Powder box pressing and material taking structure based on macromolecular elastic material

By using polymer elastic materials and lifting devices in the powder box, combined with the precise powder removal film and sealing cover design, the problems of inaccurate material removal and insufficient sealing properties of traditional powder boxes are solved, and precise powder control and product quality are achieved.

CN222898535UActive Publication Date: 2025-05-27YUYAO YINHE ARTICLES
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Patent Information

Application Number
CN202421617340.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-10
Publication Date
2025-05-27
Estimated Expiration
2034-07-10

AI Technical Summary

Technical Problem

In the process of collecting traditional powder boxes, there are problems such as waste of powder, pollution and difficult to control the amount of material, and the new pressurized material extraction structure has shortcomings in terms of sealing and material extraction.

Method used

The powder box pressing and material collection structure based on polymer elastic materials is adopted, including the shell, powder storage box, protective cover and lifting device. The base is driven to move through the threaded rod, and the through holes on the powder film can achieve accurate access to the powder, and connect it to the sealing cover and hinge to ensure good sealing performance.

Benefits of technology

Accurate control of powder is achieved, leakage and pollution during powder removal is reduced, material removal efficiency and product quality are improved, and operation difficulty is reduced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of cosmetics, in particular to a powder box pressing and material taking structure based on macromolecule elastic materials, which comprises a shell, a powder storage box and a protective cover, a cavity is arranged in the shell, an opening is arranged on the upper side wall of the shell, a lifting device is arranged in the cavity, the lifting device comprises a threaded rod, an auxiliary rod and a base, and the threaded rod is arranged on the base. A storage cavity is formed in the powder storage box, a powder taking film is arranged on the upper side wall of the powder storage box, a plurality of through holes are formed in the powder taking film, a through powder taking opening is formed in the protective cover, and a sealing cover is arranged at the powder taking opening, so that it is ensured that the amount of powder taken out every time is accurate and consistent, and the requirement of a user for accurate control over the amount of powder is met; the powder storage box can keep good sealing performance in the lifting process, leakage and pollution of powder in the taking process are effectively prevented, the quality and safety of products are guaranteed, the material taking efficiency is improved, and the operation difficulty is lowered.
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Description

Technical Field

[0001] The utility model relates to the technical field of cosmetics, and particularly relates to a powder box pressing and material taking structure based on a polymer elastic material. Background Art

[0002] As is well known, in the field of packaging and taking of cosmetics and daily necessities, as a common storage and taking container, the structural design and use convenience of a powder box have an important impact on user experience and product quality. Traditional powder boxes usually take materials by direct pouring or spooning. These methods not only easily cause waste and pollution of powder during operation, but also the amount of taken material is difficult to control, bringing inconvenience to users.

[0003] In recent years, with the development of technology, some new pressing and material taking structures have emerged on the market. They control the taking of powder through pressing operations. However, this pressing and material taking structure is not precise enough in controlling the amount of taken material, and there are certain problems in terms of sealing performance. Poor sealing performance is likely to cause the powder to be affected by moisture and polluted, thereby affecting the quality and safety of the product. Especially in a humid environment, the powder is easily affected by moisture and deteriorates, thus affecting the product quality and use experience. Content of the Utility Model

[0004] (I) Technical Problems to be Solved

[0005] Aiming at the deficiencies of the prior art, the utility model provides a powder box pressing and material taking structure based on a polymer elastic material.

[0006] (II) Technical Solutions

[0007] To achieve the above object, the present utility model provides the following technical solution: A powder box pressing and material taking structure based on a polymer elastic material, comprising a housing, a powder storage box, and a protective cover. A cavity is provided inside the housing, and the powder storage box is located within the cavity. An opening is provided on the upper side wall of the housing, and the opening communicates with the cavity. The powder storage box is adapted to and slidably connected to the opening. A lifting device is provided within the cavity. The lifting device includes a threaded rod, an auxiliary rod, and a base. The threaded rod and the auxiliary rod are arranged in parallel at both ends of the powder storage box. The threaded rod penetrates through the upper side wall of the housing. The base is connected to the bottom wall of the powder storage box and is slidably connected to the inner side wall of the cavity. The threaded rod penetrates through one end of the base and is threadedly connected thereto. The auxiliary rod penetrates through the other end of the base and is slidably connected thereto. A storage cavity is provided inside the powder storage box, and a powder taking film is provided on the upper side wall of the powder storage box. A plurality of through holes are provided on the powder taking film. The protective cover is on the upper side wall of the housing and is rotatably connected to the housing. The threaded rod is connected to the protective cover. A through powder taking port is provided on the protective cover, and a sealing cover is provided at the powder taking port. The sealing cover is connected to the powder taking port through a hinge.

[0008] To facilitate opening or closing the sealing cover, the present utility model is improved as follows: A groove is provided at one end of the sealing cover away from the hinge. A spring, an auxiliary block, and a switch rod are provided within the groove. One end of the spring is connected to the side wall of the groove, and the other end is connected to the auxiliary block. The auxiliary block is on one side of the groove and is slidably connected thereto. The switch rod is connected to the end of the auxiliary block away from the spring. A switch hole is provided on the side wall of the protective cover, and the switch rod penetrates through the switch hole and is slidably connected thereto.

[0009] To facilitate holding and pushing the switch rod, the present utility model is improved as follows: A sliding hole is provided on the upper side wall of the groove. A pushing block is provided at the upper end of the auxiliary block, and the pushing block penetrates through the sliding hole and is slidably connected thereto.

[0010] To facilitate replacing the powder storage box, the present utility model is improved as follows: The base and the powder storage box are connected by an adhesive.

[0011] To improve its elasticity and wear resistance, the present utility model is improved as follows: The powder taking film is made of a polymer elastic material.

[0012] To facilitate observing the remaining amount of cosmetic powder, the present utility model is improved as follows: The housing and the powder storage box are made of a transparent material.

[0013] To increase the stability of the powder storage box on a plane such as a tabletop, the present utility model is improved as follows: An anti-slip pad is provided at the bottom of the housing.

[0014] In order to facilitate the limitation of the spring, the present utility model is improved as follows: A through telescopic rod is arranged inside the spring, and the telescopic rod penetrates through the spring.

[0015] (III) Beneficial effects

[0016] Compared with the prior art, the present utility model provides a powder box pressing and taking structure based on a polymer elastic material, having the following beneficial effects:

[0017] This powder box pressing and taking structure based on a polymer elastic material is provided with a powder taking film, enabling users to easily control the powder taking amount without complicated steps or tools. It is provided with a lifting device, and the threaded rod drives the base to move, allowing the powder storage box to be accurately lifted. In cooperation with the through holes on the powder taking film, it ensures that the powder amount taken out each time is accurate and consistent, meeting the user's precise control requirement for the powder amount. Moreover, under the action of the protective cover during the lifting process of the powder storage box, it can maintain good sealing performance, reducing the exposure time during the powder taking process, effectively preventing powder leakage and pollution during the taking process, ensuring the quality and safety of the product. It not only improves the taking efficiency but also reduces the operation difficulty. The powder taking film made of a polymer elastic material not only has good elasticity and corrosion resistance but also can ensure excellent sealing performance after multiple presses, guaranteeing the product quality. The sealing cover is connected to the powder taking port through a hinge, facilitating users to easily open or close it. Description of the drawings

[0018] Figure 1 It is a schematic diagram of the overall structure of the present utility model from the first perspective;

[0019] Figure 2 It is a schematic diagram of the structure of the present utility model from the second perspective;

[0020] Figure 3 It is a schematic diagram of the internal cross-section of the housing of the structure of the present utility model;

[0021] Figure 4 It is an exploded schematic diagram of the sealing cover and the protective cover of the structure of the present utility model.

[0022] In the figure: 1. Housing; 2. Protective cover; 3. Hinge; 4. Push block; 5. Sealing cover; 6. Powder taking film; 7. Auxiliary block; 8. Switch rod; 9. Threaded rod; 10. Auxiliary rod; 11. Base; 12. Spring; 13. Telescopic rod; 14. Powder storage box. Detailed implementation manners

[0023] The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0024] Please refer to Figures 1-4 , a powder box pressing and material-taking structure based on a polymer elastic material, comprising a housing 1, a powder storage box 14 and a protective cover 2. A cavity is provided inside the housing 1, and the powder storage box 14 is located in the cavity. An opening is provided on the upper side wall of the housing 1, and the opening communicates with the cavity. The powder storage box 14 is adapted to and slidably connected to the opening. A lifting device is provided in the cavity. The lifting device includes a threaded rod 9, an auxiliary rod 10 and a base 11. The threaded rod 9 and the auxiliary rod 10 are arranged in parallel at both ends of the powder storage box 14. The threaded rod 9 penetrates through the upper side wall of the housing 1. The base 11 is connected to the bottom wall of the powder storage box 14, and the base 11 is slidably connected to the inner side wall of the cavity. The threaded rod 9 penetrates through one end of the base 11 and is threadedly connected thereto. The auxiliary rod 10 penetrates through the other end of the base 11 and is slidably connected thereto. A storage cavity is provided inside the powder storage box 14. A powder-taking film 6 is provided on the upper side wall of the powder storage box 14. A plurality of through holes are provided on the powder-taking film 6. The protective cover 2 is on the upper side wall of the housing 1, and the protective cover 2 is rotatably connected to the housing 1. The threaded rod 9 is connected to the protective cover 2. A through powder-taking port is provided on the protective cover 2, and a sealing cover 5 is provided at the powder-taking port. The sealing cover 5 is connected to the powder-taking port through a hinge 3. A groove is provided at one end of the sealing cover 5 away from the hinge 3. A spring 12, an auxiliary block 7 and a switch rod 8 are provided in the groove. One end of the spring 12 is connected to the side wall of the groove, and the other end is connected to the auxiliary block 7. The auxiliary block 7 is on one side of the groove and is slidably connected thereto. The switch rod 8 is connected to the end of the auxiliary block 7 away from the spring 12. A switch hole is provided on the side wall of the protective cover 2, and the switch rod 8 penetrates through the switch hole and is slidably connected thereto. A sliding hole is provided on the upper side wall of the groove. A pushing block 4 is provided at the upper end of the auxiliary block 7. The pushing block 4 penetrates through the sliding hole and is slidably connected thereto. The powder-taking film 6 is made of a polymer elastic material. A through telescopic rod 13 is provided inside the spring 12, and the telescopic rod 13 penetrates through the spring 12.

[0025] During use, when powder extraction is required, rotate the protective cover 2. The protective cover 2 rotates relative to the outer shell 1. The protective cover 2 drives the threaded rod 9 to rotate. The base 11 moves as the threaded rod 9 rotates, driving the powder storage box 14 to move. The powder storage box 14 can be lifted up. The rising height of the powder storage box 14 is controlled by rotating the protective cover 2, thereby adjusting the powder extraction amount. When the height of the required powder extraction amount is reached, stop rotating the protective cover 2. At this time, it is convenient to extract powder. Then, toggle the push block 4, the spring 12 contracts, the telescopic rod 13 shortens, and the auxiliary block 7 drives the switch rod 8 to move as the spring 12 contracts. The switch rod 8 disengages from the switch hole, and the sealing cover 5 is opened through the hinge 3. The powder extraction film 6 is exposed. Press the powder extraction film 6 with a powder puff to extract powder. When pressing the powder extraction film 6, it deforms under the action of an external force. The upper side wall of the outer shell 1 can limit the pressing force and quickly return to its original state after the external force disappears. This process of deformation and recovery ensures that the powder can overflow smoothly while maintaining a certain seal. After use, align the switch rod 8 with the switch hole, release the push block 4, the spring 12 extends, and the auxiliary block 7 and the switch rod 8 move until the switch rod 8 passes through the switch hole for fixation, facilitating sealing.

[0026] During actual use, it is necessary to facilitate the replacement of the powder storage box 14. To meet the above requirements, in this embodiment, the base 11 and the powder storage box 14 are connected by adhesive.

[0027] During actual use, it is necessary to facilitate the user to clearly see the remaining amount of cosmetic powder. To meet the above requirements, in this embodiment, the outer shell 1 and the powder storage box 14 are made of transparent materials.

[0028] During actual use, it is necessary to increase the stability of the powder storage box 14 on a plane such as a table and prevent it from slipping. To meet the above requirements, in this embodiment, an anti-slip pad is provided at the bottom of the outer shell 1.

[0029] To illustrate in detail the possible application scenarios, technical principles, implementable specific solutions, achievable purposes and effects of this application, the following is a detailed description in combination with the listed specific embodiments and accompanied by drawings. The embodiments described herein are only used to more clearly illustrate the technical solutions of this application, so they are only examples and cannot be used to limit the protection scope of this application.

[0030] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A powder box pressing material extraction structure based on polymer elastic material, comprising a housing (1), a powder storage box (14) and a protective cover (2), characterized in that: The shell (1) is provided with a cavity, the powder storage box (14) is in the cavity, the upper side wall of the shell (1) is provided with an opening, the opening is communicated with the cavity, the powder storage box (14) is adapted to and slidably connected with the opening, a lifting device is provided in the cavity, the lifting device comprises a threaded rod (9), an auxiliary rod (10) and a base (11), the threaded rod (9) and the auxiliary rod (10) are arranged in parallel at both ends of the powder storage box (14), the threaded rod (9) passes through the upper side wall of the shell (1), the base (11) is connected to the bottom wall of the powder storage box (14), the base (11) is slidably connected to the inner side wall of the cavity, and the threaded rod (9) passes through one end of the base (11) and is threadedly connected thereto, the auxiliary rod (10) passes through the other end of the base (11) and is slidably connected thereto, a storage cavity is arranged in the powder storage box (14), a powder collection membrane (6) is arranged on the upper side wall of the powder storage box (14), a plurality of through holes are arranged on the powder collection membrane (6), the protective cover (2) is on the upper side wall of the shell (1), the protective cover (2) is rotatably connected to the shell (1), the threaded rod (9) is connected to the protective cover (2), a powder collection port is arranged through the protective cover (2), a sealing cover (5) is arranged at the powder collection port, and the sealing cover (5) is connected to the powder collection port via a hinge (3).

2. The powder box pressing material extraction structure based on polymer elastic material according to claim 1, characterized in that: The sealing cover (5) is provided with a groove at one end away from the hinge (3), and a spring (12), an auxiliary block (7) and a switch rod (8) are provided in the groove. One end of the spring (12) is connected to the side wall of the groove, and the other end is connected to the auxiliary block (7). The auxiliary block (7) is on one side of the groove and is slidably connected to the groove. The switch rod (8) is connected to the end of the auxiliary block (7) away from the spring (12). A switch hole is provided on the side wall of the protective cover (2), and the switch rod (8) passes through the switch hole and is slidably connected to the switch hole.

3. The powder box pressing material extraction structure based on polymer elastic material according to claim 2, characterized in that: A sliding hole is provided on the upper side wall of the groove, and a pushing block (4) is provided on the upper end of the auxiliary block (7). The pushing block (4) passes through the sliding hole and is slidably connected thereto.

4. The powder box pressing material extraction structure based on polymer elastic material according to claim 3, characterized in that: The base (11) and the powder storage box (14) are connected by adhesive.

5. The powder box pressing material extraction structure based on polymer elastic material according to claim 4, characterized in that: The powder extracting membrane (6) is made of a polymer elastic material.

6. The powder box pressing material extraction structure based on polymer elastic material according to claim 5, characterized in that: The housing (1) and the powder storage box (14) are made of transparent material.

7. The powder box pressing material extraction structure based on polymer elastic material according to claim 6, characterized in that: An anti-slip pad is provided at the bottom of the housing (1).

8. The powder box pressing material extraction structure based on polymer elastic material according to claim 7, characterized in that: A telescopic rod (13) is arranged inside the spring (12), and the telescopic rod (13) passes through the spring (12).