AA is the cross-sectional view of the box body. The box body 1 is provided with a bending channel Z. The pump body assembly 21 is connected to the bending channel Z. The material holding part 22 is configured to allow fluid to flow out of the material inlet K by pressing, so that the fluid flows through the pump body assembly 21 and the bending channel Z in sequence.
[0055] Please refer to Figures 1 to 2The housing 1 is used to load the material holding device 2. The material holding device 2 consists of a pump assembly 21 and a material holding component 22 and is detachably fitted to the housing 1 as a whole. The material holding component 22 is used to load the fluid. The pump assembly 21 is used to provide negative pressure to guide the fluid in the material holding component 22 to the feed port K. The feed port K is used as the outlet for the fluid to flow out. The mounting cavity Q1 is adapted to the material holding device 2 and is used to install the material holding device 2. The bent channel Z is used to receive the fluid from the pump assembly 21 and guide the fluid from the X direction to the Y direction. It can be understood that since the feed port K is set in the X direction, the material holding device 2 is detachably installed in the mounting cavity Q1 along the Y direction. The X direction and the Y direction are orthogonal, so the bent channel Z is needed to guide the flow of the fluid.
[0056] On the one hand, please refer to Figures 1 to 2 The container 1 has a feed inlet K along the X direction, and the feeding device 2 is detachably installed in the mounting cavity Q1 along the Y direction. The container 1 has a bending channel Z. In use, the user can press the feeding component 22 to make the fluid flow out of the feed inlet K through the pump assembly 21 and the bending channel Z in sequence. By configuring the container 1 and the feeding device 2 as different components, that is, by setting the bending channel Z, the pressing action is separated from the feed inlet K, which avoids the elastic deformation of the feed inlet caused by long-term pressing, and the operation is convenient for the user.
[0057] On the other hand, please refer to Figures 1-2 By providing an installation cavity Q1 along the Y direction for the box body 1, and detachably installing the material holding device 2 along the Y direction in the installation cavity Q1, in this configuration, when a new material holding device 2 needs to be replaced, the user can take out the material holding device 2 along the Y direction and replace it without disassembling the box body 1, which improves the convenience of replacing the material holding device 2.
[0058] For example, such as Figure 1 As shown, the X and Y directions are Figure 1 The directions shown can be understood as follows: the X direction can be a direction parallel to the feed inlet K, and the Y direction can be a direction in which the feeding device 2 is installed.
[0059] Please refer to Figures 1 to 2 When using this press-type cosmetic container, the user presses the filling part 22, which allows the fluid to flow sequentially through the pump assembly 21 and the bent channel Z to the inlet K, and then out of the inlet K for the user's use. When the filling device 2 needs to be replaced, the user pulls out the filling device 2 placed in the box 1 along the Y direction and installs the new filling device 2 into the box 1.
[0060] In some specific examples, the press-type cosmetic container also includes a lid 3, which is pivotally connected to the box body 1.
[0061] For details, please continue to refer to Figure 2 The press-type cosmetic container includes a lid 3, which is pivotally connected to the box 1. With this configuration, when the user does not need to use it, the lid 3 can be closed with the box 1 to prevent the feed port K from coming into contact with contaminants (such as dust).
[0062] In some specific examples, a makeup mirror 31 is provided on one side of the cover 3.
[0063] For details, please continue to refer to Figure 2 A makeup mirror 31 is provided on one side of the cover 3. When using the product, the user can simply flip up the cover to see the area that needs to be made up, which is convenient to use.
[0064] For specific examples, please refer to [link / reference]. Figures 1 to 3 The pump body assembly 21 also includes: a first pipe body 210, a second pipe body 220, an elastic element 230, and a one-way valve 240. The first pipe body 210 has a snap-fit portion 211 and a first through hole 212. The snap-fit portion 211 snaps into the material container 22, and the first through hole 212 communicates with the material container 22. The second pipe body 220 has a second through hole 221. One end of the second pipe body 220 is slidably disposed within the first through hole 212, and the other end is connected to the bending channel Z.
[0065] Please continue to refer to this. Figures 1 to 3 An elastic element 230 is disposed on the outer peripheral wall of the second tube 220 and abuts against the first tube 210. The elastic element 230 is used to provide elastic force to press the material container 22 back into position. A one-way valve 240 is disposed inside the first tube 210. The first through hole 212 and the second through hole 221 together form a fluid channel L, which is connected to the bent channel Z. The one-way valve 240 is configured to press the material container 22 so that the fluid flows unidirectionally through the fluid channel L to the bent channel Z.
[0066] Please continue to refer to this. Figures 1 to 3 The first tube 210 is fitted onto a portion of the second tube 220 and slidably engages with the second tube 220 along the Y direction. With this arrangement, when the holding member 22 is pressed, the second tube 220 slidably engages with the outer peripheral wall of the first tube 210. The second tube 220 is used to connect the bent channel Z and avoid the installation space of the elastic member 230. The elastic member 230 is used to return the holding member 22 to its original position when pressed. The one-way valve 240 is used to press the holding member 22 so that the fluid flows unidirectionally to the fluid channel L. The snap-fit part 211 is used to snap onto the holding member 22, and when the holding member 22 is pressed, the first tube 210 and the holding member 22 can move synchronously. The first through hole 212 and the second through hole 221 are used to transport fluid and together construct a fluid channel L for the fluid to pass through.
[0067] For details, please continue to refer to Figures 1 to 3The first tube 210 is provided with a snap-fit part 211. During the pressing of the material container 22, the first tube 210 can slide along the Y direction to engage with the second tube 220. The elastic element 230 abuts against the first tube 210, causing the elastic element 230 to compress as it moves with the first tube 210. Due to the one-way valve 240, the fluid flows unidirectionally through the fluid channel L to the bent channel Z. During the releasing of the pressing of the material container 22, the elastic element 230 can push the first tube 210 with its elastic force. The displacement of the first tube 210 acts synchronously on the material container 22, causing the material container 22 to return to its original position. Through this arrangement, the first tube 210, the second tube 220, the elastic element 230, and the one-way valve 240 are interdependent and work together to realize the fluid delivery of the pump assembly 21.
[0068] For example, the one-way valve 240 is made of silicone.
[0069] For example, the one-way valve 240 may be located in the first tube 210 near the material container 22.
[0070] In some specific examples, the snap-fit portion 211 is constructed as a raised ring, the elastic element 230 is a spring, and the bending channel Z is constructed as an L-shaped raised pipe.
[0071] For example, by constructing the snap-fit portion 211 as a raised annulus, the container 22 generally has an opening (not shown) for guiding fluid out of the container 22, whereby the snap-fit portion 211 can snap into the opening.
[0072] In some specific examples, the bent channel Z is inserted into the second tube 220.
[0073] For details, please continue to refer to Figures 2 to 3 The device is inserted into the second tube 220 through the bent channel Z, which allows the user to directly pull out the material holding device 2 when it needs to be replaced, making the operation convenient.
[0074] In some specific examples, the pump body assembly 21 further includes a slider 250 and a sealing ring 260. The slider 250 is slidably fitted onto a portion of the second tube 220, and its outer peripheral wall engages with the first tube 210. The sealing ring 260 is fitted onto a portion of the outer peripheral wall of the second tube 220, and the sealing ring 260 is used to restrict fluid flow to the outer peripheral wall of the second tube 220. The slider 250 abuts against the elastic member 230.
[0075] For details, please continue to refer to Figure 3Under prolonged use, the elastic force of the elastic element 230 can cause stress concentration on the side wall of the first tube 210. The pump assembly 21 is equipped with a sliding element 250, which allows the first tube 210 to indirectly engage with the elastic element 230. Thus, during long-term use, stress concentration can damage the sliding element 250; simply replacing the sliding element 250 will restore normal operation. It is understandable that the first tube 210, due to its complex structure (including the snap-fit part 211 and the first through hole 212, which together with the second through hole 221 to form the fluid channel L), is more costly and inconvenient to install. The sliding element 250 not only saves costs but also makes installation more convenient.
[0076] Please continue to refer to this. Figure 3 The pump body assembly 21 also includes a sealing ring 260, which is fitted onto part of the outer peripheral wall of the second pipe 220. This not only prevents the fluid from flowing to the outer peripheral wall of the second pipe 220 when the fluid passes through the fluid channel L, but also increases the overall sealing of the fluid channel L and makes the pressure in the fluid channel L more uniform when pressed, thereby improving the stability of the pump body assembly 21 in conveying fluid.
[0077] For example, the slider 250 may be provided with an annular groove, and the first tube 210 is snapped into the annular groove.
[0078] For specific examples, please refer to [link / reference]. Figure 3 Both the slider 250 and the sealing ring 260 are constructed in annular shape.
[0079] For specific examples, please refer to [link / reference]. Figure 4 The box body 1 includes a main body 11 and a material support assembly 12, which is detachably mounted on the main body 11 along the X direction. The mounting cavity Q1 is located on the main body 11, and the material inlet K and the bending channel Z are both located on the material support assembly 12.
[0080] Please continue to refer to this. Figure 4 The main body 11 provides installation space for the material support assembly 12 and has an installation cavity Q1. The material support assembly 12 provides installation space for the material inlet K and the bending channel Z.
[0081] For details, please continue to refer to Figure 4 The material support assembly 12 is detachably installed on the main body 11 of the box along the X direction. This allows the material support assembly 12 to be removed when it becomes blocked, facilitating future maintenance.
[0082] In some specific examples, the box body 11 is provided with an installation space (not shown in the figure) on the side away from the material holding part 22, and the bending channel Z is adapted to the installation space and installed in the installation space.
[0083] For specific examples, please refer to [link / reference]. Figure 4 The material support assembly 12 includes a first material support member 121 and a second material support member 122. A bending channel Z is provided on the first material support member 121, and the first material support member 121 is provided with a first material support cavity Q2 for holding the fluid flowing in through the bending channel Z. A material outlet K is provided on the second material support member 122 and is connected to the first material support cavity Q2. The second material support member 122 is mounted on the first material support member 121 along the X direction.
[0084] For details, please continue to refer to Figures 4 to 5 The material support assembly 12 includes a first material support member 121 and a second material support member 122. The first material support member 121 may be provided with a first material support cavity Q2, and the material outlet K is provided in the second material support member 122. Thus, the fluid can flow into the first material support cavity Q2 through the bent channel Z and flow out through the material outlet K. Through this arrangement, the first material support member 121 not only provides the installation space of the bent channel Z, but also provides the first material support cavity Q2 so that the fluid can be concentrated in the first material support cavity Q2, avoiding the fluid diffusion and thus preventing it from flowing out of the material outlet K.
[0085] For example, please continue to refer to Figure 4 The second material support 122 can be configured as a component that can cover the first material support 121.
[0086] For specific examples, please refer to [link / reference]. Figure 4 The first material receiving chamber Q2 includes a guide channel Q21 and a protruding baffle Q22. The guide channel Q21 is connected to the bending channel Z. The baffle Q22 is configured as an enclosing structure and is connected to the guide channel Q21 to enclose the material flowing directionally to the feed inlet K.
[0087] For details, please continue to refer to Figures 4 to 5 The first material receiving chamber Q2 includes a guide channel Q21 and a protruding baffle part Q22. In this way, the fluid can be guided to the baffle part Q22 through the guide channel Q21. The enclosing structure of the baffle part Q22 can restrict the diffusion of the fluid and the fluid has an agglomeration state, thereby improving the rationality of the structure.
[0088] In some specific examples, the projected area of the baffle Q22 along the X direction is greater than the projected area of the feed inlet K along the X direction.
[0089] Understandably, please continue to refer to this. Figures 4 to 5If it is set as a single pipe, the fluid flows faster in the single pipe. Therefore, when the material container 22 is pressed, the fluid will be ejected from the material outlet K. By setting the projected area of the baffle part Q22 along the X direction to be larger than the projected area of the material outlet K along the X direction, the fluid can be contained in the first material support cavity Q2 and flow out along the material outlet K when pressed. This setting provides a buffer space, which can improve the fluid ejection from the material outlet K due to excessive pressure and improve the user experience.
[0090] For example, the enclosing structure can be an arc-shaped protruding structure.
[0091] For example, the baffle Q22 can be located on one side of the feed inlet K.
[0092] For specific examples, please refer to [link / reference]. Figure 1 The pump body assembly 21 and the material container 22 are snapped together.
[0093] In some specific examples, the material support assembly 12 also includes a cover plate 123, which is disposed between the first material support member 121 and the second material support member 122, and the cover plate 123 is adapted to the guide channel Q21 for sealing the guide channel Q21.
[0094] For details, please continue to refer to Figures 4 to 5 By providing a cover plate 123 that is compatible with the guide channel Q21, the fluid can be confined to flow within the guide channel Q21, thus improving the prevention of fluid leakage.
[0095] In one embodiment of this application: Please refer to Figures 1 to 5 The press-type cosmetic container includes a box body 1 and a material holding device 2. The material holding device 2 includes a pump assembly 21 and a material holding part 22. The box body 1 is provided with a bending channel Z. The user fixes the box body 1 and presses the material holding part 22. The pump assembly 21 delivers fluid from the material holding part 22. The fluid flows out of the inlet K through the pump assembly 21 and the bending channel Z. The user can then use a powder puff to pick up the fluid located at the inlet K and apply the powder puff to the area where makeup is needed.
[0096] In one embodiment of this application: Please refer to Figures 1 to 5 The press-type cosmetic container includes a box body 1 and a material holding device 2. The material holding device 2 includes a pump assembly 21 and a material holding component 22. The box body 1 is provided with a bending channel Z. The pump assembly 21 includes a first tube 210, a second tube 220, an elastic component 230, and a one-way valve 240.
[0097] The user fixes the box 1 and presses the filling component 22. The filling component 22 pushes the first tube 210 to slide along the second tube 220. The first tube 210 abuts against the elastic element 230, causing the elastic element 230 to be in a compressed state. Due to the negative pressure of the one-way valve 240, the fluid in the filling component 22 passes through the fluid channel L, the bending channel Z and the feed port K in sequence. When the fluid delivery is completed, the filling component 22 is released. Due to the elastic force of the elastic element 230, the elastic element 230 pushes the first tube 210 back to its original position. And due to the setting of the one-way valve 240, the fluid will not backflow. The user can then use a powder puff to pick up the fluid located at the feed port K and apply the powder puff to the area where makeup is needed.
[0098] Furthermore, the press-type cosmetic container also includes a lid 3, which is pivotally connected to the box 1. When the user does not need to use it, the lid 3 can be closed with the box 1. A makeup mirror 31 is provided on one side of the lid 3. When using it, the user can flip up the lid to see the area that needs to be made up.
[0099] In one embodiment of this application: Please refer to Figures 1 to 5 When the liquid in the container 22 is used up, the user can remove the container 2 from the box 1 and put a new container 2 into the installation cavity Q1 for reuse.
[0100] The above embodiments merely illustrate several implementation methods of this application, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of protection of this application. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the scope of protection of this application. Therefore, the scope of protection of this patent should be determined by the appended claims.
Claims
1. A push-type cosmetic container characterized by, The utility model relates to a box body, the box body is equipped with the material inlet along X direction, is equipped with the installation cavity in Y direction, X direction and Y direction are orthogonal arrangement; The material containing device is as a whole unit and is detachably installed in the installation cavity along the Y direction, and can be inserted or pulled out of the installation cavity to realize replacement, the material containing device includes pump body assembly and material containing piece, the pump body assembly is connected with the material containing piece, and the material containing piece is configured to contain fluid; The box body is provided with a bending channel for changing the direction of the fluid, one end of the bending channel is detachably connected with the pump body assembly, and the other end is communicated with the material inlet; The pump body assembly comprises: A first pipe body is provided with a clamping part and a first through hole, the clamping part is clamped on the material containing piece, and the first through hole is communicated with the material containing piece; A second pipe body is provided with a second through hole, one end of the second pipe body is slidably arranged in the first through hole, and the other end is detachably connected with the bending channel; An elastic member is arranged on the outer peripheral wall of the second pipe body and abuts against the first pipe body, and the elastic member is used to provide elastic force to press the material containing piece back to the original position; A one-way valve is arranged in the first pipe body; The first through hole and the second through hole jointly constitute a fluid channel, the fluid channel is communicated with the bending channel, and the one-way valve is configured to enable the fluid to flow in one direction through the fluid channel to the bending channel; A sliding member is slidably sleeved on part of the second pipe body, and the outer peripheral wall abuts against the first pipe body; A sealing ring is sleeved on part of the outer peripheral wall of the second pipe body to limit the flow of the fluid to the outer peripheral wall of the second pipe body; Wherein, the sliding member and the sealing ring are arranged along the Y direction, the sliding member abuts against the elastic member, and the material containing piece is configured to be pressed to make the fluid flow in sequence through the pump body assembly and the bending channel to the material inlet. The clamping part is configured as a convex annular ring, the elastic member is a spring, and the bending channel is configured as an L-shaped convex pipeline.
2. The press-type cosmetic container according to claim 1, characterized by, The bending channel is inserted into the second pipe body.
3. The press-type cosmetic container according to claim 1, characterized by The sliding member and the sealing ring are both configured as annular rings.
4. The press-type cosmetic container according to claim 1, characterized by, The box body comprises a box main body and a material supporting assembly, the material supporting assembly is detachably installed on the box main body along the X direction; 5. The press-type cosmetic container according to claim 1, wherein Wherein, the installation cavity is arranged on the box main body, and the material inlet and the bending channel are arranged on the material supporting assembly. The box main body leaves an installation space on the side away from the material containing piece, the bending channel is matched with the installation space and is installed in the installation space.
6. The press-type cosmetic container according to claim 5, wherein The material supporting assembly comprises:
7. The press-type cosmetic container according to claim 5, wherein A first material supporting piece, the bending channel is arranged on the first material supporting piece, and the first material supporting piece is provided with a first material supporting cavity for containing the fluid flowing through the bending channel; A second material supporting piece, the material inlet is arranged on the second material supporting piece, and the material inlet is communicated with the first material supporting cavity; Wherein, the second material supporting piece is installed on the first material supporting piece along the X direction. The first material supporting cavity comprises:
8. The press-type cosmetic container according to claim 7, wherein A flow guide groove, the flow guide groove is communicated with the bending channel. A protruding material blocking portion configured to enclose a structure and communicate with the flow guide groove for enclosing the material passing through the fluid direction to the material outlet.