Intelligent quality detection machine for packaging materials and use method of intelligent quality detection machine

By designing an intelligent quality inspection machine for packaging materials, continuous sampling peel tests on the entire roll of carrier tape were achieved, solving the problem that existing equipment could not continuously test, improving the accuracy and automation of the test, and ensuring the peel performance of the carrier tape and the safety of the components.

CN120908086AInactive Publication Date: 2025-11-07DONGGUAN NUOYI PACKAGING MATERIAL CO LTD
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Patent Information

Application Number
CN202511239684.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-01
Publication Date
2025-11-07
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing testing equipment cannot perform continuous sampling tests on the entire roll of carrier tape, making it difficult for the test results to reflect the overall peel performance. This can easily lead to sampling bias and affect production stability.

Method used

A quality intelligent inspection machine for packaging materials was designed, including an unwinding assembly, a peel test assembly, a conveying assembly, a vision inspection module, and a fixing and anti-sticking assembly. The machine performs a whole-roll peel test by continuously conveying the carrier tape, and uses airbags to clamp and fix the carrier tape cavity to keep the peel angle constant and prevent components from being carried out.

Benefits of technology

It enables continuous automated sampling and peeling tests on the entire roll of carrier tape, improving the accuracy and automation of the test, ensuring the consistency of the peeling performance of the carrier tape, and avoiding damage to components.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of packaging material detection, in particular to an intelligent quality detection machine for packaging materials, which comprises a peeling test assembly, a conveying assembly, a visual detection module and a fixed anti-sticking assembly, a stripping test assembly and a fixed anti-sticking assembly are mounted on a lower mounting plate of the mounting frame, a cover tape stripping test is performed on the carrier tape through the stripping test assembly, the carrier tape of the test part is fixed through the fixed anti-sticking assembly during the stripping test, and components in the carrier tape are prevented from being taken out during the stripping test; a conveying assembly is mounted on the mounting frame, and the carrier tape is continuously conveyed into the stripping test assembly through the conveying assembly to be subjected to a stripping test; a visual detection module is mounted on an upper mounting plate of the mounting frame, and the visual detection module performs downward monitoring; according to the invention, the stripping test of the whole roll of carrier tape in the winding disc can be realized, and the problem that the whole condition analysis of one roll of carrier tape is not in place because only small sections of carrier tapes are tested in the prior art is effectively solved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of packaging material detection, and particularly relates to a quality intelligent detection machine for packaging material and a use method. BACKGROUND

[0002] In the field of electronic component packaging and transportation, carrier tape as the core packaging material often cooperates with cover tape to realize the sealing protection of components, and the cover tape peeling performance (such as peeling force and peeling stability) directly affects the efficiency of subsequent automatic patching process and the safety of components, so the cover tape peeling test is a key link of carrier tape quality detection.

[0003] However, the existing detection equipment often performs single test on small sections of carrier tape, and cannot continuously sample and detect the whole roll of carrier tape, so that the detection result is difficult to reflect the overall peeling performance of the whole roll of carrier tape, and sampling deviation is prone to occur, and problems such as cover tape falling off and component damage may occur due to abnormal local peeling force in subsequent use, affecting production stability. SUMMARY

[0004] In order to overcome the defects that the existing detection equipment often performs single test on small sections of carrier tape, and cannot continuously sample and detect the whole roll of carrier tape, so that the detection result is difficult to reflect the overall peeling performance of the whole roll of carrier tape, and sampling deviation is prone to occur, the present application provides a quality intelligent detection machine for packaging material and a use method.

[0005] In the first aspect, a quality intelligent detection machine for packaging material comprises a machine box, a unwinding assembly and a mounting rack; the unwinding assembly and the mounting rack are fixedly connected to the machine box, and the unwinding assembly is located on one side of the mounting rack; a winding disc is detachably installed on the unwinding assembly; the detection machine further comprises a peeling test assembly, a conveying assembly, a visual detection module and a fixed anti-sticking assembly; the peeling test assembly and the fixed anti-sticking assembly are installed on the lower mounting plate of the mounting rack; the peeling test assembly is used for performing cover tape peeling test on the carrier tape; the fixed anti-sticking assembly is used for fixing the carrier tape in the test part during the peeling test, and preventing components in the carrier tape from being taken out during the peeling test; the conveying assembly is installed on the mounting rack and is used for continuously conveying the carrier tape to the peeling test assembly for peeling test; the visual detection module is installed on the upper mounting plate of the mounting rack and faces downward for monitoring.

[0006] As preferred, the peeling test assembly comprises a first electric sliding rail, a first electric sliding block, a tension sensing assembly, a connecting plate, a second electric sliding rail, a second electric sliding block, a driving motor and a clamping piece; the first electric sliding rail is installed on the lower mounting plate; the first electric sliding block is slidably connected to the first electric sliding rail; the tension sensing assembly is installed on the first electric sliding block; the connecting plate is fixedly connected to the tension sensing assembly; the second electric sliding rail is installed on the connecting plate; the second electric sliding block is slidably connected to the second electric sliding rail; the driving motor is installed on the second electric sliding block; and the clamping piece is fixedly connected to the rotating part of the driving motor.

[0007] As preferred, the clamping piece is composed of a cylindrical body which can be divided into two parts, and the cover tape is clamped in the cylindrical body.

[0008] As preferred, a camera is further included, and the camera is installed on the connecting plate to detect and identify the size of the peeling angle.

[0009] As preferred, the conveying assembly comprises a first electric push rod, a first limiting guide and a first conveying belt module; one first electric push rod is installed on the left side and the right side of the upper mounting plate respectively; the first limiting guide is fixedly connected to the telescopic part of the first electric push rod; one first conveying belt module is installed on the left side and the right side of the lower mounting plate respectively; the first conveying belt module is located below the first limiting guide, and the first limiting guide and the first conveying belt module convey the carrier tape to move.

[0010] As preferred, a second electric push rod and a second limiting guide are further included; the second electric push rod is installed on the right side of the upper mounting plate, and the second electric push rod is located on the right side of the first electric push rod; the second limiting guide is fixedly connected to the telescopic part of the second electric push rod, and the carrier tape discharged from the winding disc is guided to be horizontal through the second limiting guide.

[0011] As preferred, the fixed anti-sticking assembly comprises a mounting shell, a first strip-shaped air bag, a second strip-shaped air bag, a suction module and an air inlet pipe; the mounting shell is installed on the lower mounting plate; the first strip-shaped air bag and the second strip-shaped air bag are installed on the upper side of the mounting shell; a cavity for accommodating carrier tape placement components is formed between the first strip-shaped air bag and the second strip-shaped air bag; the suction module is installed on the mounting shell to perform air suction on the through hole on the carrier tape cavity.

[0012] As preferred, the carrier tape located between the first strip-shaped air bag and the second strip-shaped air bag is shaken back and forth by controlling the reciprocating suction and discharge of the first strip-shaped air bag and the second strip-shaped air bag.

[0013] As preferred, the separating assembly is further included; the separating assembly includes a reversing roller, a first collecting box, a third electric push rod, a third limiting guide, a second conveying belt module and a second collecting box; the reversing roller is installed on the left side of the case; the second conveying belt module is fixedly connected to the left part of the lower surface of the lower mounting plate; the first collecting box, the third electric push rod and the second collecting box are sequentially arranged from left to right on the left part of the case; the first collecting box is located below the reversing roller; the third limiting guide is fixedly connected to the third electric push rod; the carrier tape is transferred to the second collecting box for collection through the third limiting guide and the second conveying belt module.

[0014] In a second aspect, a method for using a quality intelligent detection machine for packaging materials includes: S1: installing a winding disc on a unwinding assembly, and conveying the carrier tape to the fixed anti-adhesion assembly by the conveying assembly; S2: a worker fixes the cover tape on the peeling test assembly; adjusts the peeling test assembly to a preset peeling angle, and starts the fixed anti-adhesion assembly to fix the carrier tape to avoid the carrier tape being suspended; S3: starts the peeling test assembly to peel the cover tape from the carrier tape; the peeling test assembly synchronously detects the peeling force data during the peeling process, and the visual detection module continuously monitors the peeling effect of the cover tape downward; S4: after completing the peeling test of a section of the carrier tape, controls the fixed anti-adhesion assembly to cancel the fixing of the carrier tape; starts the conveying assembly to convey a new section of the carrier tape to the fixed anti-adhesion assembly; controls the peeling test assembly to reset at the same time, and winds the peeled cover tape, and repeats the steps S2-S3 until the whole roll of the carrier tape in the winding disc completes the peeling test. Beneficial effects

[0015] The present application continuously conveys the carrier tape to the peeling test assembly through the conveying assembly; after completing the peeling test of a section of the carrier tape, the fixed anti-adhesion assembly can be controlled to cancel the clamping of the carrier tape, the new section of the carrier tape is transferred to the fixed anti-adhesion assembly by the conveying assembly, the first electric sliding block in the peeling test assembly is reset, the driving motor drives the clamping piece to wind the cover tape, the peeling test operation is repeated, the peeling test of the whole roll of the carrier tape in the winding disc can be realized, the problem that only a small section of the carrier tape is tested and the analysis of the whole roll of the carrier tape is not in place in the prior art is effectively solved, and the continuous and automatic sampling peeling test of the whole roll of the carrier tape is realized. Meanwhile, in view of the problem that the peeling angle changes dynamically due to the suspension of the carrier tape in the existing peeling test, the first strip-shaped air bag and the second strip-shaped air bag in the anti-sticking assembly are fixed, the cavity for clamping and fixing the carrier tape is kept during the peeling test, so that the peeling angle is kept unchanged, and the problem of the suspension of the carrier tape is successfully overcome; in addition, considering that the components are placed in the carrier tape cavity and are easily taken out during the cover tape peeling, before the cover tape peeling of the carrier tape between the first strip-shaped air bag and the second strip-shaped air bag is performed each time, the first strip-shaped air bag and the second strip-shaped air bag can be controlled to reciprocate and exhaust air, so that the carrier tape shakes to shake the components to the bottom of the cavity, and the suction module is controlled to exhaust air through the through hole of the cavity to adsorb the components on the bottom of the cavity, so that the components are prevented from being taken out by the cover tape; and the present application also realizes the separation and collection of the carrier tape and the components after the test through the separation assembly, and overcomes the change of the winding diameter of the carrier tape when the carrier tape is unwound by the second electric push rod and the second limiting guide to ensure the horizontal conveying of the carrier tape, so that the accuracy, the automation degree and the practicability of the cover tape peeling test are greatly improved, and the packaging material detection requirement is fully met. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a structure schematic view of the present application; Figure 2 It is a structure schematic view of the present application; Figure 1 Figure 3 It is a structure schematic view of the present application; Figure 2 Figure 4 It is a combination structure schematic view of the peeling test assembly and the anti-sticking assembly of the present application; Figure 5 It is a structure schematic view of the anti-sticking assembly of the present application.

[0017] ​​Wherein: 1-Chassis, 2-Unwinding assembly, 3-Mounting bracket, 4-Peeling test assembly, 5-Conveying assembly, 6-Vision inspection module, 7-Fixing and anti-sticking assembly, 8-Separation assembly, 3a-Upper mounting plate, 3b-Lower mounting plate, 401-First electric slide rail, 402-First electric slider, 403-Tension sensing assembly, 404-Connecting plate, 405-Second electric slide rail, 406-Second electric slider, 407-Drive motor, 408-Clamping component, 409-Camera, 501-First electric push rod, 502 503-First limit guide, 504-Second electric push rod, 505-Second limit guide, 701-Mounting housing, 702-First strip airbag, 703-Second strip airbag, 704-Suction module, 705-Air inlet pipe, 801-Reversing roller, 802-First collection box, 803-Third electric push rod, 804-Third limit guide, 805-Second conveyor belt module, 806-Second collection box, 100-Rewinding reel, 200-Carrier belt, 300-Peeling angle. Detailed Implementation

[0018] The present invention will be further described below with reference to the embodiments shown in the accompanying drawings.

[0019] Example 1: A smart quality inspection machine for packaging materials, such as Figures 1-5 As shown, the system includes a chassis 1, an unwinding assembly 2, and a mounting frame 3. The unwinding assembly 2 and the mounting frame 3 are fixedly connected to the chassis 1, with the unwinding assembly 2 located on one side of the mounting frame 3. A take-up reel 100 is detachably mounted on the unwinding assembly 2. The system also includes a peel test assembly 4, a conveying assembly 5, a vision inspection module 6, and a fixing and anti-sticking assembly 7. The peel test assembly 4 and the fixing and anti-sticking assembly 7 are mounted on the lower mounting plate 3b of the mounting frame 3. The peel test assembly 4 is used to perform a cover tape peel test on the carrier tape 200. The fixing and anti-sticking assembly 7 is used to fix the carrier tape 200 in the test section during the peel test and prevent the components in the carrier tape 200 from being carried out during the peel test. The conveying assembly 5 is mounted on the mounting frame 3. The conveying assembly 5 continuously conveys the carrier tape 200 to the peel test assembly 4 for peel test. The vision inspection module 6 is mounted on the upper mounting plate 3a of the mounting frame 3. The vision inspection module 6 monitors the peeling effect of the cover tape peel test by facing downwards.

[0020] The peeling test assembly 4 comprises a first electric sliding rail 401, a first electric sliding block 402, a tension sensing assembly 403, a connecting plate 404, a second electric sliding rail 405, a second electric sliding block 406, a driving motor 407 and a clamping piece 408; the first electric sliding rail 401 is installed on the lower mounting plate 3b; the first electric sliding block 402 is slidably connected on the first electric sliding rail 401; the tension sensing assembly 403 is installed on the first electric sliding block 402; the connecting plate 404 is fixedly connected on the tension sensing assembly 403; the second electric sliding rail 405 is installed on the connecting plate 404; the second electric sliding block 406 is slidably connected on the second electric sliding rail 405; the driving motor 407 is installed on the second electric sliding block 406; the clamping piece 408 is fixedly connected on the rotating part of the driving motor 407. The clamping piece 408 is composed of a cylindrical body which can be divided into two parts, and the cover belt is clamped in the cylindrical body. It also comprises a camera 409, which is installed on the connecting plate 404, and the size of the peeling angle 300 is detected and identified through the camera 409.

[0021] The conveying assembly 5 comprises a first electric push rod 501, a first limiting guide 502 and a first conveying belt module 503; one first electric push rod 501 is installed on the left side and the right side of the upper mounting plate 3a respectively; the first limiting guide 502 is fixedly connected on the telescopic part of the first electric push rod 501; one first conveying belt module 503 is installed on the left side and the right side of the lower mounting plate 3b respectively; the first conveying belt module 503 is located below the first limiting guide 502, and the first limiting guide 502 and the first conveying belt module 503 are used to move the carrier belt 200. It also comprises a second electric push rod 504 and a second limiting guide 505; the second electric push rod 504 is installed on the right side of the first electric push rod 501 on the right side of the upper mounting plate 3a, and the second limiting guide 505 is fixedly connected on the telescopic part of the second electric push rod 504, which guides the carrier belt 200 discharged from the winding disc 100 to be horizontal.

[0022] The fixed anti-sticking assembly 7 comprises a mounting shell 701, a first strip-shaped air bag 702, a second strip-shaped air bag 703, a suction module 704 and an air inlet pipe 705; the mounting shell 701 is installed on the lower mounting plate 3b; the first strip-shaped air bag 702 and the second strip-shaped air bag 703 are installed on the upper side of the mounting shell 701; a cavity is formed between the first strip-shaped air bag 702 and the second strip-shaped air bag 703 for accommodating the carrier belt 200 and the components; the suction module 704 is installed on the mounting shell 701, which is used to suck the through hole on the carrier belt 200 cavity. By controlling the reciprocating suction and discharge of the first strip-shaped air bag 702 and the second strip-shaped air bag 703, the carrier belt 200 located between the first strip-shaped air bag 702 and the second strip-shaped air bag 703 shakes back and forth.

[0023] It also includes a separation component 8; the separation component 8 includes a reversing roller 801, a first collection box 802, a third electric push rod 803, a third limiting guide 804, a second conveyor belt module 805, and a second collection box 806; the reversing roller 801 is installed on the left side of the housing 1; the second conveyor belt module 805 is fixedly connected to the left side of the lower surface of the lower mounting plate 3b; the first collection box 802, the third electric push rod 803, and the second collection box 806 are arranged sequentially from left to right on the left side of the housing 1; the first collection box 802 is located below the reversing roller 801; the telescopic part of the third electric push rod 803 is fixedly connected to the third limiting guide 804; the carrier belt 200 is guided to the second collection box 806 for collection by the third limiting guide 804 and the second conveyor belt module 805.

[0024] In the existing technology, when conducting cover strip peeling tests on carrier tape, usually only a small section of carrier tape is tested, and the entire roll of carrier tape is not tested, resulting in an inadequate analysis of the overall condition of a roll of carrier tape. When this invention is working, as Figures 3-4 As shown, initially, the cover tape of the carrier tape is torn off by the operator and fixed in the clamp 408. Then, according to the specific peeling angle requirement, the second electric slider 406 is controlled to slide on the second electric slide rail 405, thereby driving the clamp 408 to move up and down. The camera 409 detects and identifies the size of the peeling angle 300 until the peeling angle 300 reaches the preset requirement. It should be noted that when adjusting the peeling angle 300, the clamp 408 can also be rotated and the cover tape can be wound up by controlling the drive motor 407 to drive the clamp 408 to rotate or by sliding the first electric slider 402 on the first electric slide rail 401 to straighten the part of the cover tape that has been torn off, thus avoiding errors in adjusting the peeling angle 300. Next, a peel test is conducted. At this time, the cavity of the carrier tape is located between the first strip airbag 702 and the second strip airbag 703. In order to overcome the problem that the peel angle 300 changes dynamically when the carrier tape is suspended during the peel test in the prior art, an external air pump can be controlled to deliver air through the air inlet pipe 705 to inflate the first strip airbag 702 and the second strip airbag 703, clamping and fixing the cavity of the carrier tape. In this way, the carrier tape is fixed and the peel angle 300 remains unchanged during the cover tape peel test. During the specific peeling test, the first electric slider 402 is controlled to slide to the right on the first electric slide rail 401, thereby driving the clamping member 408 to peel the cover strip fixed between the first strip airbag 702 and the second strip airbag 703. During the peeling process, the magnitude of the peeling force is detected by the tension sensing component 403 and transmitted to the computer. Further, when the stripping of a section of the carrier tape is completed, the first and second strip-shaped air bags 702 and 703 are first controlled to deflate to cancel the clamping of the carrier tape, and then the first conveying belt module 503 is controlled to drive the carrier tape to convey to the left, so that a new section of the carrier tape is transferred between the first and second strip-shaped air bags 702 and 703. At the same time, the first electric sliding block 402 is controlled to slide to the left on the first electric sliding rail 401 to reset, and the driving motor 407 is controlled to drive the clamping piece 408 to rotate to wind the cover tape torn off, and then the above stripping test is repeated until the stripping test of the entire roll of carrier tape in the winding disc 100 is completed. It should be noted that, as shown in Figure 2 The carrier tape 200 first passes under the second limiting guide 505 (the limiting guide has a plurality of horizontal rotating rods), and the second electric push rod 504 is controlled to push the second limiting guide 505 downward to guide the carrier tape 200 discharged from the unwinding assembly 2, so that the carrier tape 200 on the left side of the second limiting guide 505 is in a horizontal state, thereby overcoming the change in winding diameter when the winding disc 100 unwinds the carrier tape. The carrier tape 200 passes between the first limiting guide 502 and the first conveying belt module 503, and the first electric push rod 501 is controlled to push the first limiting guide 502 downward to press the carrier tape on the first conveying belt module 503, so that the first conveying belt module 503 can drive the carrier tape to move to the left when it works, so that the next section of the carrier tape is transferred to the fixed anti-sticking assembly 7. Further, considering that the stripping test of the entire roll of carrier tape is sampled from the finished product warehouse, that is, there are components in the cavities of the carrier tape, and that there are problems: the components will be taken out of the cavities by the cover tape when the cover tape is stripped. To this end, before the cover tape is stripped between the first and second strip-shaped air bags 702 and 703 each time, the first and second strip-shaped air bags 702 and 703 are controlled to reciprocatingly deflate, so that the carrier tape 200 between the first and second strip-shaped air bags 702 and 703 shakes to shake the components in the cavities to the bottom of the cavities, and at the same time, the suction module 704 is controlled to continuously suction through the through holes of the cavities to adsorb the components on the bottom of the cavities, thereby avoiding the problem that the components in the cavities are taken out by the cover tape when the cover tape is stripped. Further, the carrier tape after the cover tape stripping test is transferred to the reversing roller 801, and the carrier tape passes between the third limiting guide 804 and the second conveying belt module 805 around the reversing roller 801, so that the cavities of the carrier tape are changed from upward to downward by the rotating reversing roller 801, and the components in the cavities fall downward into the first collection box 802 for collection, and at the same time, the carrier tape is conveyed by the second conveying belt module 805 and collected in the second collection box 806.

[0025] From the above, the present application continuously transports the carrier tape into the peeling test assembly 4 through the conveying assembly 5, after completing the peeling test of a section of the carrier tape, the fixed anti-adhesion assembly 7 can be controlled to cancel the clamping of the carrier tape, the new carrier tape section is transferred to the fixed anti-adhesion assembly 7 by the conveying assembly 5, at the same time, the first electric sliding block 402 in the peeling test assembly 4 is reset, the driving motor 407 drives the clamping piece 408 to wind the cover tape, and the peeling test operation is repeated, so that the peeling test of the whole roll of carrier tape in the winding disc 100 can be realized, the problem that the whole roll of carrier tape is not analyzed in place in the prior art is effectively solved, and the continuous and automatic sampling peeling test of the whole roll of carrier tape is realized. Meanwhile, in view of the problem that the carrier tape is suspended in the existing peeling test, causing the peeling angle 300 to change dynamically, the first strip-shaped air bag 702 and the second strip-shaped air bag 703 in the fixed anti-adhesion assembly 7 are used to clamp and fix the cavity of the carrier tape during the peeling test, so that the peeling angle 300 remains unchanged, and the problem of the carrier tape being suspended is successfully overcome. In addition, considering that components are placed in the carrier tape cavity and are easily taken out when the cover tape is peeled, before peeling the cover tape of the carrier tape between the first strip-shaped air bag 702 and the second strip-shaped air bag 703 each time, the first strip-shaped air bag 702 and the second strip-shaped air bag 703 can be controlled to reciprocatingly exhaust air, so that the carrier tape shakes to shake the components to the bottom of the cavity, and the suction module 704 is controlled to exhaust air through the through hole of the cavity to adsorb the components on the bottom of the cavity, so that the components are prevented from being taken out by the cover tape. The present application also realizes the separation and collection of the carrier tape and the components after the test through the separation assembly 8, and overcomes the change of the winding diameter of the winding disc 100 when the winding carrier tape to ensure the horizontal conveying of the carrier tape through the second electric push rod 504 and the second limiting guide 505. The accuracy, automation degree and practicability of the cover tape peeling test are greatly improved as a whole, and the packaging material detection requirements are fully met.

[0026] A use method of a packaging material quality intelligent detection machine, comprising: S1: installing the winding disc 100 on the unwinding assembly 2, and conveying the carrier tape 200 into the fixed anti-adhesion assembly 7 by the conveying assembly 5; S2: the staff fixes the cover tape on the peeling test assembly 4; adjusts the peeling test assembly 4 to a preset peeling angle 300, and starts the fixed anti-adhesion assembly 7 to fix the carrier tape 200 to avoid the carrier tape 200 being suspended; S3: starting the peeling test assembly 4 to perform cover tape peeling operation on the carrier tape 200, and the peeling test assembly 4 synchronously detects the peeling force data during the peeling process, and the visual detection module 6 continuously monitors the cover tape peeling effect downward; S4: after completing the peeling test of a section of the carrier tape 200, the control fixed anti-adhesion assembly 7 cancels the fixation of the carrier tape 200; the conveying assembly 5 is started, and the new section of the carrier tape 200 is conveyed to the fixed anti-adhesion assembly 7 by the conveying assembly 5; at the same time, the control peeling test assembly 4 is reset, and the peeled cover tape is wound, and the steps of S2-S3 are repeated until the whole roll of the carrier tape 200 in the winding disc 100 completes the peeling test.

[0027] The above description is only an embodiment of the present application, and does not limit the patent scope of the present application, and any equivalent structure or equivalent process transformation using the content of the present application specification, or direct or indirect application in other related technical fields, are also included in the patent protection scope of the present application.

Claims

1. A quality intelligent detection machine for packaging material, comprising a machine box (1), a unwinding assembly (2) and a mounting frame (3); the unwinding assembly (2) and the mounting frame (3) are fixedly connected to the machine box (1), and the unwinding assembly (2) is located on one side of the mounting frame (3); a winding disc (100) is detachably installed on the unwinding assembly (2); characterized in that It also comprises a peeling test assembly (4), a conveying assembly (5), a visual detection module (6) and a fixed anti-sticking assembly (7); the peeling test assembly (4) and the fixed anti-sticking assembly (7) are installed on the lower mounting plate (3b) of the mounting frame (3); the cover tape of the carrier tape (200) is subjected to a cover tape peeling test through the peeling test assembly (4); the carrier tape (200) is fixed during the peeling test through the fixed anti-sticking assembly (7), and the components in the carrier tape (200) are prevented from being taken out during the peeling test; the conveying assembly (5) is installed on the mounting frame (3); the carrier tape (200) is continuously conveyed to the peeling test assembly (4) for peeling test through the conveying assembly (5); the visual detection module (6) is installed on the upper mounting plate (3a) of the mounting frame (3), and the visual detection module (6) monitors downward.

2. The quality intelligent inspection machine for packaging material according to claim 1, characterized in that, The peeling test assembly (4) comprises a first electric sliding rail (401), a first electric sliding block (402), a tension sensing assembly (403), a connecting plate (404), a second electric sliding rail (405), a second electric sliding block (406), a driving motor (407) and a clamping piece (408); the first electric sliding rail (401) is installed on the lower mounting plate (3b); the first electric sliding block (402) is slidably connected to the first electric sliding rail (401); the tension sensing assembly (403) is installed on the first electric sliding block (402); the connecting plate (404) is fixedly connected to the tension sensing assembly (403); the second electric sliding rail (405) is installed on the connecting plate (404); the second electric sliding block (406) is slidably connected to the second electric sliding rail (405); the driving motor (407) is installed on the second electric sliding block (406); the clamping piece (408) is fixedly connected to the rotating part of the driving motor (407).

3. The quality intelligent inspection machine for packaging material according to claim 2, characterized in that, The clamping piece (408) is composed of a cylindrical body which can be divided into two parts, and the cover tape is clamped in the cylindrical body.

4. The quality intelligent inspection machine for packaging material according to claim 2, characterized in that, It also comprises a camera (409); the camera (409) is installed on the connecting plate (404); the size of the peeling angle (300) is detected and identified through the camera (409).

5. The quality intelligent inspection machine for packaging material according to claim 1, characterized in that, The conveying assembly (5) comprises a first electric push rod (501), a first limiting guide (502) and a first conveying belt module (503); one first electric push rod (501) is installed on the left side and the right side of the upper mounting plate (3a) respectively; the first limiting guide (502) is fixedly connected to the telescopic part of the first electric push rod (501); one first conveying belt module (503) is installed on the left side and the right side of the lower mounting plate (3b) respectively; the first conveying belt module (503) is located below the first limiting guide (502); the carrier tape (200) is moved through the first limiting guide (502) and the first conveying belt module (503).

6. The quality intelligent inspection machine for packaging material according to claim 5, characterized in that, Also includes a second electric push rod (504) and a second limit guide (505); the upper mounting plate (3a) right side is provided with the second electric push rod (504), and the second electric push rod (504) is located at the right side of the first electric push rod (501), and the second electric push rod (504) is fixedly connected with the second limit guide (505), and the tape (200) discharged from the winding disc (100) is guided to horizontal through the second limit guide (505).

7. The quality intelligent inspection machine for packaging material according to claim 1, characterized in that, The fixed anti-sticking assembly (7) comprises a mounting shell (701), a first strip-shaped air bag (702), a second strip-shaped air bag (703), a suction module (704) and an air inlet pipe (705); the lower mounting plate (3b) is provided with the mounting shell (701); the mounting shell (701) is provided with the first strip-shaped air bag (702) and the second strip-shaped air bag (703) on the upper side; a cavity for accommodating the tape (200) is formed between the first strip-shaped air bag (702) and the second strip-shaped air bag (703); the mounting shell (701) is provided with the suction module (704), and the through hole in the cavity of the tape (200) is suctioned through the suction module (704).

8. The quality intelligent inspection machine for packaging material according to claim 7, characterized in that, By controlling the reciprocating suction and discharge of the first strip-shaped air bag (702) and the second strip-shaped air bag (703), the tape (200) located between the first strip-shaped air bag (702) and the second strip-shaped air bag (703) is shaken back and forth.

9. The quality intelligent inspection machine for packaging material according to claim 1, characterized in that, Also includes a separation assembly (8); the separation assembly (8) comprises a reversing roller (801), a first collection box (802), a third electric push rod (803), a third limit guide (804), a second conveying belt module (805) and a second collection box (806); the reversing roller (801) is installed on the left side of the cabinet (1); the second conveying belt module (805) is fixedly connected to the left part of the lower surface of the lower mounting plate (3b); from left to right, the first collection box (802), the third electric push rod (803) and the second collection box (806) are sequentially arranged on the left part of the cabinet (1); the first collection box (802) is located below the reversing roller (801); the third limit guide (804) is fixedly connected to the telescopic part of the third electric push rod (803); the tape (200) is guided to be transferred to the second collection box (806) through the third limit guide (804) and the second conveying belt module (805) for collection.

10. A method of using the quality intelligent inspection machine for packaging material as claimed in any one of claims 1 to 9, characterized in that, It comprises: S1: install the winding disc (100) on the unwinding assembly (2), and convey the tape (200) to the fixed anti-sticking assembly (7) by the conveying assembly (5); S2: the worker fixes the cover tape on the peeling test assembly (4); adjusts the peeling test assembly (4) to the preset peeling angle (300), and starts the fixed anti-sticking assembly (7) to fix the tape (200), so as to avoid the tape (200) being suspended; S3: start the peeling test assembly (4), and the peeling test assembly (4) peels the cover tape of the tape (200), and the peeling test assembly (4) synchronously detects the peeling force data during the peeling process, and the visual detection module (6) continuously monitors the cover tape peeling effect downward. S4: after completing the peeling test of a section of the carrier tape (200), control the fixing anti-sticking assembly (7) to cancel the fixing of the carrier tape (200); start the conveying assembly (5), and convey a new section of the carrier tape (200) to the fixing anti-sticking assembly (7) by the conveying assembly (5); at the same time, control the peeling test assembly (4) to reset, and wind the peeled cover tape, and repeat the steps of S2-S3 until the whole roll of the carrier tape (200) in the winding disc (100) completes the peeling test.