Jig rotating and moving platform

By designing a jig rotation platform and using flipping and clamping components to stabilize the flipping heater driver, the problem of difficult assembly of the driver's side parts was solved, and a convenient assembly process was achieved.

CN223848568UActive Publication Date: 2026-01-30SHENZHEN JETTEST ELECTRONICS EQUIP CO LTD
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Patent Information

Application Number
CN202423225195.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2026-01-30
Estimated Expiration
2034-12-24

AI Technical Summary

Technical Problem

Existing equipment makes it difficult to effectively assemble the side components of the heater driver, resulting in assembly difficulties.

Method used

A jig rotation platform is designed, including a flipping component and a flipping platform. The flipping mechanism and clamping component stabilize the flipping heater driver so that its side faces upward, which facilitates assembly.

Benefits of technology

The assembly of the side parts of the heater driver has been improved, and the assembly difficulty has been reduced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a jig rotating and moving platform. The jig rotating and moving platform comprises an overturning assembly and an overturning platform. The turnover assembly comprises a turnover support and a turnover mechanism, and the turnover mechanism is arranged on the turnover support in a turnover mode. The overturning platform comprises a bearing plate and a pressing assembly, the bearing plate is arranged on the overturning mechanism, overturns along with the overturning mechanism and is used for bearing a driver of the heater, and the pressing assembly is arranged on the bearing plate and is used for pressing the driver of the heater. The turnover support is of a supporting structure, the turnover mechanism is rotatably arranged on the turnover support, namely, the turnover mechanism can turn over around the rotating shaft, the bearing plate is arranged on the turnover mechanism, so that the bearing plate can turn over along with the turnover mechanism, meanwhile, the pressing assembly is used for pressing a driver in the heater, the driver is prevented from falling off in the turnover process, and the turnover efficiency is improved. Therefore, the driver can stably turn the side face to the upward side face, so that the assembly convenience of the driver is improved, and the assembly difficulty of parts on the side face of the driver is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a kind of heater assembly equipment technical field, especially a kind of jig rotary moving platform. BACKGROUND

[0002] On new energy automobile, commonly used heater is used as heating device, and is important structure for vehicle-mounted air conditioner. The main structure of heater is driver and radiator, driver is connected with radiator, and driver drives radiator to dissipate heat at the same time, thereby heating vehicle. In driver in heater, many electronic components need to be connected, including high-voltage interface, low-voltage interface and the like. For these low-voltage interfaces, under normal circumstances, high and low voltage interfaces are located on the side of driver, and the side of driver needs to be assembled. However, the existing equipment is mostly assembled from top to bottom, and it is difficult to assemble the side of driver, so that the parts on the side of driver in heater exist assembly difficult problem. SUMMARY

[0003] In order to solve the technical problem that the parts on the side of driver in heater exist assembly difficult in the prior art, one of the purposes of the utility model is to provide a jig rotary moving platform.

[0004] One of the purposes of the utility model is achieved by adopting the following technical scheme:

[0005] A jig rotary moving platform, the jig rotary moving platform includes turnover assembly and turnover platform;

[0006] The turnover assembly includes turnover support and turnover mechanism, and the turnover mechanism is turnably arranged on the turnover support;

[0007] The turnover platform includes bearing plate and pressing assembly, the bearing plate is arranged on the turnover mechanism and turns with the turnover mechanism, and is used for bearing driver of heater, and the pressing assembly is arranged on the bearing plate and is used for pressing driver of heater.

[0008] Optionally, the turnover platform further includes positioning assembly, the positioning assembly is arranged on the bearing plate and is used for positioning heater.

[0009] Optionally, the positioning assembly includes positioning plate and a plurality of positioning mechanisms, the positioning plate is arranged on the bearing plate, and the positioning plate and the bearing plate have gap therebetween, the positioning plate is provided with positioning hole, the positioning mechanism is arranged at the positioning hole and located at the lower surface of the positioning plate, the positioning mechanism has positioning pin capable of telescopic movement, the positioning pin is telescopic and protrudes from the positioning plate through the positioning hole, and is used for positioning jig.

[0010] Optionally, the positioning mechanism comprises a telescopic air cylinder and a positioning pin, the positioning pin being arranged at the output end of the telescopic air cylinder.

[0011] Optionally, the turnover platform further comprises a first moving mechanism, the positioning assembly being arranged on the first moving mechanism, the first moving mechanism being arranged on the bearing plate and used to drive the positioning assembly to move below the pressing assembly.

[0012] Optionally, the first moving mechanism comprises a cylinder sliding table, the cylinder sliding table being provided with a moving block movable along the X-axis direction;

[0013] The positioning assembly is arranged on the bearing plate and slidable along the X-axis direction, and the positioning assembly is connected with the moving block.

[0014] Optionally, the first moving mechanism further comprises a guide mechanism, the guide mechanism comprising an X-axis guide rail and an X-axis sliding block, the X-axis guide rail being arranged on the bearing plate along the X-axis direction, and the X-axis sliding block being arranged on the X-axis guide rail and slidable;

[0015] The positioning assembly is arranged on the X-axis sliding block.

[0016] Optionally, the bearing plate is provided with an avoiding groove through which the heat sink can pass and avoid moving.

[0017] The turnover platform further comprises a supporting plate assembly, the supporting plate assembly comprising a moving module and a supporting plate mechanism;

[0018] The moving module is arranged below the bearing plate and used to drive the supporting plate mechanism to move with the positioning assembly.

[0019] The supporting plate mechanism is arranged on the moving module and partially extends to one side of the heat sink.

[0020] After the turnover platform is turned over, the supporting plate mechanism is turned over to support the heat sink of the heater.

[0021] Optionally, the turnover support comprises a turnover bottom plate and two supporting columns, the two supporting columns being arranged at the two ends of the turnover bottom plate respectively.

[0022] The turnover mechanism comprises two turnover blocks, the two turnover blocks being rotatably arranged at the upper ends of the two supporting columns respectively and being arranged side by side and spaced apart.

[0023] The bearing plate is arranged on the two turnover blocks.

[0024] Optionally, the jig rotary moving platform further comprises a moving bottom plate and a second moving mechanism, the second moving mechanism being arranged on the moving bottom plate, and the turnover support being arranged on the second moving mechanism.

[0025] The second moving mechanism drives the rotating support to move along the X-axis direction.

[0026] Compared with the prior art, the utility model has the advantages of:

[0027] In the utility model, the turnover support is a support structure, the turnover mechanism is rotatably arranged on the turnover support, that is, the turnover mechanism can be turned around the rotating shaft, the bearing plate is arranged on the turnover mechanism, so that the bearing plate can be turned with the turnover mechanism, and the driver in the heater is pressed by the pressing assembly, so that the driver is prevented from falling in the turning process, the driver stably turns the side surface to the side surface upward, the assembly convenience of the driver is improved, and the assembly difficulty of the side surface parts of the driver is reduced. BRIEF DESCRIPTION OF DRAWINGS

[0028] Figure 1 It is a structure schematic view of the positioning assembly of the jig rotating and moving platform in the loading end of the utility model;

[0029] Figure 2 It is a structure schematic view of the positioning assembly of the jig rotating and moving platform in the working end of the utility model;

[0030] Figure 3 It is a structure schematic view of the turnover platform after turning of the jig rotating and moving platform of the utility model;

[0031] Figure 4 It is a front structure schematic view of the jig rotating and moving platform of the utility model;

[0032] Figure 5 It is an exploded schematic view of the turnover platform in the jig rotating and moving platform of the utility model;

[0033] Figure 6 It is an exploded schematic view of the turnover assembly in the jig rotating and moving platform of the utility model;

[0034] Figure 7 It is a bottom structure schematic view of the positioning assembly in the jig rotating and moving platform of the utility model.

[0035] IDENTIFICATION OF THE DRAWINGS:

[0036] 1, turnover assembly; 11, turnover support; 111, turnover bottom plate; 112, support column; 12, turnover mechanism; 121, turnover block; 13, turnover driving mechanism;

[0037] 2. Tilting platform; 21. Bearing plate; 211. Clearance groove; 22. Pressing assembly; 23. Positioning assembly; 231. Positioning plate; 2311. Through hole; 232. Positioning mechanism; 24. First moving mechanism; 241. Cylinder slide; 242. Guide mechanism; 25. Pallet assembly; 251. Moving module; 252. Pallet mechanism;

[0038] 3. Move the base plate;

[0039] 4. Second moving mechanism. Detailed Implementation

[0040] The following will refer to the appendices in the embodiments of this application. Figure 1 To be continued Figure 7 The technical solutions in the embodiments of this application are clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.

[0041] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of this application are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indication will also change accordingly.

[0042] Furthermore, the use of terms such as "first" and "second" in this application is for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. Additionally, the technical solutions of the various embodiments can be combined with each other, but only on the basis of being achievable by those skilled in the art. When the combination of technical solutions is contradictory or impossible to implement, such a combination of technical solutions should be considered non-existent and not within the scope of protection claimed in this application.

[0043] like Figures 1-3 The diagram shows a jig rotary moving platform for heater assembly, which includes a tilting assembly 1 and a tilting platform 2. The tilting assembly 1 includes a tilting bracket 11 and a tilting mechanism 12, which is tiltably mounted on the tilting bracket 11.

[0044] The flipping platform 2 includes a support plate 21 and a pressing assembly 22. The support plate 21 is disposed on the flipping mechanism 12 and flips with the flipping mechanism 12 to support the driver of the heater. The pressing assembly 22 is disposed on the support plate 21 to press the driver of the heater.

[0045] In the utility model, the turnover support 11 is a support structure, the turnover mechanism 12 is rotatably arranged on the turnover support 11, that is, the turnover mechanism 12 can be turned around the rotating shaft, the bearing plate 21 is arranged on the turnover mechanism 12, so the bearing plate 21 can be turned with the turnover mechanism 12, and the driver in the heater is pressed by the pressing assembly 22, so that the driver is prevented from falling during the turning process, the driver is stably turned to the side surface to face upward, thereby improving the assembly convenience of the driver and reducing the assembly difficulty of the side surface parts of the driver.

[0046] In some further embodiments of the turnover platform 2, as shown in Figure 1 、 Figure 4 and Figure 5 , the turnover platform 2 further comprises a positioning assembly 23, which is arranged on the bearing plate 21. When the heater is placed on the bearing plate 21, the positioning assembly 23 is used to position the heater, thereby improving the position accuracy of the heater on the bearing plate 21.

[0047] In a specific embodiment of one of the positioning assemblies 23, the positioning assembly 23 comprises a plurality of groups of positioning pins, and each group of positioning pins corresponds to a different jig loading angle. For example, two groups of positioning pins are arranged, one group of positioning pins is used to position the jig, and the side edge of the jig forms a first angle with the X-axis, and the other group of positioning pins is used to position the jig, and the side edge of the jig forms a second angle with the X-axis, and the first angle and the second angle are different. Specifically, the positioning pin is an elastic pin, which is arranged on the bearing plate 21, and the elastic pin can be elastically stretched and contracted. The elastic pin can protrude from the bearing plate 21 or partially protrude from the bearing plate 21. When the jig is loaded on the turnover platform 2 at the first angle, a group of positioning pins matched with the first angle protrude from the bearing plate 21 and partially protrude into the jig, and the other positioning pins rebound under the compression of the jig. When the jig is loaded on the turnover platform 2 at the second angle, a group of positioning pins matched with the second angle protrude from the bearing plate 21 and partially protrude into the jig, and the other positioning pins rebound under the compression of the jig.

[0048] In another specific embodiment of the positioning assembly 23, as shown in Figure 5 、 Figure 7 , the positioning assembly 23 comprises a positioning plate 231 and a plurality of groups of positioning mechanisms 232. The positioning plate 231 is arranged on the bearing plate 21, and the positioning plate 231 and the bearing plate 21 have a gap for accommodating the positioning mechanisms 232. The positioning plate 231 is provided with positioning holes, and the positioning mechanisms 232 are arranged at the positioning holes and located on the lower surface of the positioning plate 231. The positioning mechanisms 232 have positioning pins that can be elastically stretched and contracted. The positioning pins protrude from the positioning plate 231 through the positioning holes and are used to position the jig.

[0049] Each group of positioning mechanisms 232 corresponds to a different fixture loading angle, and the fixture can be loaded onto the positioning plate 231 at different angles, for example... Figure 7 As shown, two sets of positioning mechanisms 232 are provided, each set having three positioning mechanisms 232. After positioning the fixture, the side of the fixture forms a first angle with the X-axis, which is 0 degrees. The fixture is placed on the positioning plate 231 at another angle. After positioning the fixture, the side of the fixture forms a second angle with the X-axis, which is 30 degrees. Of course, other angles can be set according to the actual structure of the product. That is to say, compared with the first set of positioning mechanisms 232, this set of positioning mechanisms 232 has rotated by 30 degrees. The drivers positioned by the two sets of positioning mechanisms 232 differ in their side profiles. The side of one driver to be assembled is flat, while the side of the other driver to be assembled is tilted at 30 degrees.

[0050] In this embodiment, the positioning component 23 includes a positioning plate 231 and several sets of positioning mechanisms 232. The positioning mechanisms 232 are disposed on the lower surface of the positioning plate 231. The positioning plate 231 is the direct carrier of each positioning mechanism 232. The positioning component 23 can be replaced by disassembling and assembling the positioning plate 231, which facilitates the modular assembly of the positioning component 23 and improves the disassembly and assembly efficiency of the positioning component 23.

[0051] In some specific embodiments of the positioning mechanism 232, the positioning mechanism 232 includes a telescopic cylinder and a positioning pin, with the positioning pin disposed at the output end of the telescopic cylinder.

[0052] In some embodiments of the positioning component 23, such as Figure 4 , Figure 5 As shown, the flipping platform 2 also includes a first moving mechanism 24, with a positioning component 23 disposed on the first moving mechanism 24. The first moving mechanism 24 is disposed on the support plate 21 and is used to move the positioning component 23 to below the clamping component 22. Specifically, the positioning plate 231 in the positioning component 23 is disposed on the first moving mechanism 24. The first moving mechanism 24 moves the positioning plate 231 on the support plate 21. Thus, the support plate 21 has a loading end and a working end. The loading end is close to the clamping component 22, and the working end is the end where the clamping component 22 is located. Before loading the fixture, the first moving mechanism 24 moves the positioning component 23 to the loading end of the support plate 21. The fixture is placed on the positioning component 23 at the loading end, and the fixture is positioned using the positioning pin in the positioning component 23. After loading and positioning, the moving mechanism moves the positioning component 23 to the working end of the support plate 21, that is, to below the clamping component 22. Then, the clamping component 22 clamps the driver on the fixture, and the flipping mechanism 12 drives the flipping platform 2 to flip, so that the side of the driver faces upward.

[0053] After the first moving mechanism 24 is set, the jig can be loaded and unloaded on the loading end of the bearing plate 21, that is, the jig is loaded and unloaded, avoiding the interference of the pressing assembly 22 on the jig; in addition, the first moving mechanism 24 can drive the jig to move to a suitable pressing position, such as moving the center of gravity of the driver on the jig to below the pressing assembly 22, so that the pressing assembly 22 presses the center of gravity of the driver, improving the pressing stability.

[0054] For the first moving mechanism 24, as shown in Figure 4 、 Figure 5 , specifically, the first moving mechanism 24 includes a cylinder sliding table 241, and the cylinder sliding table 241 is provided with a moving block movable along the X-axis direction. The positioning assembly 23 is slidably arranged on the bearing plate 21 along the X-axis direction, and the positioning assembly 23 is connected with the moving block, specifically, the positioning plate 231 is connected with the moving block. The cylinder sliding table 241 drives the positioning plate 231 to move along the X-axis direction through the moving block, so that the positioning assembly 23 moves to the loading end or the working end of the bearing plate 21.

[0055] In addition, as shown in Figure 4 、 Figure 5 , the first moving mechanism 24 further includes a guide mechanism 242, and the guide mechanism 242 includes an X-axis guide rail and an X-axis sliding block. The X-axis guide rail is arranged on the bearing plate 21 along the X-axis direction, and the X-axis sliding block is slidably arranged on the X-axis guide rail. The positioning assembly 23 is arranged on the X-axis sliding block, that is, the positioning plate 231 is arranged on the X-axis sliding block. The guide mechanism 242 guides the movement of the positioning assembly 23, improves the accuracy and stability of the movement of the positioning assembly 23, and facilitates the accurate alignment in subsequent processing.

[0056] For the heater, the structure includes two parts of a driver and a heat sink, and the heat sink is connected with the driver. In order to facilitate the installation of the heater, as shown in Figure 1 、 Figure 5 , the bearing plate 21 in the embodiment is provided with an avoiding groove 211. The driver is loaded on the jig, the jig is loaded on the positioning assembly 23, the heat sink passes through the positioning assembly 23, and at the same time the heat sink extends into the avoiding groove 211, which can be passed through by the heat sink. When the positioning assembly 23 is moved by the first moving mechanism 24, the heat sink moves with the positioning assembly 23, and the avoiding groove 211 can avoid the movement of the heat sink.

[0057] In addition, in the positioning assembly 23, as shown in Figure 5 、 Figure 7 , the positioning plate 231 is also provided with a through hole 2311, which avoids the protruding structure on the driver and the jig, and at the same time the heat sink extends into the avoiding groove 211 through the through hole 2311.

[0058] When the tool is loaded on the positioning plate 231, the heat sink extends downwardly and extends into the avoiding groove 211. Then the turnover platform 2 is turned over by 90 degrees, the heat sink is in a transverse cantilever shape, thus, when encountering large vibration and shaking, the connection between the heat sink and the driver is easy to be bent and deformed. In order to assist in fixing or supporting the heat sink, the turnover platform 2 further comprises a supporting plate assembly 25, the supporting plate assembly 25 comprises a moving module 251 and a supporting plate mechanism 252. The moving module 251 is arranged below the bearing plate 21, the moving module 251 drives the supporting plate mechanism 252 to move with the positioning assembly 23, the supporting plate mechanism 252 is driven by the moving module 251, so that the supporting plate mechanism 252 can move between the loading end or the working end, and more importantly, when moving to the working end, the supporting plate mechanism 252 abuts against the heat sink. The supporting plate mechanism 252 is arranged on the moving module 251, the supporting plate mechanism 252 extends to one side of the heat sink, and after the turnover platform 2 is turned over, the supporting plate mechanism 252 is turned over to support the heat sink of the heater.

[0059] The supporting plate mechanism 252 specifically comprises one or two supporting plates, the moving module 251 has a sliding block, and the supporting plate is arranged on the sliding block. When the tool is loaded on the positioning assembly 23, the heat sink extends into the space between the two supporting plates.

[0060] The moving module 251 is arranged below the bearing plate 21, specifically, the moving module 251 can be arranged on the lower surface of the bearing plate 21, such as through some intermediate connecting structure or directly fixed on the lower surface of the bearing plate 21.

[0061] The moving module 251 can also be arranged on the turnover mechanism 12, specifically on the side surface of one of the turnover blocks 121.

[0062] In some embodiments of the pressing assembly 22, as shown in Figure 4 , Figure 5 The pressing assembly 22 comprises a pressing support 221, a pressing cylinder 222 and a pressing plate 223, the pressing support 221 is arranged on the bearing plate 21, specifically across the working end of the bearing plate 21. The pressing cylinder 222 is arranged on the pressing support 221, the output end of the pressing cylinder 222 extends to the pressing support 221 and the bearing plate 21. The pressing plate 223 is located between the pressing support 221 and the bearing plate 21, and the pressing plate 223 is connected with the output end of the pressing cylinder 222. The pressing cylinder 222 drives the pressing plate 223 to move, and pushes the pressing plate 223 to press the driver.

[0063] In some embodiments of the turnover support 11, as shown in Figure 1 , Figure 6As shown in the drawings, the turnover support 11 comprises a turnover bottom plate 111 and two support columns 112, the turnover bottom plate 111 is a bottom bearing structure of the two support columns 112, and the two support columns 112 are respectively arranged at two ends of the support columns 112 of the turnover bottom plate 111. The turnover mechanism 12 comprises two turnover blocks 121, the two turnover blocks 121 are respectively rotatably arranged at upper ends of the two support columns 112, and the two turnover blocks 121 are arranged side by side and spaced apart. The bearing plate 21 is arranged on the two turnover blocks 121.

[0064] As shown in the drawings, Figure 1 、 Figure 6 The turnover assembly 1 further comprises a turnover driving mechanism 13, the turnover driving mechanism 13 is arranged on the turnover support 11 and is drivingly connected with the turnover mechanism 12. Specifically, the turnover driving mechanism 13 is arranged on the support column 112, the turnover driving mechanism 13 is connected with the turnover block 121 arranged on the support column 112, the turnover driving mechanism 13 drives the turnover block 121 to rotate, thereby driving the turnover platform 2 to overturn.

[0065] In some embodiments of the jig rotating and moving platform, as shown in the drawings, Figure 1 、 Figure 6 The jig rotating and moving platform further comprises a moving bottom plate 3 and a second moving mechanism 4, the second moving mechanism 4 is arranged on the moving bottom plate 3, and the turnover support 11 is arranged on the second moving mechanism 4. The second moving mechanism 4 drives the turnover platform 2 to move along the X-axis direction. After the turnover support 11 overturns, the position of the jig on the turnover platform 2 is generally related to the position of the turnover support 11, therefore, the utility model discloses the moving bottom plate 3 and the second moving mechanism 4 arranged at the bottom of the turnover support 11, the second moving mechanism 4 can drive the turnover support 11 to move, thereby positioning the position of the turnover support 11, so that the driver moves to the predetermined position.

[0066] The above-mentioned embodiments are only preferred embodiments of the utility model, and cannot be used to limit the range of protection of the utility model, and any non-essential changes and replacements made by the person skilled in the art on the basis of the utility model all belong to the range of protection required by the utility model.

Claims

1. A jig rotation moving platform, characterized by, The tool rotating and moving platform comprises a turnover assembly and a turnover platform; The turnover assembly comprises a turnover support and a turnover mechanism, and the turnover mechanism is arranged on the turnover support in a turnover manner; The turnover platform comprises a bearing plate and a pressing assembly, the bearing plate is arranged on the turnover mechanism and turns over with the turnover mechanism, and is used for bearing the driver of the heater, and the pressing assembly is arranged on the bearing plate and is used for pressing the driver of the heater.

2. The tool rotation moving platform of claim 1, wherein, The turnover platform further comprises a positioning assembly, and the positioning assembly is arranged on the bearing plate and is used for positioning the heater.

3. The tool rotation moving platform of claim 2, wherein, The positioning assembly comprises a positioning plate and a plurality of sets of positioning mechanisms, the positioning plate is arranged on the bearing plate, a gap is formed between the positioning plate and the bearing plate, the positioning plate is provided with positioning holes, the positioning mechanisms are arranged at the positioning holes and are located on the lower surface of the positioning plate, the positioning mechanisms are provided with positioning pins capable of performing telescopic movement, the positioning pins are telescopically protruded from the positioning plate through the positioning holes, and the positioning pins are used for positioning the tool.

4. The tool rotation moving platform of claim 3, wherein, The positioning mechanism comprises a telescopic cylinder and a positioning pin, and the positioning pin is arranged on the output end of the telescopic cylinder.

5. The tool rotation moving platform of claim 2, wherein, The turnover platform further comprises a first moving mechanism, the positioning assembly is arranged on the first moving mechanism, and the first moving mechanism is arranged on the bearing plate and is used for driving the positioning assembly to move below the pressing assembly.

6. The tool rotation moving platform of claim 5, wherein, The first moving mechanism comprises a cylinder sliding table, and the cylinder sliding table is provided with a moving block capable of moving along the X-axis direction; The positioning assembly is arranged on the bearing plate in a sliding manner along the X-axis direction, and the positioning assembly is connected with the moving block.

7. The tool rotation moving platform of claim 6, wherein, The first moving mechanism further comprises a guide mechanism, the guide mechanism comprises an X-axis guide rail and an X-axis sliding block, the X-axis guide rail is arranged on the bearing plate along the X-axis direction, and the X-axis sliding block is arranged on the X-axis guide rail in a sliding manner; The positioning assembly is arranged on the X-axis sliding block.

8. The tool rotation moving platform of claim 5, wherein, The bearing plate is provided with an avoiding groove through which the heat dissipation device passes and avoids the movement of the heat dissipation device; The turnover platform further comprises a supporting plate assembly, and the supporting plate assembly comprises a moving module and a supporting plate mechanism; The moving module is arranged below the bearing plate and is used for driving the supporting plate mechanism to move with the positioning assembly; The supporting plate mechanism is arranged on the moving module, and the supporting plate mechanism partially extends to one side of the heat dissipation device; After the turnover platform turns over, the supporting plate mechanism turns over to support the heat dissipation device of the heater.

9. The tool rotation moving platform of claim 1, wherein, The turnover support comprises a turnover bottom plate and two supporting columns, and the two supporting columns are arranged at the two ends of the supporting column of the turnover bottom plate, respectively; The turnover mechanism comprises two turnover blocks, and the two turnover blocks are rotatably arranged at the upper ends of the two supporting columns, respectively, and the two turnover blocks are arranged side by side and are spaced apart; The bearing plate is arranged on the two turnover blocks.

10. The tool rotation moving platform of claim 1, wherein, The tool rotating and moving platform further comprises a moving bottom plate and a second moving mechanism, the second moving mechanism is arranged on the moving bottom plate, and the turnover support is arranged on the second moving mechanism; The second moving mechanism drives the turnover platform to move along the X-axis direction.