Infrared calibration precision gluing platform

CN224823222UActive Publication Date: 2026-10-09DONGGUAN KINGYOU ELECTRONICS CO LTD
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Patent Information

Application Number
CN202522077630.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-26
Publication Date
2026-10-09
Estimated Expiration
2035-09-26

AI Technical Summary

Technical Problem

[0003]现有平台的打胶定位座与底座多为专用适配设计,一款定位座仅对应特定型号的底座安装结构,这种设计的问题在于适配维度单一,仅能满足固定尺寸、固定形状工件的打胶需求,则需整体更换打胶定位座及配套的底座安装组件,不仅要更换定位座本体,还需拆卸底座上原有的定位销、螺钉等,重新打孔、装配新的适配部件,为此我们提出了一种红外线校准的精密打胶平台

Benefits of technology

该红外线校准的精密打胶平台,通过灵活可调的定位与压紧结构设计,无需更换底座安装组件即可适配不同尺寸、形状的打胶定位座,大幅降低了设备换型成本与操作难度,显著提升了对多品种、小批量精密打胶作业的适配能力。

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Abstract

The utility model relates to the field of gluing platform, and disclose a kind of precision gluing platform of infrared calibration, including gluing pedestal and gluing positioning seat, gluing pedestal's top is equipped with gluing positioning seat, infrared calibration structure is set to the top surface of the gluing pedestal, the infrared calibration structure includes infrared calibration head and multi-angle adjusting assembly, multiple support gusset is set to the bottom surface of the gluing positioning seat, one side of support gusset is fixedly connected with gluing positioning seat, multiple gluing positioning seat fixed structures are set to the top surface of the gluing pedestal, the gluing positioning seat fixed structure includes longitudinal pressure adjustment assembly and transverse pressure adjustment assembly, longitudinal pressure adjustment assembly is on the top surface of the gluing pedestal, transverse pressure adjustment assembly is set on longitudinal pressure adjustment assembly, by flexible adjustable positioning and pressure structure design, different sizes, shapes gluing positioning seat can be adapted without replacing pedestal mounting assembly.
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Description

Technical Field

[0001] This utility model relates to the field of glue application platforms, specifically an infrared-calibrated precision glue application platform. Background Technology

[0002] In precision manufacturing processes such as electronic component assembly, automotive parts manufacturing, and medical device processing, the glue application process is a key connection, sealing, and fixing step. The positional accuracy, width consistency, and uniformity of the glue layer directly determine the assembly quality, sealing performance, and service life of the product. As the industry continues to demand miniaturization, integration, and reliability of products, the market's requirements for glue application precision have moved from the traditional millimeter level to the micrometer level. This poses extremely high challenges to the positioning accuracy, adjustment flexibility, and adaptability of the glue application platform.

[0003] Existing glue dispensing positioning seats and bases are mostly designed with dedicated adapters. One positioning seat corresponds to a specific model of base mounting structure. The problem with this design is that the adaptation dimension is limited, and it can only meet the glue dispensing needs of workpieces with fixed size and shape. Therefore, it is necessary to replace the entire glue dispensing positioning seat and matching base mounting components. Not only must the positioning seat body be replaced, but the original positioning pins, screws, etc. on the base must also be removed, and new adapter components must be re-drilled and assembled. To address this, we have proposed a precision glue dispensing platform with infrared calibration. Utility Model Content

[0004] To address the shortcomings of existing technologies, this invention provides a precision glue-applying platform with infrared calibration, thus solving the aforementioned problems.

[0005] To achieve the above-mentioned objectives, this utility model provides the following technical solution: an infrared-calibrated precision glue application platform, comprising a glue application base and a glue application positioning seat, wherein the glue application positioning seat is installed on the top surface of the glue application base; An infrared calibration structure is disposed on the top surface of the glue application base, and the infrared calibration structure is above the glue application positioning seat and corresponds to the glue application positioning seat. The infrared calibration structure includes an infrared calibration head and a multi-angle adjustment component. The multi-angle adjustment component is disposed on the glue-applying base, and the infrared calibration head is provided on the multi-angle adjustment component. The infrared calibration head is located above the glue-applying positioning base. Multiple support corner plates are disposed on the bottom surface of the glue-applying positioning seat, and the multiple support corner plates are located at the four corners of the glue-applying positioning seat. One side of the support corner plate is fixedly connected to the glue-applying positioning seat. Multiple sets of glue-applying positioning seat fixing structures are provided on the top surface of the glue-applying base, and the multiple sets of glue-applying positioning seat fixing structures correspond to the supporting corner plate; The glue-applying positioning base fixing structure includes a longitudinal pressing adjustment component and a transverse pressing adjustment component. The longitudinal pressing adjustment component is located on the top surface of the glue-applying base, and the transverse pressing adjustment component is disposed on the longitudinal pressing adjustment component.

[0006] Preferably, the multi-angle adjustment assembly includes a fixing ring, a vertical rod, an adjustment component, and a crossbar. One side of the fixing ring is connected to the top surface of the glue-applying base by a screw. The fixing ring is located on one side of the glue-applying positioning seat. The side of the fixing ring facing away from the glue-applying base is fixedly connected to the vertical rod. The other end of the vertical rod is connected to the adjustment component. The adjustment component slides on the vertical rod. A crossbar is installed on the adjustment component. The crossbar slides on the adjustment component and is located above the glue-applying positioning seat.

[0007] Preferably, one end of the crossbar back-off adjustment assembly is connected to the infrared calibration head, the infrared calibration head is above the glue-applying base and the calibration surface of the infrared calibration head corresponds to the glue-applying positioning seat.

[0008] Preferably, a positioning groove is provided at the center of the top surface of the glue-applying base, and a positioning protrusion is fixedly connected at the center of the bottom surface of the glue-applying positioning base, with the positioning protrusion inserted into the positioning groove.

[0009] Preferably, the top surface of the glue-applying base is provided with two trapezoidal grooves, the short sides of which penetrate through the top surface of the glue-applying base. The two trapezoidal grooves are respectively on both sides of the glue-applying positioning seat and on the outside of the support corner plate.

[0010] Preferably, the longitudinal pressing adjustment assembly includes a support box, a trapezoidal protrusion, and an adjustment plate. One side of the support box is connected to the trapezoidal protrusion, and the short side of the trapezoidal protrusion is fixedly connected to the support box. The trapezoidal protrusions of the two support boxes are slidably connected to a trapezoidal groove. Two support boxes are connected to each trapezoidal groove. The support boxes correspond to the support corner plates. An adjustment plate is connected to the side of each support box facing away from the trapezoidal protrusion.

[0011] Preferably, the side of the support box opposite to the trapezoidal protrusion is provided with a guide hole.

[0012] Preferably, the lateral pressing adjustment assembly includes a bending plate, a V-shaped spring, and a hemispherical protrusion. The bending plate is connected to the end of the adjustment plate facing away from the support box and close to the support corner plate. One end of the bending plate is fixedly connected to the adjustment plate, and the other end of the bending plate faces the support corner plate and is above the support corner plate. V-shaped springs are snapped into the support box. One side of the V-shaped spring is fixedly connected to the side of the support box facing away from the trapezoidal protrusion. The other side of the V-shaped spring is fixedly connected to the side opposite to the guide hole. The hemispherical protrusion corresponds to the guide hole and is inserted into the guide hole.

[0013] Preferably, the side of the adjusting plate that is in contact with the support box is provided with a plurality of hemispherical grooves that are equidistantly distributed along a straight line, and the hemispherical grooves are engaged with the hemispherical protrusions.

[0014] Preferably, the lateral pressing adjustment assembly further includes a pressure rod and a spring. A circular hole is provided through the side of the bent plate opposite to the supporting corner plate. A pressure rod is inserted into the circular hole of the supporting corner plate. Circular protrusions are fixedly connected to both ends of the pressure rod. A spring is fixedly connected to the circular protrusion at the end of the pressure rod opposite to the supporting corner plate. The spring is sleeved on the outside of the pressure rod. The other end of the spring is fixedly connected to the side of the bent plate with the circular hole.

[0015] Compared with the prior art, this utility model provides a precision glue application platform with infrared calibration, which has the following advantages: This infrared-calibrated precision glue dispensing platform, through its flexible and adjustable positioning and clamping structure design, can be adapted to glue dispensing positioning seats of different sizes and shapes without changing the base mounting components. This significantly reduces equipment changeover costs and operational difficulty, and greatly improves its adaptability to multi-variety, small-batch precision glue dispensing operations. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is an exploded view of the structure of this utility model; Figure 3 This is a cross-sectional schematic diagram of the glue-applying positioning seat fixing structure of this utility model; Figure 4 for Figure 3 A magnified view of part A in the diagram.

[0017] In the diagram: 1. Glue-applying base; 2. Fixing ring; 3. Glue-applying positioning seat; 4. Upright pole; 5. Adjustment component; 6. Crossbar; 7. Infrared calibration head; 8. Trapezoidal groove; 9. Support angle plate; 10. Adjustment plate; 11. Pressure rod; 12. Spring; 13. Support box; 14. Positioning groove; 15. Trapezoidal protrusion; 16. V-shaped spring; 17. Hemispherical protrusion; 18. Guide hole; 19. Bending plate; 20. Positioning protrusion; 21. Hemispherical groove. Detailed Implementation

[0018] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0019] Please see Figure 1-4 An infrared-calibrated precision glue application platform includes a glue application base 1 and a glue application positioning seat 3, wherein the glue application positioning seat 3 is installed on the top surface of the glue application base 1. An infrared calibration structure is set on the top surface of the glue application base 1. The infrared calibration structure is above the glue application positioning seat 3 and corresponds to the glue application positioning seat 3. The infrared calibration structure includes an infrared calibration head 7 and a multi-angle adjustment component. The multi-angle adjustment component is set on the glue application base 1, and the infrared calibration head 7 is provided on the multi-angle adjustment component. The infrared calibration head 7 is above the glue application positioning seat 3. Multiple support corner plates 9 are set on the bottom surface of the glue application positioning base 3. The multiple support corner plates 9 are located at the four corners of the glue application positioning base 3, and one side of the support corner plate 9 is fixedly connected to the glue application positioning base 3. Multiple sets of glue-applying positioning seat fixing structures are set on the top surface of the glue-applying base 1, and the multiple sets of glue-applying positioning seat fixing structures correspond to the support corner plate 9. The glue applicator fixing structure includes a longitudinal pressing adjustment component and a transverse pressing adjustment component. The longitudinal pressing adjustment component is located on the top surface of the glue applicator base 1, and the transverse pressing adjustment component is mounted on the longitudinal pressing adjustment component.

[0020] Furthermore, the multi-angle adjustment assembly includes a fixing ring 2, a vertical rod 4, an adjustment component 5, and a crossbar 6. One side of the fixing ring 2 is connected to the top surface of the glue-applying base 1 by screws. The fixing ring 2 is on one side of the glue-applying positioning seat 3. The vertical rod 4 is fixedly connected to the side of the fixing ring 2 facing away from the glue-applying base 1. The other end of the vertical rod 4 is connected to the adjustment component 5. The adjustment component 5 slides on the vertical rod 4. The crossbar 6 is installed on the adjustment component 5 and slides on the adjustment component 5. The crossbar 6 is above the glue-applying positioning seat 3. The fixing ring 2 is used to fix the vertical rod 4 to the glue-applying base 1. The vertical rod 4 and the crossbar 6 are used to support the infrared calibration head 7. The adjustment component 5 is used to adjust the height and angle of the infrared calibration head 7.

[0021] Furthermore, one end of the crossbar 6 away from the adjustment assembly 5 is connected to the infrared calibration head 7. The infrared calibration head 7 is above the glue application base 1 and the calibration surface of the infrared calibration head 7 corresponds to the glue application positioning seat 3. The infrared calibration head 7 is used to provide precise positioning marks for glue application.

[0022] Furthermore, a positioning groove 14 is provided at the center of the top surface of the glue-applying base 1, and a positioning protrusion 20 is fixedly connected at the center of the bottom surface of the glue-applying positioning seat 3. The positioning protrusion 20 is inserted into the positioning groove 14. The positioning groove 14 and the positioning protrusion 20 are used to initially position the glue-applying positioning seat 3 on the glue-applying base 1.

[0023] Furthermore, the top surface of the glue-applying base 1 is provided with two trapezoidal grooves 8, the short side of which extends through the top surface of the glue-applying base 1. The two trapezoidal grooves 8 are located on both sides of the glue-applying positioning seat 3 and on the outside of the support corner plate 9. The trapezoidal grooves 8 are used to install the longitudinal pressing adjustment component.

[0024] Furthermore, the longitudinal pressing adjustment assembly includes a support box 13, a trapezoidal protrusion 15, and an adjustment plate 10. One side of the support box 13 is connected to the trapezoidal protrusion 15, and the short side of the trapezoidal protrusion 15 is fixedly connected to the support box 13. The trapezoidal protrusions 15 of the two support boxes 13 are slidably connected to a trapezoidal groove 8. Two support boxes 13 are connected to each trapezoidal groove 8. The support boxes 13 correspond to the support corner plates 9. The side of each support box 13 facing away from the trapezoidal protrusion 15 is connected to the adjustment plate 10. The support box 13 is used to support the adjustment plate 10. The trapezoidal protrusion 15 is used to connect the support box 13 and the glue base 1. The support box 13 slides on the glue base 1, and the adjustment plate 10 slides on the support box 13.

[0025] Furthermore, the side of the support box 13 opposite to the trapezoidal protrusion 15 is provided with a guide hole 18, which is used to guide the lateral pressing adjustment component.

[0026] Furthermore, the lateral pressing adjustment assembly includes a bending plate 19, a V-shaped spring 16, and a hemispherical protrusion 17. The side of the adjustment plate 10 facing away from the support box 13 and the end near the support corner plate 9 are all connected to the bending plate 19. One end of the bending plate 19 is fixedly connected to the adjustment plate 10, and the other end of the bending plate 19 faces the support corner plate 9 and is above the support corner plate 9. V-shaped springs 16 are snapped into the support box 13. One side of the V-shaped spring 16 is fixedly connected to the side of the support box 13 facing away from the trapezoidal protrusion 15. The other side of the V-shaped spring 16 is fixedly connected to the side opposite to the guide hole 18. The hemispherical protrusion 17 corresponds to the guide hole 18 and is inserted into the guide hole 18. The V-shaped spring 16 is used to support the hemispherical protrusion 17. The hemispherical protrusion 17 is snapped into the guide hole 18 and corresponds to the adjustment plate 10. The elasticity of the V-shaped spring 16 causes the hemispherical protrusion 17 to extend out of the guide hole 18.

[0027] Furthermore, the side of the adjusting plate 10 that is in contact with the support box 13 is provided with a plurality of hemispherical grooves 21 that are equidistantly distributed along a straight line. The hemispherical grooves 21 are snapped into the hemispherical protrusions 17. The hemispherical grooves 21 are used to snap into the hemispherical protrusions 17 and position the adjusting plate 10 on the support box 13. The position of the bending plate 19 is adjusted according to the glue positioning seat 3 of different specifications.

[0028] Furthermore, the lateral pressing adjustment assembly also includes a pressure rod 11 and a spring 12. A circular hole is provided through the side of the bent plate 19 opposite to the support angle plate 9. The pressure rod 11 is inserted into the circular hole of the support angle plate 9. Circular protrusions are fixedly connected to both ends of the pressure rod 11. A spring 12 is fixedly connected to the circular protrusion at the end of the pressure rod 11 opposite to the support angle plate 9. The spring 12 is sleeved on the outside of the pressure rod 11. The other end of the spring 12 is fixedly connected to the side of the bent plate 19 with the circular hole. The pressure rod 11 is used to press the support angle plate 9 onto the glue-applying base 1. The elastic force of the spring 12 fixes the glue-applying positioning seat 3 onto the glue-applying base 1.

[0029] Structural Description: Glue application base 1: It is flat and serves as the basic load-bearing structure of the entire platform. It is used to install and fix glue application positioning seat 3 and other components, providing a stable working reference surface. Fixing ring 2: an waist-shaped ring structure, connected to the glue base 1 by screws. Its core function is to firmly fix the upright 4 on the glue base 1, ensuring the support stability of the infrared calibration structure. Glue application positioning seat 3: Block structure, used to place the workpiece to be glued, its bottom surface is connected to the support corner plate 9, and it is positioned and engaged with the glue application base 1 through the positioning protrusion 20. Upright pole 4: A long, rod-shaped structure, one end of which is fixed to the fixing ring 2, and the other end is connected to the adjustment component 5, serving as a vertical support carrier for the infrared calibration head 7; Adjustment component 5: A sleeve-type adjustable structure, which is sleeved on the upright 4 and can slide, and is connected to the crossbar 6, for adjusting the height and angle of the infrared calibration head 7; Crossbar 6: A long bar-shaped structure, one end of which is connected to the adjustment component 5, and the other end is equipped with an infrared calibration head 7, which serves to provide lateral support and adjust the horizontal position of the calibration head; Infrared calibration head 7: Small block structure with built-in infrared emitting module, which provides a precise positioning reference for glue dispensing equipment by projecting infrared marks; Trapezoidal groove 8: A trapezoidal groove formed on the top surface of the glue-applying base 1, with its short side penetrating the base, used to cooperate with the trapezoidal protrusion 15 to install the longitudinal pressing adjustment component and to provide guidance for its sliding. Supporting corner plate 9: Plate-shaped structure, fixed to the four corners of the bottom surface of the glue-applying positioning seat 3, used to enhance the stability of the positioning seat, and also as the pressing force point of the transverse pressing adjustment component; Adjustment plate 10: a long strip-shaped structure that is slidably connected to the support box 13, with one end connected to the bending plate 19. The lateral position of the bending plate 19 can be adjusted by sliding adjustment. Pressure rod 11: A cylindrical rod with circular protrusions at both ends, which passes through the circular hole of the bending plate 19 and presses down on the support angle plate 9 under the action of the spring 12; Spring 12: A spiral elastic structure, sleeved on the outside of the pressure rod 11, with one end connected to the bending plate 19 and the other end connected to the circular protrusion of the pressure rod 11, providing continuous clamping force; Support box 13: Box-shaped structure, with trapezoidal protrusion 15 connected to the bottom, V-shaped spring piece 16 snapped in the inside, and the top surface used to support the adjustment plate 10. It is the connecting carrier of the longitudinal and transverse adjustment components. Positioning groove 14: A groove formed in the center of the top surface of the glue-applying base 1, used to insert the positioning protrusion 20 to achieve the initial centering and positioning of the glue-applying positioning base 3; Trapezoidal protrusion 15: A trapezoidal block structure that fits the trapezoidal groove 8, fixed to the bottom of the support box 13, used to connect the support box 13 and the glue base 1, and slides along the trapezoidal groove 8; V-shaped spring 16: A V-shaped elastic metal sheet that is snapped into the support box 13. It pushes the hemispherical protrusion 17 out of the guide hole 18 through its own elasticity to achieve the positioning of the adjustment plate 10. Hemispherical protrusion 17: a hemispherical block structure, fixed to one end of the V-shaped spring piece 16, can be inserted into the guide hole 18 and the hemispherical groove 21, and serves to position the adjustment plate 10. Guide hole 18: A circular hole penetrating the top surface of the support box 13, used to provide an extension channel for the hemispherical protrusion 17 and to guide its movement. Bending plate 19: A bent plate body, one end of which is fixed to the adjusting plate 10, and the other end extends to the top of the supporting corner plate 9 and is fitted with a pressure rod 11, serving as a force transmission component of the pressing structure; Positioning protrusion 20: A block-shaped structure fixed to the center of the bottom surface of the glue-applying positioning seat 3, which is adapted to and inserted into the positioning groove 14 to achieve the initial positioning of the positioning seat; Hemispherical groove 21: A hemispherical groove formed on the bottom surface of the adjustment plate 10, used to engage the hemispherical protrusion 17 and accurately position the adjustment plate 10 on the support box 13.

[0030] Working principle: First, the glue-applying positioning seat 3 is initially positioned. The positioning protrusion 20 on the bottom surface of the glue-applying positioning seat 3 is precisely inserted into the positioning groove 14 at the center of the top surface of the glue-applying base 1. Through the interlocking cooperation of the two, the glue-applying positioning seat 3 is initially centered on the glue-applying base 1, ensuring that its core glue-applying area is within the reference range of the glue-applying base 1. According to the position of the support corner plates 9 at the four corners of the glue-applying positioning seat 3, the support box 13 is pushed to slide along the trapezoidal groove 8. The support box 13 can be smoothly adjusted in lateral position through the sliding cooperation between the bottom trapezoidal protrusion 15 and the trapezoidal groove 8, so that each Each support box 13 is aligned with its corresponding support corner plate 9. Then, the adjusting plate 10 is pushed to slide on the support box 13. Through the elastic force of the V-shaped spring piece 16 inside the support box 13, the hemispherical protrusion 17 extends out of the guide hole 18 and engages with the hemispherical groove 21 on the bottom surface of the adjusting plate 10. Using this engagement, the position of the adjusting plate 10 is precisely fixed, thereby causing the bending plate 19 to move laterally to directly above the support corner plate 9, adapting to glue-applying positioning seats 3 of different widths. The upright rod 4 and crossbar 6, fixed to the glue-applying base 1 by the fixing ring 2, form a support frame. The sliding adjusting component 5 moves along the upright rod 4... The height of the movable and adjustable infrared calibration head 7 can be adjusted, and its horizontal position can be adjusted by moving the sliding crossbar 6 along the adjusting component 5. At the same time, the adjusting component 5 can achieve fine-tuning of the angle of the infrared calibration head 7. Through multi-dimensional adjustment, the calibration surface of the infrared calibration head 7 is accurately aligned with the glue application reference line on the glue application positioning seat 3, projecting a positioning mark to provide accurate coordinate guidance for the glue application equipment. Finally, the glue application positioning seat 3 is tightened, and the pressure rod 11 on the bending plate 19 presses down on the supporting angle plate 9 under the elastic force of the spring 12. The elastic buffer of the spring 12 can avoid the rigid pressing caused by... The glue-applying positioning seat 3 deforms, and the circular protrusions at both ends of the pressure rod 11 limit the clamping force to ensure stability. The four sets of clamping structures work synchronously to firmly fix the support angle plate 9 on the glue-applying base 1, thereby achieving reliable fixation of the glue-applying positioning seat 3 and preventing displacement due to vibration during glue application. In the entire process, the positioning groove 14 and the positioning protrusion 20 ensure the initial positioning accuracy, the trapezoidal groove 8, the hemispherical groove 21, and the hemispherical protrusion 17 work together to achieve multi-dimensional flexible adjustment, the infrared calibration head 7 provides micron-level positioning guidance, and the spring 12 clamping structure ensures the stability of the fixation.

[0031] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A precision glue-applying platform with infrared calibration, characterized in that: It includes a glue-applying base (1) and a glue-applying positioning seat (3), with the glue-applying positioning seat (3) installed on the top surface of the glue-applying base (1). An infrared calibration structure is set on the top surface of the glue-applying base (1), the infrared calibration structure is above the glue-applying positioning seat (3) and corresponds to the glue-applying positioning seat (3); The infrared calibration structure includes an infrared calibration head (7) and a multi-angle adjustment component. The multi-angle adjustment component is disposed on the glue-applying base (1), and the infrared calibration head (7) is provided on the multi-angle adjustment component. The infrared calibration head (7) is located above the glue-applying positioning seat (3). Multiple support corner plates (9) are set on the bottom surface of the glue-applying positioning seat (3). The multiple support corner plates (9) are located at the four corners of the glue-applying positioning seat (3), and one side of the support corner plate (9) is fixedly connected to the glue-applying positioning seat (3). Multiple sets of glue-applying positioning seat fixing structures are provided on the top surface of the glue-applying base (1), and the multiple sets of glue-applying positioning seat fixing structures correspond to the support corner plate (9); The glue-applying positioning seat fixing structure includes a longitudinal pressing adjustment component and a transverse pressing adjustment component. The longitudinal pressing adjustment component is located on the top surface of the glue-applying base (1), and the transverse pressing adjustment component is located on the longitudinal pressing adjustment component.

2. The precision glue-applying platform with infrared calibration according to claim 1, characterized in that, The multi-angle adjustment assembly includes a fixing ring (2), a vertical rod (4), an adjustment assembly (5), and a horizontal rod (6). One side of the fixing ring (2) is connected to the top surface of the glue-applying base (1) by screws. The fixing ring (2) is on one side of the glue-applying positioning seat (3). The side of the fixing ring (2) facing away from the glue-applying base (1) is fixedly connected to the vertical rod (4). The other end of the vertical rod (4) is connected to the adjustment assembly (5). The adjustment assembly (5) slides on the vertical rod (4). A horizontal rod (6) is installed on the adjustment assembly (5). The horizontal rod (6) slides on the adjustment assembly (5). The horizontal rod (6) is above the glue-applying positioning seat (3).

3. The precision glue-applying platform with infrared calibration according to claim 2, characterized in that, The end of the crossbar (6) away from the adjustment assembly (5) is connected to the infrared calibration head (7). The infrared calibration head (7) is above the glue base (1) and the calibration surface of the infrared calibration head (7) corresponds to the glue positioning seat (3).

4. The precision glue-applying platform with infrared calibration according to claim 1, characterized in that, The top surface of the glue-applying base (1) has a positioning groove (14) at the center, and the bottom surface of the glue-applying positioning base (3) has a positioning protrusion (20) fixedly connected to it. The positioning protrusion (20) is inserted into the positioning groove (14).

5. The precision glue-applying platform with infrared calibration according to claim 1, characterized in that, The top surface of the glue-applying base (1) is provided with two trapezoidal grooves (8). The short side of the trapezoidal grooves (8) penetrates the top surface of the glue-applying base (1). The two trapezoidal grooves (8) are respectively on both sides of the glue-applying positioning seat (3) and on the outside of the support corner plate (9).

6. The precision glue-applying platform with infrared calibration according to claim 5, characterized in that, The longitudinal pressing adjustment assembly includes a support box (13), a trapezoidal protrusion (15), and an adjustment plate (10). One side of the support box (13) is connected to the trapezoidal protrusion (15). The short side of the trapezoidal protrusion (15) is fixedly connected to the support box (13). The trapezoidal protrusions (15) of the two support boxes (13) are slidably connected to a trapezoidal groove (8). Two support boxes (13) are connected to each trapezoidal groove (8). The support box (13) corresponds to the support corner plate (9). The side of each support box (13) facing away from the trapezoidal protrusion (15) is connected to the adjustment plate (10).

7. The precision glue-applying platform with infrared calibration according to claim 6, characterized in that, The side of the support box (13) facing away from the trapezoidal protrusion (15) is provided with a guide hole (18).

8. The precision glue-applying platform with infrared calibration according to claim 7, characterized in that, The lateral pressing adjustment assembly includes a bending plate (19), a V-shaped spring (16), and a hemispherical protrusion (17). The side of the adjustment plate (10) facing away from the support box (13) and the end near the support corner plate (9) are all connected to the bending plate (19). One end of the bending plate (19) is fixedly connected to the adjustment plate (10), and the other end of the bending plate (19) faces the support corner plate (9) and is above the support corner plate (9). The support box (13) is fitted with a V-shaped spring (16). One side of the V-shaped spring (16) is fixedly connected to the side of the support box (13) facing away from the trapezoidal protrusion (15). The other side of the V-shaped spring (16) is fixedly connected to the side opposite to the guide hole (18) with the hemispherical protrusion (17). The hemispherical protrusion (17) corresponds to the guide hole (18) and is inserted into the guide hole (18).

9. A precision glue-applying platform with infrared calibration according to claim 8, characterized in that, The adjustment plate (10) and the support box (13) are both provided with a plurality of hemispherical grooves (21) that are equidistantly distributed along a straight line. The hemispherical grooves (21) are snapped together with the hemispherical protrusions (17).

10. A precision glue-applying platform with infrared calibration according to claim 8, characterized in that, The lateral pressing adjustment assembly also includes a pressure rod (11) and a spring (12). A circular hole is provided through the side of the bent plate (19) opposite to the support corner plate (9). The pressure rod (11) is inserted into the circular hole of the support corner plate (9). Circular protrusions are fixedly connected to both ends of the pressure rod (11). A spring (12) is fixedly connected to the circular protrusion at the end of the pressure rod (11) opposite to the support corner plate (9). The spring (12) is sleeved on the outside of the pressure rod (11). The other end of the spring (12) is fixedly connected to the side of the bent plate (19) with the circular hole.