Texturing apparatus

By designing the opening and closing components of the texture processing device to apply a pulling force to the texture mold, making it abut against the side of the terminal device, the problem of not being able to perform texture processing on the side in the existing technology is solved, and the appearance of the terminal device is improved.

CN224576402UActive Publication Date: 2026-07-31BEIJING XIAOMI MOBILE SOFTWARE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
BEIJING XIAOMI MOBILE SOFTWARE CO LTD
Filing Date
2025-07-22
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

Existing technologies cannot process textures on the sides of terminal devices, which limits the improvement of the appearance of terminal devices.

Method used

A texture processing device is designed, including a base, a positioning component, a texture mold, and an opening and closing component. The opening and closing component applies a pulling force to the texture mold to expand the area enclosed by the mold, so that the side of the terminal device abuts against the inner side of the texture mold, thereby imprinting a texture pattern on the side.

Benefits of technology

It enables texture processing on the sides of terminal devices, enhancing their appearance.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application discloses a texture processing apparatus, belonging to the field of texture processing technology. The texture processing apparatus includes: a base plate, a positioning component, a texture mold, and an opening / closing component. When texture processing is required on a terminal device, the opening / closing component can apply a pulling force to the texture mold to expand the area enclosed by the texture mold, allowing the terminal device to pass through the area enclosed by the texture mold and be placed on the bearing surface of the positioning component. After the terminal device is placed on the bearing surface of the positioning component, the opening / closing component can remove the pulling force from the texture mold, allowing the texture mold to return to its initial state. After the texture mold returns to its initial state, the inner surface of the texture mold can abut against the side of the terminal device, allowing the texture pattern on the texture mold to be imprinted on the side of the terminal device. Thus, this texture processing apparatus can achieve texture processing on the side of the terminal device, improving the appearance of the terminal device.
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Description

Technical Field

[0001] This application relates to the field of texture processing technology, and in particular to a texture processing apparatus. Background Technology

[0002] With the development of terminal devices, their use in people's lives is becoming increasingly widespread. Based on market demand, the appearance of terminal devices influences users' purchasing decisions; therefore, improving the appearance of terminal devices is necessary to enhance the market competitiveness of electronic products.

[0003] Currently, the appearance of terminal devices is usually improved by texturing the outer surface of the terminal device to create different shaped texture patterns.

[0004] However, it is currently impossible to process textures on the sides of terminal devices, which limits the improvement of the appearance of terminal devices. Utility Model Content

[0005] This application provides a texture processing apparatus. It solves the problem that texture processing cannot be performed on the sides of existing terminal devices. The technical solution is as follows:

[0006] On the one hand, a texture processing device is provided, including: a base, a positioning component, a texture mold, and an opening and closing component;

[0007] The positioning component is fixed on the base, and the side of the positioning component facing away from the base is the bearing surface, which is used to support the terminal equipment to be processed.

[0008] The texture mold is located on the side of the positioning component away from the base. After the positioning component carries the terminal device, the texture mold is distributed around the terminal device (010), and the inner side of the texture mold has a texture pattern.

[0009] The opening and closing assembly is fixed to the base and connected to the texture mold. The opening and closing assembly is used to apply a pulling force to the texture mold to expand the area enclosed by the texture mold.

[0010] When the texture processing apparatus of this application is required to texture a terminal device, the opening and closing component can apply a pulling force to the texture mold to expand the area enclosed by the texture mold, allowing the terminal device to pass through the area enclosed by the texture mold and be placed on the bearing surface of the positioning component. After the terminal device is placed on the bearing surface of the positioning component, the opening and closing component can stop applying a pulling force to the texture mold, allowing the texture mold to return to its initial state. After the texture mold returns to its initial state, the inner surface of the texture mold can abut against the side of the terminal device, allowing the texture pattern on the texture mold to be imprinted on the side of the terminal device. In this way, the texture processing apparatus of this application can achieve texture processing on the side of the terminal device, improving the appearance of the terminal device.

[0011] In a possible implementation, the opening and closing assembly includes: a driving component, and an opening and closing component connected to the driving component; the driving component is fixed to the base plate, and the opening and closing component is connected to the texture mold;

[0012] The driving component is used to drive the opening and closing component to move away from the area enclosed by the opening and closing component in a direction parallel to the bearing surface.

[0013] In this way, as the opening and closing component moves away from the area enclosed by the opening and closing component, the texture mold connected to the opening and closing component can also move away from the area enclosed by the texture mold, so as to expand the area enclosed by the texture mold.

[0014] In a possible implementation, the opening and closing component includes: a plurality of separately arranged pulling parts; the plurality of pulling parts are distributed around the texture mold and are all connected to the texture mold;

[0015] The opening and closing assembly includes a plurality of driving components, and the plurality of driving components are connected one-to-one with the plurality of pulling parts;

[0016] Each of the driving components is used to drive the corresponding pulling part to move.

[0017] In this way, as multiple driving components simultaneously drive the corresponding multiple pulling parts to move, the opening and closing components can move away from the area enclosed by the opening and closing components, thereby driving the texture mold to move away from the area enclosed by the texture mold.

[0018] In a possible implementation, each of the pulling parts includes: a first pulling cover plate and a second pulling cover plate distributed in a direction perpendicular to the bearing surface;

[0019] The first pull-out cover plate is connected to the side of the texture mold facing the base, and the second pull-out cover plate is connected to the side of the texture mold away from the base;

[0020] In this configuration, both the first and second pull-out cover plates in the pull section are connected to the corresponding drive components.

[0021] In this way, the texture mold can be stretched on both sides of the bearing surface perpendicular to the positioning component, ensuring that the area enclosed by the texture mold can be expanded.

[0022] In a possible implementation, the first pull-out cover plate includes: a first pull-out section, a second pull-out section, and a first connecting section; the ends of the first pull-out section, the ends of the second pull-out section, and the ends of the first connecting section are connected to each other;

[0023] The second pull-out cover plate includes: a third pull-out section, a fourth pull-out section, and a second connecting section; the ends of the third pull-out section, the fourth pull-out section, and the second connecting section are connected to each other;

[0024] Wherein, the first stretching segment and the third stretching segment both extend along the first direction, the second stretching segment and the fourth stretching segment both extend along the second direction, and the extension directions of the first connecting segment and the second connecting segment both intersect with the first direction and both intersect with the second direction;

[0025] The first connecting segment and the second connecting segment in the same pulling part are both connected to the corresponding driving component; the driving component is used to drive the corresponding pulling part to move along the extension direction of the first connecting segment and the second connecting segment.

[0026] In a possible implementation, each of the pulling parts further includes: a connector; one end of the connector is connected to the first connecting segment, and the other end is connected to the second connecting segment;

[0027] The connecting member in the pulling part is connected to the corresponding driving component.

[0028] In one possible implementation, the base has a mounting groove on the side facing the positioning component, and guide grooves communicating with the mounting groove at each corner position of the mounting groove.

[0029] The positioning component is fixed in the mounting groove, and the first pulling segments and the second pulling segments of the plurality of first pulling cover plates are all located in the mounting groove and distributed around the positioning component; the first connecting segment is located in the guide groove.

[0030] In a possible implementation, the first pull cover plate has a plurality of first snap-fit ​​protrusions on the side facing the texture mold, and the texture mold has a plurality of first snap-fit ​​grooves on the side facing the first pull cover plate, and the plurality of first snap-fit ​​protrusions snap into the plurality of first snap-fit ​​grooves.

[0031] And / or, the second pull cover plate has a plurality of second snap-fit ​​protrusions on the side facing the texture mold, and the texture mold has a plurality of second snap-fit ​​grooves on the side facing the second pull cover plate, and the plurality of second snap-fit ​​protrusions snap into the plurality of second snap-fit ​​grooves.

[0032] In a possible implementation, the driving component includes: a driving component body, a paddle, and an abutment post;

[0033] Both the driving component body and the abutment post are fixedly connected to the base plate;

[0034] The first end of the paddle is connected to the driving component body, the second end of the paddle is connected to the pulling part, and the portion of the paddle located between the first end and the second end abuts against the abutting post.

[0035] The driving component body is used to drive the first end of the paddle to move, so as to drive the paddle to rotate around the abutment post, and then drive the pulling part to move through the second end of the paddle.

[0036] In a possible implementation, the distance between the first end of the paddle and the abutment post is greater than the distance between the second end of the paddle and the abutment post.

[0037] In this way, the driving component body only needs to move the first end of the lever a small distance to move the second end of the lever a larger distance, thereby driving the pulling part to move a larger distance, ensuring that the area enclosed by the opening and closing components can be expanded.

[0038] In a possible implementation, the texture processing device further includes: a plurality of light sources fixed on the base plate, the plurality of light sources being distributed around the texture mold;

[0039] The texture mold is a frame structure made of transparent material.

[0040] In a possible implementation, the texture processing apparatus further includes: a protective section and a protective cover plate;

[0041] The protective part is frame-shaped and fixed to the base; the positioning component, texture mold, opening and closing component and the multiple light sources are all located within the area enclosed by the protective part;

[0042] The protective cover is connected to the side of the protective part away from the base, and the protective cover has a hollow area; the orthographic projection of the positioning component on the base is located within the orthographic projection of the hollow area on the base.

[0043] In this way, the base plate, protective section, and protective cover can protect the positioning component, texture mold, opening and closing component, and multiple light sources. Furthermore, the bearing surface of the positioning component can be exposed through the cutout area O of the protective cover, allowing the terminal device to be placed on the bearing surface of the positioning component through the cutout area of ​​the protective cover, or removed from the bearing surface of the positioning component through the cutout area of ​​the protective cover. Attached Figure Description

[0044] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0045] Figure 1 This is a schematic diagram of a texture processing device in the open state;

[0046] Figure 2 This is a schematic diagram of a texture processing device in a closed state;

[0047] Figure 3 This is an exploded view of a texture processing apparatus provided in an embodiment of this application;

[0048] Figure 4 This is a partial structural schematic diagram of a texture processing apparatus provided in an embodiment of this application;

[0049] Figure 5 This is a partial structural schematic diagram of another texture processing apparatus provided in an embodiment of this application;

[0050] Figure 6 This is a partial structural schematic diagram of another texture processing apparatus provided in the embodiments of this application;

[0051] Figure 7 This is a schematic diagram of the structure of an opening and closing component provided in an embodiment of this application;

[0052] Figure 8 This is a partial structural schematic diagram of another texture processing apparatus provided in the embodiments of this application;

[0053] Figure 9 This is an exploded view of a texture processing apparatus provided in an embodiment of this application;

[0054] Figure 10This is a partial structural schematic diagram of a texture processing apparatus provided in another embodiment of this application;

[0055] Figure 11 This is a partial structural schematic diagram of another texture processing apparatus provided in another embodiment of this application;

[0056] Figure 12 This is a schematic diagram of the structure of a texture processing device provided in an embodiment of this application. Detailed Implementation

[0057] To make the objectives, technical solutions, and advantages of this application clearer, the embodiments of this application will be described in further detail below with reference to the accompanying drawings.

[0058] Please refer to the relevant technologies. Figure 1 and Figure 2 , Figure 1 This is a schematic diagram of a texture processing device in the open state. Figure 2 This is a schematic diagram of a texture processing device in a closed state. The texture processing device may include: a positioning component 01, a texture mold 02, a mold fixing component 03, and a light source 04. The positioning component 01, texture mold 02, mold fixing component 03, and light source 04 in the texture processing device can be arranged sequentially. The mold fixing component 03 in the texture processing device can drive the texture mold 02 to move in the direction toward the positioning component 01 to open the texture processing device, or the mold fixing component 03 can drive the texture mold 02 to move in the direction away from the positioning component 01 to close the texture processing device.

[0059] like Figure 1 and Figure 2 As shown, the positioning component 01 may have a positioning boss 011 on the side facing the texture mold 02, and the positioning boss 011 may be used to support the terminal device 010 to be processed. The texture mold 02 may be distributed correspondingly to the positioning boss 011, and the side of the texture mold 02 facing the positioning component 01 may have a texture pattern.

[0060] like Figure 1As shown, when the texture processing device is in the open state, there is a certain distance between the positioning component 01 and the texture mold 02, and the terminal device 010 to be processed can be placed on the positioning boss 011 of the positioning component 01. After the terminal device 010 to be processed is supported on the positioning boss 011, the mold fixing component 03 can drive the texture mold 02 to move towards the positioning component 01 until the texture processing device is in the closed state. The side of the texture mold 02 with the texture pattern contacts the terminal device 010 to be processed, so that the corresponding texture pattern can be imprinted on the terminal device 010 to be processed. After the corresponding texture pattern is imprinted on the terminal device 010 to be processed, the light source 04 can emit light to solidify the imprinted texture pattern, completing the texture pattern processing. After the texture pattern processing is completed, the mold fixing component 03 can drive the texture mold 02 away from the positioning component 01, so that the texture processing device is in the open state, there is a certain distance between the positioning component 01 and the texture mold, and the terminal device with the imprinted texture pattern can be removed.

[0061] Currently, texture processing devices in related technologies can generally only perform texture processing on a plane parallel to the display surface in the terminal device, and are not suitable for performing texture processing on a plane perpendicular to the display surface in the terminal device.

[0062] For example, in the terminal device 010 to be processed, a texture can be processed on the middle frame of the terminal device to improve the appearance of the terminal device. Here, the middle frame can have a base plate and side plates connected to the four sides of the base plate. The surface of the base plate of the middle frame is parallel to the display surface of the terminal device, and the surface of the side plates of the middle frame is perpendicular to the display surface of the terminal device. The texture processing device in the related art can process the texture on the base plate of the middle frame. Specifically, the side of the base plate of the middle frame that is opposite to the side that needs to be textured can be located on the positioning protrusion 011 of the positioning component 01. The texture mold 02 can abut against the side of the base plate that needs to be textured to imprint the texture pattern on the base plate.

[0063] However, when using the texture processing apparatus in the related technology to perform texture processing on the side panel of the mid-frame, the side of the side panel to be textured faces the texture mold 02, while the side of the side panel opposite to the side to be textured cannot contact the positioning protrusion 011 of the positioning component 01. This results in the side panel of the mid-frame being more prone to deformation after the texture mold 02 comes into contact with the side panel of the mid-frame. Therefore, the texture processing apparatus in the related technology is not suitable for performing texture processing on the side panel of the mid-frame.

[0064] This application provides a texture processing apparatus; please refer to... Figure 3 , Figure 3This is an exploded view of a texture processing apparatus provided in an embodiment of this application. The texture processing apparatus may include: a base 100, a positioning component 200, a texture mold 300, and an opening / closing component 400. The positioning component 200 in the texture processing apparatus can be fixed on the base 100. The side of the positioning component 200 facing away from the base 100 can be a bearing surface P, and the bearing surface P of the positioning component 200 can be used to support the terminal device 010 to be processed.

[0065] The texture mold 300 in the texture processing apparatus can be located on the side of the positioning component 200 away from the base 100. After the terminal device 010 is supported on the bearing surface P of the positioning component 200, the texture mold 300 can be distributed around the terminal device 010, and the inner surface of the texture mold 300 can have a texture pattern. Here, the texture mold can be frame-shaped, so that after the terminal device 010 is supported on the bearing surface P of the positioning component 200 in the texture processing apparatus, the terminal device 010 can be located within the area enclosed by the texture mold 300.

[0066] Here, the texture pattern on the inner surface of the texture mold 300 can be of various types. For example, the texture pattern on the texture mold 300 can be one of the following texture patterns: damask texture, water ripple texture, dot matrix texture, or glitter sand texture. It can also be a superposition combination of at least two texture patterns such as damask texture, water ripple texture, dot matrix texture, or glitter sand texture. This application embodiment does not specifically limit this.

[0067] The opening / closing component 400 in the texture processing apparatus can be fixed to the base 100 and can be connected to the texture mold 300. The opening / closing component 400 can be used to apply a pulling force to the texture mold 300 to expand the area enclosed by the texture mold 300. Here, after the area enclosed by the texture mold 300 is expanded, the bearing surface P of the positioning component 200 can be fully exposed, that is, the bearing surface P of the positioning component 200 will not be obstructed by the texture mold 300.

[0068] It should be noted that the texture mold 300 in the texture processing device can have a certain degree of elasticity to ensure that the area enclosed by the texture mold 300 can expand due to the pulling force applied by the opening and closing component 400. Furthermore, the elastic texture mold 300 can generate elastic force during the pulling process by the opening and closing component 400, and after the opening and closing component 400 stops applying pulling force, the texture mold 300 can return to its initial state without being stretched under its own elastic force. Here, the texture mold 300 in the texture processing device can be made of silicone material.

[0069] In this application, after the terminal device 010 is mounted on the bearing surface P of the positioning component 200, the bearing surface P of the positioning component 200 is parallel to the display surface of the terminal device 010. Therefore, the side of the terminal device 010 located on the bearing surface P of the positioning component 200 can be distributed opposite to the inner side of the texture mold 300.

[0070] When the terminal device 010 needs to be textured using the texture processing apparatus of this application, the opening and closing component 400 can apply a pulling force to the texture mold 300 to expand the area enclosed by the texture mold 300, allowing the terminal device 010 to pass through the area enclosed by the texture mold 300 and be placed on the bearing surface P of the positioning component 200. After the terminal device 010 is placed on the bearing surface P of the positioning component 200, the opening and closing component 400 can stop applying a pulling force to the texture mold 300, allowing the texture mold 300 to return to its initial state. After the texture mold 300 returns to its initial state, the inner surface of the texture mold 300 can abut against the side of the terminal device 010 located on the bearing surface P of the positioning component 200, allowing the texture pattern on the texture mold 300 to be imprinted on the side of the terminal device 010. Thus, the texture processing apparatus of this application can achieve texture processing on the side of the terminal device 010.

[0071] After the texture pattern is imprinted on the side of the terminal device 010 by the texture mold 300, and the texture pattern on the side of the terminal device 010 is processed, the opening and closing component 400 can apply a pulling force to the texture mold 300 to expand the area enclosed by the texture mold 300, so that the terminal device 010 after the texture processing is completed can be taken out through the area enclosed by the texture mold 300.

[0072] In summary, this application provides a texture processing apparatus, including a base plate, a positioning component, a texture mold, and an opening / closing component. When a terminal device needs to be textured using this apparatus, the opening / closing component can apply a pulling force to the texture mold to expand the area enclosed by the texture mold, allowing the terminal device to pass through the area enclosed by the texture mold and be placed on the support surface of the positioning component. After the terminal device is placed on the support surface of the positioning component, the opening / closing component can stop applying a pulling force to the texture mold, allowing the texture mold to return to its initial state. After the texture mold returns to its initial state, the inner surface of the texture mold can abut against the side of the terminal device, allowing the texture pattern on the texture mold to be imprinted on the side of the terminal device. Thus, the texture processing apparatus of this application can achieve texture processing on the side of the terminal device, improving the appearance of the terminal device.

[0073] It should be noted that the texture processing apparatus in this application can process textures on the side of the mid-frame in a terminal device, such as a mobile phone, tablet computer, or laptop computer. Furthermore, the texture processing apparatus in this application can also process textures on automotive interior trim parts.

[0074] Please refer to the possible implementation methods. Figure 4 , Figure 4 This is a partial structural schematic diagram of a texture processing apparatus provided in an embodiment of this application. The opening and closing component 400 in the texture processing apparatus may include: a driving component 401, and an opening and closing component 402 connected to the driving component 401. The driving component 401 in the opening and closing component 400 may be fixed on the base plate 100, and the opening and closing component 402 in the opening and closing component 400 may be connected to the texture mold 300. Here, the opening and closing component 402 in the opening and closing component 400 may also be frame-shaped to ensure that the frame-shaped opening and closing component 402 can be connected to the frame-shaped texture mold 300.

[0075] The driving component 401 in the opening and closing assembly 400 can be used to drive the opening and closing component 402 to move away from the area enclosed by the opening and closing component 402 in a direction parallel to the bearing surface P of the positioning component 200.

[0076] Thus, as the opening and closing component 402 moves away from the area enclosed by the opening and closing component 402, the texture mold 300 connected to the opening and closing component 402 can also move away from the area enclosed by the texture mold 300, thereby expanding the area enclosed by the texture mold 300.

[0077] It should be noted that the shape of the area enclosed by the frame-shaped opening and closing component 402 can be similar to the shape of the area enclosed by the frame-shaped texture mold 300, and can also be similar to the shape of the orthographic projection of the terminal device 010 located on the positioning component 200 onto the base plate 100. For example, if the orthographic projection of the terminal device 010 located on the positioning component 200 onto the base plate 100 can be rectangular, then the shape of the area enclosed by the frame-shaped texture mold 300 can also be rectangular, and the shape of the area enclosed by the frame-shaped opening and closing component 402 can also be rectangular.

[0078] It should also be noted that the connection positions of the opening and closing component 402 and the texture mold 300 can be evenly distributed around the area enclosed by the opening and closing component 402 and the area enclosed by the texture mold 300. This ensures that when the opening and closing component 402 moves away from the area enclosed by the opening and closing component 402 in a direction parallel to the bearing surface P of the positioning component 200, the opening and closing component 402 can evenly pull the texture mold 300, so that the area enclosed by the texture mold 300 can expand evenly in all directions.

[0079] Please refer to the possible implementation methods. Figure 5 , Figure 5 This is a partial structural schematic diagram of another texture processing apparatus provided in an embodiment of this application. The opening and closing component 402 in the opening and closing assembly 400 may include a plurality of separately arranged pulling parts 402a. The plurality of pulling parts 402a of the opening and closing component 402 may be distributed around the texture mold 300, and each may be connected to the texture mold 300.

[0080] The opening / closing assembly 400 may include multiple driving components 401, each of which can be connected to a corresponding pulling part 402a. Each driving component 401 can drive the corresponding pulling part 402a to move. The area enclosed by the separately arranged pulling parts 402a is the area enclosed by the opening / closing assembly 402. Each driving component 401 can drive the corresponding pulling part 402a to move away from the area enclosed by the pulling parts 402a. Thus, while the multiple driving components 401 simultaneously drive the corresponding pulling parts 402a to move, the opening / closing assembly 402 can move away from the area enclosed by the opening / closing assembly 402, thereby causing the texture mold 300 to move away from the area enclosed by the texture mold 300.

[0081] It should be noted that the multiple pulling parts 402a of the opening and closing component 402 can be evenly distributed around the texture mold 300. In this way, when multiple driving components 401 simultaneously drive the corresponding multiple pulling parts 402a to move, the opening and closing component 402 can evenly pull the texture mold 300, so that the area enclosed by the texture mold 300 can expand evenly in all directions.

[0082] Among the possible implementations, such as Figure 6 As shown, Figure 6 This is a partial structural schematic diagram of another texture processing apparatus provided in this application embodiment. Each pulling portion 402a of the opening and closing component 402 in the opening and closing assembly 400 may include: a first pulling cover plate 4021 and a second pulling cover plate 4022 distributed in a direction perpendicular to the bearing surface P of the positioning component 200. The first pulling cover plate 4021 in the pulling portion 402a can be connected to the side of the texture mold 300 facing the base 100, and the second pulling cover plate 4022 in the pulling portion 402a can be connected to the side of the texture mold 300 away from the base 100. Both the first pulling cover plate 4021 and the second pulling cover plate 4022 in the pulling portion 402a can be connected to the corresponding driving component 401.

[0083] In this way, the driving component 401 can drive the first pulling cover plate 4021 and the second pulling cover plate 4022 in the corresponding pulling part 402a to move simultaneously, so that the first pulling cover plate 4021 pulls the texture mold 300 toward the base 100, and the second pulling cover plate 4022 pulls the texture mold 300 away from the base 100. This ensures that both sides of the texture mold 300, which are arranged opposite each other on the bearing surface P perpendicular to the positioning component 200, can be pulled, thereby ensuring that the area enclosed by the texture mold 300 can be expanded.

[0084] Please refer to the possible implementation methods. Figure 7 , Figure 7 This is a schematic diagram of the structure of an opening and closing component provided in an embodiment of this application. The first pull cover plate 4021 of the pull portion 402a in the opening and closing component 402 may include: a first pull segment A1, a second pull segment A2, and a first connecting segment B1. The ends of the first pull segment A1, the second pull segment A2, and the first connecting segment B1 in the first pull cover plate 4021 are connected.

[0085] The second pull cover plate 4022 of the pull portion 402a in the opening and closing component 402 may include: a third pull segment A3, a fourth pull segment A4, and a second connecting segment B2. The ends of the third pull segment A3, the fourth pull segment A4, and the second connecting segment B2 in the second pull cover plate 4022 are connected to each other.

[0086] The first pulling segment A1 in the first pulling cover plate 4021 and the third pulling segment A3 in the second pulling cover plate 4022 can both extend along the first direction X. The second pulling segment A2 in the first pulling cover plate 4021 and the fourth pulling segment A4 in the second pulling cover plate 4022 can both extend along the second direction Y. The extension directions of the first connecting segment B1 in the first pulling cover plate 4021 and the second connecting segment B2 in the second pulling cover plate 4022 can both intersect with the first direction X and the second direction Y.

[0087] The first connecting segment B1 of the first pulling cover plate 4021 and the second connecting segment B2 of the second pulling cover plate 4022 in the same pulling part 402a can both be connected to the corresponding driving component 401. The driving component 401 can be used to drive the corresponding pulling part 402a to move along the extension direction of the first connecting segment B1 and the second connecting segment B2.

[0088] Here, since the driving component 401 is connected to the first connecting segment B1 of the first pulling cover plate 4021 and the second connecting segment B2 of the second pulling cover plate 4022 in the corresponding pulling part 402a, the driving component 401 pulls the first connecting segment B1 and the second connecting segment B2 along the directions of the first connecting segment B1 and the second connecting segment B2. Furthermore, since the extending directions of the first connecting segment B1 and the second connecting segment B2 intersect with the first direction X and the second direction Y, the pulled first connecting segment B1 can simultaneously drive the first pulling segment A1 to move along the second direction Y, and the second pulling segment A2 to move along the first direction X. Similarly, the pulled second connecting segment B2 can simultaneously drive the third pulling segment A3 to move along the second direction Y, and the fourth pulling segment A4 to move along the first direction X.

[0089] It should be noted that the first pulling segment A1 and the second pulling segment A2 in the first pulling cover plate 4021 can both be connected to the side of the texture mold 300 facing the base plate 100, and the third pulling segment A3 and the fourth pulling segment A4 in the second pulling cover plate 4022 can both be connected to the side of the texture mold 300 away from the base plate 100. Thus, after the first pulling segment A1 and the third pulling segment A3 move along the second direction Y, and the second pulling segment A2 and the fourth pulling segment A4 move along the first direction X, the texture mold 300 can be pulled, and the area enclosed by the texture mold 300 can be expanded.

[0090] Among the possible implementations, such as Figure 6 and Figure 7 As shown, each pulling part 402a in the opening and closing component 402 of the opening and closing assembly 400 may further include a connector 4023. One end of the connector 4023 in the pulling part 402a may be connected to the first connecting segment B1 in the first pulling cover plate 4021, and the other end may be connected to the second connecting segment B2 in the second pulling cover plate 4022. The connector 4023 in the pulling part 402a may also be connected to the corresponding driving component 401. In this way, the driving component 401 can drive the connector 401 in the corresponding pulling part 402a to move along the extension direction of the first connecting segment B1 in the first pulling cover plate 4021 and the second connecting segment B2 in the second pulling cover plate 4022, thereby driving the first connecting segment B1 in the first pulling cover plate 4021 and the second connecting segment B2 in the second pulling cover plate 4022 to move along the extension direction of the first connecting segment B1 in the first pulling cover plate 4021 and the second connecting segment B2 in the second pulling cover plate 4022.

[0091] Please refer to the possible implementation methods. Figure 8 , Figure 8This is a partial structural diagram of another texture processing device provided in the embodiments of this application. The base 100 in the texture processing device may have a mounting groove K1 on the side facing the positioning component 200, and a guide groove K2 communicating with the mounting groove K1 at each corner position.

[0092] The positioning component 200 in the texture processing device can be fixed in the mounting groove K1 of the base plate 100. The multiple first pulling sections A1 and multiple second pulling sections A2 in the multiple first pulling cover plates 4021 of the multiple opening and closing components 402 of the opening and closing component 400 can all be located in the mounting groove K1 of the base plate 100 and can be distributed around the positioning component 200. The first connecting section B1 can be located in the guide groove K2.

[0093] Here, the number of guide grooves K2 communicating with the mounting groove K1 can be the same as the number of multiple pulling parts 402a in the opening and closing component 402. The first connecting segment B1 of the first pulling cover plate 4021 in the pulling part 402a can be located in the corresponding guide groove K1, and the extending direction of the guide groove K1 can be the same as the extending direction of the corresponding first connecting segment B1. In this way, the driving component 401 can drive the first connecting segment B1 in the corresponding pulling part 402a to move in the corresponding guide groove K2, and then drive the corresponding pulling part 402a to move along the extending direction of the first connecting segment B1.

[0094] Among the possible implementations, such as Figure 7 and Figure 9 As shown, Figure 9 This is an exploded view of a texture processing apparatus provided in an embodiment of this application. The first pulling cover plate 4021 in the pulling part 402a may have multiple first engaging protrusions C1 on the side facing the texture mold 300. The texture mold 300 may have multiple first slots S1 on the side facing the first pulling cover plate 4021. The multiple first engaging protrusions C1 can engage with the multiple first slots S1, thus achieving the connection between the first pulling cover plate 4021 and the side of the texture mold 300 facing the base plate 100. It should be noted that the multiple first engaging protrusions C1 in the first pulling cover plate 4022 may be located on the side of the first pulling section A1 and the second pulling section A2 of the first pulling cover plate 4022 facing the texture mold 100, and the multiple first engaging protrusions C1 may be evenly distributed on the first pulling section A1 and the second pulling section A2.

[0095] And / or, the side of the second pull cover plate 4022 facing the texture mold 300 may have multiple second snap-fit ​​protrusions C2, and the side of the texture mold 300 facing the second pull cover plate 4022 may have multiple second slots S2. The multiple second snap-fit ​​protrusions C2 can snap into the corresponding multiple second slots S2, thus realizing the connection between the second pull cover plate 4022 and the side of the texture mold 300 away from the base plate 100. It should be noted that the multiple second snap-fit ​​protrusions C2 in the second pull cover plate 4022 may be located on the side of the third pull section A3 and the fourth pull section A4 of the second pull cover plate 4022 facing the texture mold 100, and the multiple second snap-fit ​​protrusions C2 may be evenly distributed on the third pull section A3 and the third pull section A4.

[0096] It should be noted that the plurality of first snap-fit ​​protrusions C1 on the first snap-fit ​​cover plate 4021 in the pulling part 402a can be distributed in a one-to-one correspondence with the plurality of second snap-fit ​​protrusions C2 on the second snap-fit ​​cover plate 4022. In this way, the plurality of first slots S1 located on the side of the texture mold 300 facing the first snap-fit ​​cover plate 4021 can be distributed in a corresponding correspondence with the plurality of second slots S2 located on the side of the texture mold 300 facing the second snap-fit ​​cover plate 4022.

[0097] Among the possible implementations, such as Figure 10 As shown, Figure 10 This is a partial structural schematic diagram of a texture processing apparatus provided in another embodiment of this application. The driving component 401 in the opening and closing assembly 400 may include: a driving component body 4011, a paddle 4012, and an abutment post 4013. The driving component body 4011 and the abutment post 4012 in the driving component 401 may be fixedly connected to the base plate 100.

[0098] The first end of the paddle 4012 in the driving component 401 can be connected to the driving component body 4011, and the second end of the paddle 4012 can be connected to the pulling part 402a. The portion of the paddle 4012 located between the first and second ends can abut against the abutment post 4013. The driving component body 4011 can be used to drive the first end of the paddle 4012 to move, thereby causing the paddle 4012 to rotate around the abutment post 4013, and subsequently, the second end of the paddle 4012 drives the pulling part 402a to move. Here, the second end of the paddle 4012 in the strength component 401 can be connected to the connector 4023 in the pulling part 402a.

[0099] Among the possible implementations, such as Figure 10As shown, the distance between the first end of the lever 4012 and the abutment post 4013 can be greater than the distance between the second end of the lever 4012 and the abutment post 4013. In this way, the driving component body 401 only needs to move the first end of the lever 4012 a small distance to move the second end of the lever 4012 a large distance, thereby driving the pulling part 402a to move a large distance, ensuring that the area enclosed by the opening and closing component 402 can be expanded.

[0100] It should be noted that, as Figure 10 As shown, the drive component body 4011 in the drive component 401 can be a cylinder. The drive component body 4011, being a cylinder, can include a cylinder body 4011a and a piston 4011b. A portion of the piston 4011b is located inside the cylinder body 4011a, and another portion is located outside the cylinder body 4011a. The cylinder body 4011a drives the piston 4011b to perform linear reciprocating motion relative to the cylinder body 4011a. The first end of the paddle 4012 in the drive component 401 can be connected to the end of the piston 4011b opposite to the cylinder body 4011a. The cylinder body 4011a can drive the piston 4011b to perform linear motion, thereby moving the first end of the paddle 4012.

[0101] Among the possible implementations, such as Figure 11 As shown, Figure 11 This is a partial structural schematic diagram of another texture processing apparatus provided in another embodiment of this application. The texture processing apparatus may further include a plurality of light sources 500 fixed on a base plate 100. The plurality of light sources 500 in the texture processing apparatus may be distributed around the texture mold 300. The texture mold 300 may be a frame structure made of transparent material.

[0102] When a texture needs to be processed on the side of the terminal device 010, a coating can be applied to the side of the terminal device 010 before placing the terminal device 010 on the bearing surface P of the positioning component 200. After the inner side of the texture mold 300 contacts the side of the terminal device 010, the texture pattern located on the inner side of the texture mold 300 can be imprinted onto the coating. After the texture pattern is imprinted on the coating, multiple light sources 500 in the texture processing apparatus can emit light, which can pass through the transparent texture mold 300 and irradiate the coating with the imprinted texture pattern to cure the coating, thus realizing texture processing on the side of the terminal device 010.

[0103] Please refer to the possible implementation methods. Figure 12 , Figure 12This is a schematic diagram of a texture processing apparatus provided in an embodiment of this application. The texture processing apparatus may further include a protective part 600 and a protective cover plate 700. The protective part 600 in the texture processing apparatus may be frame-shaped and may be fixed on the base 100. The positioning component 200, texture mold 300, opening and closing component 400, and multiple light sources 500 in the texture processing apparatus may all be located within the area enclosed by the protective part 600.

[0104] The protective cover 700 in the texture processing device can be connected to the side of the protective part 600 opposite to the base plate 100, and the protective cover 700 can have a cutout area O. The orthographic projection of the positioning component 200 on the base 100 can be located within the orthographic projection of the cutout area O on the base 100. In this way, the base plate 100, the protective part 600, and the protective cover 700 can protect the positioning component 200, the texture mold 300, the opening and closing component 400, and the multiple light sources 500. Furthermore, the bearing surface P of the positioning component 200 can be exposed through the cutout area O of the protective cover 700, allowing the terminal device 010 to be placed on the bearing surface P of the positioning component 200 through the cutout area O of the protective cover 700, or to be removed from the bearing surface P of the positioning component 200 through the cutout area O of the protective cover 700.

[0105] In summary, this application provides a texture processing apparatus, including a base plate, a positioning component, a texture mold, and an opening / closing component. When a terminal device needs to be textured using this apparatus, the opening / closing component can apply a pulling force to the texture mold to expand the area enclosed by the texture mold, allowing the terminal device to pass through the area enclosed by the texture mold and be placed on the bearing surface of the positioning component. After the terminal device is placed on the bearing surface of the positioning component, the opening / closing component can stop applying a pulling force to the texture mold, allowing the texture mold to return to its initial state. After the texture mold returns to its initial state, the inner surface of the texture mold can abut against the side of the terminal device, allowing the texture pattern on the texture mold to be imprinted on the side of the terminal device. Thus, the texture processing apparatus of this application can achieve texture processing on the side of the terminal device, improving the appearance of the terminal device.

[0106] In this application, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance. The term "multiple" refers to two or more unless otherwise expressly defined.

[0107] The above description is merely an embodiment of the possible implementation of this application and is not intended to limit this application. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.

Claims

1. A texturing apparatus characterized by, include: Base (100), positioning component (200), texture mold (300), and opening / closing component (400); The positioning component (200) is fixed on the base (100), and the side of the positioning component (200) facing away from the base (100) is the bearing surface (P), which is used to support the terminal equipment (010) to be processed. The texture mold (300) is located on the side of the positioning component (200) away from the base (100). After the positioning component (200) carries the terminal device (010), the texture mold (300) is distributed around the terminal device (010), and the inner side of the texture mold (300) has a texture pattern. The opening and closing component (400) is fixed on the base (100) and connected to the texture mold (300). The opening and closing component (400) is used to apply a pulling force to the texture mold (300) to expand the area enclosed by the texture mold (300).

2. The texturing apparatus of claim 1, wherein The opening and closing assembly (400) includes: a driving component (401) and an opening and closing component (402) connected to the driving component (401); the driving component (401) is fixed on the base plate (100), and the opening and closing component (402) is connected to the texture mold (300); The driving component (401) is used to drive the opening and closing component (402) to move away from the area enclosed by the opening and closing component (402) in a direction parallel to the bearing surface (P).

3. The texturing apparatus of claim 2, wherein The opening and closing component (402) includes: a plurality of separately arranged pulling parts (402a); the plurality of pulling parts (402a) are distributed around the texture mold (300) and are all connected to the texture mold (300); The opening and closing assembly (400) includes a plurality of driving components (401), and the plurality of driving components (401) are connected one-to-one with the plurality of pulling parts (402a); Each of the driving components (401) is used to drive the corresponding pulling part (402a) to move.

4. The texturing apparatus of claim 3, wherein Each of the aforementioned pulling parts (402a) includes: a first pulling cover plate (4021) and a second pulling cover plate (4022) distributed in a direction perpendicular to the bearing surface; The first pull cover plate (4021) is connected to the side of the texture mold (300) facing the base (100), and the second pull cover plate (4022) is connected to the side of the texture mold (300) away from the base (100). The first pull cover plate (4021) and the second pull cover plate (4022) in the pull part (402a) are both connected to the corresponding drive component (401).

5. The texturing apparatus of claim 4, wherein The first pull-out cover plate (4021) includes: a first pull-out section (A1), a second pull-out section (A2), and a first connecting section (B1); the ends of the first pull-out section (A1), the ends of the second pull-out section (A2), and the ends of the first connecting section (B1) are connected. The second pull-out cover (4022) includes: a third pull-out section (A3), a fourth pull-out section (A4), and a second connecting section (B2); the ends of the third pull-out section (A3), the fourth pull-out section (A4), and the second connecting section (B2) are connected to each other; Wherein, the first stretching segment (A1) and the third stretching segment (A3) both extend along the first direction (X), the second stretching segment (A2) and the fourth stretching segment (A4) both extend along the second direction (Y), and the extension directions of the first connecting segment (B1) and the second connecting segment (B2) both intersect the first direction (X) and both intersect the second direction (Y); The first connecting segment (B1) and the second connecting segment (B2) in the same pulling part (402a) are both connected to the corresponding driving component (401); the driving component (401) is used to drive the corresponding pulling part (402a) to move along the extension direction of the first connecting segment (B1) and the second connecting segment (B2).

6. The texturing apparatus of claim 5, wherein Each of the aforementioned pulling parts (402a) further includes: a connector (4023); one end of the connector (4023) is connected to the first connecting segment (B1), and the other end is connected to the second connecting segment (B2); The connecting member (4023) in the pulling part (402a) is connected to the corresponding driving component (401).

7. The texturing apparatus of claim 5 wherein, The base (100) has a mounting groove (K1) on the side facing the positioning component (200), and guide grooves (K2) communicating with the mounting groove (K1) at each corner position; The positioning component (200) is fixed in the mounting groove (K1), and the first pulling segments (A1) and the second pulling segments (A2) of the plurality of first pulling covers (4021) are all located in the mounting groove (K1) and distributed around the positioning component (200); the first connecting segment (B1) is located in the guide groove (K2).

8. A texturing apparatus according to any one of claims 4-7, wherein, The first pull cover plate (4021) has a plurality of first snap-fit ​​protrusions (C1) on the side facing the texture mold (300), and the texture mold (300) has a plurality of first slots (S1) on the side facing the first pull cover plate (4021). The plurality of first snap-fit ​​protrusions (C1) are snapped into the plurality of first slots (S1). And / or, the second pull cover plate (4022) has a plurality of second snap-fit ​​protrusions (C2) on the side facing the texture mold (300), and the texture mold (300) has a plurality of second snap-fit ​​grooves (S2) on the side facing the second pull cover plate (4022), and the plurality of second snap-fit ​​protrusions (C2) snap into the plurality of second snap-fit ​​grooves (S2) respectively.

9. The texturing apparatus of any of claims 3-7, wherein, The driving component (401) includes: a driving component body (4011), a paddle (4012), and an abutment post (4013); Both the drive component body (4011) and the abutment post (4013) are fixedly connected to the base plate (100); The first end of the paddle (4012) is connected to the drive component body (4011), the second end of the paddle (4012) is connected to the pulling part (402a), and the portion of the paddle (4012) located between the first end and the second end abuts against the abutting post (4013). The driving component body (4011) is used to drive the first end of the paddle (4012) to move, so as to drive the paddle (4012) to rotate around the abutment post (4013), and then drive the pulling part (402a) to move through the second end of the paddle (4012).

10. The texturing apparatus of claim 8 wherein, The distance between the first end of the paddle (4012) and the abutment post (4013) is greater than the distance between the second end of the paddle (4012) and the abutment post (4013).

11. The texturing apparatus of any of claims 1-7, 10, wherein, The texture processing device further includes: a plurality of light sources (500) fixed on the base plate (100), the plurality of light sources (500) being distributed around the texture mold (300); The texture mold (300) is a frame structure made of transparent material.

12. The texturing apparatus of claim 10 wherein, The texture processing device further includes: a protective part (600) and a protective cover plate (700); The protective part (600) is frame-shaped and fixed on the base (100); the positioning component (200), texture mold (300), opening and closing component (400) and the plurality of light sources (500) are all located in the area enclosed by the protective part (600); The protective cover (700) is connected to the protective part (600) on the side away from the base (100), and the protective cover (700) has a hollow area (O); the orthographic projection of the positioning component (200) on the base (100) is located within the orthographic projection of the hollow area (O) on the base (100).