Quality detection equipment for acrylic foam tape

By designing acrylic foam tape testing equipment with multiple drive mechanisms and temperature-controlled adhesion components, the problem of the existing technology being unable to comprehensively test all aspects of the performance of acrylic foam tape is solved, and comprehensive performance evaluation under different conditions is achieved.

CN120628812AInactive Publication Date: 2025-09-12SHENZHEN HONGZHENG ADHESIVE TECH CO LTD
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Patent Information

Application Number
CN202511148893.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-18
Publication Date
2025-09-12
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing acrylic foam tape testing technology cannot fully reflect its various performance aspects, especially in terms of stress resistance, where the testing conditions are relatively ideal and cannot fully evaluate its actual performance.

Method used

A quality inspection device consisting of multiple driving mechanisms and adhesion mechanisms was designed. The tensile, torsional, and shear properties of acrylic foam tape were tested through various motion modes (such as back movement, reverse rotation, and relative sliding). Temperature-controlled adhesion components were combined to simulate different temperature conditions.

Benefits of technology

It achieves comprehensive testing of all aspects of acrylic foam tape performance, improves the accuracy and comprehensiveness of the test, and can evaluate its performance under simulated actual working conditions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides an acrylic foam tape quality detection device. The acrylic foam tape quality detection device comprises two first driving mechanisms, two second driving mechanisms, two third driving mechanisms and two adhesion mechanisms. The two second driving mechanisms are installed on the two first driving mechanisms, move under driving of the two first driving mechanisms and are arranged in one-to-one correspondence with the two first driving mechanisms. And the two third driving mechanisms are mounted on the two second driving mechanisms, rotate under the driving of the two second driving mechanisms, and are arranged in one-to-one correspondence with the two second driving mechanisms. And the two adhesion mechanisms are mounted on the two third driving mechanisms, move perpendicular to the rotating axes of the third driving mechanisms under the driving of the two third driving mechanisms, and are arranged in one-to-one correspondence with the two third driving mechanisms. The quality detection equipment for the acrylic foam tape provided by the invention can comprehensively detect various properties of the acrylic foam tape.
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Description

Technical Field

[0001] The present application relates to the technical field of foam tape detection, and in particular to a quality detection device for acrylic foam tape. Background Art

[0002] Acrylic foam tape, also known as acrylic foam tape, refers to a foam tape that has been foamed with acrylic acid. The base material of the product itself is acrylic acid. Different from products with other base foams, such as PE and PU, it has better viscosity and viscoelasticity and can absorb more stress in the bonding structure.

[0003] During the production process, acrylic foam tapes are often inspected to ensure they meet quality standards. Currently, the stress resistance of acrylic foam tapes is typically tested using the pull-to-pull method, which involves pulling the two ends of the tape while it's adhered. However, this method typically only reflects the tape's tensile strength, and under ideal testing conditions, it fails to fully reflect the tape's overall performance. Summary of the Invention

[0004] The purpose of the embodiments of the present application is to provide a quality inspection device for acrylic foam tape to solve the technical problem in the prior art that the existing inspection technology cannot accurately and comprehensively reflect the various performance aspects of acrylic foam tape.

[0005] To achieve the above-mentioned purpose, the technical solution adopted in this application is to provide a quality inspection device for acrylic foam tape, comprising: two first drive mechanisms; Two second driving mechanisms, mounted on the two first driving mechanisms, and moving under the drive of the two first driving mechanisms, and arranged in a one-to-one correspondence with the two first driving mechanisms; Two third driving mechanisms are mounted on the two second driving mechanisms and rotate under the drive of the two second driving mechanisms, and are arranged in a one-to-one correspondence with the two second driving mechanisms; The two adhesion mechanisms are installed on the two third driving mechanisms and move perpendicularly to the rotation axis of the third driving mechanisms under the drive of the two third driving mechanisms. The two adhesion mechanisms are arranged in a one-to-one correspondence with the two third driving mechanisms.

[0006] Optionally, the adhesion mechanism includes a base adhesion component and a replacement adhesion component, the base adhesion component is mounted on the output end of the third driving mechanism, and the replacement adhesion component is detachably mounted on the base adhesion component.

[0007] Optionally, the base adhesive component includes a base adhesive plate, at least one card slot and at least one positioning hole, the base adhesive plate is mounted on the third driving mechanism, and the at least one card slot and the at least one positioning hole are both provided on the base adhesive plate; The replacement adhesive component includes a replacement adhesive plate, at least one clamping screw, at least one fastening nut and at least one positioning rod. At least one clamping screw is connected to the replacement adhesive plate and passes through at least one of the clamping slots, and is arranged one-to-one with at least one of the clamping slots. At least one fastening nut is screwed to at least one of the clamping screws and is located on the side of the base adhesive plate facing away from the replacement adhesive plate, and is arranged one-to-one with at least one of the clamping screws. At least one positioning rod is connected to the replacement adhesive plate and passes through at least one of the positioning holes, and is arranged one-to-one with at least one of the positioning holes.

[0008] Optionally, the adhesion mechanism further comprises a first temperature-control adhesion component, wherein the first temperature-control adhesion component is detachably mounted on the replacement adhesion component; Alternatively, the adhesive mechanism further comprises a second temperature-control adhesive component, and the second temperature-control adhesive component is detachably mounted on the replacement adhesive component; Alternatively, the adhesion mechanism further includes a third temperature-control adhesion component, and the third temperature-control adhesion component is detachably mounted on the replacement adhesion component.

[0009] Optionally, the replacement adhesive component includes a replacement adhesive plate and at least one replacement wedge-shaped groove, and the at least one replacement wedge-shaped groove is opened on a side of the replacement adhesive plate facing away from the base adhesive component; The first temperature control adhesive component includes a first temperature control plate and at least one first wedge-shaped groove, wherein the at least one first wedge-shaped groove is provided on a side of the first temperature control plate facing the replacement adhesive plate and corresponds to the at least one replacement wedge-shaped groove in a one-to-one manner; The adhesion mechanism further includes at least one wedge-shaped rod, which is located between the replacement adhesion plate and the first temperature control plate and is arranged in a one-to-one correspondence with at least one replacement wedge-shaped groove and a one-to-one correspondence with at least one first wedge-shaped groove. At least a portion of the wedge rod is engaged in the replacement wedge groove, and another portion is engaged in the first wedge groove.

[0010] Optionally, the replacement adhesive component includes a replacement adhesive plate and at least one replacement wedge-shaped groove, and the at least one replacement wedge-shaped groove is opened on a side of the replacement adhesive plate facing away from the base adhesive component; The second temperature-control adhesive component includes a first mounting plate, a second temperature-control plate, and at least one second wedge-shaped groove. The second temperature-control plate is connected to a side of the first mounting plate facing away from the replacement adhesive plate. The at least one second wedge-shaped groove is formed on a side of the first mounting plate facing the replacement adhesive plate and corresponds to the at least one replacement wedge-shaped groove. The adhesion mechanism also includes at least one wedge-shaped rod, which is located between the replacement adhesion plate and the first mounting plate and is arranged in a one-to-one correspondence with at least one replacement wedge-shaped groove and a one-to-one correspondence with at least one second wedge-shaped groove. At least a portion of the wedge rod is engaged in the replacement wedge groove, and another portion is engaged in the second wedge groove.

[0011] Optionally, the replacement adhesive component includes a replacement adhesive plate and at least one replacement wedge-shaped groove, and the at least one replacement wedge-shaped groove is opened on a side of the replacement adhesive plate facing away from the base adhesive component; The third temperature-control adhesive component includes a second mounting plate, a third temperature-control plate, and at least one third wedge-shaped groove. The third temperature-control plate is connected to a side of the second mounting plate facing away from the replacement adhesive plate and is configured as an arc-shaped plate. The at least one third wedge-shaped groove is provided on a side of the second mounting plate facing the replacement adhesive plate and corresponds one-to-one with the at least one replacement wedge-shaped groove. The adhesion mechanism further includes at least one wedge-shaped rod, the at least one wedge-shaped rod being located between the replacement adhesion plate and the second mounting plate and being provided in a one-to-one correspondence with at least one replacement wedge-shaped slot and a one-to-one correspondence with at least one third wedge-shaped slot, with at least a portion of the wedge-shaped rod being engaged in the replacement wedge-shaped slot and another portion being engaged in the third wedge-shaped slot; The diameter of one of the third temperature control plates is larger than the diameter of the other third temperature control plate.

[0012] Optionally, the replacement adhesive component further includes a replacement limiting groove, which is provided on a side of the replacement adhesive plate facing away from the base adhesive component and is communicated with the replacement wedge-shaped groove; The first temperature control adhesive component further includes a first limiting groove, which is formed on the first temperature control plate and communicates with the first wedge-shaped groove and is corresponding to the replacement wedge-shaped groove; The wedge-shaped rod is provided with a limiting hole, and the limiting hole is correspondingly arranged to the replacement limiting groove and the first limiting groove; The adhesion mechanism further includes a limiting rod, which is passed through the limiting hole and is limited between the replacement limiting groove and the first limiting groove.

[0013] Optionally, the replacement adhesive component further includes a replacement limiting groove, which is provided on a side of the replacement adhesive plate facing away from the base adhesive component and is communicated with the replacement wedge-shaped groove; The second temperature-control adhesive component further includes a second limiting groove, which is formed on the first mounting plate and communicates with the second wedge-shaped groove and is corresponding to the replacement wedge-shaped groove; The wedge-shaped rod is provided with a limiting hole, and the limiting hole is correspondingly arranged to the replacement limiting groove and the second limiting groove; The adhesion mechanism further includes a limiting rod, which is passed through the limiting hole and is limited between the replacement limiting groove and the second limiting groove.

[0014] Optionally, the replacement adhesive component further includes a replacement limiting groove, which is provided on a side of the replacement adhesive plate facing away from the base adhesive component and is communicated with the replacement wedge-shaped groove; The third temperature-control adhesive component further includes a third limiting groove, which is formed on the second mounting plate and communicates with the third wedge-shaped groove and is corresponding to the replacement wedge-shaped groove; The wedge-shaped rod is provided with a limiting hole, and the limiting hole is correspondingly arranged to the replacement limiting groove and the third limiting groove; The adhesion mechanism further includes a limiting rod, which is passed through the limiting hole and is limited between the replacement limiting groove and the third limiting groove.

[0015] The beneficial effects of the quality inspection equipment for acrylic foam tape provided by this application are: The present application provides a quality inspection device for acrylic foam tape. After the acrylic foam tape is adhered between two adhesion mechanisms, two first drive mechanisms can be used to move the two adhesion mechanisms in opposite directions, thereby detecting the tensile performance of the acrylic foam tape between the two workpieces; two second drive mechanisms can be used to rotate the two adhesion mechanisms in opposite directions around the same rotation axis, thereby detecting the torsional performance of the acrylic foam tape between the two workpieces; two third drive mechanisms can be used to slide the two adhesion mechanisms relative to each other, thereby detecting the shear performance of the acrylic foam tape between the two workpieces. In summary, under the action of the two first drive mechanisms, the two second drive mechanisms, the two third drive mechanisms, and the two adhesion mechanisms, compared with the related art, it is possible to comprehensively detect all aspects of the performance of the acrylic foam tape. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following briefly introduces the drawings required for use in the embodiments or descriptions of the prior art. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0017] Figure 1 A three-dimensional diagram of a quality inspection device for acrylic foam tape provided in Example 1 of the present application; Figure 2 A three-dimensional diagram of an adhesive mechanism of an acrylic foam tape quality inspection device provided in Example 1 of the present application; Figure 3 for Figure 2 A partial enlarged view of point A in the middle; Figure 4 A three-dimensional diagram of an adhesive mechanism of an acrylic foam tape quality inspection device provided in Example 2 of the present application; Figure 5 for Figure 4 A partial enlarged view of point B in the middle; Figure 6 A three-dimensional diagram of the adhesion mechanism of an acrylic foam tape quality inspection device provided in Example 3 of the present application; Figure 7 for Figure 6 A partial enlarged view of point C in the middle; Figure 8 A three-dimensional diagram of an adhesive mechanism of an acrylic foam tape quality inspection device provided in Example 4 of the present application; Figure 9 for Figure 8 A partial enlarged view of point D in the middle.

[0018] Among them, the reference numerals in the figures are: 1. A first driving mechanism; 2. Second driving mechanism; 3. The third driving mechanism; 4. Adhesion mechanism; 41. Base adhesion component; 411. Base adhesion plate; 412. Card slot; 413. Positioning hole; 42. Replacement adhesion component; 421. Replacement adhesion plate; 422. Card screw; 423. Fastening nut; 424. Positioning rod; 425. Replacement wedge groove; 426. Replacement limiting groove; 43. First temperature-control adhesion component; 431. First temperature-control plate; 432. First wedge groove; 433. First limiting groove; 44. Second temperature-control adhesion component; 441. First mounting plate; 442. Second temperature-control plate; 443. Second wedge groove; 444. Second limiting groove; 45. Third temperature-control adhesion component; 451. Second mounting plate; 452. Third temperature-control plate; 453. Third wedge groove; 454. Third limiting groove; 46. Wedge rod. DETAILED DESCRIPTION

[0019] In order to make the technical problems, technical solutions and beneficial effects to be solved by this application more clearly understood, this application is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this application and are not intended to limit this application.

[0020] It should be noted that when an element is referred to as being “mounted on,” “fixed on,” or “disposed on” another element, it may be directly on the other element or indirectly on the other element. When an element is referred to as being “connected to” another element, it may be directly connected to the other element or indirectly connected to the other element.

[0021] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be understood to indicate or imply relative importance or implicitly specify the number of the technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of the features. Throughout the description of this application, "at least one" means one or more, and "a plurality" means two or more, unless otherwise specifically defined.

[0022] Example 1 like Figures 1 to 3As shown, the present application provides a quality inspection device for acrylic foam tape, comprising two first drive mechanisms 1, two second drive mechanisms 2, two third drive mechanisms 3, and two adhesion mechanisms 4. The two second drive mechanisms 2 are mounted on the two first drive mechanisms 1, and move under the drive of the two first drive mechanisms 1, and are arranged in a one-to-one correspondence with the two first drive mechanisms 1. The two third drive mechanisms 3 are mounted on the two second drive mechanisms 2, and rotate under the drive of the two second drive mechanisms 2, and are arranged in a one-to-one correspondence with the two second drive mechanisms 2. The two adhesion mechanisms 4 are mounted on the two third drive mechanisms 3, and move perpendicular to the rotation axis of the third drive mechanisms 3 under the drive of the two third drive mechanisms 3, and are arranged in a one-to-one correspondence with the two third drive mechanisms 3.

[0023] The present application provides a quality inspection device for acrylic foam tape. After the acrylic foam tape is adhered between two adhesion mechanisms 4, two first drive mechanisms 1 can be used to move the two adhesion mechanisms 4 in opposite directions, thereby detecting the tensile performance of the acrylic foam tape between the two workpieces; two second drive mechanisms 2 can be used to rotate the two adhesion mechanisms 4 in opposite directions around the same rotation axis, thereby detecting the torsional performance of the acrylic foam tape between the two workpieces; two third drive mechanisms 3 can be used to make the two adhesion mechanisms 4 slide relative to each other, thereby detecting the shear performance of the acrylic foam tape between the two workpieces. In summary, under the action of the two first drive mechanisms 1, the two second drive mechanisms 2, the two third drive mechanisms 3 and the two adhesion mechanisms 4, compared with the related art, it is possible to comprehensively detect all aspects of the performance of the acrylic foam tape.

[0024] Optionally, the first driving mechanism 1 is configured as a precision linear module.

[0025] Optionally, the second driving mechanism 2 is configured as a servo motor.

[0026] Optionally, the third driving mechanism 3 is configured as a servo electric cylinder.

[0027] In this example, see Figures 1 to 3 The adhesion mechanism 4 includes a base adhesion component 41 and a replacement adhesion component 42. The base adhesion component 41 is installed at the output end of the third driving mechanism 3, and the replacement adhesion component 42 is detachably installed on the base adhesion component.

[0028] With such a configuration, during the inspection process, the acrylic foam tape is adhered between the two replacement adhesive parts 42. Compared with directly adhering the acrylic foam tape between the two base adhesive parts 41, this can avoid the inspectors spending a lot of time to remove the acrylic foam tape adhered to the surface of the base adhesive parts 41. The inspected acrylic foam tape can be quickly removed from between the two base adhesive parts 41, which greatly improves the inspection efficiency and is convenient for replacement.

[0029] In this embodiment, please refer to Figures 1 to 3 The base adhesive component 41 includes a base adhesive plate 411, at least one slot 412, and at least one positioning hole 413. The base adhesive plate 411 is mounted on the third driving mechanism 3. The at least one slot 412 and the at least one positioning hole 413 are both provided in the base adhesive plate 411. The replacement adhesive component 42 includes a replacement adhesive plate 421, at least one clamping screw 422, at least one fastening nut 423, and at least one positioning rod 424. The at least one clamping screw 422 is connected to the replacement adhesive plate 421 and passes through the at least one slot 412, corresponding to each of the at least one slots 412. The at least one fastening nut 423 is screwed to the at least one clamping screw 422 and is located on the side of the base adhesive plate 411 facing away from the replacement adhesive plate 421, corresponding to each of the at least one clamping screw 422. The at least one positioning rod 424 is connected to the replacement adhesive plate 421 and passes through the at least one positioning hole 413, corresponding to each of the at least one positioning hole 413.

[0030] This arrangement prevents replacement adhesive plate 421 from shifting relative to base adhesive plate 411 during testing, by engaging screw 422 with slot 412, and by positioning rod 424 and positioning hole 413. Furthermore, tightening nut 423 secures replacement adhesive plate 421 to base adhesive plate 411, improving the structural stability between replacement adhesive plate 421 and base adhesive plate 411.

[0031] The working principle of the first embodiment of the quality inspection equipment for acrylic foam tape provided by the present application is as follows: To test the tensile properties of acrylic foam tape, the acrylic foam tape is attached to one of the replacement adhesive plates 421. The tester uses two first drive mechanisms 1 to move the two replacement adhesive plates 421 toward each other until the acrylic foam tape adheres between the two replacement adhesive plates 421. The tester then uses the two first drive mechanisms 1 to cause the two replacement adhesive plates 421 to move away from each other until they separate. During this process, a sensor detects the tensile force threshold that causes the two replacement adhesive plates 421 to separate, and this analysis yields the tensile properties of the acrylic foam tape.

[0032] To test the torsional resistance of acrylic foam tape, the tape is attached to one of the replacement adhesive plates 421. The tester uses two first drive mechanisms 1 to move the two replacement adhesive plates 421 toward each other until the acrylic foam tape adheres between them. The tester then uses two second drive mechanisms 2 to cause the two replacement adhesive plates 421 to rotate toward each other until they rotate relative to each other. During this process, a sensor detects the torque threshold that causes the two replacement adhesive plates 421 to rotate, and this analysis yields the torsional resistance of the acrylic foam tape.

[0033] To test the shear resistance of acrylic foam tape, the tape is attached to one of the replacement adhesive plates 421. The tester uses two first drive mechanisms 1 to move the two replacement adhesive plates 421 toward each other until the acrylic foam tape adheres between them. The tester then uses two third drive mechanisms 3 to induce the two replacement adhesive plates 421 to slide toward each other until they slide relative to each other. During this process, sensors detect the thrust or tension thresholds that cause the two replacement adhesive plates 421 to slide, and analysis is used to determine the shear resistance of the acrylic foam tape.

[0034] Example 2 This embodiment is basically the same as the first embodiment, the only difference is that: Figure 1 、 Figure 2 and Figure 4 As shown, the adhesion mechanism 4 further includes a first temperature-control adhesion component 43 , which is detachably mounted on the replacement adhesion component 42 .

[0035] With this arrangement, during the testing process, the acrylic foam tape is adhered between the two first temperature-controlled adhesive components, and the tensile, torsional and shear properties of the acrylic foam tape under different temperature conditions can be tested. Compared with related technologies, it can simulate actual working conditions, and the test results are more accurate and comprehensive.

[0036] In this example, see Figure 1 、 Figure 2 、 Figure 4 and Figure 5The replacement adhesive component 42 includes a replacement adhesive plate 421 and at least one replacement wedge-shaped groove 425. The at least one replacement wedge-shaped groove 425 is located on the side of the replacement adhesive plate 421 facing away from the base adhesive component 41. The first temperature-control adhesive component 43 includes a first temperature-control plate 431 and at least one first wedge-shaped groove 432. The at least one first wedge-shaped groove 432 is located on the side of the first temperature-control plate 431 facing the replacement adhesive plate 421 and corresponds one-to-one with the at least one replacement wedge-shaped groove 425. The adhesive mechanism 4 also includes at least one wedge-shaped rod 46. The at least one wedge-shaped rod 46 is located between the replacement adhesive plate 421 and the first temperature-control plate 431 and corresponds one-to-one with the at least one replacement wedge-shaped groove 425 and one-to-one with the at least one first wedge-shaped groove 432. At least a portion of the wedge-shaped rod 46 is engaged with the replacement wedge-shaped groove 425, and another portion is engaged with the first wedge-shaped groove 432.

[0037] This arrangement allows the acrylic foam tape to be adhered between the two first temperature control plates 431 during testing, allowing the tensile, torsional, and shear properties of the acrylic foam tape to be tested under different temperature conditions. The replacement wedge groove 425, the first wedge groove 432, and the wedge rod 46 allow the wedge rod 46 to simultaneously engage the replacement adhesive plate 421 and the first temperature control plate 431, thereby improving the structural stability between the first temperature control plate 431 and the replacement adhesive plate 421 and preventing the first temperature control plate 431 from moving during testing, which could affect the test results.

[0038] In this embodiment, please refer to Figure 1 、 Figure 2 、 Figure 4 and Figure 5 The replacement adhesive component 42 further includes a replacement limiting groove 426, which is located on the side of the replacement adhesive plate 421 facing away from the base adhesive component 41 and communicates with the replacement wedge-shaped groove 425. The first temperature-control adhesive component 43 further includes a first limiting groove 433, which is located on the first temperature-control plate 431 and communicates with the first wedge-shaped groove 432 and corresponds to the replacement wedge-shaped groove 425. The wedge-shaped rod 46 defines a limiting hole (not shown), which corresponds to the replacement limiting groove 426 and the first limiting groove 433. The adhesive mechanism 4 further includes a limiting rod (not shown), which passes through the limiting hole and is positioned between the replacement limiting groove 426 and the first limiting groove 433.

[0039] In this way, after the wedge rod 46 is respectively clamped in the replacement limit groove 426 and the first limit groove 433, by inserting the limit rod into the limit hole, under the action of the replacement limit groove 426 and the first limit groove 433, the limit rod can be clamped in the replacement adhesive plate 421 and the first temperature control plate 431, so that the wedge rod 46 can be stably clamped between the replacement adhesive plate 421 and the first temperature control plate 431, and then the first temperature control plate 431 can be completely fixed to the replacement adhesive plate 421, which helps to further improve the structural stability between the first temperature control plate 431 and the replacement adhesive plate 421, thereby avoiding the detection results being affected.

[0040] The working principle of the second embodiment of the quality inspection equipment for acrylic foam tape provided by this application is as follows: When testing the tensile, torsional, and shear properties of the acrylic foam tape, the acrylic foam tape is adhered to one of the first temperature control plates 431. The tester uses the first drive mechanism 1 to drive the two first temperature control plates 431 toward each other until the acrylic foam tape adheres between the two first temperature control plates 431. The tester independently controls the temperatures of the two first temperature control plates 431, for example, by simultaneously raising the temperature on both sides, lowering the temperature on both sides, or raising the temperature on one side while lowering the temperature on the other, to simulate operating conditions at different temperatures. The tester then tests the tensile, torsional, and shear properties of the acrylic foam tape according to the working principles of Example 1.

[0041] Example 3 This embodiment is basically the same as the first embodiment, the only difference is that: Figure 1 、 Figure 2 and Figure 6 As shown, the adhesion mechanism 4 further includes a second temperature-control adhesion component 44 , which is detachably mounted on the replacement adhesion component 42 .

[0042] This arrangement, after the two second temperature-control adhesive components 44 are docked, wraps the acrylic foam tape around the outer periphery of the docking point of the two second temperature-control adhesive components 44. This allows testing of the tensile, torsional, and shear properties of the acrylic foam tape when positioned outside a workpiece, similarly simulating actual working conditions and helping to improve the accuracy and comprehensiveness of the test results. During the testing process, the two second temperature-control adhesive components 44 can be used to test the tensile, torsional, and shear properties of the acrylic foam tape under different temperature conditions in the docked state, resulting in more accurate and comprehensive test results.

[0043] In this example, see Figure 1 、 Figure 2 、 Figure 6 and Figure 7The replacement adhesive component 42 includes a replacement adhesive plate 421 and at least one replacement wedge-shaped groove 425. The at least one replacement wedge-shaped groove 425 is located on the side of the replacement adhesive plate 421 facing away from the base adhesive component 41. The second temperature-control adhesive component 44 includes a first mounting plate 441, a second temperature-control plate 442, and at least one second wedge-shaped groove 443. The second temperature-control plate 442 is connected to the side of the first mounting plate 441 facing away from the replacement adhesive plate 421. The at least one second wedge-shaped groove 443 is located on the side of the first mounting plate 441 facing the replacement adhesive plate 421 and corresponds to the at least one replacement wedge-shaped groove 425. The adhesion mechanism 4 also includes at least one wedge rod 46, which is located between the replacement adhesion plate 421 and the first mounting plate 441, and is arranged in a one-to-one correspondence with at least one replacement wedge groove 425, and in a one-to-one correspondence with at least one second wedge groove 443. At least part of the wedge rod 46 is engaged in the replacement wedge groove 425, and the other part is engaged in the second wedge groove 443.

[0044] With this arrangement, during testing, the acrylic foam tape is adhered between the two second temperature control plates 442, allowing the tensile, torsional, and shear properties of the acrylic foam tape to be tested under different temperature conditions in the docked state. The replacement wedge groove 425, the second wedge groove 443, and the wedge rod 46 allow the wedge rod 46 to simultaneously engage the replacement adhesive plate 421 and the first mounting plate 441, thereby improving the structural stability between the second temperature control plate 442 and the replacement adhesive plate 421 and preventing the second temperature control plate 442 from moving during testing, which could affect the test results.

[0045] In this embodiment, please refer to Figure 1 、 Figure 2 、 Figure 6 and Figure 7 The replacement adhesive component 42 further includes a replacement limiting groove 426, which is located on the side of the replacement adhesive plate 421 facing away from the base adhesive component 41 and communicates with the replacement wedge-shaped groove 425. The second temperature-control adhesive component 44 further includes a second limiting groove 444, which is located on the first mounting plate 441 and communicates with the second wedge-shaped groove 443 and corresponds to the replacement wedge-shaped groove 425. The wedge-shaped rod 46 defines a limiting hole, which corresponds to the replacement limiting groove 426 and the second limiting groove 444. The adhesive mechanism 4 further includes a limiting rod, which extends through the limiting hole and is positioned between the replacement limiting groove 426 and the second limiting groove 444.

[0046] In this way, after the wedge rod 46 is respectively clamped in the replacement limit groove 426 and the second limit groove 444, by inserting the limit rod into the limit hole, under the action of the replacement limit groove 426 and the second limit groove 444, the limit rod can be clamped in the replacement adhesive plate 421 and the first mounting plate 441, so that the wedge rod 46 can be stably clamped between the replacement adhesive plate 421 and the first mounting plate 441, and then the second temperature control plate 442 can be completely fixed to the replacement adhesive plate 421, which helps to further improve the structural stability between the second temperature control plate 442 and the replacement adhesive plate 421, thereby avoiding the detection results being affected.

[0047] The working principle of the third embodiment of the quality inspection device for acrylic foam tape provided by this application is as follows: When testing the tensile, torsional, and shearing properties of the acrylic foam tape when wrapping the docking workpiece, the inspector drives the two second temperature control plates 442 to move toward each other through the two first drive mechanisms 1 until the two second temperature control plates 442 dock, that is, the two second temperature control plates 442 are in contact. The inspector wraps the acrylic foam tape around the docking point of the two second temperature control plates 442, that is, around the gap between the two second temperature control plates 442. The inspector tests the tensile, torsional, and shearing properties of the acrylic foam tape based on the working principle of Example 1. The inspector can also control the temperature of the two second temperature control plates 442 individually, and then test the tensile, torsional, and shearing properties of the acrylic foam tape based on the working principle of Example 1.

[0048] Example 4 This embodiment is basically the same as the first embodiment, the only difference is that: Figure 1 、 Figure 2 and Figure 8 As shown, the adhesion mechanism 4 further includes a third temperature-control adhesion component 45 , which is detachably mounted on the replacement adhesion component 42 .

[0049] With this arrangement, after one third temperature-control adhesive component 45 covers the other, the acrylic foam tape is adhered between the two third temperature-control adhesive components 45. This allows testing of the tensile and torsional properties of the acrylic foam tape between curved and tubular workpieces, simulating actual working conditions and improving the accuracy and comprehensiveness of the testing mechanism. During testing, the two third temperature-control adhesive components 45 can be used to test the tensile and torsional properties of the acrylic foam tape under different temperature conditions, resulting in more accurate and comprehensive test results.

[0050] In this example, see Figure 1 、 Figure 2 、 Figure 8 and Figure 9The replacement adhesive component 42 includes a replacement adhesive plate 421 and at least one replacement wedge-shaped groove 425. The at least one replacement wedge-shaped groove 425 is located on the side of the replacement adhesive plate 421 facing away from the base adhesive component 41. The third temperature-control adhesive component 45 includes a second mounting plate 451, a third temperature-control plate 452, and at least one third wedge-shaped groove 453. The third temperature-control plate 452 is connected to the side of the second mounting plate 451 facing away from the replacement adhesive plate 421 and is configured as an arcuate plate. The at least one third wedge-shaped groove 453 is located on the side of the second mounting plate 451 facing the replacement adhesive plate 421 and corresponds to the at least one replacement wedge-shaped groove 425. The adhesion mechanism 4 further includes at least one wedge-shaped rod 46, which is positioned between the replacement adhesion plate 421 and the second mounting plate 451. The wedge-shaped rod 46 corresponds one-to-one with at least one replacement wedge-shaped groove 425 and one-to-one with at least one third wedge-shaped groove 453. At least a portion of the wedge-shaped rod 46 engages within the replacement wedge-shaped groove 425, while another portion engages within the third wedge-shaped groove 453. The diameter of one of the third temperature control plates 452 is larger than the diameter of the other third temperature control plate 452.

[0051] With this arrangement, during testing, the acrylic foam tape is adhered between the two third temperature control plates 452, allowing the tensile and torsional properties of the acrylic foam tape to be tested under different temperature conditions in the docked state. The replacement wedge groove 425, the third wedge groove 453, and the wedge rod 46 allow the wedge rod 46 to simultaneously engage the replacement adhesive plate 421 and the second mounting plate 451, thereby improving the structural stability between the third temperature control plate 452 and the replacement adhesive plate 421 and preventing the third temperature control plate 452 from moving during testing, which could affect the test results.

[0052] In this embodiment, please refer to Figure 1 、 Figure 2 、 Figure 8 and Figure 9 The replacement adhesive component 42 further includes a replacement limiting groove 426, which is located on the side of the replacement adhesive plate 421 facing away from the base adhesive component 41 and communicates with the replacement wedge-shaped groove 425. The third temperature-control adhesive component 45 further includes a third limiting groove 454, which is located on the second mounting plate 451 and communicates with the third wedge-shaped groove 453 and corresponds to the replacement wedge-shaped groove 425. The wedge-shaped rod 46 defines a limiting hole, which corresponds to the replacement limiting groove 426 and the third limiting groove 454. The adhesive mechanism 4 further includes a limiting rod, which extends through the limiting hole and is positioned between the replacement limiting groove 426 and the third limiting groove 454.

[0053] In this way, after the wedge rod 46 is respectively clamped in the replacement limit groove 426 and the third limit groove 454, by inserting the limit rod into the limit hole, under the action of the replacement limit groove 426 and the third limit groove 454, the limit rod can be clamped in the replacement adhesive plate 421 and the second mounting plate 451, so that the wedge rod 46 can be stably clamped between the replacement adhesive plate 421 and the second mounting plate 451, and then the third temperature control plate 452 can be completely fixed to the replacement adhesive plate 421, which helps to further improve the structural stability between the third temperature control plate 452 and the replacement adhesive plate 421, thereby avoiding the detection results being affected.

[0054] The working principle of the fourth embodiment of the quality inspection device for acrylic foam tape provided by this application is as follows: When testing the tensile and torsional properties of acrylic foam tape between curved and tubular workpieces, the tester adheres the acrylic foam tape to one of the third temperature control plates 452. The tester drives the two third temperature control plates 452 toward each other through the two first drive mechanisms 1 until one of the third temperature control plates 452 covers the other third temperature control plate 452. The tester drives the two third temperature control plates 452 toward each other perpendicular to the rotation axis of the third drive mechanism 3 through the two third drive mechanisms 3 until the two third temperature control plates 452 contact. The tester tests the tensile and torsional properties of the acrylic foam tape according to the working principle of Example 1. The tester can also control the temperature of the two third temperature control plates 452 individually and then test the tensile and torsional properties of the acrylic foam tape according to the working principle of Example 1.

[0055] The one or more embodiments of this application are intended to encompass all such substitutions, modifications, and variations that fall within the broad scope of this application. Therefore, any omissions, modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of one or more embodiments of this application should be included in the scope of protection of this application.

Claims

1. A quality inspection device for acrylic foam tape, characterized in that: include: Two first driving mechanisms (1); Two second drive mechanisms (2) are mounted on the two first drive mechanisms (1), move under the drive of the two first drive mechanisms (1), and are arranged in a one-to-one correspondence with the two first drive mechanisms (1); Two third drive mechanisms (3) are mounted on the two second drive mechanisms (2), rotate under the drive of the two second drive mechanisms (2), and are arranged in a one-to-one correspondence with the two second drive mechanisms (2); The two adhesion mechanisms (4) are mounted on the two third drive mechanisms (3) and move perpendicularly to the rotation axis of the third drive mechanisms (3) under the drive of the two third drive mechanisms (3), and are arranged in a one-to-one correspondence with the two third drive mechanisms (3).

2. The quality inspection device for acrylic foam tape according to claim 1, characterized in that: The adhesion mechanism (4) comprises a base adhesion component (41) and a replacement adhesion component (42), wherein the base adhesion component (41) is mounted on the output end of the third driving mechanism (3), and the replacement adhesion component (42) is detachably mounted on the base adhesion component.

3. The quality inspection device for acrylic foam tape according to claim 2, characterized in that: The base adhesion component (41) comprises a base adhesion plate (411), at least one card slot (412) and at least one positioning hole (413); the base adhesion plate (411) is mounted on the third driving mechanism (3); and the at least one card slot (412) and the at least one positioning hole (413) are both provided on the base adhesion plate (411); The replacement adhesive component (42) includes a replacement adhesive plate (421), at least one clamping screw (422), at least one fastening nut (423) and at least one positioning rod (424), wherein at least one clamping screw (422) is connected to the replacement adhesive plate (421) and is passed through at least one of the clamping slots (412), and is arranged in a one-to-one correspondence with at least one of the clamping slots (412), at least one fastening nut (423) is screwed to at least one of the clamping screws (422) and is located on the side of the base adhesive plate (411) facing away from the replacement adhesive plate (421), and is arranged in a one-to-one correspondence with at least one of the clamping screws (422), and at least one positioning rod (424) is connected to the replacement adhesive plate (421) and is passed through at least one of the positioning holes (413), and is arranged in a one-to-one correspondence with at least one of the positioning holes (413).

4. The quality inspection device for acrylic foam tape according to claim 2, characterized in that: The adhesion mechanism (4) further comprises a first temperature-controlled adhesion component (43), wherein the first temperature-controlled adhesion component (43) is detachably mounted on the replacement adhesion component (42); Alternatively, the adhesion mechanism (4) further comprises a second temperature-control adhesion component (44), and the second temperature-control adhesion component (44) is detachably mounted on the replacement adhesion component (42); Alternatively, the adhesion mechanism (4) further comprises a third temperature-control adhesion component (45), and the third temperature-control adhesion component (45) is detachably mounted on the replacement adhesion component (42).

5. The quality inspection device for acrylic foam tape according to claim 4, characterized in that: The replacement adhesive component (42) comprises a replacement adhesive plate (421) and at least one replacement wedge-shaped groove (425), wherein the at least one replacement wedge-shaped groove (425) is opened on a side of the replacement adhesive plate (421) facing away from the base adhesive component (41); The first temperature control adhesive component (43) includes a first temperature control plate (431) and at least one first wedge-shaped groove (432), wherein the at least one first wedge-shaped groove (432) is provided on a side of the first temperature control plate (431) facing the replacement adhesive plate (421) and is provided in a one-to-one correspondence with the at least one replacement wedge-shaped groove (425); The adhesion mechanism (4) further comprises at least one wedge-shaped rod (46), the at least one wedge-shaped rod (46) being located between the replacement adhesion plate (421) and the first temperature control plate (431), and being arranged in a one-to-one correspondence with at least one replacement wedge-shaped groove (425), and being arranged in a one-to-one correspondence with at least one first wedge-shaped groove (432), at least a portion of the wedge-shaped rod (46) being engaged in the replacement wedge-shaped groove (425), and another portion being engaged in the first wedge-shaped groove (432).

6. The quality inspection device for acrylic foam tape according to claim 4, characterized in that: The replacement adhesive component (42) comprises a replacement adhesive plate (421) and at least one replacement wedge-shaped groove (425), wherein the at least one replacement wedge-shaped groove (425) is opened on a side of the replacement adhesive plate (421) facing away from the base adhesive component (41); The second temperature control adhesive component (44) includes a first mounting plate (441), a second temperature control plate (442) and at least one second wedge-shaped groove (443), wherein the second temperature control plate (442) is connected to a side of the first mounting plate (441) facing away from the replacement adhesive plate (421), and at least one second wedge-shaped groove (443) is provided on a side of the first mounting plate (441) facing the replacement adhesive plate (421), and is provided in a one-to-one correspondence with at least one replacement wedge-shaped groove (425); The adhesion mechanism (4) further comprises at least one wedge-shaped rod (46), the at least one wedge-shaped rod (46) being located between the replacement adhesion plate (421) and the first mounting plate (441), and being arranged in a one-to-one correspondence with at least one replacement wedge-shaped groove (425), and being arranged in a one-to-one correspondence with at least one second wedge-shaped groove (443), at least a portion of the wedge-shaped rod (46) being engaged in the replacement wedge-shaped groove (425), and another portion being engaged in the second wedge-shaped groove (443).

7. The quality inspection device for acrylic foam tape according to claim 4, characterized in that: The replacement adhesive component (42) comprises a replacement adhesive plate (421) and at least one replacement wedge-shaped groove (425), wherein the at least one replacement wedge-shaped groove (425) is opened on a side of the replacement adhesive plate (421) facing away from the base adhesive component (41); The third temperature control adhesive component (45) includes a second mounting plate (451), a third temperature control plate (452) and at least one third wedge-shaped groove (453); the third temperature control plate (452) is connected to the side of the second mounting plate (451) facing away from the replacement adhesive plate (421) and is configured as an arc-shaped plate; the at least one third wedge-shaped groove (453) is opened on the side of the second mounting plate (451) facing the replacement adhesive plate (421) and is configured in a one-to-one correspondence with the at least one replacement wedge-shaped groove (425); The adhesion mechanism (4) further comprises at least one wedge-shaped rod (46), the at least one wedge-shaped rod (46) being located between the replacement adhesion plate (421) and the second mounting plate (451), and being arranged in a one-to-one correspondence with at least one replacement wedge-shaped groove (425), and being arranged in a one-to-one correspondence with at least one third wedge-shaped groove (453), at least a portion of the wedge-shaped rod (46) being engaged in the replacement wedge-shaped groove (425), and another portion being engaged in the third wedge-shaped groove (453); The diameter of one of the third temperature control plates (452) is larger than the diameter of the other third temperature control plate (452).

8. The quality inspection device for acrylic foam tape according to claim 5, characterized in that: The replacement adhesive component (42) further includes a replacement limiting groove (426), wherein the replacement limiting groove (426) is provided on a side of the replacement adhesive plate (421) facing away from the base adhesive component (41) and is communicated with the replacement wedge-shaped groove (425); The first temperature control adhesive component (43) further includes a first limiting groove (433), the first limiting groove (433) being provided on the first temperature control plate (431), communicating with the first wedge-shaped groove (432), and being arranged corresponding to the replacement wedge-shaped groove (425); The wedge-shaped rod (46) is provided with a limiting hole, and the limiting hole and the replacement limiting groove (426) and the first limiting groove (433) are arranged correspondingly; The adhesion mechanism (4) further comprises a limiting rod, which is passed through the limiting hole and is limited between the replacement limiting groove (426) and the first limiting groove (433).

9. The quality inspection device for acrylic foam tape according to claim 6, characterized in that: The replacement adhesive component (42) further includes a replacement limiting groove (426), wherein the replacement limiting groove (426) is provided on a side of the replacement adhesive plate (421) facing away from the base adhesive component (41) and is communicated with the replacement wedge-shaped groove (425); The second temperature-control adhesive component (44) further includes a second limiting groove (444), the second limiting groove (444) being provided on the first mounting plate (441), communicating with the second wedge-shaped groove (443), and being provided correspondingly to the replacement wedge-shaped groove (425); The wedge-shaped rod (46) is provided with a limiting hole, and the limiting hole and the replacement limiting groove (426) and the second limiting groove (444) are arranged correspondingly; The adhesion mechanism (4) further comprises a limiting rod, which is passed through the limiting hole and is limited between the replacement limiting groove (426) and the second limiting groove (444).

10. The quality inspection device for acrylic foam tape according to claim 7, characterized in that: The replacement adhesive component (42) further includes a replacement limiting groove (426), wherein the replacement limiting groove (426) is provided on a side of the replacement adhesive plate (421) facing away from the base adhesive component (41) and is communicated with the replacement wedge-shaped groove (425); The third temperature-control adhesive component (45) further includes a third limiting groove (454), the third limiting groove (454) being provided on the second mounting plate (451), communicating with the third wedge-shaped groove (453), and being arranged corresponding to the replacement wedge-shaped groove (425); The wedge-shaped rod (46) is provided with a limiting hole, and the limiting hole and the replacement limiting groove (426) and the third limiting groove (454) are arranged correspondingly; The adhesion mechanism (4) further comprises a limiting rod, which is passed through the limiting hole and is limited between the replacement limiting groove (426) and the third limiting groove (454).