Gel curing mechanism and gel curing clamp

By designing a gel curing mechanism that includes a support base, a gel curing component, and a conversion component, the problem of poor adaptability of gel curing mechanisms was solved, enabling efficient gel curing treatment of front covers for different vehicle models and reducing operational complexity and cost.

CN223719962UActive Publication Date: 2025-12-26AVATR CO LTD
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Patent Information

Application Number
CN202423199321.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2025-12-26
Estimated Expiration
2034-12-24

AI Technical Summary

Technical Problem

Existing gel curing mechanisms have poor adaptability and cannot effectively adapt to the front cover shapes of different car models, resulting in cumbersome operation and high costs.

Method used

A gel curing mechanism was designed, including a support base, a gel curing component, a telescopic component, and a conversion component. The telescopic component is driven to move by the conversion component, thereby adjusting the position of the gel curing component to adapt to the front cover of different car models.

Benefits of technology

It improves the adaptability of gel curing mechanisms and fixtures, simplifies the operation process, reduces costs, and increases work efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model relates to the technical field of automobile tools, and discloses a gel curing mechanism and a gel curing clamp. The gel curing assembly is used for heating the to-be-heated part of the to-be-machined part; the telescopic assembly is connected with the gel curing assembly, and the telescopic assembly is configured to drive the gel curing assembly to move so that the gel curing assembly can move to the to-be-heated component; and the conversion assembly is arranged on the supporting base and connected with the telescopic assembly, and the conversion assembly is configured to drive the telescopic assembly to move relative to the supporting base so as to adjust the position of the gel curing assembly, so that the gel curing mechanism can adapt to front cover machining of the vehicle model, and the adaptation capacity of the gel curing clamp is improved.
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Description

TECHNICAL FIELD

[0001] The embodiment of the present application relates to the technical field of gel curing, in particular to a gel curing mechanism and a gel curing clamp. BACKGROUND

[0002] With the improvement of the front cover collision pedestrian protection requirement, the rigidity of the whole front cover is continuously reduced. This makes the deformation of the cover welding and painting workshop difficult to control, and further affects the gap difference matching of the front cover and the front front cover, headlamp and fender.

[0003] In order to solve the deformation caused by the softness of the front cover, the gel curing clamp is generally used to cure the area of the front cover coated with the folding edge glue after the folding edge glue is coated on the front cover. The gel curing clamp includes a plurality of gel curing mechanisms, and the gel curing mechanism can correspondingly heat the area of the front cover coated with the folding edge glue.

[0004] And the gel curing mechanism is specially designed for the shape of the front cover of each vehicle type, that is, the gel curing mechanism can only be used for a single vehicle type, and the adaptability is poor. CONTENT OF THE INVENTION

[0005] In view of this, the gel curing mechanism and the gel curing clamp are provided to achieve the effect that one gel curing mechanism can be adapted to the processing of the front cover of different vehicle types.

[0006] In order to achieve the above purpose, the technical scheme of the embodiment of the present application is as follows:

[0007] In a first aspect, the gel curing mechanism provided by the embodiment of the present application comprises:

[0008] A support seat;

[0009] A gel curing assembly, the gel curing assembly is used for heating the to-be-heated part of the workpiece;

[0010] A telescopic assembly connected with the gel curing assembly, the telescopic assembly is configured to drive the gel curing assembly to move, so that the gel curing assembly moves to the to-be-heated part;

[0011] A conversion assembly arranged on the support seat and connected with the telescopic assembly, the conversion assembly is configured to drive the telescopic assembly to move relative to the support seat, so as to adjust the position of the gel curing assembly.

[0012] In a possible implementation manner of the present application, the conversion assembly comprises:

[0013] A first driving member connected with the support seat;

[0014] A first adapter is connected to the output end of the first driving member, and is configured to move relative to the support base under the driving of the first driving member to drive the telescopic assembly to move.

[0015] In a possible implementation of the present application, the conversion assembly further comprises a first limiting member connected to the support base, and configured to abut against the first adapter when the first adapter is driven by the first driving member to move to the maximum stroke, so as to limit the position of the first adapter.

[0016] In a possible implementation of the present application, a rotating assembly is arranged on the first adapter, and is connected to the telescopic assembly, and is configured to drive the telescopic assembly and the gel curing assembly to rotate, so as to change the positions of the telescopic assembly and the gel curing assembly.

[0017] In a possible implementation of the present application, the rotating assembly comprises:

[0018] A second driving member is arranged on the first adapter;

[0019] A second adapter is connected to the second driving member, and the telescopic assembly is arranged on the second adapter, and the second adapter is configured to drive the telescopic assembly to rotate when being driven by the second driving member, so as to synchronously rotate the gel curing assembly.

[0020] In a possible implementation of the present application, the telescopic assembly comprises a third driving member and a third adapter, and the output end of the third driving member is connected to the third adapter to drive the third adapter to move, and the gel curing assembly is arranged on the third adapter.

[0021] In a possible implementation of the present application, at least one first guide rod is arranged on the third adapter, the extension direction of the first guide rod is the same as the moving direction of the third adapter, one end of the first guide rod extends through the third driving member to the end of the third driving member away from the third adapter, and is in sliding connection with the third driving member, and the third driving member is configured to drive the third adapter to move along the extension direction of the first guide rod.

[0022] In a possible implementation of the present application, the end of the first guide rod away from the third adapter is provided with a second limiting member, and the second limiting member is configured to abut against the third driving member when the third adapter is driven by the third driving member to move to the maximum stroke, so as to limit the distance between the third adapter and the third driving member.

[0023] In a possible implementation of the present application, the support seat comprises a support and a formwork connected with the support, the formwork has a mounting portion, and the conversion assembly is arranged on the mounting portion, and the inclination direction of the mounting portion is the same as the direction in which the conversion assembly drives the telescopic assembly to move.

[0024] In a second aspect, the embodiments of the present application provide a gel curing clamp, comprising a base plate and a plurality of gel curing mechanisms according to any one of the first aspect, the gel curing mechanisms are mounted on the base plate through the support seat.

[0025] In a possible implementation of the present application, a driving device is further included, the driving device is connected with the base plate, and the driving device is configured to drive the base plate to rotate, so that the gel curing mechanism on the base plate is rotated to a target position.

[0026] The gel curing mechanism and the gel curing clamp provided by the embodiments of the present application have the following advantages. The gel curing mechanism comprises a support seat, a gel curing mechanism, a telescopic assembly and a conversion assembly. The conversion assembly is supported by the support seat. The telescopic assembly is arranged on the conversion assembly and can be driven by the conversion assembly to move. The gel curing mechanism is arranged on the telescopic assembly and can be driven by the telescopic assembly to move. When the front cover of different vehicle models is processed, the conversion assembly can drive the telescopic assembly to move to a corresponding position. At the position, the telescopic assembly can drive the gel curing assembly to move, so that the part to be heated of the front cover enters the heating interval of the gel curing assembly along with the movement of the gel curing assembly, and the gel curing processing is performed. Therefore, the conversion assembly can drive the telescopic assembly to move, so that the gel curing assembly moves to a position corresponding to the front cover of different vehicle models for gel curing. Different gel curing mechanisms do not need to be provided for different vehicle models. The adaptation capability of the gel curing mechanism and the gel curing clamp can be effectively improved. BRIEF DESCRIPTION OF DRAWINGS

[0027] Figure 1 The first possible structure schematic diagram of the gel curing mechanism provided by the embodiments of the present application is shown in FIG. 1;

[0028] Figure 2 The second possible structure schematic diagram of the gel curing mechanism provided by the embodiments of the present application is shown in FIG. 2;

[0029] Figure 3 The third possible structure schematic diagram of the gel curing mechanism provided by the embodiments of the present application is shown in FIG. 3;

[0030] Figure 4 The structure schematic diagram of another view of the gel curing mechanism in FIG. 1 is shown in FIG. 4; Figure 3

[0031] Figure 5 ​A structural schematic diagram of a gel curing clamp provided by the embodiment of the present application is shown in the figure.

[0032] Figure 6 A structural schematic diagram of a gel curing clamp in use is shown in the figure. Figure 5 A structural schematic diagram of a gel curing clamp in use is shown in the figure.

[0033] Reference signs:

[0034] 100 - substrate;

[0035] 200 - gel curing mechanism; 210 - support seat; 211 - support; 212 - block; 2121 - mounting portion; 220 - gel curing assembly; 221 - heating component; 222 - positioning seat; 223 - first connecting rod; 224 - second connecting rod; 225 - guide seat; 230 - telescopic assembly; 231 - third driving member; 232 - third adapter; 233 - first guide rod; 234 - second limiting member; 240 - conversion assembly; 241 - first driving member; 242 - first adapter; 243 - first limiting member; 244 - second guide rod; 250 - rotating assembly; 251 - second driving member; 252 - second adapter. DETAILED DESCRIPTION

[0036] In order to make the purpose, technical solutions and advantages of the embodiments of the present application clearer, the specific technical solutions of the present application will be further described in detail below in combination with the drawings of the embodiments of the present application. The following embodiments are used to illustrate the present application, but not to limit the scope of the present application.

[0037] In the embodiments of the present application, the terms "first" and "second" are only used for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first" and "second" can explicitly or implicitly include one or more of the features. In the description of the embodiments of the present application, unless otherwise specified, the meaning of "a plurality of" is two or more.

[0038] In addition, in the embodiments of the present application, the orientation terms such as "up", "down", "left" and "right" are defined with respect to the orientation of the components shown in the drawings, and it should be understood that these directional terms are relative concepts, which are used for relative description and clarification, and can be changed accordingly according to the change of the orientation of the components placed in the drawings.

[0039] In the embodiments of the present application, unless otherwise explicitly specified and limited, the term "connection" should be understood in a broad sense, for example, "connection" can be fixed connection, or detachable connection, or integral; can be directly connected, or indirectly connected through an intermediate medium.

[0040] In the embodiments of the present application, the terms "comprising", "containing" or any other any conjugation form of these terms are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements not only includes those elements, but also includes other elements not expressly listed or inherent to such process, method, article, or apparatus. Without more limitations, the element defined by the phrase "comprising a" does not exclude the presence of additional identical elements in the process, method, article, or apparatus that includes the element.

[0041] In the embodiments of the present application, the words "exemplary" or "for example" are used to mean serving as an example or illustration. Any embodiment or design presented as "exemplary" or "for example" in the embodiments of the present application should not be construed as preferred or advantageous over other embodiments or designs. In fact, the use of the words "exemplary" or "for example" is intended to present concepts in a concrete manner.

[0042] With the increasing requirements for pedestrian protection, the overall stiffness of the front cover is continuously reduced, and if the stiffness of the connection between the edge and the front bumper assembly, headlamp, fender, and other components is too low, it will affect the gap difference matching. In order to improve the connection strength, the connection part of the front cover is subjected to edge folding treatment and coated with edge folding glue for connection. After using the edge folding glue, gel curing treatment needs to be performed.

[0043] The gel curing treatment mainly uses the gel curing mechanism of the gel curing fixture to heat the area coated with the edge folding glue. However, the shapes of front covers of different vehicle models may be different, and therefore, the gel curing mechanism is generally designed specifically for each vehicle model. If the gel curing fixture is used to treat front covers of different vehicle models, the corresponding gel curing mechanism needs to be replaced, which is relatively cumbersome to operate and high in cost.

[0044] To avoid the above problems, the embodiments of the present application provide a gel curing mechanism and a gel curing fixture, which are mainly used for gel curing treatment of the area of the front cover of a vehicle coated with edge folding glue. When treating front covers of different vehicle models, the conversion assembly can drive the telescopic assembly to move to a corresponding position, and at the position, the telescopic assembly can drive the gel curing mechanism to move, so that the part to be heated of the front cover enters the heating range of the gel curing assembly with the movement of the gel curing assembly, and the gel curing treatment is performed. Therefore, the conversion assembly can drive the telescopic assembly to move, so that the gel curing mechanism moves to a position corresponding to the front cover of a different vehicle model for gel curing, and different gel curing mechanisms do not need to be provided for different vehicle models, which can effectively improve the adaptation ability of the gel curing mechanism and the gel curing fixture.

[0045] It can be understood that the gel solidification mechanism and the gel solidification fixture in the embodiments of the present application can be used not only for the front cover of a vehicle, but also for other workpieces that need to be subjected to gel solidification treatment, and the present application does not limit this.

[0046] The technical solutions of the present application and how the technical solutions of the present application solve the above technical problems will be described in detail below with specific embodiments. The following specific embodiments can be combined with each other, and the same or similar concepts or processes can not be described again in some embodiments. The embodiments of the present application will be described below with reference to the drawings.

[0047] In order to facilitate understanding, the workpieces to be processed in the following embodiments are described as the front cover of a vehicle.

[0048] In some embodiments of the present application, referring to Figure 1 As shown in the figure, the gel solidification mechanism 200 includes a support seat 210, a gel solidification assembly 220, a telescopic assembly 230 and a conversion assembly 240.

[0049] The support seat 210 is used for connecting the mounting seat of the gel solidification fixture to support other components. The conversion assembly 240 is arranged on the support seat 210, the telescopic assembly 230 is connected with the conversion assembly 240 and can be driven to move by the conversion assembly 240, and the gel solidification assembly 220 is arranged on the telescopic assembly 230 and can be driven to move by the telescopic assembly 230. The gel solidification assembly 220 includes a heating component 221, which is used to heat the part to be heated when the part to be heated enters the heating interval of the heating component 221 on the front cover 10, so as to realize gel solidification treatment.

[0050] It can be understood that the heating component 221 can be an electric heating wire, an electric heating sheet or other components that can heat to the required temperature, and the present embodiment does not limit this.

[0051] When the conversion assembly 240 drives the telescopic assembly 230 to move, the gel solidification assembly 220 will also move with the telescopic assembly 230. It can be understood that the telescopic assembly 230 is supported by the conversion assembly 240, and the gel solidification assembly 220 is supported by the telescopic assembly 230.

[0052] In use, first, according to the structure of the front cover 10 of the vehicle type to be gel-cured, the conversion assembly 240 drives the telescopic assembly 230 and the gel-curing assembly 220 to move to the corresponding position, and then the telescopic assembly 230 drives the gel-curing assembly 220 to move forward until the area of the front cover 10 coated with the folding adhesive enters the heating interval of the gel-curing assembly 220, at which time the heating component 221 heats to an appropriate temperature and heats for a certain period of time to perform gel-curing treatment. After the treatment is completed, the telescopic assembly 230 drives the gel-curing assembly 220 to return to the original position and separate from the front cover 10. At this time, the treated front cover 10 can be removed, and the next front cover 10 can be treated. The gel-curing mechanism 200 repeats the above steps.

[0053] This allows the gel-curing mechanism 200 to adapt to different types of front covers 10 of vehicles, and the operation is simple. Compared with the conventional gel-curing mechanism 200, for a gel-curing clamp, the number of gel-curing mechanisms 200 configured can be reduced, which helps to reduce costs, and at the same time, without frequent replacement of the gel-curing mechanism 200, the work efficiency can also be effectively improved.

[0054] In some embodiments of the present application, referring to Figure 2 The conversion assembly 240 includes a first driving member 241 and a first adapter 242.

[0055] The first driving member 241 is connected to the support seat 210, and the first adapter 242 is connected to the output end of the first driving member 241. The first adapter 242 can be driven by the first driving member 241 to move relative to the support seat 210 to drive the telescopic assembly 230 to move.

[0056] The first driving member 241 can be a gas cylinder, an electric cylinder or the like, as long as it can drive the first adapter 242 to reciprocate within a certain range. The present embodiment does not limit it here.

[0057] The direction of movement of the first adapter 242 is set according to the structural differences of the front covers 10 of different vehicle types, so that the first driving member 241 can drive the first adapter 242 and the telescopic assembly 230 to move to adapt to at least two different types of front covers 10 of vehicles.

[0058] Exemplarily, as Figure 2 The first direction in which the first driving member 241 drives the first adapter 242 and the telescopic assembly 230 to move is the same as the second direction in which the telescopic assembly 230 drives the gel-curing assembly 220 to move.

[0059] Exemplarily, as Figure 1As shown, the first driving member 241 drives the first adapter member 242 and the telescopic assembly 230 to move in the first direction, and the included angle between the first direction and the second direction in which the telescopic assembly 230 drives the gel curing assembly 220 to move is an acute angle. The specific value of the specific included angle is determined according to the structure of the different front covers 10 to which the gel curing mechanism 200 is adapted.

[0060] Exemplarily, as shown in Figure 3 As shown, the first driving member 241 drives the first adapter member 242 and the telescopic assembly 230 to move in the first direction, and the included angle between the first direction and the second direction in which the telescopic assembly 230 drives the gel curing assembly 220 to move is a right angle.

[0061] For example, the gel curing mechanism 200 can be adapted to two different types of front covers 10, and the number of sides of the front covers 10 that need to be cured is the same, and the structures of the different sides of the two front covers 10 can be quite different. For one side, the gel curing mechanism 200 needs the same first direction and second direction, for one side, the gel curing mechanism 200 needs an acute angle between the first direction and the second direction, and for one side, the gel curing mechanism 200 needs a right angle between the first direction and the second direction, so that when different types of front covers 10 are replaced, the gel curing assembly 220 on each side can be adjusted in position through the conversion assembly 240, and the position of the hem of the corresponding side of each front cover 10 can be effectively cured.

[0062] In some embodiments of the present application, please refer to Figure 2 As shown, the conversion assembly 240 further comprises a first limiting member 243, and the first limiting member 243 is connected with the support base 210. When the first adapter member 242 is driven by the first driving member 241 to move to the maximum stroke, the first limiting member 243 abuts against the first adapter member 242 to limit the position of the first adapter member 242.

[0063] Exemplarily, as shown in Figure 2 As shown, the first limiting member 243 is fixed on the support base 210, the first adapter member 242 is slidingly connected with the support base 210, the first driving member 241 drives the first adapter member 242 to move towards the direction of approaching or moving away from the first limiting member 243, and when the first driving member 241 drives the first adapter member 242 to move to abut against the first limiting member 243, the first adapter member 242 cannot continue to move, so that the first adapter member 242 can only move between the first limiting member 243 and the first driving member 241, thereby limiting the movement position of the first adapter member 242 and limiting the movement position of the telescopic assembly 230.

[0064] In some embodiments of the present application, please refer to Figure 2As shown, the support base 210 is provided with a connecting plate, two second guide rods 244 penetrate through the connecting plate and are in sliding connection with the connecting plate, the extension direction of the second guide rod 244 coincides with the movement track of the first adapter 242, one end of the second guide rod 244 is connected with the first adapter 242, and the other end extends through the shell of the first driving member 241 to the end of the first driving member 241 away from the first adapter 242, in use, the first adapter 242 can be guided and assisted by the second guide rod 244.

[0065] In some embodiments of the present application, please refer to Figure 1 and Figure 2 As shown, the support base 210 includes a support 211 and a mold block 212, the mold block 212 is connected with the support 211, the mold block 212 has a mounting portion 2121, the conversion assembly 240 is arranged on the mounting portion 2121, the inclination direction of the mounting portion 2121 is the same as the direction in which the conversion assembly 240 drives the telescopic assembly 230 to move, at this time, the first driving member 241 is connected with the mounting portion 2121, in terms of the first driving member 241 as a cylinder, the bottom of the cylinder is in complete contact with and connected with the mounting portion 2121, which can support the first adapter 242 and the first driving member 241, and can also limit the extension direction of the piston rod of the cylinder.

[0066] Exemplarily, please refer to Figure 2 As shown, the mold block 212 includes a first connecting block and a second connecting block, the first connecting block and the second connecting block are respectively connected with the two opposite sides of the support 211 through bolts or other components, and the ends of the first connecting block and the second connecting block away from the support 211 are respectively provided with a first mounting plate and a second mounting plate, the extension directions of the first mounting plate and the second mounting plate are the same, the first driving member 241 is installed on the first mounting plate, and the first limiting member 243 is installed on the side surface of the second mounting plate close to the first mounting plate, or directly installed on the end portion of the second mounting plate, the first adapter 242 is supported by the first driving member 241 and is driven to move.

[0067] In some embodiments of the present application, after the gel solidification mechanism 200 is installed on the base plate 100 of the gel solidification clamp, if the base plate 100 rotates to adapt to different requirements, some gel solidification mechanisms 200 may interfere with other components above, such as the mechanical hand clamping the front cover 10, and affect normal use, for this, please refer to Figure 3 and Figure 4 As shown, the gel solidification mechanism 200 further includes a rotating assembly 250, the telescopic assembly 230 is arranged on the rotating assembly 250, the rotating assembly 250 is arranged on the conversion assembly 240, and the rotating assembly 250 is used to drive the telescopic assembly 230 to rotate and make the gel solidification assembly 220 arranged on the telescopic assembly 230 rotate synchronously.

[0068] Specifically, the rotating assembly 250 comprises a second driving member 251 and a second adapter member 252.

[0069] Please refer to Figure 4 As shown, the second driving member 251 is arranged on the first adapter member 242, the second adapter member 252 is connected with the second driving member 251, and the telescopic assembly 230 is arranged on the second adapter member 252. When the second adapter member 252 is driven to rotate by the second driving member 251, the telescopic assembly 230 is driven to rotate, so that the gel curing assembly 220 is synchronously rotated.

[0070] The second driving member 251 can be a common device such as a servo motor, as long as it can drive the second adapter member 252 to rotate within a certain range, which is not limited in the embodiment.

[0071] Specifically, the second driving member 251 and the second adapter member 252 can be driven to move along the first direction by the first driving member 241, so as to drive the telescopic assembly 230 and the gel curing assembly 220 to move, so that the gel curing assembly 220 can be switched to the position corresponding to the front cover 10 of different vehicle models. When the base of the gel curing clamp rotates and the gel curing mechanism 200 interferes with other components, the second driving member 251 can drive the second adapter member 252 to rotate, and the telescopic assembly 230 installed on the second adapter member 252 is synchronously rotated with the second adapter member 252, so as to avoid the position that may interfere with other components.

[0072] The second adapter member 252 needs to support the telescopic assembly 230 and the gel curing assembly 220. In order to improve the supporting effect, the second adapter member 252 can also be rotatably connected with the first adapter member 242, and the force is transmitted to the first adapter member 242 through the connecting point.

[0073] It can be understood that the direction in which the second driving member 251 drives the second adapter member 252 to rotate can be adjusted according to actual conditions, for example, rotating in the vertical direction or in the horizontal direction, which is not limited in the embodiment.

[0074] In some embodiments of the application, please refer to Figure 2 As shown, the telescopic assembly 230 comprises a third driving member 231 and a third adapter member 232, the output end of the third driving member 231 is connected with the third adapter member 232 to drive the third adapter member 232 to move, and the gel curing assembly 220 is arranged on the third adapter member 232.

[0075] The third driving member 231 can be a cylinder, an electric cylinder or the like, as long as it can drive the third adapter 232 to reciprocate within a certain range, and the present embodiment does not limit it.

[0076] The third adapter 232 is connected with the output end of the third driving member 231, and can be pushed to move by the third driving member 231, so that the gel curing assembly 220 is close to the front cover 10, i.e. the part to be heated of the front cover 10 is located in the heating interval of the heating component 221, and the front cover 10 is subjected to gel curing treatment by the heating component 221. After the gel curing treatment is completed, the third driving member 231 drives the third adapter 232 and the gel curing assembly 220 to move reversely and return to the original position, so as to avoid affecting the front cover 10 to be taken away from the gel curing fixture, and wait for the next gel curing treatment.

[0077] Exemplarily, referring to FIG. 2, Figure 4 As shown in the figure, the heating component 221 includes a first heating plate and a second heating plate, and the gap between the first heating plate and the second heating plate is the heating interval, so that the part to be heated can be heated even without contacting the two plates.

[0078] Exemplarily, the gel curing assembly 220 further includes a positioning seat 222 and two first connecting rods 223 arranged side by side, the first connecting rods 223 are connected with the third adapter 232, the positioning seat 222 is slidingly arranged on the first connecting rods 223, and a first spring is arranged between the third adapter 232 and the positioning seat 222, so as to adjust the position of the positioning seat 222 on the first connecting rods 223, and the heating component 221 is arranged on the positioning seat 222, so that the heating component 221 can relatively move along the third first connecting rods 223 relative to the third adapter 232, and the position of the heating component 221 can be finely adjusted under different conditions, so as to better adapt to the shape of the front cover 10.

[0079] Exemplarily, the gel curing assembly 220 further includes a second connecting rod 224, a positioning plate and a second spring, the positioning member is installed on the positioning seat 222 through the second connecting rod 224, the positioning plate is located on the side of the positioning seat 222 away from the third adapter 232, the positioning seat 222 extends at least partially to the upper and lower sides of the positioning plate and is connected with the second connecting rod 224, the positioning plate is connected with the part of the second connecting rod 224 between the positioning seat 222, the second connecting rod 224 is sleeved with the second spring at both ends, and is inserted into the blind hole arranged on the positioning seat 222, and the position of the second spring is limited by the blind hole and the second connecting rod 224, so that the second connecting rod 224 can move in a small range in this direction through the second spring, and the use requirement is adapted.

[0080] Exemplarily, a guide seat 225 can be arranged at the end of the first heating plate, and an arc-shaped guide matched with the guide seat 225 is arranged at the end of the second heating plate to guide the part to be heated into the heating interval. Meanwhile, a guide wheel rotationally connected with the guide seat 225 can be arranged to reduce the friction.

[0081] In some embodiments of the present application, referring to Figure 4 As shown in the figure, the third adapter 232 is provided with at least one first guide rod 233, the extension direction of the first guide rod 233 is the same as the moving direction of the third adapter 232, one end of the first guide rod 233 extends through the third driving member 231 to the end of the third driving member 231 away from the third adapter 232, and is in sliding connection with the third driving member 231, and the third driving member 231 can drive the third adapter 232 to move along the extension direction of the first guide rod 233.

[0082] Taking the third driving member 231 as an example, the gas cylinder is provided with a mounting portion 2121, the mounting portion 2121 is a through hole, the first guide rod 233 passes through the through hole and is in sliding connection with the through hole, the extension direction of the first guide rod 233 is the same as the moving direction of the piston rod of the gas cylinder, and the first guide rod 233 and the piston rod jointly guide and support the gel solidification assembly 220, thereby improving the guiding and supporting effect.

[0083] Of course, in order to improve the positioning and guiding effect, two guide rods can be arranged side by side, the second limiting member 234 is arranged at the end of the gas cylinder away from the third adapter 232, and the second limiting member 234 is in fixed connection with the first guide rod 233, so that when the second limiting member 234 contacts the end of the gas cylinder away from the third adapter 232, the third adapter 232 cannot continue to move forward, thereby effectively limiting the positions of the third adapter 232 and the gel solidification assembly 220.

[0084] The present application also provides a gel solidification clamp, referring to Figure 5 and Figure 6 As shown in the figure, the gel solidification clamp comprises a mounting seat and a plurality of gel solidification mechanisms 200 in the above embodiments, and the gel solidification mechanism 200 is connected with the mounting seat through the support seat 210.

[0085] Exemplarily, the mounting seat comprises a base plate 100 and a driving device, the gel solidification mechanism 200 is mounted on the base plate 100, and the driving device is connected with the base plate 100 to drive the base plate 100 to rotate, thereby changing the position of the gel solidification mechanism 200, so that the gel solidification mechanism 200 is rotated to the part to be solidified, thereby adapting to the use requirements of different front covers 10 or the use requirements of different sides of the same front cover 10.

[0086] Exemplarily, the substrate 100 is a square plate, two gel solidification mechanisms 200 are arranged on each processing side of the substrate 100, i.e. 8 gel solidification mechanisms 200 are arranged, the gel solidification mechanisms 200 arranged on each processing side can be the same or different, and the specific structure can be determined according to the structure of the front cover 10 to be processed.

[0087] Exemplarily, two same gel solidification mechanisms 200 are arranged on the upper and lower sides of the substrate 100, i.e. the two sides extending along the X direction, two different gel solidification mechanisms 200 are arranged on the left and right sides of the substrate 100, i.e. the two sides extending along the Y direction, and the gel solidification mechanisms 200 are symmetrically arranged relative to the middle line of the substrate 100 parallel to the Y direction, so that each gel solidification mechanism 200 can adapt to at least two different front covers 10 through the conversion assembly 240, and the adaptation ability of the gel solidification clamp is improved.

[0088] It can be understood that, as shown in Figure 6 The gel solidification clamp also includes other devices for assisting in fixing the front cover 10 or moving the front cover 10, which are all prior art known to those skilled in the art, and the present embodiment does not limit them here.

[0089] The above-mentioned serial numbers of the embodiments of the present application are only for description, and do not represent the advantages and disadvantages of the embodiments. The above is only the preferred embodiment of the present application, and does not limit the patent scope of the present application, and any equivalent structure or equivalent process transformation using the content of the present application specification and drawings, or direct or indirect application in other related technical fields, are also included in the patent protection scope of the present application.

Claims

1. A gel solidification mechanism (200) characterized by, The utility model relates to a gel curing device, comprising: a support base (210); a gel curing assembly (220) for heating a to-be-heated part of a workpiece to be processed; a telescopic assembly (230) connected to the gel curing assembly (220), configured to drive the gel curing assembly (220) to move so as to move the gel curing assembly (220) to the to-be-heated part; a conversion assembly (240) disposed on the support base (210) and connected to the telescopic assembly (230), configured to drive the telescopic assembly (230) to move relative to the support base (210) so as to adjust the position of the gel curing assembly (220).

2. The gel solidification mechanism (200) according to claim 1, characterized in that, The conversion assembly (240) comprises: a first driving member (241) connected to the support base (210); a first adapter (242) connected to the output end of the first driving member (241), configured to move relative to the support base (210) under the drive of the first driving member (241) so as to drive the telescopic assembly (230) to move.

3. The gel solidification mechanism (200) of claim 2, wherein, The conversion assembly (240) further comprises a first limiting member (243) connected to the support base (210), configured to abut against the first adapter (242) when the first adapter (242) is driven by the first driving member (241) to move to the maximum stroke, so as to limit the position of the first adapter (242).

4. The gel solidification mechanism (200) of claim 2, wherein, The utility model further comprises a rotating assembly (250) disposed on the first adapter (242), connected to the telescopic assembly (230), and configured to drive the telescopic assembly (230) and the gel curing assembly (220) to rotate so as to change the position of the telescopic assembly (230) and the gel curing assembly (220).

5. The gel solidification mechanism (200) of claim 4, wherein, The rotating assembly (250) comprises: a second driving member (251) disposed on the first adapter (242); a second adapter (252) connected to the second driving member (251), on which the telescopic assembly (230) is disposed, and configured to drive the telescopic assembly (230) to rotate when the second adapter (252) is driven by the second driving member (251) to rotate, so as to synchronously rotate the gel curing assembly (220).

6. The gel solidification mechanism (200) according to any one of claims 1-5, characterized in that, The telescopic assembly (230) comprises a third driving member (231) and a third adapter (232), the output end of the third driving member (231) is connected to the third adapter (232) to drive the third adapter (232) to move, and the gel curing assembly (220) is disposed on the third adapter (232).

7. The gel solidification mechanism (200) of claim 6, wherein, The third adapter (232) is provided with at least one first guide rod (233), the extension direction of the first guide rod (233) is the same as the moving direction of the third adapter (232), one end of the first guide rod (233) extends through the third driving piece (231) to the end of the third driving piece (231) away from the third adapter (232), and is in sliding connection with the third driving piece (231), and the third driving piece (231) is configured to drive the third adapter (232) to move along the extension direction of the first guide rod (233).

8. The gel solidification mechanism (200) of claim 7, wherein, The end of the first guide rod (233) away from the third adapter (232) is provided with a second limiting piece (234), and the second limiting piece (234) is configured to abut against the third driving piece (231) when the third adapter (232) is driven by the third driving piece (231) to move to the maximum stroke, so as to limit the distance between the third adapter (232) and the third driving piece (231).

9. A gel solidification fixture, characterized by, The device comprises a substrate and a plurality of gel solidification mechanisms (200) according to any one of claims 1-8, and the gel solidification mechanisms (200) are mounted on the substrate.

10. The gel solidification fixture of claim 9, wherein, The device further comprises a driving device connected with the substrate (100), and the driving device is configured to drive the substrate (100) to rotate, so that the gel solidification mechanisms (200) on the substrate (100) are rotated to a target position.