Mobile phone middle frame surface treatment equipment

By designing a clamp moving module with the first driving module and the bearing assembly, the problem of looseness of the frame in the mobile phone when it is fixed on the clamp is solved, and uniform distribution of patterns or colors is achieved.

CN222946416UActive Publication Date: 2025-06-06SHENZHEN INJETE ADDITIVE TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421790023.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-26
Publication Date
2025-06-06
Estimated Expiration
2034-07-26

AI Technical Summary

Technical Problem

The frame in the mobile phone is prone to looseness when it is fixed on the fixture, resulting in uneven distribution of patterns or colors after processing.

Method used

A mobile phone midframe surface treatment device including a frame and a clamp moving module is designed. The clamp moving module includes a first driving module and a clamp. The driving end of the first driving module can move in the first direction, transfer the clamp to a preset processing position, and the bearing assembly is fixed from both sides of the thickness direction of the mobile phone midframe to increase the contact area to improve stability.

Benefits of technology

It effectively improves the connection stability between the frame and the fixture of the mobile phone, ensuring the uniform distribution of patterns or colors.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses surface treatment equipment for a middle frame of a mobile phone. The surface treatment equipment for the middle frame of the mobile phone comprises a rack and a clamp moving module, the clamp moving module comprises a first driving module and a clamp; the first driving module is installed on the rack, the clamp comprises a base and a bearing assembly arranged on the base, the base is installed at the driving end of the first driving module, and the bearing assembly is configured to fix the mobile phone middle frame from the two sides of the mobile phone middle frame in the thickness direction. The driving end of the first driving module can move in the first direction and transfer the clamp to a preset machining position. The to-be-processed product in the design is not prone to loosening, and the to-be-processed surface of the mobile phone middle frame can be conveniently processed and processed by the mobile phone middle frame surface processing equipment subsequently, so that patterns or colors formed on the to-be-processed surface of the mobile phone middle frame are uniformly distributed.
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Description

Technical Field

[0001] The present application relates to the technical field of surface treatment equipment, and in particular to a surface treatment equipment for a mobile phone middle frame. Background Art

[0002] As we all know, there are patterns or colors on the surface of the mobile phone middle frame. The mobile phone middle frame is usually made of metal, and the patterns and colors on the surface are formed by electroplating or spraying.

[0003] The surface treatment equipment for the mobile phone middle frame includes a fixture and a processing head. The fixture is used to carry and fix the mobile phone middle frame, and the processing head is used to process the surface to be processed of the mobile phone middle frame. However, due to the clamping method of the mobile phone middle frame by the fixture in the related art, the mobile phone middle frame fixed on the fixture is prone to loosening, resulting in uneven distribution of patterns or colors formed on the surface to be processed of the mobile phone middle frame after processing by the processing head. Therefore, how to effectively reduce and effectively improve the connection stability between the mobile phone middle frame and the fixture has become an urgent problem to be solved. Utility Model Content

[0004] The embodiment of the present application provides a mobile phone middle frame surface processing device, which can solve the problem in the related art that the mobile phone middle frame fixed on the clamp is prone to loosening, resulting in uneven pattern or color distribution on the processed surface of the mobile phone middle frame after processing by the processing head.

[0005] An embodiment of the present application provides a surface processing device for a mobile phone middle frame; the surface processing device for the mobile phone middle frame includes a frame and a clamp moving module, the clamp moving module includes a first driving module and a clamp, the first driving module is installed on the frame, the clamp includes a base and a bearing component arranged on the base, the base is installed on the driving end of the first driving module, the bearing component is configured to fix the mobile phone middle frame from both sides in the thickness direction of the mobile phone middle frame, and the driving end of the first driving module can move along the first direction and move the clamp to a preset processing position.

[0006] Based on the mobile phone middle frame surface processing equipment of the embodiment of the present application, by designing a first driving module, the driving end of the first driving module can drive the clamp to move along the first direction to move the clamp fixed with the mobile phone middle frame to a preset processing position; by designing a bearing component, the bearing component is used to bear and fix the mobile phone middle frame; by designing the bearing component to fix the mobile phone middle frame on both sides along the thickness direction of the mobile phone middle frame itself, the contact area between the bearing component and the mobile phone middle frame is increased, which can effectively enhance the stability of the mobile phone middle frame being carried and fixed on the bearing component, so as to facilitate the subsequent mobile phone middle frame surface processing equipment to process the surface to be processed of the mobile phone middle frame, so that the pattern or color formed on the surface to be processed of the mobile phone middle frame is evenly distributed. BRIEF DESCRIPTION OF THE DRAWINGS

[0007] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present application. For those skilled in the art, other drawings can be obtained based on these drawings without paying any creative work.

[0008] Figure 1 This is a schematic structural diagram of a surface treatment device in one embodiment of the present application;

[0009] Figure 2 A top view of a surface treatment device in one embodiment of the present application;

[0010] Figure 3 This is a schematic diagram of the internal structure of a surface treatment device in one embodiment of the present application;

[0011] Figure 4 This is a structural schematic diagram of a product to be processed installed on a fixture in one embodiment of the present application;

[0012] Figure 5 This is a schematic diagram of a structure in which a product to be processed is carried and fixed on a carrying component in one embodiment of the present application;

[0013] Figure 6 This is a schematic diagram of the structure of a clamp in one embodiment of the present application;

[0014] Figure 7 for Figure 6 Schematic diagram of the structure from another perspective;

[0015] Figure 8 for Figure 6 A schematic diagram of the structure from another perspective;

[0016] Fig. 9 This is a schematic diagram of the structure of a transmission unit in one embodiment of the present application;

[0017] Fig.10 This is a structural schematic diagram of a product to be processed installed on a fixture in one embodiment of the present application;

[0018] Fig.11 for Fig.10 Schematic diagram of the structure from another perspective.

[0019] Figure numerals: 1, surface treatment equipment; 10, frame; 11, workbench; 12, cover; 20, fixture moving module; 21, first driving module; 211, second conveying track; 22, fixture; 221, base; 222, bearing assembly; 2222, bearing clamp; 2223, connecting rod; 2224, fastener; 223, clamping assembly; 2231, clamping member; 2232, first driving member; 224, rotating assembly; 2241, rotating member; 2242, rotating motor; 2243, transmission unit; 22431, transmission wheel; 22431a, first gear; 2 2431b, second gear; 22431c, pulley; 22431d, third gear; 22432, transmission belt; 225, plug-in assembly; 2251, latch; 2252, socket; 226, lifting assembly; 2261, second drive member; 2262, lifting member; 30, printing and curing module; 31, second drive module; 311, third conveying track; 32, housing; 40, material box module; 41, third drive module; 411, first conveying track; 42, material box; 50, product to be processed; XX', first direction; YY', second direction; ZZ', third direction. DETAILED DESCRIPTION

[0020] In order to make the purpose, technical solution and advantages of the present application more clearly understood, the present application is further described in detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and are not used to limit the present application.

[0021] Please refer to Figure 1-Figure 4 As shown, the present application proposes a surface treatment device 1, and the product to be treated 50 is not easy to loosen, which facilitates the surface treatment device 1 to process the surface to be treated of the product to be treated 50 so that the pattern or color formed on the surface to be treated of the product to be treated 50 is evenly distributed.

[0022] The surface treatment device 1 includes a frame 10 and a fixture moving module 20. The fixture moving module 20 includes a first driving module 21 and a fixture 22; the first driving module 21 is installed on the frame 10, and the fixture 22 includes a base 221 and a bearing assembly 222 arranged on the base 221, the base 221 is installed on the driving end of the first driving module 21, and the bearing assembly 222 is configured to fix the product to be processed 50 from both sides in the thickness direction of the product to be processed 50. The driving end of the first driving module 21 can move along the first direction XX' and move the fixture 22 to a preset processing position.

[0023] It should be noted that the surface treatment device 1 can be used to treat the surface to be treated of the product to be treated 50; wherein the product to be treated 50 may include but is not limited to a mobile phone middle frame; for example, when the product to be treated 50 is a mobile phone middle frame, the surface treatment device 1 is a mobile phone middle frame surface treatment device.

[0024] The following combination Figure 1-Figure 11 The specific structure of the surface treatment equipment 1 is introduced in detail.

[0025] like Figure 1-Figure 4 As shown, the surface treatment equipment 1 includes a frame 10 and a fixture moving module 20 .

[0026] The frame 10 serves as the frame of the surface treatment equipment 1. The specific structure of the frame 10 is not limited here, and the designer can make a reasonable design according to actual needs; for example, the frame 10 includes a workbench 11 and a cover 12, the fixture moving module 20 and the printing and curing module 30 are both installed on the workbench 11, and the cover 12 is connected to the workbench 11 and covers the table top of the workbench 11. The specific preparation material of the frame 10 is not limited here, and the designer can make a reasonable choice according to actual needs; for example, the preparation material of the frame 10 can be but is not limited to stainless steel or aluminum alloy, etc. It is worth mentioning that the design of the cover 12 can realize a closed processing environment, which can effectively block the inhalation of harmful substances such as wastewater with pungent odor or dust generated during the processing.

[0027] The fixture moving module 20 is a mechanism in the surface treatment equipment 1 for carrying and transporting the product 50 to be treated. The fixture moving module 20 includes a first driving module 21 and a fixture 22 .

[0028] The first driving module 21 is used as a transport mechanism of the fixture moving module 20 to transfer the product 50 to be processed carried on the fixture 22 to a preset processing position. The specific structure of the first driving module 21 will be described in detail below.

[0029] The first driving module 21 is installed on the frame 10 (specifically the above-mentioned workbench 11); the specific connection method between the first driving module 21 and the frame 10 is not limited here, and the designer can make a reasonable design according to actual needs; for example, when the first driving module 21 and the frame 10 are detachably connected, the first driving module 21 can be but is not limited to being fixedly connected to the frame 10 by at least one of screw connection, card connection or plug-in connection; for another example, when the first driving module 21 and the frame 10 are non-detachably connected, the first driving module 21 can be but is not limited to being fixedly connected to the frame 10 by welding.

[0030] The clamp 22 is used as a bearing mechanism of the clamp moving module 20 to bear and fix the product 50 to be processed. The clamp 22 includes a base 221 and a bearing assembly 222 .

[0031] The base 221 serves as the seat of the clamp 22; the specific structure of the base 221 is not limited here, and the designer can make a reasonable design according to actual needs. For example, the base 221 can be but not limited to a box structure without a cover; the specific preparation material of the base 221 is not limited here, and the designer can make a reasonable choice according to actual needs. For example, the preparation material of the base 221 can be but not limited to stainless steel or aluminum alloy, etc.

[0032] The base 221 is connected to the driving end of the first driving module 21; the specific connection method between the base 221 and the driving end of the first driving module 21 is not limited here, and designers can make reasonable designs according to actual needs; for example, the base 221 can be, but is not limited to, detachably connected to the driving end of the first driving module 21 by at least one of screw connection, snap connection, or plug-in connection; for another example, the base 221 can be, but is not limited to, non-detachably connected to the driving end of the first driving module 21 by welding.

[0033] The bearing assembly 222 is a structural member in the fixture 22 for bearing and fixing at least one product 50 to be processed. The bearing assembly 222 is equivalent to an intermediate connecting member between the product 50 to be processed and the clamping assembly 223 (described below) of the fixture 22. The bearing assembly 222 can not only bear the product 50 to be processed but also fix the product 50 to be processed placed thereon. The specific structure of the bearing assembly 222 will be described in detail below.

[0034] The carrying assembly 222 is disposed on the base 221 , and the carrying assembly 222 is configured to fix the product to be processed 50 from both sides in the thickness direction of the product to be processed 50 .

[0035] The driving end of the first driving module 21 can move along the first direction XX' to move the fixture 22 connected thereto to a preset processing position. In other words, the fixture 22 can move along the first direction XX' to the preset processing position driven by the driving end of the first driving module, or in other words, the first driving module 21 (specifically the first driving member 2232 described below) is configured to drive the fixture 22 to move along the first direction XX' to the preset processing position.

[0036] Based on the surface treatment device 1 in the embodiment of the present application, by designing the first driving module 21, the driving end of the first driving module 21 can drive the clamp 22 to move along the first direction XX' to move the clamp 22 fixed with the product to be processed 50 to a preset processing position; by designing the supporting component 222, the supporting component 222 is used to support and fix the product to be processed 50; by designing the supporting component 222 to fix the product to be processed 50 on both sides along the thickness direction of the product to be processed 50 itself, the contact area between the supporting component 222 and the product to be processed 50 is increased, which can effectively enhance the stability of the product to be processed 50 being carried and fixed on the supporting component 222, so as to facilitate the subsequent surface treatment equipment 1 to process the surface to be processed of the product to be processed 50, so that the pattern or color formed on the surface to be processed of the product to be processed 50 is evenly distributed.

[0037] Furthermore, it is understandable that the specific structure of the carrying assembly 222 is different for the products 50 to be processed in different product forms. Figure 5 As shown, when the product 50 to be processed is in the form of a mobile phone middle frame, the bearing assembly 222 includes a bearing clamp 2222, a connecting rod 2223 and a fastener 2224; the number of the bearing clamps 2222 is two, and the two bearing clamps 2222 are arranged on both sides of the mobile phone middle frame in its own thickness direction, and each bearing clamp 2222 is provided with a perforation corresponding to the hole on the mobile phone middle frame; the connecting rod 2223 is corresponding to the perforation of the bearing clamp 2222 and the hole on the mobile phone middle frame; the fastener 2224 is detachably connected to the connecting rod 2223 to fix the mobile phone middle frame between the two bearing clamps 2222. Among them, the number of mobile phone middle frames fixed between the two bearing clamps 2222 can be one or more (more than two); the number of connecting rods 2223 can be one or more. The fastener 2224 can be, but is not limited to, a bolt or a bayonet; for example, when the fastener 2224 is a bolt, the fastener 2224 is detachably connected to the connecting rod 2223 by means of a screw lock; for another example, when the fastener 2224 is a bayonet, the fastener 2224 is detachably connected to the connecting rod 2223 by means of a snap connection. By designing the bearing clamp 2222, the connecting rod 2223 and the fastener 2224, the bearing clamp 2222 clamps the mobile phone middle frame sandwiched between the two bearing clamps 2222 from both sides in the thickness direction of the mobile phone middle frame, and the connecting rod 2223 is passed through the bearing clamp 2222 and the mobile phone middle frame and connected to the connecting rod 2223 by means of the fastener 2224, so as to achieve relative fixation of the position between the mobile phone middle frame and the bearing clamp 2222, so that the operation is simple and easy to achieve.

[0038] Furthermore, if Figure 4 , Figure 6 , Figure 7 and Figure 8 As shown, the clamp 22 also includes a clamping assembly 223 and a rotating assembly 224; the clamping assembly 223 is installed on the base 221, and the clamping assembly 223 is configured to be able to perform telescopic movement along a preset direction to loosen or clamp the supporting assembly 222; the rotating assembly 224 is installed on the base 221, and the rotating end of the rotating assembly 224 is connected to the supporting assembly 222 to drive the supporting assembly 222 to rotate around a preset direction, thereby driving the product 50 to be processed to rotate around a preset direction.

[0039] Among them, the clamping component 223 is used as a structural component in the clamp 22 to fix the supporting component 222 to achieve connection with the product to be processed 50 supported on the supporting component 222; the specific structure of the clamping component 223 will be introduced in detail below.

[0040] The clamping assembly 223 is mounted on the base 221, and the clamping assembly 223 is configured to perform telescopic movement along a preset direction to loosen or clamp the bearing assembly 222; for example, when the clamping assembly 223 performs an extension movement along the preset direction, the clamping assembly 223 and the end of the bearing assembly 222 in the preset direction are separated to loosen the bearing assembly 222, thereby realizing the disassembly between the clamping assembly 223 and the product to be processed 50 carried on the bearing assembly 222; for another example, when the clamping assembly 223 performs a contraction movement along the preset direction, the clamping assembly 223 and the end of the bearing assembly 222 in the preset direction abut to clamp and fix the bearing assembly 222, thereby realizing the connection between the clamping assembly 223 and the product to be processed 50 carried on the bearing assembly 222. In this way, the clamping assembly 223 realizes the disassembly and installation between the bearing assembly 222 and the clamping assembly 223 by performing a telescopic movement along the preset direction, thereby realizing the disassembly and installation between the product to be processed 50 carried on the bearing assembly 222 and the clamping assembly 223.

[0041] The rotating component 224 is a structural component in the clamp 22 used to drive the supporting component 222 to rotate around a preset direction, so as to drive the product 50 to be processed carried on the supporting component 222 to rotate around the preset direction; the specific structure of the rotating component 224 will be introduced in detail below.

[0042] The rotating component 224 is installed on the base 221, and the rotating end of the rotating component 224 is connected to the supporting component 222 to drive the supporting component 222 to rotate around a preset direction, thereby driving the product to be processed 50 to rotate around the preset direction. In this way, the multiple surfaces to be processed of the product to be processed 50 around the preset direction can be respectively arranged toward the nozzle of the nozzle of the printing component (described below) and / or the light-emitting surface of the UV curing lamp of the curing component (described below) by rotation, so as to enable the above-mentioned printing component to print the multiple surfaces to be processed of the product to be processed around the preset direction, and enable the above-mentioned curing component to cure the multiple surfaces to be processed of the product to be processed around the preset direction.

[0043] By designing the clamping component 223, the clamping component 223 can make a telescopic movement along the preset direction to loosen or clamp the carrying component 222, so as to realize the disassembly and installation between the product to be processed 50 carried on the carrying component 222 and the clamping component 223; by designing the rotating component 224, the rotating component 224 can drive the carrying component 222 to rotate around the preset direction, so that the product to be processed 50 carried on the carrying component 222 also rotates around the preset direction, so that the multiple surfaces to be processed of the product to be processed 50 around the preset direction can be respectively arranged toward the nozzle of the nozzle of the printing component and / or the light emitting surface of the UV curing lamp of the curing component, so as to realize the printing component to print the multiple surfaces to be processed of the product to be processed 50 around the preset direction, and realize the curing component to cure the multiple surfaces to be processed of the product to be processed 50 around the preset direction.

[0044] Furthermore, if Figure 4 , Figure 6 , Figure 7 and Figure 8 As shown, the clamping assembly 223 includes a clamping member 2231 and a first driving member 2232; the clamping member 2231 is disposed on at least one side of the base 221 along a preset direction; the first driving member 2232 is mounted on the base 221, and the driving end of the first driving member 2232 is connected to the clamping member 2231. The first driving member 2232 is configured to drive the clamping member 2231 to extend along a preset direction to loosen the bearing assembly 222; the first driving member 2232 is also configured to drive the clamping member 2231 to contract along a preset direction to clamp the bearing assembly 222.

[0045] The clamping member 2231 is used as a gripper of the clamping assembly 223 to clamp and fix the bearing assembly 222; the specific structure of the clamping member 2231 is not limited here, and the designer can reasonably design it according to actual needs; for example, the clamping member 2231 can be, but not limited to, a clamping plate, a clamping block, or a gripper. The clamping member 2231 can be separately arranged on one side of the base 221 along the preset direction, and at this time, the two ends of the bearing assembly 222 along the preset direction are respectively abutted with the base 221 and the clamping member 2231 on one side, so as to cooperate with the base 221 to realize the clamping member 2231 to clamp and fix one end of the bearing assembly 222 along the preset direction; the clamping member 2231 can also be arranged on both sides of the base 221 along the preset direction, and at this time, the two ends of the bearing assembly 222 along the preset direction are respectively abutted with the clamping members 2231 on both sides, so as to realize the clamping members 2231 on both sides to clamp and fix the two ends of the bearing assembly 222 along the preset direction.

[0046] The first driving member 2232 is used as the power source of the clamping assembly 223 to drive the clamping member 2231 to move in a preset direction; the specific form of the first driving member 2232 is not limited here, and the designer can make a reasonable choice according to actual needs; for example, the first driving member 2232 can be a cylinder, and the telescopic rod of the cylinder is fixedly connected to the clamping member 2231 as the driving end; for another example, the first driving member 2232 can also be a stepper motor, and the driving shaft of the stepper motor is fixedly connected to the clamping member 2231 as the driving end. The specific connection method between the first driving member 2232 and the base 221 is not limited here, and the designer can make a reasonable design according to actual needs; for example, the first driving member 2232 can be, but not limited to, detachably connected to the base 221 by at least one of screw connection, clamp connection or adhesive connection; for another example, the first driving member 2232 can be, but not limited to, non-detachably connected to the base 221 by welding. The specific connection method between the driving end of the first driving member 2232 and the clamping member 2231 is not limited here, and designers can make reasonable designs according to actual needs; for example, the driving end of the first driving member 2232 can be but is not limited to being fixedly connected to the clamping member 2231 by locking screws.

[0047] By designing the first driving member 2232, the first driving member 2232 can drive the clamping member 2231 to perform an extension movement along a preset direction, so that the clamping member 2231 is disengaged from the end of the supporting component 222 in the preset direction to loosen the supporting component 222, thereby realizing the disassembly between the clamping member 2231 and the product to be processed 50 carried on the supporting component 222; by designing the first driving member 2232, the first driving member 2232 can drive the clamping member 2231 to perform a contraction movement along a preset direction, so that the clamping member 2231 is abutted against the end of the supporting component 222 in the preset direction to clamp and fix the supporting component 222, thereby realizing the connection between the clamping member 2231 and the product to be processed 50 carried on the supporting component 222.

[0048] Furthermore, if Figure 4 , Figure 6 , Figure 7 and Figure 8 As shown, the rotating component 224 includes a rotating member 2241 and a rotating motor 2242; the rotating member 2241 is arranged on the base 221, and the rotating member 2241 is connected to the supporting component 222 as the rotating end of the rotating component 224; the rotating motor 2242 is installed on the base 221, and the rotating shaft of the rotating motor 2242 is connected to the rotating member 2241, and the rotating motor 2242 is configured to drive the rotating member 2241 to rotate around a preset direction, so as to drive the supporting component 222 to rotate around a preset direction.

[0049] Among them, the rotating part 2241 is used as the rotating end of the rotating component 224 to be connected to the bearing component 222; the specific form of the rotating part 2241 is not limited here, and the designer can make a reasonable design according to actual needs; for example, the rotating part 2241 can be a rotating sleeve, in which case the rotating sleeve can be rotatably connected to the base 221 through a bearing, and the end of the corresponding bearing component 222 (specifically the above-mentioned bearing rod 22211) can be inserted into the rotating sleeve to realize the connection between the rotating sleeve and the bearing component 222; for another example, the rotating part 2241 can be a rotating shaft, in which case the rotating shaft can be rotatably connected to the base 221 through a bearing, and the end of the corresponding bearing component 222 (specifically the above-mentioned bearing rod 22211) can be sleeved outside the rotating shaft to realize the connection between the rotating shaft and the bearing component 222.

[0050] The rotating motor 2242 serves as the power source of the rotating assembly 224 to drive the rotating member 2241 to rotate around a preset direction, thereby driving the bearing assembly 222 to rotate around a preset direction. The specific connection method between the rotating motor 2242 and the base 221 is not limited here, and the designer can make a reasonable design according to actual needs; for example, the rotating motor 2242 can be, but not limited to, detachably connected to the base 221 by at least one of screw connection, clamping connection or adhesive connection; for another example, the rotating motor 2242 can be, but not limited to, non-detachably connected to the base 221 by welding. The specific connection method between the rotating shaft of the rotating motor 2242 and the rotating member 2241 is not limited here, and the designer can make a reasonable design according to actual needs; for example, the rotating shaft of the rotating motor 2242 can be, but not limited to, fixedly connected to the rotating member 2241 by locking screws.

[0051] By designing the rotating motor 2242, the rotating motor 2242 can drive the rotating member 2241 to rotate around a preset direction, so as to drive the supporting component 222 connected to the rotating member 2241 to rotate around the preset direction, so that the product to be processed 50 carried on the supporting component 222 also rotates around the preset direction, so that the multiple surfaces to be processed of the product to be processed 50 around the preset direction can be respectively arranged toward the nozzle of the nozzle of the printing component and / or the light emitting surface of the UV curing lamp of the curing component, so that the above-mentioned printing component can print the multiple surfaces to be processed of the product to be processed around the preset direction, and the above-mentioned curing component can cure the multiple surfaces to be processed of the product to be processed 50 around the preset direction.

[0052] Furthermore, if Figure 9-11As shown, the number of the bearing components 222 is multiple (more than two), the number of the rotating parts 2241 is multiple (more than two), and each rotating part 2241 is connected to a bearing component 222; the rotating component 224 also includes a transmission unit 2243, and the transmission unit 2243 is connected to the rotating shaft of the rotating motor 2242 and all the rotating parts 2241; the rotating motor 2242 is configured to drive all the rotating parts 2241 to rotate synchronously around a preset direction through the transmission unit 2243, so as to drive all the bearing components 222 to rotate synchronously around a preset direction. In this design, by designing the number of the bearing components 222 to be multiple, each bearing component 222 can be used to carry and fix at least one product to be processed 50, so that the printing component can print the surface to be processed of more products to be processed 50 at one time, and the curing component can cure the surface to be processed of more products to be processed 50 at one time, which can effectively improve the processing efficiency of the surface treatment device 1. By designing the transmission unit 2243 and multiple rotating parts 2241, the multiple rotating parts 2241 are connected to the rotating shaft of the rotating motor 2242 through the transmission unit 2243, so that the rotating motor 2242 can drive the multiple rotating parts 2241 to rotate synchronously under the action of the transmission unit 2243, thereby effectively reducing the number of rotating motors 2242 invested and achieving the purpose of cost saving.

[0053] Specifically, the transmission unit 2243 includes a transmission wheel 22431 and a transmission belt 22432; there are multiple transmission wheels 22431, at least some of which are connected to the rotating assembly 224 in a one-to-one correspondence, and the rotating shaft of the rotating motor 2242 is fixedly connected to one of its transmission wheels 22431; the transmission belt 22432 is in transmission connection with at least some of the transmission wheels 22431. By designing the transmission wheels 22431 and the transmission belt 22432, the rotation of the rotating shaft of the rotating motor 2242 drives one of the transmission wheels 22431 connected thereto to rotate, and the rotation of the transmission wheel 22431 drives all the transmission wheels 22431 to rotate synchronously under the action of the transmission belt 22432, thereby driving multiple rotating members 2241 to rotate synchronously.

[0054] It can be understood that the number of transmission wheels 22431 and the number of rotating parts 2241 can be the same or different, and for transmission wheels 22431 and transmission belts 22432 in different forms, the specific transmission methods between the transmission wheel 22431 and the rotating part 2241, and the transmission wheel 22431 and the transmission belt 22432 can include but are not limited to the following embodiments.

[0055] like Fig. 9As shown, in the first embodiment, the plurality of transmission wheels 22431 include a first gear 22431a, a second gear 22431b, a pulley 22431c and a third gear 22431d; the number of the first gears 22431a as driven wheels is equal to the number of the rotating members 2241, and each first gear 22431a is fixedly connected to a rotating member 2241; the number of the second gears 22431b as driven wheels is equal to the number of the first gears 22431a, all the second gears 22431b can be rotatably connected to the base 221 through a rotating shaft, and each second gear 22431b is fixedly connected to a first gear 22431a Meshing connection; the number of pulleys 22431c as driven wheels is greater than the number of rotating parts 2241, and all pulleys 22431c can be rotatably connected to the base 221 through a rotating shaft; the number of third gears 22431d as driving wheels is one, and the third gear 22431d is fixedly connected to the rotating shaft of the rotating motor 2242; at this time, the transmission belt 22432 has a first surface and a second surface arranged opposite to each other, and the first surface of the transmission belt 22432 is provided with a serrated structure and is meshed with the second gear 22431b and the third gear 22431d, and the second surface of the transmission belt 22432 is a plane and is transmission-connected to the pulley 22431c.

[0056] In a second embodiment, the multiple transmission wheels 22431 include gears (not shown in the figure), the number of gears is equal to the number of rotating parts 2241, each gear is fixedly connected to a rotating part 2241, and the rotating shaft of the rotating motor 2242 is fixedly connected to one of the gears; in this case, the transmission belt 22432 is a chain (not shown in the figure), and the chain is meshed and connected with all the gears.

[0057] Furthermore, if Figure 6 , Figure 7 , Figure 8 , Fig.10 and Fig.11 As shown, the clamp 22 further includes a plug-in component 225, which is disposed on the clamping component 223 and the bearing component 222. The bearing component 222 is connected to the clamping component 223 via the plug-in component 225, and the plug-in component 225 is used to limit the bearing component 222 from moving in a direction deviating from a preset direction relative to the clamping component 223. By designing the plug-in component 225, the bearing component 222 is connected to the clamping component 223 via the plug-in component 225 to limit the bearing component 222 from moving in a direction deviating from a preset direction relative to the clamping component 223, which can achieve auxiliary positioning on the one hand, and enhance the clamping stability of the clamping component 223 on the bearing component 222 on the other hand.

[0058] Specifically, the plug-in component 225 includes a pin 2251 and a socket 2252; the pin 2251 is arranged on one of the clamping component 223 and the supporting component 222, and the socket 2252 is arranged on the other of the clamping component 223 and the supporting component 222, and the pin 2251 is plugged into and matched with the socket 2252 to limit the movement of the supporting component 222 relative to the clamping component 223 in a direction deviating from a preset direction.

[0059] Among them, the specific connection method between the pin 2251 and the clamping assembly 223 (specifically the above-mentioned clamping member 2231) / the bearing assembly 222 (specifically the above-mentioned bearing rod 22211 or the bearing clamp 22221) is not limited here, and the designers can make reasonable designs according to actual needs; for example, the pin 2251 can be but is not limited to being detachably connected to the clamping assembly 223 / the bearing assembly 222 by at least one of screw connection, snap connection or plug-in connection; for another example, the pin 2251 can be but is not limited to being non-detachably connected to the clamping assembly 223 / the bearing assembly 222 by gluing or welding.

[0060] By designing the pin 2251 and the socket 2252, the bearing component 222 is connected to the clamping component 223 through the plug-in connection of the pin 2251 and the socket 2252. The pin 2251 is adapted to the socket 2252, and the hole wall of the socket 2252 acts as a limit on the pin 2251. In this way, the bearing component 222 can be limited from moving in a direction deviating from a preset direction relative to the clamping component 223. On the one hand, auxiliary positioning can be achieved, and on the other hand, the clamping stability of the clamping component 223 on the bearing component 222 can be enhanced.

[0061] Furthermore, if Figure 6 , Figure 7 , Figure 8 , Fig.10 and Fig.11 As shown, the clamp 22 also includes a lifting assembly 226, which is installed on the base 221. The lifting assembly 226 is configured to move upward along a third direction ZZ' to a preset lifting position before the clamping assembly 223 makes a contraction movement along a preset direction. At the preset lifting position, the lifting assembly 226 can carry the bearing assembly 222 and align the bearing assembly 222 with the clamping assembly 223.

[0062] The lifting component 226 is a structural member used to hang the bearing component 222 in the clamp 22; before the clamping component 223 performs a contraction movement along a preset direction, the lifting component 226 can first perform an upward movement along the third direction ZZ' to a preset lifting position, at which time the staff can directly hang the bearing component 222 carrying and fixing the product 50 to be processed on the lifting component 226, and the lifting component 226 can replace manual holding to provide support for the product 50 to be processed through the bearing component 222, so as to facilitate the subsequent clamping component 223 to carry out Clamping and fixing; after the carrying component 222 carrying and fixing the product 50 to be processed is hung on the lifting component 226, the clamping component 223 performs a contraction movement along the preset direction to clamp and fix the carrying component 222; after the clamping component 223 clamps and fixes the carrying component 222, the lifting component 226 performs a downward movement along the third direction ZZ' to the initial position. At this time, the lifting component 226 has reserved enough space for the product 50 to be processed, which can effectively avoid the subsequent lifting component 226 from interfering with the product 50 to be processed rotating around the preset direction.

[0063] Specifically, the lifting component 226 includes a second driving member 2261 and a lifting member 2262; the second driving member 2261 is installed on the base 221; the lifting member 2262 is connected to the driving end of the second driving member 2261; the second driving member 2261 is configured to drive the lifting member 2262 to move upward along the third direction ZZ' to the above-mentioned preset lifting position. At the preset lifting position, the lifting member 2262 can carry the bearing component 222 and align the bearing component 222 with the clamping component 223.

[0064] Among them, the second driving member 2261 is used as the power source of the lifting component 226 to drive the lifting member 2262 to perform lifting movement along the third direction ZZ'; the specific form of the second driving member 2261 is not limited here, and the designer can make a reasonable choice according to actual needs; for example, the second driving member 2261 can be a cylinder, and the telescopic rod of the cylinder is fixedly connected to the lifting member 2262 as the driving end; for another example, the second driving member 2261 can also be a stepper motor, and the driving shaft of the stepper motor is fixedly connected to the lifting member 2262 as the driving end. The specific connection method between the second driving member 2261 and the base 221 is not limited here, and the designer can make a reasonable design according to actual needs; for example, the second driving member 2261 can be, but not limited to, detachably connected to the base 221 by at least one of screw connection, clamping connection or gluing connection; for another example, the second driving member 2261 can be, but not limited to, non-detachably connected to the base 221 by welding.

[0065] The lifting member 2262 is used as a bracket of the lifting assembly 226 to provide support for the bearing assembly 222; the specific structure of the lifting member 2262 is not limited here, and the designer can reasonably design it according to actual needs. For example, the lifting member 2262 can be, but not limited to, a lifting plate, a lifting block, or a lifting frame. The specific connection method between the lifting member 2262 and the driving end of the second driving member 2261 is not limited here, and the designer can reasonably design it according to actual needs; for example, the lifting member 2262 can be, but not limited to, fixedly connected to the driving end of the second driving member 2261 by locking screws.

[0066] By designing the second driving member 2261, the second driving member 2261 can drive the lifting member 2262 to make an upward movement along the third direction ZZ', so that the lifting member 2262 rises to the preset lifting position. At this time, the staff can directly hang the supporting component 222 that carries and fixes the product 50 to be processed on the lifting member 2262. The lifting member 2262 can replace manual hand-holding to provide support for the product 50 to be processed through the supporting component 222, so that the subsequent clamping component 223 can clamp and fix the supporting component 222; after the clamping component 223 clamps and fixes the supporting component 222, the second driving member 2261 can drive the lifting member 2262 to make a downward movement along the third direction ZZ' to the initial position. At this time, the lifting member 2262 has reserved enough space for the product 50 to be processed, which can effectively avoid the subsequent lifting member 2262 from interfering with the product 50 to be processed rotating around the preset direction.

[0067] It is worth mentioning that, through the design of the lifting component 226, when the lifting member 2262 moves upward along the third direction ZZ' to the preset lifting position under the action of the second driving member 2261, the lifting member 2262 can not only provide support for the supporting component 222 that carries and fixes the product 50 to be processed to free the hands of the staff, but the lifting member 2262 can also pre-align the supporting component 222 placed thereon, so as to facilitate the subsequent clamping component 223 to clamp and fix the supporting component 222.

[0068] like Figure 6 , Figure 7 , Figure 8 , Fig.10 and Fig.11As shown, considering that the clamp 22 in the embodiment of the present application is designed with a carrying component 222, a clamping component 223 and a rotating component 224, so that the product to be processed 50 is carried and fixed on the carrying component 222, the clamping component 223 performs a contraction movement along a preset direction to clamp and fix the carrying component 222, and the rotating component 224 drives the carrying component 222 to rotate around a preset direction so that the product to be processed 50 also rotates around the preset direction, thereby realizing the above-mentioned printing component to print the multiple surfaces to be processed of the product to be processed 50 around the preset direction, and realizing the above-mentioned curing component to cure the multiple surfaces to be processed of the product to be processed 50 around the preset direction. It is understandable that the product form of the product 50 to be processed is diverse, and the specific structure of the bearing assembly 222 is also different for the products 50 to be processed with different product forms. In order to enable the clamp 22 to clamp and fix as many products 50 to be processed with the same product form as possible, or to clamp and fix the products 50 to be processed with different product forms, it is designed that the bearing assembly 222 includes a first bearing assembly and a second bearing assembly; the first bearing assembly is used to carry and fix the first product to be processed; the second bearing assembly is used to carry and fix the second product to be processed; the products 50 to be processed include the first product to be processed and the second product to be processed. The clamping assembly 223 includes a first clamping assembly and a second clamping assembly; the first clamping assembly is installed on the base 221 and is configured to be able to perform telescopic movement along a first preset direction to loosen or clamp the first bearing assembly; the second clamping assembly is installed on the base 221 and is configured to be able to perform telescopic movement along a second preset direction to loosen or clamp the second bearing assembly; the preset direction includes a first preset direction and a second preset direction, and the first preset direction intersects with the second preset direction. The rotating assembly 224 includes a first rotating assembly and a second rotating assembly; the first rotating assembly is installed on the base 221 and its rotating end is connected to the first supporting assembly to drive the first supporting assembly to rotate around the first preset direction, thereby driving the first product to be processed to rotate around the first preset direction; the second rotating assembly is installed on the base 221 and its rotating end is connected to the second supporting assembly to drive the supporting assembly 222 to rotate around the second preset direction, thereby driving the second product to be processed to rotate around the second preset direction.

[0069] The product to be processed 50 includes a first product to be processed and a second product to be processed; wherein the first product to be processed and the second product to be processed may be the product to be processed 50 of the same product form or may be the product to be processed 50 of different product forms. At this time, the bearing assembly 222 includes a first bearing assembly and a second bearing assembly; wherein the first bearing assembly is adapted to the first product to be processed, and the second bearing assembly is adapted to the second product to be processed; and the number of the first bearing assembly may be one or more, and the number of the second bearing assembly may also be one or more. The first clamping assembly is one of the clamping assemblies 223 corresponding to clamping and fixing the first bearing assembly, and the second clamping assembly is another clamping assemblies 223 corresponding to clamping and fixing the second bearing assembly. The first rotating assembly is one of the rotating assemblies 224 corresponding to driving the first bearing assembly to rotate around the first preset direction, and the second rotating assembly is another rotating assemblies 224 corresponding to driving the second bearing assembly to rotate around the second preset direction. The first preset direction may correspond to one of the first direction XX' and the second direction YY', and the second preset direction corresponds to the other of the first direction XX' and the second direction YY'. For example, when the product form of the first product to be processed is the same as the product form of the second product to be processed, the first product to be processed may be a first mobile phone middle frame, and the second product to be processed may be a second mobile phone middle frame.

[0070] It should be noted that the first clamping assembly and the second clamping assembly can be completely consistent in structure, or there may be slight differences in the specific structure of the above-mentioned clamping member 2231 (for example, the clamping member 2231 of the first clamping assembly is a clamping plate, and the clamping member 2231 of the second clamping assembly is a clamping block) or the number, and corresponding adjustments can be made here according to the actual needs of the designer. Similarly, the first rotating assembly and the second rotating assembly can be completely consistent in structure, or there may be slight differences in the specific structure or the number of the above-mentioned rotating member 2241, and corresponding adjustments can be made here according to the actual needs of the designer. When the clamp 22 also includes the above-mentioned lifting assembly 226, the corresponding lifting assembly 226 includes a first lifting assembly and a second lifting assembly; the first lifting assembly is installed on the base 221 and is configured to move upward along the third direction ZZ' to a first preset lifting position; the second lifting assembly is installed on the base 221 and is configured to move upward along the third direction ZZ' to a second preset lifting position; the above-mentioned preset lifting positions include the first preset lifting position and the second preset lifting position. Similarly, the first lifting assembly and the second lifting assembly can be completely consistent in structure, or there can be slight differences in the specific structure or quantity of the above-mentioned lifting members 2262. Corresponding adjustments can be made here according to the actual needs of the designer.

[0071] Furthermore, if Figure 1-Figure 3As shown, the surface treatment device 1 also includes a printing and curing module 30; the printing and curing module 30 includes a second driving module 31, a printing component (not shown in the figure) and a curing component (not shown in the figure). The second driving module is installed on the frame 10; the printing component is installed on the driving end of the second driving module 31; the driving end of the second driving module 31 can move along the second direction YY' and / or the third direction ZZ' and move the printing component to a preset printing position to perform printing treatment on the surface to be treated of the product to be treated 50; the curing component is arranged on one side of the printing component, and the curing component is used to perform curing treatment on the surface to be treated of the product to be treated 50 that has been printed.

[0072] The printing and curing module 30 is a mechanism in the surface treatment device 1 for printing and / or curing the product 50 to be treated. The printing and curing module 30 includes a second driving module 31, a printing component and a curing component.

[0073] The second driving module 31 is used as a transportation mechanism of the printing and curing module 30 to move the printing component to a preset position to be printed. The specific structure of the second driving module 31 will be described in detail below.

[0074] The second drive module 31 is installed on the frame 10 (specifically the above-mentioned workbench 11); the specific connection method between the second drive module 31 and the frame 10 is not limited here, and the designer can make a reasonable design according to actual needs; for example, when the second drive module 31 and the frame 10 are detachably connected, the second drive module 31 can be but is not limited to being fixedly connected to the frame 10 by at least one of screw connection, card connection or plug-in connection; for another example, when the second drive module 31 and the frame 10 are non-detachably connected, the second drive module 31 can be but is not limited to being fixedly connected to the frame 10 by welding.

[0075] The printing assembly as the printing mechanism of the printing and curing module 30 is used to print the surface of the product 50. The specific structure of the printing assembly 32 is not limited here, and the designer can make a reasonable design according to actual needs.

[0076] The printing component is installed at the driving end of the second driving module 31; the specific connection method between the printing component and the driving end of the second driving module 31 is not limited here, and designers can make reasonable designs according to actual needs; for example, the printing component can be but is not limited to being detachably connected to the driving end of the second driving module 31 by at least one of screw connection, snap connection or plug-in connection; for another example, the printing component can also be but is not limited to being non-detachably connected to the driving end of the second driving module 31 by welding.

[0077] The driving end of the second driving module 31 can move along the second direction YY' and / or the third direction ZZ' to drive the printing assembly connected thereto to move along the second direction YY' and / or the third direction ZZ'. In other words, the printing assembly can move along the second direction YY' and / or the third direction ZZ' driven by the driving end of the second driving module 31, or in other words, the second driving module 31 (specifically the fifth driving member and the sixth driving member described below) is configured to drive the printing assembly to move along the second direction YY' and / or the third direction ZZ'.

[0078] It should be noted that the first direction XX', the second direction YY' and the third direction ZZ' intersect each other; for example, the first direction XX', the second direction YY' and the third direction ZZ' are perpendicular to each other, the first direction XX' can be the X-axis direction in the three-dimensional space coordinate system, the second direction YY' corresponds to the Y-axis direction in the three-dimensional space coordinate system, and the third direction ZZ' corresponds to the Z-axis direction in the three-dimensional space coordinate system.

[0079] It is understandable that the motion trajectory of the printing component driven by the driving end of the second driving module 31 to the preset position to be printed is uncertain, and the designer can make a reasonable design according to actual needs. For example, the printing component driven by the driving end of the second driving module 31 can only move along the second direction YY' to the preset position to be printed; for another example, the printing component driven by the driving end of the second driving module 31 can only move along the third direction ZZ' to the preset position to be printed; for another example, the printing component driven by the driving end of the second driving module 31 can first move along the second direction YY' to a certain intermediate transition position, and then the printing component driven by the driving end of the second driving module 31 moves from the intermediate transition position to the preset position to be printed along the third movement direction.

[0080] The curing component is used as a curing mechanism of the printing curing module 30 to perform curing treatment on the surface to be treated of the product to be treated 50. The specific structure of the curing component is not limited here, and the designer can make a reasonable design according to actual needs.

[0081] The curing component is arranged on one side of the printing component, and the curing component is used to perform curing treatment on the surface to be treated of the printed product to be treated 50. For example, the printing curing module 30 also includes a housing 32, and the housing 32 has a printing installation position and a curing installation position; the printing component includes a plurality of nozzles installed on the housing 32 corresponding to the printing installation position, and the plurality of nozzles are arranged in a rectangular array along the first direction and the second direction, and the nozzles are used to perform printing treatment on the surface to be treated of the product to be treated 50; the curing component includes a UV curing lamp installed on the housing 32 corresponding to the curing installation position, and the UV curing lamp extends along the second direction and is located at the rear side of all the nozzles, and the UV curing lamp is used to perform curing treatment on the surface to be treated of the product to be treated 50.

[0082] The fixture 22 can drive the product to be processed 50 to rotate around a preset direction, so that the multiple surfaces to be processed of the product to be processed 50 around the preset direction can be arranged toward the nozzle of the nozzle head of the printing assembly, so that the nozzle head of the printing assembly can effectively print the multiple surfaces to be processed of the product to be processed 50 around the preset direction, which can effectively improve the printing efficiency of the surface treatment device 1. The fixture 22 can drive the product to be processed 50 to rotate around a preset direction, so that the multiple surfaces to be processed of the product to be processed 50 around the preset direction can be arranged toward the light emitting surface of the UV curing lamp of the curing assembly, so that the UV curing lamp of the curing assembly can effectively cure the multiple surfaces to be processed of the product to be processed 50 around the preset direction, which can effectively improve the curing efficiency of the surface treatment device 1. It should be noted that the preset direction can be the first direction XX', the second direction YY', or another direction located in the plane where the first direction XX' and the second direction YY' are located and different from the first direction XX' and the second direction YY'.

[0083] In addition, when only a single processed surface of the processed product 50 needs to be printed and cured, the above-mentioned clamp 22 will not drive the processed product 50 to rotate around a preset direction. The clamp 22 only needs to fix the processed product 50 and set the processed surface of the processed product 50 toward the nozzle of the nozzle of the printing component and the light output surface of the UV curing lamp of the curing component.

[0084] By designing the second driving module 31, the driving end of the second driving module 31 can drive the printing component to move along the second direction YY' and / or the third direction ZZ' to move the printing component to the preset printing position; in this way, the printing component can effectively print the surface to be treated of the product to be treated 50 fixed on the fixture 22, and the curing component can effectively cure the printed surface to be treated of the product to be treated. The surface treatment equipment 1 has a high degree of automation, and the staff does not need to be too close to the fixture 22, which can effectively reduce the inhalation of harmful substances such as wastewater with pungent odor or dust generated during the processing process, which can play a good protective role on the health of the staff, and the surface treatment equipment 1 can print and cure the surface to be treated of the product to be treated, which can effectively reduce the production cost.

[0085] Furthermore, if Figure 1-Figure 3As shown, the surface treatment device 1 also includes a material box module 40, and the material box module 40 includes a third driving module 41 and a material box 42; the third driving module 41 is installed on the frame 10; the material box 42 is installed on the driving end of the third driving module 41, and the driving end of the third driving module 41 can move along the second direction YY'. The surface treatment device 1 has a non-working mode. In the non-working mode, the driving end of the second driving module 31 drives the printing assembly to move along the second direction YY' and / or the third direction ZZ' to a preset material dipping position, and the driving end of the third driving module 41 drives the material box 42 to move along the second direction YY' to a preset material dipping position, so that the material juice in the material box 42 can immerse the nozzle of the nozzle of the printing assembly.

[0086] Among them, the third drive module 41 is used as a transport mechanism of the material box module 40 to transfer the material box 42 containing the material juice to the preset dipping position. The third drive module 41 is installed on the frame 10 (specifically the above-mentioned workbench 11); the specific connection method between the third drive module 41 and the frame 10 is not limited here, and the designer can make a reasonable design according to actual needs; for example, when the third drive module 41 and the frame 10 are detachably connected, the third drive module 41 can be, but not limited to, fixedly connected to the frame 10 by at least one of screw connection, card connection or plug-in connection; for another example, when the third drive module 41 and the frame 10 are non-detachably connected, the third drive module 41 can be, but not limited to, fixedly connected to the frame 10 by welding.

[0087] The material box 42 is used to store the material juice, which is the pigment that is printed on the surface of the product 50 to be processed by the nozzle of the nozzle of the printing assembly. The specific composition of the material juice is not limited here, and the designer can make a reasonable choice according to actual needs. The specific structure of the material box 42 is not limited here, and the designer can make a reasonable design according to actual needs. For example, the material box 42 can be but not limited to a disc-shaped structure. The specific connection method between the material box 42 and the driving end of the third driving module 41 is not limited here, and the designer can make a reasonable design according to actual needs; for example, the material box 42 can be but not limited to being detachably connected to the driving end of the third driving module 41 by at least one of screw connection, card connection or plug-in connection; for another example, the material box 42 can be but not limited to being non-detachably connected to the driving end of the third driving module 41 by welding or gluing.

[0088] The "non-working mode" of the surface treatment device 1 can be understood as the state when the surface treatment device 1 is in a shutdown state; when the surface treatment device 1 is in a "working mode" when working normally, the driving end of the third driving module 41 will drive the material box 42 to move to a preset waiting position to avoid the material box 42 from interfering with the above-mentioned printing component.

[0089] By designing the third driving module 41, in the non-working mode, the driving end of the third driving module 41 can drive the material box 42 to move along the second direction YY' to the preset material dipping position, and the driving end of the second driving module 31 can drive the printing assembly to move along the second direction YY' and / or the third direction ZZ' to the preset material dipping position, so that the nozzle of the nozzle of the printing assembly is immersed in the material juice of the material box 42. In this way, the nozzle of the nozzle of the printing assembly can be kept moist at all times to avoid the solidification of the material juice and clogging the nozzle of the printing assembly.

[0090] Specifically, the third driving module 41 includes a first conveying rail 411 and a third driving member (not shown in the figure); the first conveying rail 411 is installed on the frame 10 and extends along the second direction YY' and intersects with the top of the first driving module 21; the material box 42 is slidably connected to the first conveying rail 411; the driving end of the third driving member is connected to the material box 42, and the third driving member is configured to drive the material box 42 to move along the second direction YY'.

[0091] Among them, the specific connection method between the first conveying track 411 and the frame 10 is not limited here, and the designer can make a reasonable design according to actual needs; for example, the first conveying track 411 can be, but not limited to, detachably connected to the frame 10 by screwing; for another example, the first conveying track 411 can also be, but not limited to, non-detachably connected to the frame 10 by welding. The third driving member is used as the power source of the third driving module 41 to drive the material box 42 to move along the second direction YY'. The specific form of the third driving member is not limited here, and the designer can make a reasonable choice according to actual needs; for example, the third driving member can be a cylinder, and the telescopic rod of the cylinder is fixedly connected to the material box 42 as the driving end; for another example, the third driving member can also be a stepping motor, and the driving shaft of the stepping motor is fixedly connected to the material box 42 as the driving end. The specific connection method between the material box 42 and the driving end of the third driving member is not limited here, and the designer can make a reasonable design according to actual needs; for example, the material box 42 can be, but not limited to, fixedly connected to the driving end of the third driving member by screwing.

[0092] By designing the third driving member, the driving end of the third driving member can drive the material box 42 to move along the second direction YY', so that when the surface treatment equipment 1 is in the above-mentioned non-working mode, the material box 42 can be moved to a preset material immersion position to ensure that the nozzle of the nozzle of the above-mentioned printing assembly can be immersed in the material juice of the material box 42; by designing the third driving member, the driving end of the third driving member can drive the material box 42 to move along the second direction YY', so that when the surface treatment equipment 1 is in the above-mentioned working mode, the material box 42 can be moved to a preset waiting position to avoid interference of the material box 42 with the above-mentioned printing assembly.

[0093] Furthermore, if Figure 2 and Figure 3 As shown, the first driving module 21 includes a second conveying track 211 and a fourth driving member (not shown in the figure); the second conveying track 211 is installed on the frame 10 and extends along the first direction XX', and the clamp 22 is slidably connected to the second conveying track 211; the driving end of the fourth driving member is connected to the clamp 22, and the fourth driving member is configured to drive the clamp 22 to move along the first direction XX'.

[0094] Among them, the specific connection method between the second conveying track 211 and the rack 10 is not limited here, and the designer can make a reasonable design according to actual needs; for example, the second conveying track 211 can be, but not limited to, detachably connected to the rack 10 by means of screwing; for another example, the second conveying track 211 can also be, but not limited to, non-detachably connected to the rack 10 by means of welding. The fourth driving member is used as the power source of the first driving module 21 to drive the clamp 22 to move along the first direction XX'. The specific form of the fourth driving member is not limited here, and the designer can make a reasonable choice according to actual needs; for example, the fourth driving member can be a cylinder, and the telescopic rod of the cylinder is fixedly connected to the clamp 22 as the driving end; for another example, the fourth driving member can also be a stepping motor, and the driving shaft of the stepping motor is fixedly connected to the clamp 22 as the driving end. The specific connection method between the clamp 22 and the driving end of the fourth driving member is not limited here, and the designer can make a reasonable design according to actual needs; for example, the clamp 22 can be, but not limited to, fixedly connected to the driving end of the fourth driving member by means of screwing.

[0095] By designing the fourth driving member, the driving end of the fourth driving member can drive the clamp 22 to move along the first direction XX', so that when the surface treatment equipment 1 is in the above-mentioned working mode, the clamp 22 with the product to be treated 50 is moved to the preset processing position, so as to ensure that the above-mentioned printing component can print the surface to be treated of the product to be treated 50 at the above-mentioned preset printing position, and ensure that the above-mentioned curing component can cure the printed surface to be treated of the product to be treated 50.

[0096] Furthermore, if Figure 2 and Figure 3As shown, the second driving module 31 includes a third conveying rail 311, a fourth conveying rail (not shown in the figure), a fifth driving member (not shown in the figure) and a sixth driving member (not shown in the figure); the third conveying rail 311 is installed on the frame 10 and extends along the second direction YY' and is erected above the first driving module 21; the fourth conveying rail is slidably connected to the third conveying rail 311, and the printing assembly is slidably connected to the fourth conveying rail; the driving end of the fifth driving member is connected to the fourth conveying rail, and the fifth driving member is configured to drive the fourth conveying rail to move along the second direction YY'; and the driving end of the sixth driving member is connected to the printing assembly, and the sixth driving member is configured to drive the printing assembly to move along the third direction ZZ'.

[0097] Among them, the specific connection method between the third conveying track 311 and the rack 10 is not limited here, and the designer can make a reasonable design according to actual needs; for example, the third conveying track 311 can be, but not limited to, detachably connected to the rack 10 by means of screwing; for another example, the third conveying track 311 can also be, but not limited to, non-detachably connected to the rack 10 by means of welding. The fifth driving member is used as one of the power sources of the second driving module 31 to drive the fourth conveying track to move along the second direction YY'. The specific form of the fifth driving member is not limited here, and the designer can make a reasonable choice according to actual needs; for example, the fifth driving member can be a cylinder, and the telescopic rod of the cylinder is fixedly connected to the fourth conveying track as the driving end; for another example, the fifth driving member can also be a stepping motor, and the driving shaft of the stepping motor is fixedly connected to the fourth conveying track as the driving end. The specific connection method between the fourth conveying track and the driving end of the fifth driving member is not limited here, and the designer can make a reasonable design according to actual needs; for example, the fourth conveying track can be, but not limited to, fixedly connected to the driving end of the fifth driving member by means of screwing.

[0098] The sixth driving member is another power source of the second driving module 31, which is used to drive the printing assembly to move along the third direction ZZ'. The specific form of the sixth driving member is not limited here, and designers can make reasonable choices according to actual needs; for example, the sixth driving member can be a cylinder, and the telescopic rod of the cylinder is fixedly connected to the printing assembly as the driving end; for another example, the sixth driving member can also be a stepper motor, and the driving shaft of the stepper motor is fixedly connected to the printing assembly as the driving end. The specific connection method between the printing assembly and the driving end of the sixth driving member is not limited here, and designers can make reasonable designs according to actual needs; for example, the printing assembly can be, but is not limited to, fixedly connected to the driving end of the sixth driving member by locking screws.

[0099] By designing the fifth driving member, the driving end of the fifth driving member can drive the fourth conveying track to move along the second direction YY', and by designing the sixth driving member, the driving end of the sixth driving member can drive the printing component to move along the third direction ZZ'; in this way, when the surface treatment equipment 1 is in the above-mentioned working mode, the printing component can be moved to the above-mentioned preset printing position to print the surface to be processed of the product to be processed 50 on the fixture 22 in the above-mentioned preset processing position, and the curing component can cure the printed surface to be processed of the product to be processed 50; in this way, when the surface treatment equipment 1 is in the above-mentioned non-working mode, the printing component can be moved to the above-mentioned preset material dipping position, so that the nozzle of the nozzle of the printing component can be immersed in the material juice of the material box 42 in the above-mentioned preset material dipping position.

[0100] The same or similar numbers in the drawings of this embodiment correspond to the same or similar parts; in the description of this application, it should be understood that if the terms "upper", "lower", "left", "right", etc. indicate an orientation or position relationship based on the orientation or position relationship shown in the drawings, it is only for the convenience of describing this application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, the terms describing the position relationship in the drawings are only used for illustrative purposes and cannot be understood as a limitation on this patent. For ordinary technicians in this field, the specific meanings of the above terms can be understood according to specific circumstances.

[0101] The above description is only a preferred embodiment of the present application and is not intended to limit the present application. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present application should be included in the protection scope of the present application.

Claims

1. A mobile phone middle frame surface treatment device, characterized in that: include: frame; A fixture moving module, comprising a first driving module and a fixture, wherein the first driving module is mounted on the frame, the fixture comprises a base and a bearing assembly arranged on the base, the base is mounted on a driving end of the first driving module, and the bearing assembly is configured to fix the mobile phone middle frame from both sides in a thickness direction of the mobile phone middle frame; Wherein, the driving end of the first driving module can move along a first direction and move the fixture to a preset processing position.

2. The mobile phone middle frame surface treatment device according to claim 1, characterized in that: The bearing assembly comprises: Two bearing clamps are arranged on both sides of the mobile phone middle frame in its thickness direction, and each of the bearing clamps is provided with a perforation corresponding to the hole on the mobile phone middle frame; A connecting rod, corresponding to the through-holes and the holes on the middle frame of the mobile phone; A fastener is detachably connected to the connecting rod to fix the mobile phone middle frame between the two bearing clamps.

3. The mobile phone middle frame surface treatment device according to claim 1, characterized in that: The fixture also includes: A clamping assembly mounted on the base, wherein the clamping assembly is configured to perform telescopic movement along a preset direction to loosen or clamp the bearing assembly; A rotating assembly is installed on the base, and a rotating end of the rotating assembly is connected to the bearing assembly to drive the bearing assembly to rotate around the preset direction, thereby driving the mobile phone middle frame to rotate around the preset direction.

4. The mobile phone middle frame surface treatment device according to claim 3, characterized in that: The clamping assembly comprises: A clamping member, provided on at least one side of the base along the preset direction; A first driving member is mounted on the base, and a driving end of the first driving member is connected to the clamping member; Wherein, the first driving member is configured to drive the clamping member to perform an extension movement along the preset direction to loosen the bearing assembly; the first driving member is also configured to drive the clamping member to perform a contraction movement along the preset direction to clamp the bearing assembly.

5. The mobile phone middle frame surface treatment device according to claim 3, characterized in that: The rotating assembly comprises: A rotating member, disposed on the base and connected to the bearing assembly as a rotating end of the rotating assembly; A rotating motor is installed on the base, the rotating shaft of the rotating motor is connected to the rotating member, and the rotating motor is configured to drive the rotating member to rotate around the preset direction to drive the bearing assembly to rotate around the preset direction.

6. The mobile phone middle frame surface treatment device according to claim 5, characterized in that: There are multiple bearing assemblies, multiple rotating members, and each rotating member is connected to one bearing assembly; The rotating assembly further comprises a transmission unit, which is in transmission connection with the rotating shaft of the rotating motor and all the rotating parts; The rotating motor is configured to drive all the rotating parts to rotate synchronously around the preset direction through the transmission unit, so as to drive all the bearing components to rotate synchronously around the preset direction.

7. The mobile phone middle frame surface treatment device according to claim 6, characterized in that: The transmission unit comprises: A plurality of transmission wheels, at least some of which are connected to the rotating member in a one-to-one correspondence, and the rotating shaft of the rotating motor is fixedly connected to one of the transmission wheels; A transmission belt is transmission-connected to at least a portion of the transmission wheels.

8. The mobile phone middle frame surface treatment device according to claim 3, characterized in that: The clamp also includes a plug-in component, which is arranged on the clamping component and the bearing component. The bearing component is connected to the clamping component through the plug-in component, and the plug-in component is used to limit the movement of the bearing component relative to the clamping component in a direction deviating from the preset direction.

9. The mobile phone middle frame surface treatment device according to claim 8, characterized in that: The plug-in assembly includes a pin and a socket, wherein the pin is arranged on one of the clamping assembly and the bearing assembly, and the socket is arranged on the other of the clamping assembly and the bearing assembly, and the pin is plugged into and matched with the socket to limit the bearing assembly from moving in a direction deviating from the preset direction relative to the clamping assembly.

10. The mobile phone middle frame surface treatment device according to any one of claims 1 to 9, characterized in that: Also includes: The printing and curing module includes a second driving module, a printing component and a curing component, wherein the second driving module is installed on the frame, and the printing component is installed on the driving end of the second driving module. The driving end of the second driving module can move along the second direction and / or the third direction and move the printing component to a preset printing position to print the surface to be processed of the mobile phone middle frame. The curing component is arranged on one side of the printing component, and the curing component is used to cure the printed surface to be processed of the mobile phone middle frame.