A rubber bonding machine capable of accurate bonding

By designing a precise adhesive applicator, which utilizes the coordinated movement of a cylinder-driven positioning plate and a tape pressure roller, the problem of poor adhesive application on tilted cartons by existing laminating machines has been solved. This achieves precise lamination of tilted cartons and precise cutting of the tape, thus improving the adhesive application effect.

CN117067684BActive Publication Date: 2026-04-14XIEXUN ELECTRONICS JI AN
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
XIEXUN ELECTRONICS JI AN
Filing Date
2023-09-07
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

Existing laminating machines struggle to apply adhesive effectively to the surface of tilted cardboard boxes, resulting in poor adhesive bonding.

Method used

A precise adhesive applicator was designed. It uses a cylinder to drive the positioning plate and the tape pressure roller to apply adhesive to tilted products. A guiding mechanism and a cutting mechanism ensure the precise cutting and application of the tape.

Benefits of technology

It enables precise application of adhesive to tilted cardboard boxes, ensuring a tight fit between the tape and the product surface, preventing misalignment, and improving the effectiveness and efficiency of the application.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of rubber sticking equipment, and particularly relates to a rubber sticking machine capable of accurate rubber sticking. The present application provides a rubber sticking machine capable of accurate rubber sticking and capable of oblique rubber sticking on products. The rubber sticking machine capable of accurate rubber sticking comprises a working frame, a winding wheel, a sliding rod, a guide block, double-sided adhesive tape and a positioning mechanism, etc. The working frame is rotatably connected with the winding wheels on the left and right sides of the front part. The working frame is slidably connected with the sliding rod on the front part. The sliding rod is rotatably connected with the guide block on the lower side. The winding wheel on the right side is wound with the double-sided adhesive tape. The adhesive tape on the double-sided adhesive tape is wound on the winding wheel on the left side through the guide block. The positioning mechanism is arranged between the working frame and the guide block and used for sticking with the product. The positioning plate is driven to move downward by the extension of the extension rod of the air cylinder, so that the adhesive tape moves downward. Then, the positioning plate is adaptively rotated, so that the adhesive tape is inclined, thereby achieving the effect of inclination, so as to stick the adhesive tape on the inclined product.
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Description

Technical Field

[0001] This invention relates to the field of adhesive application equipment technology, and more particularly to an adhesive application machine capable of precise adhesive application. Background Technology

[0002] In the production of cardboard boxes, double-sided tape is applied to the appropriate positions on the cardboard boxes using a laminating machine so that the boxes can be closed later. Existing laminating machines use a laminating roller to apply the double-sided tape to the cardboard boxes. However, since the laminating surfaces of many cardboard boxes are inclined, the laminating roller, which cannot move, has difficulty applying tape to the inclined surfaces. Therefore, a new laminating machine needs to be designed.

[0003] Patent application number CN211470280U discloses a double-sided tape applicator. The double-sided tape released by the unwinding wheel wraps around the applicator wheel and onto the take-up wheel. As the applicator wheel rolls relative to the surface of the product to be taped, it pushes in the opposite direction of the taping direction. This causes the extension end of the applicator cylinder to contract under the resistance, thereby driving the swing arm to lift upward. This double-sided tape applicator applies tape to the product through the applicator wheel, but the applicator wheel is difficult to tilt during use.

[0004] We have designed a tape applicator that can precisely apply tape to products at an angle, overcoming the difficulty of tilting existing double-sided tape applicators during use. Summary of the Invention

[0005] To address the shortcomings of existing technologies, this invention provides an adhesive applicator capable of precisely applying adhesive to products at an angle, thus overcoming the difficulty of applying double-sided tape at an angle by existing double-sided tape applicators.

[0006] To achieve the above objectives, the present invention provides the following solution: an adhesive applicator capable of precise adhesive application, comprising:

[0007] The working frame and winding reels are rotatably connected to the left and right sides of the front part of the working frame.

[0008] A transmission assembly is connected between the rear sides of the winding reel;

[0009] A sliding rod is slidably connected to the front of the working frame;

[0010] Guide block: A guide block is rotatably connected to the lower side of the slide rod;

[0011] Double-sided tape: Double-sided tape is wound on the right winding wheel, and the adhesive paper on the double-sided tape is wrapped around the guide block and wound onto the left winding wheel.

[0012] A positioning mechanism is provided between the working frame and the guide block for fitting the product.

[0013] The cutting mechanism is provided between the guide block and the slide rod for cutting the double-sided tape.

[0014] As an improvement to the above scheme, the lower side of the guide block is arc-shaped.

[0015] As an improvement to the above solution, the positioning mechanism includes:

[0016] A cylinder is mounted on the upper front side of the working frame;

[0017] A sleeve is slidably connected to the telescopic rod of the cylinder;

[0018] The first tension spring is connected between the cylinder's telescopic rod and the sleeve, and the first tension spring is wound around the cylinder's telescopic rod.

[0019] T-shaped bracket, with a T-shaped bracket connected to the lower side of the sleeve;

[0020] Positioning rod: A positioning rod is slidably connected to the T-shaped frame;

[0021] The positioning frame is rotatably connected to the positioning rods.

[0022] Torque springs are connected between the positioning rod and the positioning frame, and the torsion springs are wound around the positioning frame.

[0023] The positioning plate is rotatably connected to the lower side of the positioning rod, and the positioning plate is connected to the guide block.

[0024] As an improvement to the above solution, the cutting-off mechanism includes:

[0025] L-shaped plates are connected to both the front and rear sides of the lower part of the slide rod;

[0026] The guide block is connected to a fixed frame on its left side;

[0027] The blade is slidably connected to the mounting bracket.

[0028] A second tension spring is connected between the blade and the fixed frame, and the second tension spring is wound around the fixed frame.

[0029] As an improvement to the above solution, a tapping mechanism for tapping the double-sided tape is also included, the tapping mechanism comprising:

[0030] The frame has slapping rollers, which are rotatably connected to both the front and rear sides of the lower part of the frame.

[0031] Both the inner side of the striking roller and the energy storage block are connected to the energy storage block.

[0032] A fixing plate is connected to the lower left side of the fixing frame;

[0033] Both the pressure plate and the fixed plate are slidably connected to the pressure plate;

[0034] The third tension spring is connected between the fixed plate and the pressure plate that slides on it, and the third tension spring is wound around the pressure plate.

[0035] As an improvement to the above solution, a clamping mechanism for rolling double-sided tape is also included, the clamping mechanism comprising:

[0036] L-shaped fixing rods are connected to both the front and rear sides of the positioning plate;

[0037] Limiting rods and L-shaped fixing rods are all slidably connected to limiting rods;

[0038] The belt pressure rollers and the limit rods are rotatably connected by belt pressure rollers.

[0039] The fourth tension spring is connected between the L-shaped fixed rod and the limiting rod that slides on it. The fourth tension spring is wrapped around the limiting rod.

[0040] As an improvement to the above solution, a stabilization mechanism for stabilizing the product is also included. This stabilization mechanism includes:

[0041] A stabilizing rod is connected to the lower front part of the working frame;

[0042] The guide frame is slidably connected to the stabilizing rod;

[0043] A fifth tension spring is connected between the guide frame and the stabilizing rod, and the fifth tension spring is wound around the guide frame;

[0044] A stabilizing pressure roller is rotatably connected to the lower side of the guide frame.

[0045] As an improvement to the above solution, a guiding mechanism for guiding product movement is also included. The guiding mechanism includes:

[0046] Guide rods are slidably connected to both the front and rear sides of the lower part of the working frame;

[0047] Guide plates are connected between the guide rods on the front side and between the guide rods on the rear side;

[0048] The sixth tension spring is connected between the guide plate and the working frame, and the sixth tension spring is wound around the guide rod.

[0049] The advantages of this invention are: 1. This invention uses the telescopic rod of the cylinder to extend downwards and drive the positioning plate to move downwards, so that the adhesive film moves downwards. Then the positioning plate rotates adaptively, thereby tilting the adhesive film, thus achieving the tilting effect, so as to apply adhesive to the tilted product.

[0050] 2. The positioning plate rotates, which drives the tape pressure roller to rotate. When the tape pressure roller comes into contact with the product, it moves upward adaptively. Then, the tape pressure roller rolls the adhesive film, thereby achieving the rolling effect and making the adhesive film adhere to the product.

[0051] 3. By moving the product to the left and contacting the guide plate, the guide plate adapts to move outward, causing the guide rod to move outward. The sixth tension spring is compressed, thus achieving the guiding effect and preventing the product from shifting and affecting the adhesive application. Attached Figure Description

[0052] Figure 1 This is a schematic diagram of the first three-dimensional structure of the present invention.

[0053] Figure 2 This is a schematic diagram of the second three-dimensional structure of the present invention.

[0054] Figure 3 This is a partial cross-sectional perspective view of the three-dimensional structure of the present invention.

[0055] Figure 4 This is a schematic diagram of a second partial cross-sectional three-dimensional structure of the present invention.

[0056] Figure 5 This is a three-dimensional structural diagram of the positioning mechanism of the present invention.

[0057] Figure 6 This is a partial cross-sectional three-dimensional structural schematic diagram of the positioning mechanism of the present invention.

[0058] Figure 7 This is a three-dimensional structural diagram of the cutting mechanism of the present invention.

[0059] Figure 8 This is a partial cross-sectional three-dimensional structural schematic diagram of the cutting mechanism of the present invention.

[0060] Figure 9 This is a three-dimensional structural diagram of the striking mechanism of the present invention.

[0061] Figure 10 This is a three-dimensional structural diagram of the clamping mechanism of the present invention.

[0062] Figure 11 This is a three-dimensional structural diagram of the stabilizing mechanism of the present invention.

[0063] Figure 12 This is a three-dimensional structural diagram of the guiding mechanism of the present invention.

[0064] In the diagram: 1. Working frame; 2. Double-sided tape; 21. Slide rod; 3. Winding wheel; 4. Transmission assembly; 5. Guide block; 6. Positioning mechanism; 61. First tension spring; 62. T-shaped frame; 63. Positioning frame; 64. Positioning rod; 65. Torsion spring; 66. Positioning plate; 67. Cylinder; 68. Sleeve; 7. Cutting mechanism; 71. L-shaped plate; 72. Blade; 73. Fixing frame; 74. Second tension spring; 8. Beating mechanism; 81. Fixing plate. 82. Beating roller; 83. Pressure plate; 84. Third tension spring; 85. Energy storage block; 9. Pressing mechanism; 91. Belt pressure roller; 92. Limiting rod; 93. Fourth tension spring; 94. L-shaped fixing rod; 10. Stabilizing mechanism; 101. Stabilizing fixing rod; 102. Guide frame; 103. Fifth tension spring; 104. Stabilizing pressure roller; 11. Guide mechanism; 1101. Guide plate; 1102. Sixth tension spring; 1103. Guide rod. Detailed Implementation

[0065] The present invention will now be further described with reference to the accompanying drawings and specific embodiments:

[0066] Example 1

[0067] A tape applicator capable of precise tape application, now for reference. Figures 1-4 The device includes a working frame 1, double-sided tape 2, slide rod 21, winding wheel 3, transmission assembly 4, guide block 5, positioning mechanism 6, and cutting mechanism 7. The working frame 1 has winding wheels 3 rotatably connected to both the left and right sides at the front. A transmission assembly 4 is connected between the rear sides of the two winding wheels 3. The transmission assembly 4 consists of two transmission wheels and a belt. A transmission wheel is connected to the rear side of each of the two winding wheels 3, and a belt is wound around the two transmission wheels. A slide rod 21 is slidably connected to the front of the working frame 1. A guide block 5 is rotatably connected to the lower side of the slide rod 21. The lower side of the guide block 5 is arc-shaped. Double-sided tape 2 is wound around the right winding wheel 3. The adhesive paper on the double-sided tape 2 wraps around the guide block 5 and is wound onto the left winding wheel 3. A positioning mechanism 6 is provided between the working frame 1 and the guide block 5, and a cutting mechanism 7 is provided between the guide block 5 and the slide rod 21.

[0068] For reference Figure 1 , Figure 4 , Figure 5 and Figure 6The positioning mechanism 6 includes a first tension spring 61, a T-shaped frame 62, a positioning frame 63, a positioning rod 64, a torsion spring 65, a positioning plate 66, a cylinder 67, and a sleeve 68. The cylinder 67 is bolted to the upper front part of the working frame 1. The sleeve 68 is slidably connected to the telescopic rod of the cylinder 67. The first tension spring 61 is connected between the telescopic rod of the cylinder 67 and the sleeve 68. The first tension spring 61 is wound around the telescopic rod of the cylinder 67. The T-shaped frame 62 is welded to the lower side of the sleeve 68. Two positioning rods 64 are slidably connected to the T-shaped frame 62. The positioning frame 63 is rotatably connected between the two positioning rods 64. Two torsion springs 65 are connected between each of the two positioning rods 64 and the positioning frame 63. There are four torsion springs 65. The torsion springs 65 are wound around the positioning frame 63. The positioning plate 66 is rotatably connected between the lower sides of the two positioning rods 64. The positioning plate 66 is connected to the guide block 5.

[0069] For reference Figure 1 , Figure 4 , Figure 7 and Figure 8 The cutting mechanism 7 includes an L-shaped plate 71, a blade 72, a fixing frame 73, and a second tension spring 74. The lower front and rear sides of the slide rod 21 are welded with L-shaped plates 71. The left side of the guide block 5 is welded with a fixing frame 73. The blade 72 is slidably connected to the fixing frame 73. After the blade 72 moves, it contacts the L-shaped plate 71. The blade 72 and the fixing frame 73 are connected by a second tension spring 74. The second tension spring 74 is wrapped around the fixing frame 73. When the guide block 5 rotates, it drives the fixing frame 73 to rotate. The blade 72 rotates and contacts the L-shaped plate 71. The blade 72 moves to the left, and the second tension spring 74 is compressed.

[0070] When it is necessary to apply double-sided tape 2 to a product, this precise tape application machine can be used. First, a roll of double-sided tape 2 is placed on the right-side winding wheel 3. Then, one end of the double-sided tape 2 is pulled out, and the release paper and adhesive film on the double-sided tape 2 are separated. The adhesive film is pulled out, and the release paper is wound around the lower side of the guide block 5 and onto the left-side winding wheel 3. The adhesive film is located under the release paper. Then, the product is placed in the bottom right side of the working frame 1. After placement, the cylinder 67 is activated. The telescopic rod of the cylinder 67 extends downward, causing the sleeve 68 to move downward, thereby causing the T-shaped frame 62, the positioning frame 63, the positioning rod 64, and the positioning plate 66 to move downward. This causes the guide block 5 and slide bar 21 to move downwards. When the positioning plate 66 moves downwards to the appropriate position, the cylinder 67 is closed, and the product is manually moved to the left. When the product moves to the left and contacts the positioning plate 66, the positioning plate 66 moves upwards adaptively and rotates. Consequently, the positioning rod 64 and positioning frame 63 move adaptively, and the torsion spring 65 twists and deforms, causing the T-shaped frame 62 and sleeve 68 to move upwards. The first tension spring 61 is compressed, and then the release paper and adhesive film tilt. When the adhesive film contacts the product, it adheres to the product surface, causing the right winding wheel 3 to rotate and release the double-sided adhesive 2, thereby causing the transmission component 4 to rotate, and the left winding wheel... 3. Rotating the release paper winds it up, thus achieving the adhesive application effect. Simultaneously, the slide rod 21 and guide block 5 move upwards, causing the L-shaped plate 71, blade 72, and fixing frame 73 to move upwards. The rotation of guide block 5 causes blade 72 and fixing frame 73 to rotate. When blade 72 rotates and contacts L-shaped plate 71, blade 72 adaptively moves to the left, compressing the second tension spring 74. When the adhesive application is complete, cylinder 67 is activated, and the telescopic rod of cylinder 67 shortens upwards. The telescopic rod of cylinder 67, through the first tension spring 61, causes sleeve 68 to move upwards, thereby causing T-shaped frame 62, positioning frame 63, positioning rod 64, and positioning plate 66 to move upwards. The slide rod 21 and guide block 5... Block 5, L-shaped plate 71, blade 72, and fixing frame 73 move upward. Torsion spring 65 resets, causing positioning rod 64 and positioning frame 63 to move in the opposite direction and reset, so that positioning plate 66 and guide block 5 rotate in the opposite direction. Then, fixing frame 73 and blade 72 rotate in the opposite direction. When blade 72 rotates in the opposite direction away from L-shaped plate 71, second tension spring 74 resets, causing blade 72 to move to the right to cut the release paper, thus achieving the effect of automatic cutting. After sleeve 68 moves upward to the appropriate position, cylinder 67 is closed. When it is necessary to continue applying adhesive to the product, the release paper on double-sided tape 2 is wound onto the winding wheel 3 on the right side according to the above steps.

[0071] Example 2

[0072] Based on Example 1, now refer to Figure 1 , Figure 4 and Figure 9It also includes a tapping mechanism 8, which includes a fixed plate 81, tapping rollers 82, a pressure plate 83, a third tension spring 84, and a power storage block 85. The tapping rollers 82 are rotatably connected to the front and rear sides of the lower part of the fixed frame 73. Power storage blocks 85 are welded to the inner side of the tapping rollers 82. Two fixed plates 81 are welded to the lower left side of the fixed frame 73. The pressure plate 83 is slidably connected to the fixed plate 81. After the power storage block 85 moves, it contacts the pressure plate 83. The third tension spring 84 is connected between the fixed plate 81 and the pressure plate 83 sliding on it. The third tension spring 84 is wrapped around the pressure plate 83. When the tapping rollers 82 come into contact with the product, they rotate. The power storage block 85 rotates and comes into contact with the pressure plate 83. The power storage block 85 drives the pressure plate 83 to move upward and the third tension spring 84 is compressed.

[0073] For reference Figure 1 , Figure 4 and Figure 10 It also includes a pressing mechanism 9, which includes a belt pressure roller 91, a limiting rod 92, a fourth tension spring 93, and an L-shaped fixing rod 94. The positioning plate 66 has L-shaped fixing rods 94 welded on both the front and rear sides. The limiting rods 92 are slidably connected to the two L-shaped fixing rods 94. The belt pressure roller 91 is rotatably connected between the two limiting rods 92. The fourth tension spring 93 is connected between the L-shaped fixing rod 94 and the limiting rod 92 that slides on it. The fourth tension spring 93 is wrapped around the limiting rod 92.

[0074] For reference Figure 1 and Figure 11 It also includes a stabilizing mechanism 10, which includes a stabilizing rod 101, a guide frame 102, a fifth tension spring 103, and a stabilizing pressure roller 104. The stabilizing rod 101 is welded to the lower front side of the working frame 1. The guide frame 102 is slidably connected to the stabilizing rod 101. The fifth tension spring 103 is connected between the guide frame 102 and the stabilizing rod 101. The fifth tension spring 103 is wound around the guide frame 102. The stabilizing pressure roller 104 is rotatably connected to the lower side of the guide frame 102.

[0075] For reference Figure 1 and Figure 12 It also includes a guide mechanism 11, which includes a guide plate 1101, a sixth tension spring 1102, and a guide rod 1103. Two guide rods 1103 are slidably connected to the front and rear sides of the lower part of the working frame 1. There are four guide rods 1103. A guide plate 1101 is welded between the two guide rods 1103 on the front side and between the two guide rods 1103 on the rear side. Two sixth tension springs 1102 are connected between the guide plate 1101 and the working frame 1. There are four sixth tension springs 1102. The sixth tension springs 1102 are wound around the guide rods 1103.

[0076] The movement of the fixed frame 73 drives the tapping roller 82 to move. When the product moves to the left and comes into contact with the tapping roller 82, the tapping roller 82 rotates, causing the energy storage block 85 to rotate. When the energy storage block 85 rotates and comes into contact with the pressure plate 83, the energy storage block 85 drives the pressure plate 83 to move upward, thereby compressing the third tension spring 84. When the energy storage block 85 rotates away from the pressure plate 83, the third tension spring 84 drives the pressure plate 83 to move downward and come into contact with the adhesive film before moving upward to reset. This achieves the tapping effect, making the adhesive film adhere to the product.

[0077] The positioning plate 66 moves, driving the L-shaped fixing rod 94 to move, which in turn causes the limiting rod 92 and the tape pressure roller 91 to move. When the tape pressure roller 91 contacts the product surface, it moves upward and rotates, causing the limiting rod 92 to move upward. This compresses the fourth tension spring 93, and the rotating tape pressure roller 91 presses the adhesive film onto the product, thus achieving a pressing effect and strengthening the adhesion between the adhesive film and the product. When the tape pressure roller 91 moves away from the product, the fourth tension spring 93 resets, causing the limiting rod 92 to move downward, which in turn causes the tape pressure roller 91 to move downward.

[0078] When the product moves to the left and comes into contact with the stabilizing roller 104, the stabilizing roller 104 adapts to move upward and rotates at the same time. The guide frame 102 moves upward, the fifth tension spring 103 is compressed, and the stabilizing roller 104 rotates while flattening the product surface to improve the adhesive application effect, thus achieving a stabilizing effect. When the stabilizing roller 104 moves away from the product, the fifth tension spring 103 resets and drives the guide frame 102 to move downward, thereby causing the stabilizing roller 104 to move downward.

[0079] When the product moves to the left and contacts the guide plate 1101, the product drives the guide plate 1101 to move outward, causing the guide rod 1103 to move outward, thereby compressing the sixth tension spring 1102, thus achieving the guiding effect and preventing the product from deviating and affecting the adhesive application effect. When the product moves to the left away from the guide plate 1101, the sixth tension spring 1102 resets and drives the guide plate 1101 to move inward, causing the guide rod 1103 to move inward.

[0080] For those skilled in the art, various other corresponding changes and modifications can be made based on the technical solutions and concepts described above, and all such changes and modifications should fall within the protection scope of the claims of this invention.

Claims

1. An adhesive applicator capable of precise adhesive application, characterized in that, Including: The working frame (1) and the winding wheel (3) are rotatably connected to the left and right sides of the front part of the working frame (1). The transmission assembly (4) is connected to the rear side of the winding wheel (3). Slide rod (21), the front of the working frame (1) is slidably connected to slide rod (21); Guide block (5), the lower side of slide rod (21) is rotatably connected to guide block (5); Double-sided tape (2), double-sided tape (2) is wound on the right winding wheel (3), and the tape on the double-sided tape (2) passes around the guide block (5) and is wound on the left winding wheel (3); The positioning mechanism (6) is provided between the working frame (1) and the guide block (5) for fitting with the product. A cutting mechanism (7) is provided between the guide block (5) and the slide bar (21) for cutting the double-sided tape (2). The positioning mechanism (6) includes: Cylinder (67), the cylinder (67) is installed on the upper front side of the working frame (1); Sleeve (68) is slidably connected to the telescopic rod of cylinder (67). The first tension spring (61) is connected between the telescopic rod of the cylinder (67) and the sleeve (68). The first tension spring (61) is wrapped around the telescopic rod of the cylinder (67). T-shaped frame (62), sleeve (68) is connected to the lower side of T-shaped frame (62); Positioning rod (64) is slidably connected to the T-shaped frame (62). The positioning frame (63) and the positioning rod (64) are rotatably connected by the positioning frame (63). Torque spring (65), positioning rod (64) and positioning frame (63) are all connected by torsion spring (65), and torsion spring (65) is wound around positioning frame (63); The positioning plate (66) is rotatably connected to the lower side of the positioning rod (64), and the positioning plate (66) is connected to the guide block (5).

2. An adhesive applicator capable of precise adhesive application according to claim 1, characterized in that, The lower side of the guide block (5) is arc-shaped.

3. An adhesive applicator capable of precise adhesive application according to claim 1, characterized in that, The cutting mechanism (7) includes: L-shaped plate (71), and L-shaped plates (71) are connected to the front and rear sides of the lower part of the slide rod (21). The fixed frame (73) is connected to the left side of the guide block (5); The blade (72) is slidably connected to the fixing bracket (73); A second tension spring (74) is connected between the blade (72) and the fixing frame (73), and the second tension spring (74) is wound around the fixing frame (73).

4. An adhesive applicator capable of precise adhesive application according to claim 3, characterized in that, It also includes a patting mechanism (8) for patting the double-sided tape (2), the patting mechanism (8) including: The front and rear sides of the lower part of the fixing frame (73) are rotatably connected to the patting roller (82). The inner side of the power storage block (85) and the patting roller (82) are both connected to the power storage block (85); The fixing plate (81) is connected to the lower left side of the fixing bracket (73); Pressure plate (83) is slidably connected to both the pressure plate (83) and the fixing plate (81); The third tension spring (84) is connected between the fixed plate (81) and the pressure plate (83) that slides on it. The third tension spring (84) is wound around the pressure plate (83).

5. An adhesive applicator capable of precise adhesive application according to claim 4, characterized in that, It also includes a pressing mechanism (9) for rolling double-sided tape (2), the pressing mechanism (9) including: L-shaped fixing rod (94), and L-shaped fixing rod (94) are connected to both the front and rear sides of the positioning plate (66). Limiting rod (92) and L-shaped fixing rod (94) are both slidably connected to limiting rod (92); The tape pressure roller (91) is rotatably connected to the limit rod (92). The fourth tension spring (93) is connected between the L-shaped fixing rod (94) and the limiting rod (92) that slides on it. The fourth tension spring (93) is wrapped around the limiting rod (92).

6. An adhesive applicator capable of precise adhesive application according to claim 5, characterized in that, It also includes a stabilization mechanism (10) for stabilizing the product, the stabilization mechanism (10) including: Stabilizing rod (101) is connected to the lower front side of the working frame (1). The guide frame (102) is slidably connected to the stabilizing rod (101); A fifth tension spring (103) is connected between the guide frame (102) and the stabilizing rod (101), and the fifth tension spring (103) is wound around the guide frame (102); The stabilizing pressure roller (104) is rotatably connected to the lower side of the guide frame (102).

7. An adhesive applicator capable of precise adhesive application according to claim 6, characterized in that, It also includes a guide mechanism (11) for guiding the movement of the product, the guide mechanism (11) including: Guide rod (1103), the lower front and rear sides of the working frame (1) are slidably connected with guide rod (1103). Guide plate (1101), guide plate (1101) is connected between the front guide rods (1103), and guide plate (1101) is connected between the rear guide rods (1103). The sixth tension spring (1102) is connected between the guide plate (1101) and the working frame (1), and the sixth tension spring (1102) is wound around the guide rod (1103).

Citation Information

Patent Citations

  • Double faced adhesive tape sticking machine

    CN211470280U

  • Multi-degree-of-freedom labeling machine motion control platform

    CN115709834A

  • Conveying device, deviation rectifying method and rubberizing equipment

    CN115973831A