A curing device for a display

By combining drive components and transfer components, automated heating and loading/unloading of the colloid for vehicle displays are achieved, solving the problem of low efficiency of manual heating in existing technologies and improving colloid curing efficiency and production efficiency.

CN122183901APending Publication Date: 2026-06-12SUZHOU PRIMU ELECTRONIC TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SUZHOU PRIMU ELECTRONIC TECH CO LTD
Filing Date
2025-12-04
Publication Date
2026-06-12

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Abstract

The application relates to a curing device for a display screen, which comprises a driving assembly, a movable frame connected with the output end of a first driving element, a second driving element connected with the movable frame, and the driving paths of the first driving element and the second driving element being perpendicular; a moving assembly, the output end of the second driving element being connected with a mounting base, a third driving element being capable of driving a clamping element to move, the third driving element being connected with the mounting base, a suction accessory being connected with the output end of a fourth driving element, and the fourth driving element being connected with the mounting base; a bearing assembly, the bearing base comprising a containing space, a heating element being connected with the bearing base and located in the containing space, the clamping element being capable of clamping the bearing base, and the suction end of the suction accessory being capable of extending into the containing space; and a supporting assembly, the bearing base being provided with a butt joint element connected with the heating element, a power supply element being connected with the output end of a fifth driving element, and the power supply element being capable of being inserted with the butt joint element. The curing device for the display screen can improve the colloid curing efficiency.
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Description

Technical Field

[0001] This invention relates to the field of curing apparatus technology, and more particularly to a curing apparatus for display screens. Background Technology

[0002] After the glass panel of the vehicle-mounted display screen is assembled with its base, adhesive needs to be applied around the perimeter of the glass panel. Then, the base is heated to cure the adhesive, thus securing the glass panel and base firmly together. The base and glass panel are fixed together using a carrier during adhesive application. Currently, the heating and curing of the adhesive is mainly done manually using a heat gun or similar heating device to heat the base located on the carrier, curing the adhesive. Once the adhesive is fixed, the base is manually removed from the carrier. Because the adhesive curing process requires manual heating of each base within the carrier, the curing efficiency is relatively low. Summary of the Invention

[0003] Therefore, the technical problem to be solved by the present invention is to provide a curing device for a display screen that can improve the curing efficiency of colloids.

[0004] To solve the above-mentioned technical problems, the present invention provides a curing device for a display screen, comprising: a driving assembly including a first driving member, a movable frame, and a second driving member, wherein the movable frame is connected to the output end of the first driving member, the second driving member is connected to the movable frame, and the driving paths of the first driving member and the second driving member are perpendicular; a transfer assembly including a mounting base, an adsorption mechanism, and a clamping mechanism, wherein the output end of the second driving member is connected to the mounting base, the clamping mechanism includes a third driving member and at least two clamping members, the third driving member is capable of driving the clamping members to move, the third driving member is connected to the mounting base, and the adsorption mechanism includes... The system includes a fourth driving element and an adsorption element, wherein the adsorption element is connected to the output end of the fourth driving element, and the fourth driving element is connected to the mounting base; a support assembly including a support base and a heating element, wherein the support base includes a receiving space, the heating element is connected to the support base and located within the receiving space, the clamping element is capable of clamping the support base, and the adsorption end of the adsorption element is capable of extending into the receiving space; and a support assembly including a power supply mechanism, wherein the power supply mechanism includes a fifth driving element and a power supply element, the support base is provided with a docking element connected to the heating element, the power supply element is connected to the output end of the fifth driving element, and the power supply element is capable of being inserted into the docking element.

[0005] In one embodiment of the present invention, the clamping mechanism further includes a gear, a first rack, a second rack, a first movable seat, and a second movable seat. The first movable seat and the second movable seat are both slidably connected to the mounting base. The output end of the third driving member is connected to the first movable seat. One end of the first rack is connected to the first movable seat. The second movable seat is slidably connected to the first rack. One end of the second rack is connected to the second movable seat, and the first movable seat is slidably connected to the second rack. The gear is rotatably connected to the mounting base and located between the first rack and the second rack. The gear meshes with the first rack and the second rack. The opposite sides of the first movable seat and the second movable seat are connected to the clamping member.

[0006] In one embodiment of the present invention, the third driving member is connected to the mounting base via a connecting seat, and the first movable seat and the second movable seat are slidably connected to the side of the mounting base away from the connecting seat.

[0007] In one embodiment of the present invention, the mounting base is connected to two clamping mechanisms, the adsorption mechanism is located between the two clamping mechanisms, the mounting base has an opening, and the fourth driving member passes through the opening.

[0008] In one embodiment of the present invention, the support is connected to a plurality of positioning blocks, and the accommodating space is located between the plurality of positioning blocks.

[0009] In one embodiment of the present invention, the support assembly further includes a pad, the pad being connected to the support seat and located within the receiving space, and the heating element being located at both ends of the pad.

[0010] In one embodiment of the present invention, the pad is provided with an adsorption hole, and the side wall of the support seat is provided with a slot. The adsorption hole communicates with the slot. The support assembly further includes a negative pressure mechanism, which includes a sixth driving member and a negative pressure member. The negative pressure member is connected to the output end of the sixth driving member, and the negative pressure end of the negative pressure member can engage with the slot.

[0011] In one embodiment of the present invention, the support assembly further includes a support plate and a bracket, the bracket and the fifth driving member are both connected to the support plate, and the bearing seat can abut against the bracket.

[0012] In one embodiment of the present invention, the bottom edge of the bearing seat is provided with a limiting groove, and the clamping member is provided with a protrusion, which can engage with the limiting groove.

[0013] In one embodiment of the invention, a conveying member is further included, the conveying member being located at one end of the first driving member.

[0014] The technical solution of the present invention has the following advantages compared with the prior art:

[0015] The present invention discloses a curing device for a display screen. Through the arrangement of an adsorption mechanism and a clamping mechanism in the driving component and the transfer component, the clamping mechanism can clamp the carrier and move it, while the adsorption mechanism can adsorb the base and move it. With the arrangement of a heating element and a docking element on the carrier, and the coordination of power supply, after the carrier moves to the support component, the fifth driving component drives the power supply element to engage with the docking element, thereby energizing the heating element and heating the base. By setting multiple support components, multiple bases can be heated simultaneously to cure the colloid. Furthermore, the driving component, in conjunction with the transfer component, can automatically load and unload materials, thus improving the colloid curing efficiency. Attached Figure Description

[0016] To make the content of this invention easier to understand, the invention will be further described in detail below with reference to specific embodiments and accompanying drawings.

[0017] Figure 1 This is a schematic diagram of the structure of a curing device for a display screen according to the present invention;

[0018] Figure 2 yes Figure 1 Partial structural diagram;

[0019] Figure 3 This is a schematic diagram of the transfer component;

[0020] Figure 4 This is a schematic diagram of the adsorption structure;

[0021] Figure 5 This is a schematic diagram of the cooperation structure between the load-bearing component and the supporting component;

[0022] Figure 6 This is a schematic diagram of the negative pressure mechanism;

[0023] Figure 7 This is a schematic diagram of the cooperation structure between the base and the supporting components.

[0024] Explanation of reference numerals in the accompanying drawings: 1. First driving component; 2. Movable frame; 3. Transfer assembly; 4. Bearing assembly; 5. Support assembly; 6. Conveying component; 7. Base; 21. Second driving component; 22. Movable rod; 23. Guide component; 24. Connecting frame; 31. Mounting seat; 32. Connecting seat; 33. Third driving component; 34. First movable seat; 35. Clamping component; 36. First rack; 37. Gear; 38. Second rack; 39. Fourth driving component; 41. Bearing seat; 42. Positioning block; 43. Pad; 44. Heating component; 45. Pad plate; 46. Limiting groove; 51. Support plate; 52. Bracket; 53. Fifth driving component; 54. Power supply component; 55. Sixth driving component; 56. Mounting frame; 57. Negative pressure component; 341. Second movable seat; 391. Adsorption component. Detailed Implementation

[0025] The present invention will be further described below with reference to the accompanying drawings and specific embodiments, so that those skilled in the art can better understand and implement the present invention. However, the embodiments described are not intended to limit the present invention.

[0026] Reference Figures 1 to 5 As shown, a curing apparatus for a display screen according to the present invention includes: a driving assembly including a first driving member 1, a movable frame 2, and a second driving member 21, wherein the movable frame 2 is connected to the output end of the first driving member 1, and the second driving member 21 is connected to the movable frame 2, and the driving paths of the first driving member 1 and the second driving member 21 are perpendicular; a transfer assembly 3 including a mounting base 31, an adsorption mechanism, and a clamping mechanism, wherein the output end of the second driving member 21 is connected to the mounting base 31, the clamping mechanism includes a third driving member 33 and at least two clamping members 35, the third driving member 33 is capable of driving the clamping members 35 to move, the third driving member 33 is connected to the mounting base 31, and the adsorption mechanism includes a fourth driving member 39 and an adsorption member 35. 91, the adsorption member 391 is connected to the output end of the fourth driving member 39, and the fourth driving member 39 is connected to the mounting base 31; the bearing assembly 4 includes a bearing base 41 and a heating member 44, the bearing base 41 includes a receiving space, the heating member 44 is connected to the bearing base 41 and located in the receiving space, the clamping member 35 can clamp the bearing base 41, and the adsorption end of the adsorption member 391 can extend into the receiving space; the support assembly 5 includes a power supply mechanism, the power supply mechanism includes a fifth driving member 53 and a power supply member 54, the bearing base 41 is provided with a docking member connected to the heating member 44, the power supply member 54 is connected to the output end of the fifth driving member 53, and the power supply member 54 can be inserted into the docking member.

[0027] In this embodiment of a curing device for a display screen, when the base 7 on the support 41 needs to be heated to cure the colloid, the first driving member 1 moves the mounting base 31 so that the clamping member 35 aligns with the position of the support 41. Then, the second driving member 21 lowers the clamping member 35, and the third driving member 33 moves the clamping member 35 to clamp the support 41. Next, the second driving member 21 resets, and the first driving member 1 moves the support 41 to the position of the support assembly 5. The second driving member 21 and the third driving member 33 cooperate to... The carrier 41 moves to the support assembly 5. Further, the fifth drive member 53 drives the power supply member 54 to move so that the power supply member 54 engages with the docking member. At this time, the heating member 44 is energized and heats the base 7. After the colloid is heated for a certain time and solidifies, the first drive member 1, the second drive member 21 and the fourth drive member 39 cooperate to adsorb the adsorption member 391 onto the base 7 and move the base 7 to the outside. Finally, the first drive member 1, the second drive member 21 and the third drive member 33 cooperate with the clamping member 35 to clamp the carrier 41 and drive the carrier 41 to move to the outside. By setting up the adsorption mechanism and clamping mechanism in the drive component and the transfer component 3, the clamping mechanism can clamp the carrier 41 and drive the carrier 41 to move, and the adsorption mechanism can adsorb the base 7 and drive the base 7 to move. By setting up the heating element 44 and the docking part on the carrier 41, and with the cooperation of the power supply, after the carrier 41 moves to the support component 5, the fifth drive component 53 drives the power supply component 54 to engage with the docking part, thereby energizing the heating element 44 and heating the base 7. By setting up multiple support components 5, multiple bases 7 can be heated at the same time to cure the colloid. In addition, the drive component and the transfer component 3 can complete automatic loading and unloading, thereby improving the colloid curing efficiency.

[0028] Reference Figure 1 and Figure 2As shown, the drive assembly includes a first drive component 1, a movable frame 2, and a second drive component 21. Both the first drive component 1 and the second drive component 21 are linear drive components. The movable frame 2 is gantry-shaped, and its bottom is connected to the output end of the first drive component 1. The first drive component 1 can drive the movable frame 2 to move horizontally. Preferably, the drive assembly includes two parallel first drive components 1. The bottom ends of the movable frame 2 are respectively connected to the output ends of the two first drive components 1. The two first drive components 1 simultaneously drive the movable frame 2 to move, thereby improving the stability and load-bearing capacity of the movable frame 2. The second drive component 21 is connected to the top center of the movable frame 2 and passes through the top of the movable frame 2. The output end of the second drive component 21 is connected to a connecting frame 24. The drive path of the first drive component 1 is perpendicular to the drive path of the second drive component 21, and the second drive component 21 can drive the connecting frame 24 to rise and fall. The top of the movable frame 2 is also connected to a guide member 23, which can be regarded as a linear bearing. The guide member 23 is slidably connected to a movable rod 22, and the bottom end of the movable rod 22 is connected to the connecting frame 24, thereby guiding the movement of the connecting frame 24.

[0029] Reference Figure 3 As shown, the transfer assembly 3 includes a mounting base 31, an adsorption mechanism, and a clamping mechanism. The output end of the second drive member 21 is connected to the mounting base 31 through a connecting frame 24. The connecting frame 24 includes multiple connecting rods, and the bottom of the connecting rods is connected to the top edge of the mounting base 31.

[0030] The clamping mechanism includes a third driving member 33 and at least two clamping members 35. The third driving member 33 can drive the clamping members 35 to move, and the third driving member 33 is connected to the mounting base 31. Specifically, the third driving member 33 is a linear driving member, and a connecting seat 32 is connected to the top side of the mounting base 31. The third driving member 33 is connected to the mounting base 31 through the connecting seat 32. The clamping mechanism also includes a gear 37, a first rack 36, a second rack 38, a first movable seat 34, and a second movable seat 341. The first rack 36 and the second rack 38 are both cylindrical. The first movable seat 34 and the second movable seat 341 are slidably connected to the side of the mounting base 31 away from the connecting seat 32, that is, the first movable seat 34 and the second movable seat 341 are slidably connected to the bottom side of the mounting base 31. The first movable seat 34 and the second movable seat 341 are arranged opposite to each other. The mounting base 31 is provided with multiple clearance grooves, which correspond to the movement paths of the first movable seat 34 and the second movable seat 341. The output end of the third drive unit 33 is connected to the first movable seat 34. One end of the first rack 36 is connected to the first movable seat 34, and the end of the first rack 36 away from the first movable seat 34 passes through the second movable seat 341. The second movable seat 341 is slidably connected to the first rack 36. The end of the second rack 38 away from the first movable seat 34 is connected to the second movable seat 341, and the end of the second rack 38 away from the second movable seat 341 passes through the first movable seat 34. The first movable seat 34 is slidably connected to the second rack 38. The gear 37 is rotatably connected to the mounting base 31 and located between the first rack 36 and the second rack 38. The first rack 36 and the second rack 38 are arranged opposite to each other, and the gear 37 meshes with both the first rack 36 and the second rack 38. A clamping member 35 is connected to each opposite side of the first movable seat 34 and the second movable seat 341. The third driving member 33 drives the first movable seat 34 to move, and the first rack 36 moves with the first movable seat 34, thereby driving the gear 37 to rotate. The gear 37 can drive the second rack 38 to move, which in turn drives the second movable seat 341 to move. That is, the third driving member 33 can drive the first movable seat 34 and the second movable seat 341 to move towards or away from each other. By driving the first movable seat 34 and the second movable seat 341 to move through the third driving member 33, the two clamping members 35 can complete the clamping and releasing actions.

[0031] Reference Figure 4As shown, the adsorption mechanism includes a fourth driving member 39 and an adsorption member 391. The adsorption member 391 is connected to the output end of the fourth driving member 39 and is also connected to a vacuum source. The fourth driving member 39 is connected to the mounting base 31 and can drive the adsorption member 391 to move up and down. Specifically, the mounting base 31 is connected to two clamping mechanisms, and the adsorption mechanism is located between the two clamping mechanisms. An opening is provided in the middle of the mounting base 31, and the fourth driving member 39 passes through the opening, so that the adsorption member 391 can move up and down below the mounting base 31, thereby allowing the adsorption end of the adsorption member 391 to extend into the receiving space and adsorb the base 7.

[0032] Reference Figure 5 As shown, the support assembly 4 includes a support base 41 and a heating element 44. The support base 41 includes a receiving space, and the heating element 44 is connected to the support base 41 and located within the receiving space. Specifically, multiple positioning blocks 42 are connected to the top side of the support base 41, and the receiving space is located between the positioning blocks 42. The receiving space is used to receive the base 7, and the positioning blocks 42 can abut against the edge of the base 7 to position the base 7. The support assembly 4 also includes a pad 45, which is connected to the support base 41 and located within the receiving space. The heating element 44 is located at both ends of the pad 45. Pad blocks 43 are also connected to the top side of the support base 41. Two pad blocks 43 are located at the edges of the two heating elements 44. The pad blocks 43 are used to support the recessed positions at both ends of the bottom of the base 7 and also have a positioning function. The bottom edge of the support 41 is also provided with a plurality of limiting grooves 46 corresponding to the moving path positions of the clamping member 35. The clamping ends of the two clamping members 35 in the clamping mechanism are provided with protrusions protruding in opposite directions. The protrusions can engage with the limiting grooves 46, thereby driving the clamping member 35 to move through the third driving member 33, so that the protrusions of the clamping member 35 can engage with the limiting grooves 46, thereby enabling the clamping member 35 to clamp the support 41. Furthermore, the protrusions on the clamping member 35 make the clamping of the support 41 by the clamping member 35 more stable.

[0033] Support components 5 are located between two first driving members 1, and multiple support components 5 are equidistantly arranged along the driving path of the first driving members. Each support component 5 includes a support plate 51 and a bracket 52. Two support brackets are connected to the support plate 51, and a bearing seat 41 abuts against the bracket 52, thereby allowing the bracket 52 to support the bearing seat 41. To improve the positioning accuracy of the bearing seat 41 and the bracket 52, a positioning hole is provided at the bottom of the bearing seat 41, and a positioning post is provided on the top side of the bracket 52. The positioning post engages with the positioning hole, allowing the bearing seat 41 and the bracket 52 to be accurately positioned.

[0034] The support assembly 5 also includes a power supply mechanism, which comprises a fifth drive member 53 and a power supply member 54. The bottom of the support base 41 is provided with a docking member connected to the heating member 44. The fifth drive member 53 is a linear drive member and is connected to the support plate 51. The power supply member 54 is connected to the output end of the fifth drive member 53 and is also connected to a power source. The power supply member 54 can be inserted into the docking member. The power supply member 54 and the docking member form a connector. The fifth drive member 53 drives the power supply member 54 to rise, causing it to insert into the docking member, thus forming a passage between the power supply member 54 and the docking member. At this time, the heating member 44 is energized and can heat the base 7.

[0035] Reference Figure 5 and Figure 6 As shown, the pad 45 is also provided with multiple adsorption holes, and the side wall of the support base 41 is provided with a slot, and the bottom of the slot is provided with a vent hole, which communicates with the adsorption holes, thereby connecting the adsorption holes with the slot. The support assembly 5 also includes a negative pressure mechanism, which includes a sixth driving component 55 and a negative pressure component 57. The sixth driving component 55 is connected to the support plate 51 through the mounting bracket 56, and the negative pressure component 57 is connected to the vacuum source. The sixth driving component 55 is a linear driving component, which can drive the negative pressure component 57 to move. The negative pressure end of the negative pressure component 57 can engage with the slot, and the negative pressure end of the negative pressure component 57 is made of flexible material. When the negative pressure end of the negative pressure component 57 engages with the slot, the vacuum source can generate negative pressure in the adsorption holes through the negative pressure component 57 and the vent hole, thereby allowing the adsorption holes to adsorb the base 7.

[0036] The curing device for the display screen also includes a conveyor 6, which can be regarded as a conveyor belt device. The conveyor 6 is located at one end of the first drive member 1 and between the two first drive members 1. The conveying path of the conveyor 6 is parallel to the conveying path of the first drive member 1. The conveyor 6 is used to convey the base 7 after the colloid has been cured.

[0037] When using, refer to Figure 7As shown, the base 7 is located on the support 41. At this time, the glass plate on the base 7 is glued around its perimeter. Then, the first driving member 1 drives the mounting base 31 to move, so that the clamping member 35 corresponds to the position of the support 41. Next, the second driving member 21 drives the clamping member 35 to descend, and the third driving member 33 drives the clamping member 35 to move, so that the clamping member 35 clamps the support 41. Then, the second driving member 21 resets, and the first driving member 1 drives the support 41 to the position of the support assembly 5. The second driving member 21 and the third driving member 33 cooperate to move the support 41 to the position corresponding to the bracket 52. Further, the fifth driving member 53 drives the power supply member 54 to move, so that the power supply member 54 and the support assembly 52 are aligned. When the docking parts are engaged, the heating element 44 is energized and heats the base 7. At the same time, the sixth driving element 55 drives the negative pressure element 57 to engage with the slot, so that the adsorption holes on the pad 45 adsorb the base 7. At this time, the position of the base 7 is fixed. After the colloid is heated for a certain time and solidified, the adsorption holes stop adsorbing the base 7. The first driving element 1, the second driving element 21 and the fourth driving element 39 cooperate to make the adsorption element 391 adsorb the base 7 and move the base 7 to the conveying element 6. The conveying element 6 drives the base 7 to move to the next station. Finally, the first driving element 1, the second driving element 21 and the third driving element 33 cooperate with the clamping element 35 to clamp the carrier 41 and drive the carrier 41 to the outside.

[0038] The present invention discloses a curing device for a display screen. By setting an adsorption mechanism and a clamping mechanism in the driving component and the transfer component 3, the clamping mechanism can clamp the carrier 41 and drive the carrier 41 to move, and the adsorption mechanism can adsorb the base 7 and drive the base 7 to move. By setting a heating element 44 and a docking element on the carrier 41 and cooperating with the power supply, after the carrier 41 moves to the support component 5, the fifth driving component 53 drives the power supply component 54 to engage with the docking element, thereby energizing the heating element 44 and heating the base 7. By setting multiple support components 5, multiple bases 7 can be heated simultaneously to cure the colloid. Furthermore, the driving component and the transfer component 3 can complete automatic loading and unloading, thereby improving the curing efficiency of the colloid.

[0039] Obviously, the above embodiments are merely illustrative examples for clear explanation and are not intended to limit the implementation. Those skilled in the art will recognize that other variations or modifications can be made based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations here. However, obvious variations or modifications derived therefrom are still within the scope of protection of this invention.

Claims

1. A curing device for a display screen, characterized in that, include: A drive assembly includes a first drive component, a movable frame, and a second drive component. The movable frame is connected to the output end of the first drive component, and the second drive component is connected to the movable frame. The drive paths of the first drive component and the second drive component are perpendicular. A transfer assembly includes a mounting base, an adsorption mechanism, and a clamping mechanism. The output end of a second driving member is connected to the mounting base. The clamping mechanism includes a third driving member and at least two clamping members. The third driving member is capable of driving the clamping members to move and is connected to the mounting base. The adsorption mechanism includes a fourth driving member and an adsorption member. The adsorption member is connected to the output end of the fourth driving member and is connected to the mounting base. A support assembly includes a support base and a heating element. The support base includes a receiving space. The heating element is connected to the support base and located within the receiving space. The clamping element is capable of clamping the support base. The adsorption end of the adsorption element is capable of extending into the receiving space. The support assembly includes a power supply mechanism, which includes a fifth driving component and a power supply component. The support base is provided with a docking component that connects to the heating component. The power supply component is connected to the output end of the fifth driving component and can be inserted into the docking component.

2. The curing apparatus for a display screen according to claim 1, characterized in that: The clamping mechanism further includes a gear, a first rack, a second rack, a first movable seat, and a second movable seat. The first movable seat and the second movable seat are both slidably connected to the mounting base. The output end of the third driving member is connected to the first movable seat. One end of the first rack is connected to the first movable seat. The second movable seat is slidably connected to the first rack. One end of the second rack is connected to the second movable seat, and the first movable seat is slidably connected to the second rack. The gear is rotatably connected to the mounting base and located between the first rack and the second rack. The gear meshes with the first rack and the second rack. The opposite sides of the first movable seat and the second movable seat are connected to the clamping member.

3. The curing apparatus for a display screen according to claim 2, characterized in that: The third driving component is connected to the mounting base via a connecting seat, and the first movable seat and the second movable seat are slidably connected to the side of the mounting base away from the connecting seat.

4. The curing apparatus for a display screen according to claim 1, characterized in that: The mounting base is connected to two clamping mechanisms, the adsorption mechanism is located between the two clamping mechanisms, the mounting base has an opening, and the fourth driving member passes through the opening.

5. The curing apparatus for a display screen according to claim 1, characterized in that: The support is connected to multiple positioning blocks, and the accommodating space is located between the multiple positioning blocks.

6. The curing apparatus for a display screen according to claim 1, characterized in that: The support assembly further includes a pad, which is connected to the support seat and located within the receiving space, and the heating element is located at both ends of the pad.

7. The curing apparatus for a display screen according to claim 6, characterized in that: The pad is provided with an adsorption hole, and the side wall of the support seat is provided with a slot. The adsorption hole communicates with the slot. The support assembly also includes a negative pressure mechanism, which includes a sixth driving member and a negative pressure member. The negative pressure member is connected to the output end of the sixth driving member, and the negative pressure end of the negative pressure member can engage with the slot.

8. The curing apparatus for a display screen according to claim 1, characterized in that: The support assembly also includes a support plate and a bracket, both of which are connected to the support plate, and the bearing seat is able to abut against the bracket.

9. The curing apparatus for a display screen according to claim 1, characterized in that: The bottom edge of the support is provided with a limiting groove, and the clamping member is provided with a protrusion that can engage with the limiting groove.

10. The curing apparatus for a display screen according to claim 1, characterized in that: It also includes a conveyor, which is located at one end of the first drive member.