Edge band specification detection device and detection method thereof

By designing the edge seal strip specification detection device, real-time detection and specification adjustment of the edge seal strip are achieved, the problems of inefficiency and risk of missed inspection are solved, the detection accuracy and production efficiency are improved, and the quality control needs of modern production are met.

CN120212877APending Publication Date: 2025-06-27HANCHENWEI DIGITAL TECHNOLOGY (SHANGHAI) CO LTD
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Patent Information

Application Number
CN202510372010.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-27
Publication Date
2025-06-27

AI Technical Summary

Technical Problem

The existing edge sealing strip detection methods are inefficient and have the risk of missed inspection, which is difficult to meet the high-standard quality control needs. The labor intensity brought by manual operations is high, making it impossible to adapt to the automation needs of modern production lines.

Method used

A specification detection device for edge seal strips is designed, including width detection components, acceleration wheels, pressing wheels, winding components, pushing components and grouping components. Through automated control, real-time detection and specification adjustment of edge seal strips are realized, timely alarm and shutdown, automatic classification and data recording are realized.

Benefits of technology

It significantly improves detection accuracy and production efficiency, reduces manual intervention, optimizes production processes through data analysis, and meets the efficient and stable edge sealing quality inspection needs in modern production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of detection devices, and discloses an edge band specification detection device and a detection method thereof.The edge band specification detection device comprises a shell which is transversely and horizontally divided into an upper carrier and a lower carrier; the control cabinet is arranged at the top of the upper carrier; the acceleration wheel is arranged at the bottom of the inner cavity of the upper carrier and rotates at different frequencies and speeds through a servo motor; the pressing wheel assembly is arranged on the upper carrier, and the linear distance between the pressing wheel assembly and the acceleration wheel can be changed through adjustment; the width detection assembly is arranged on the upper carrier and is used for detecting the thickness of the edge band; the winding assembly is arranged in the lower carrier body and used for driving the reel to wind the edge sealing strip; the pushing assembly is located at the top of the winding assembly, arranged in the lower carrier body and used for pushing the winding shaft to move and work; the conveying assembly is arranged on the lower carrier and used for conveying the reel; and the grouping assembly is located on the side, away from the pushing assembly, of the conveying assembly, arranged in the lower carrier body and used for bearing the reels falling through movement of the pushing assembly.
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Description

Technical Field

[0001] The present invention relates to the technical field of detection devices, and particularly relates to a detection device and a detection method for the specifications of edge bands. Background Art

[0002] During the production process of edge bands, the specification consistency of edge bands is crucial for product quality. However, due to the control of multiple links and multiple parameters in production, ensuring that each edge band meets the standard width, thickness and other specifications has always been a difficult point in the industry. At present, the detection of edge bands usually relies on manual sampling inspection or simple measuring devices. This method not only has low detection efficiency, but also has the risk of missed detection, and it is difficult to meet the high-standard quality control requirements.

[0003] Traditional detection equipment has obvious deficiencies in dealing with the specification fluctuations of edge bands. On the one hand, manual detection cannot achieve real-time monitoring of the whole process, resulting in the inability to detect and correct the deviation of edge band specifications in time, which is likely to lead to batches of unqualified products. On the other hand, simple measuring devices lack the function of collecting and analyzing detection data, and it is difficult to provide reliable data support for subsequent quality traceability and improvement. In addition, the labor intensity brought by manual operation is relatively high, the detection speed is limited, and it cannot meet the automation requirements of modern production lines.

[0004] In view of the above, the present application provides a detection device and a detection method for the specifications of edge bands, which can automatically adjust and detect the specifications of edge bands in real time, and alarm and stop the machine in time when there is a jam or non-compliance. This device can not only significantly improve the detection accuracy and production efficiency, reduce manual intervention, but also optimize the production process through data analysis, meeting the requirements of high-efficiency and stable quality detection of edge bands in modern production. Summary of the Invention

[0005] Aiming at the deficiencies of the prior art, the present invention provides a detection device and a detection method for the specifications of edge bands, which solve the problems put forward in the above background art.

[0006] To achieve the above objectives, the present invention is realized through the following technical solutions:

[0007] A detection device and a detection method for the specifications of edge bands, including,

[0008] A housing, horizontally divided into an upper carrier and a lower carrier;

[0009] A control cabinet, arranged on the top of the upper carrier;

[0010] An acceleration wheel, arranged at the bottom of the inner cavity of the upper carrier, and performing rotational work at different frequencies through a servo motor;

[0011] A pressure wheel assembly, arranged on the upper carrier, and capable of changing the linear distance from the acceleration wheel by adjustment;

[0012] A width detection component is arranged on the upper carrier and is used to detect the thickness of the edge sealing strip;

[0013] A winding component is arranged in the lower carrier and is used to drive the reel to wind the edge sealing strip;

[0014] A pushing component is located at the top of the winding component and is arranged in the lower carrier, and is used to push the winding shaft to move for work;

[0015] A conveying component is arranged on the lower carrier and is used to convey the reel;

[0016] A grouping component is located on the side of the conveying component away from the pushing component and is arranged in the lower carrier for receiving the reel that falls through the movement of the pushing component.

[0017] Optionally, the pressing wheel component includes a cylinder, a connecting shaft and a heavy pressing wheel;

[0018] There are two cylinders, which are symmetrically arranged on the housing;

[0019] There are two connecting shafts, which are arranged at the bottoms of the two cylinders;

[0020] Both ends of the heavy pressing wheel are connected to the two connecting shafts.

[0021] Optionally, the winding component includes a driver, a positioning shaft and a driving rod;

[0022] The driver is arranged in the lower carrier;

[0023] The positioning shaft is arranged to be connected to the driver;

[0024] The driving rod is fixedly connected to the side of the positioning shaft away from the driver.

[0025] Optionally, one end of the driving reel extends outwards to form a conical body, and the surface of the conical body is provided with tooth patterns, and the tooth pattern lines thereof are engaged with the inner cavity of the end of the positioning shaft away from the driver.

[0026] Optionally, the pushing component includes a linear slide rail and a telescopic rod;

[0027] The linear slide rail is arranged on the top wall of the lower carrier;

[0028] The telescopic rod is arranged on the slider in the linear slide rail.

[0029] Optionally, the conveying component includes a conveying channel, a first blocking rod and a second blocking rod;

[0030] The conveying channel is arranged in the lower carrier corresponding to the side of the driving rod away from the positioning shaft;

[0031] The first shielding rod and the second shielding rod are arranged on the conveying channel at equal distances.

[0032] Optionally, the grouping component includes a trapezoidal slide, a driving member, and a shielding plate;

[0033] The trapezoidal slide has two outlets;

[0034] There are two driving members, both of which are arranged at the top of the trapezoidal slide;

[0035] There are two shielding plates, and the two shielding plates are arranged corresponding to two groups of driving members.

[0036] Optionally, an inlet is provided at the upper end of one side surface of the trapezoidal slide, and the inlet is connected to one end of the conveying channel and is flush with the bottom of the conveying channel.

[0037] Optionally, the driving member includes a driving motor and a driving shaft;

[0038] The driving motor is installed on the trapezoidal slide;

[0039] The driving shaft is connected to the output end of the driving motor, and the surface of the driving shaft meshes with the top of the shielding plate.

[0040] A detection method for a sealing strip specification detection device includes the following steps:

[0041] Step 1, detect the width of the sealing strip through the width detection component. The control cabinet receives the detection signal and controls the rotation frequency of the acceleration wheel, thereby pulling and changing the width of the sealing strip; when the rotation frequency of the acceleration wheel does not reach the required frequency, the control cabinet controls to send out an alarm signal; among them, due to different required widths of the non-sealing strips, the distance from the pressing wheel component is adjusted to change the distance from the acceleration wheel;

[0042] Step 2, manually assist the sealing strip processed in Step 1 to perform winding work through the reel on the winding component. During winding, positioning is performed through the pushing component to prevent the reel from moving; after winding, the reel is moved to the grouping component through the pushing component. Through the alarm signal collected by the control cabinet, the direction of the grouping component for outwardly conveying the reel is controlled, so as to divide the reels with sealing strips for re-inspection and non-re-inspection;

[0043] Step 3, supplement and convey the reel inward through the conveying component, and set the supplemented reel on the winding component again through the pushing component.

[0044] The present invention provides a sealing strip specification detection device and its detection method, which have the following beneficial effects:

[0045] 1. Through the width detection component, high-precision detection of the width of the edge banding strip is achieved; the sensor data is uniformly transmitted to the control cabinet for processing, which can quickly respond and adjust the rotation frequency of the acceleration wheel, making the width of the edge banding strip more in line with the specification requirements, and improving the accuracy and consistency of detection.

[0046] 2. Through the grouping component, the reels that need to be reinspected can be automatically identified and marked, effectively separating the unqualified edge banding strips and preventing them from being mixed into the qualified products; through the cooperation of the pushing component and the conveying component, automatic classification of the qualified and unqualified reels is realized, saving the time of manual inspection and improving the sorting efficiency.

[0047] 3. Through the pushing component and the conveying component, the movement and positioning of the reel are automatically controlled, without frequent manual intervention, greatly reducing the operation time and labor intensity of workers; especially during the positioning and replacement of the reel, the automatic operation is more stable and reliable, improving the production line efficiency.

[0048] 4. Through the cooperation between the control cabinet and each component, multiple detection data can be collected and recorded. Especially in the case of intermittent jams, the device will automatically analyze and record the data, providing data support for subsequent quality traceability and improvement; this data recording function can help enterprises optimize the production process and further improve the product qualification rate.

[0049] 5. By optimizing the combination of the heavy pressure wheel and the acceleration wheel, and adding an anti-jamming alarm shutdown system, the device reduces the wear and abnormal loss of equipment components, extending the service life of the equipment; at the same time, the automatic shutdown and alarm functions during the edge banding strip detection process effectively ensure the safety of operators and equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0050] Figure 1 is a schematic structural diagram of the present invention;

[0051] Figure 2 is a schematic structural diagram of the width detection component of the present invention;

[0052] Figure 3 is a schematic structural diagram of the pressure wheel component of the present invention;

[0053] Figure 4 is a schematic structural diagram of the grouping component of the present invention;

[0054] Figure 5 is a schematic structural diagram of the winding component of the present invention;

[0055] Figure 6 is a schematic structural diagram of the reel of the present invention.

[0056] In the figure: 1. Outer shell; 11. Upper carrier; 12. Lower carrier; 2. Control cabinet; 3. Accelerating wheel; 4. Pressing wheel assembly; 41. Cylinder; 42. Connecting shaft; 43. Heavy pressing wheel; 5. Width detection assembly; 6. Rewinding assembly; 61. Driver; 62. Positioning shaft; 63. Driving rod; 7. Reel; 8. Pushing assembly; 81. Linear slide rail; 82. Telescopic rod; 9. Conveying assembly; 91. Conveying channel; 92. First blocking rod; 93. Second blocking rod; 10. Grouping assembly; 101. Trapezoidal slide; 102. Driving part; 1021. Driving motor; 1022. Driving shaft; 103. Baffle plate. Detailed implementation mode

[0057] In order to make it easy to understand the technical means, creative features, achieved purposes and effects of the present invention, the present invention will be further described below in conjunction with specific embodiments.

[0058] In the description of the present invention, it should be understood that the terms "lateral", "longitudinal", "end", "edge", "side wall", "upper", "lower", "upper part", "lower part", "directly above", "surface", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "axial", "radial", "circumferential", "end", "head", "tail", etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the technical solution of the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present invention.

[0059] The present application proposes a device for detecting the specifications of edge strips and a detection method thereof, which are specifically as follows:

[0060] For reference Figure 1 , the present application is mainly composed of an outer shell 1 formed by connecting an upper carrier 11 and a lower carrier 12, a control cabinet 2 provided on the top of the upper carrier 11, an accelerating wheel 3 provided at the bottom of the inner cavity of the upper carrier 11, a pressing wheel assembly 4 provided on the upper carrier 11, a width detection assembly 5 for detecting the edge strip, a rewinding assembly 6 provided in the lower carrier 12, a pushing assembly 8 provided in the lower carrier 12 at the top of the rewinding assembly 6, a conveying assembly 9 provided in the lower carrier 12, and a grouping assembly 10 located on the side of the conveying assembly 9 away from the pushing assembly 8, which cooperate with each other to realize the detection of the specifications of the edge strip, so that the final formed edge strips have approximately the same specifications.

[0061] For reference Figure 1 , the outer shell 1 is horizontally divided into an upper carrier 11 and a lower carrier 12 in the lateral direction for carrying different equipment components.

[0062] For reference Figure 1, the control cabinet 2 is arranged on the top of the upper carrier 11, and the mutual cooperation work among various groups of structures is controlled through the calculation of the control cabinet 2.

[0063] For reference Figure 1 , during detection, first detect through the width detection component 5. The width detection component 5 is preferably a laser sensor for operation and judgment. The detected data is uniformly collected by the control cabinet 2. The sensor structure is relatively mature in this width detection field, and this application will not elaborate too much.

[0064] For reference Figure 1-3 , after the width detection component 5 detects, adjust the positions and frequencies of the acceleration wheel 3 and the pressure wheel assembly 4 through the control cabinet 2; pre-adjust the pressure wheel assembly 4 to change the connection distance between the pressure wheel assembly 4 and the acceleration wheel 3. When the thickness of the edge banding does not meet the requirements, the control cabinet 2 controls the servo motor connected to the acceleration wheel 3, thereby causing the rotation frequency of the acceleration wheel 3 to change, and achieving the effect of friction on the edge banding through accelerated rotation, so that the edge banding reaches the compliance thickness after passing through the pressure wheel assembly 4 and the acceleration wheel 3.

[0065] Among them, the pressure wheel assembly 4 includes a cylinder 41, a connecting shaft 42 and a heavy pressure wheel 43. There are two cylinders 41, symmetrically arranged on the housing 1. There are two connecting shafts 42, arranged at the bottoms of the two cylinders 41. Both ends of the heavy pressure wheel 43 are connected to the two connecting shafts 42. By the up and down movement of the cylinder 41, the connection distance between the heavy pressure wheel 43 and the acceleration wheel 3 is changed. Among them, the connecting shaft 42 plays a combined connection role between the cylinder 41 and the heavy pressure wheel 43; when the cylinder 41 moves, it stably makes the heavy pressure wheel 43 move up and down in a straight line.

[0066] When detecting non-compliant edge banding, it will cause the acceleration wheel 3 to accelerate. However, in some cases, friction occurs between the accelerated acceleration wheel 3 and the edge banding, resulting in a stuck situation. When the stuck situation lasts for a long time (more than 30s), the control cabinet 2 directly controls the connected buzzer to give an alarm. At this time, the acceleration wheel 3 and the pressure wheel assembly 4 stop working. After being reprocessed by the staff, they start working again.

[0067] When there are multiple intermittent stuck situations, but the duration of each does not exceed 30s, the control cabinet 2 performs data statistical processing; after detection and accelerated stretching, the winding component 6 performs winding work. After the entire circle of winding is completed, it enters the grouping component 10 through the pushing component 8. The grouping component 10 receives the data statistically processed by the control cabinet 2, thereby judging whether it is the edge banding with multiple stuck situations, and then judging the orientation where the reel 7 falls out of the grouping component 10, which can prompt the staff to re-check and process the entire roll of edge banding with multiple stuck situations.

[0068] For reference Figure 4, the grouping component 10 includes a trapezoidal slide 101, a driving member 102, and a baffle 103; the trapezoidal slide 101 has two outlets; there are two driving members 102, both of which are provided at the top of the trapezoidal slide 101, and the two driving members 102 receive signals from the control cabinet 2; there are two baffles 103, and the two baffles 103 are arranged corresponding to the two groups of driving members 102. The control cabinet 2 controls one of the driving members 102 to start working based on the pre-processed signals. When one driving member 102 starts working, it causes the connected baffle 103 to move relatively. At this time, the baffle 103 opens, and the reel 7 carrying the edge banding strip falls outwards along the trapezoidal slide 101 from the opened side.

[0069] It should be noted that the driving member 102 includes a driving motor 1021 and a driving shaft 1022; the driving motor 1021 is installed on the trapezoidal slide 101; the driving shaft 1022 is connected to the output end of the driving motor 1021, and the surface of the driving shaft 1022 meshes with the top of the baffle 103; when the driving motor 1021 works, it drives the driving shaft 1022 to rotate and mesh with the baffle 103, causing the blocked side of the baffle 103 to open. At this time, one side of the reel 7 loses the supporting force and will roll out along the slideway direction.

[0070] For reference Figure 4-5 , when the reel 7 moves to the grouping component 10, it is carried out by the pushing component 8. The pushing component 8 includes a linear slide rail 81 and a telescopic rod 82. The linear slide rail 81 is provided on the inner top wall of the download body 12, and the telescopic rod 82 is provided on the slider in the linear slide rail 81; when the reel 7 is arranged on the winding component 6, the telescopic rod 82 is moved to the side of the reel 7 away from the winding component 6 through the linear slide rail 81. When moving, the telescopic rod 82 is in a contracted state. After moving to the required position, the telescopic rod 82 is in an extended state and is located on one side of the reel 7, thereby preventing the reel 7 from shaking back and forth when the winding component 6 works.

[0071] After moving the reel 7 to the grouping component 10 through the linear slide rail 81, there is no reel 7 on the winding component 6 at this time. At this time, the conveying component 9 works and cooperates with the pushing component 8 to supplement the reel 7 towards the winding component 6 for use in subsequent edge banding strip winding work.

[0072] For reference Figure 4-5, where the conveying component 9 includes a conveying channel 91, a first blocking rod 92 and a second blocking rod 93. The conveying channel 91 is arranged inside the downloading body 12 corresponding to the side of the driving rod 63 away from the clamping shaft 62. The conveying channel 91 communicates with the outside of the downloading body 12 and conveys the reel 7 inward from the external interface. The first blocking rod 92 and the second blocking rod 93 are arranged on the conveying channel 91 at equal intervals. When the edge-sealing strip after being wound up falls onto the grouping component 10, first open the first blocking rod 92, and let the reel 7 blocked by the first blocking rod 92 fall to the front end of the conveying channel 91. Subsequently, the first blocking rod 92 closes to block again, the second blocking rod 93 opens, and the reel 7 blocked by the second blocking rod 93 falls after being blocked by the first blocking rod 92. Then the second blocking rod 93 opens again to perform the blocking work. Repeat the above process in sequence to perform the conveying work of the reel 7.

[0073] It should be noted that the upper end of one side surface of the trapezoidal slide 101 is provided with an inlet, which is connected to one end of the conveying channel 91 and is flush with the bottom of the conveying channel 91. The bottom of the receiving position at the top of the trapezoidal slide 101 is lower than the bottom of the conveying channel 91. When moving the reel 7 to the top of the trapezoidal slide 101, the reel 7 will not roll to the position of the conveying channel 91, causing complexity during the falling process.

[0074] Finally, considering that the reel 7 will not rotate on its own after being connected to the winding component 6; in order to ensure synchronous rotation with the winding component 6, one end of the reel 7 extends outward to form a cone, and the surface of the cone is provided with tooth patterns; corresponding patterns are set in the winding component 6. After meshing with the tooth patterns of the reel 7, when the winding component 6 rotates, it drives the reel 7 to rotate synchronously.

[0075] Among them, reference can be made to Figure 4-6 , the winding component 6 includes a driver 61, a clamping shaft 62 and a driving rod 63. The driver 61 is arranged inside the downloading body 12, the clamping shaft 62 is arranged and connected to the driver 61, and the driving rod 63 is fixedly connected to the side of the clamping shaft 62 away from the driver 61; the driver 61 drives the clamping shaft 62 and the driving rod 63 to rotate synchronously, moves the reel 7 and slews it on the driving rod 63 until it extends to the clamping shaft 62, so that the tooth pattern on the reel 7 meshes with the inner cavity of one end of the clamping shaft 62 away from the driver 61.

[0076] Secondly, in order to facilitate the better winding of the edge-sealing strip onto the reel 7 on the winding component 6, a guiding channel is arranged on one side of the edge-sealing strip detection outlet, and a working window is opened at the downloading body 12 corresponding to the winding component 6 to perform manual assistance on the internal winding component 6 through the working window.

[0077] The detection method of the edge-sealing strip specification detection device is as follows:

[0078] Step 1: Detect the width of the edge banding strip through a width detection component 5 (such as a laser sensor); the control cabinet 2 receives the detection signal and controls the rotation speed of the acceleration wheel 3 according to the width information; if the rotation speed of the acceleration wheel 3 does not reach the required standard speed, the control cabinet 2 will send an alarm signal;

[0079] Adjust the pressure wheel assembly 4 to change the connection distance between the pressure wheel and the acceleration wheel to ensure that the width of the edge banding strip meets the requirements; according to the width required for different edge banding strips, the control cabinet 2 will automatically adjust according to the actual situation to ensure that the rotation frequency of the acceleration wheel 3 reaches a suitable range;

[0080] Step 2: Manually assist in guiding the edge banding strip processed in Step 1 into the reel 7 of the winding assembly 6 for winding; during the winding process, the pushing assembly 8 will assist in positioning the reel 7 to prevent the reel 7 from becoming unstable due to friction or movement; after the winding is completed, the pushing assembly 8 moves the reel 7 from the winding assembly 6 to the grouping assembly 10; the grouping assembly 10 will receive the alarm signal from the control cabinet 2 and judge whether it is necessary to re-inspect the reel 7 according to the signal; according to the data collected by the control cabinet 2, the grouping assembly 10 will automatically separate the re-inspected edge banding strip reels from the qualified reels according to different edge banding strip quality classifications to ensure that the unqualified reels 7 are screened out in time;

[0081] Step 3: Through the conveying assembly 9, supplement the qualified reel 7 to the working position of the winding assembly 6. The pushing assembly 8 will assist in accurately placing the supplemented reel 7 on the winding assembly 6 to ensure that the next edge banding strip winding work can proceed smoothly.

[0082] Secondly, when in multiple operations, the edge banding strip fails to meet the width or other specification requirements, the control cabinet 2 will automatically activate the buzzer alarm for processing. If the edge banding strip experiences a long-term jam (exceeding 30 seconds), the acceleration wheel 3 and the pressure wheel assembly 4 will automatically stop working and wait for manual processing before restarting.

[0083] In the case of a short-term jam (not exceeding 30 seconds), the control cabinet 2 will record and analyze the data to judge whether there are potential quality problems to help the staff conduct further inspections and adjustments.

[0084] The above shows and describes the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope claimed by the present invention. The scope claimed by the present invention is defined by the appended claims and their equivalents.

Claims

1. A device for detecting edge banding specifications, characterized in that: include, The housing (1) is horizontally divided into an upper carrier (11) and a lower carrier (12); A control cabinet (2) is arranged on the top of the upper carrier (11); The acceleration wheel (3) is arranged at the bottom of the inner cavity of the upper carrier (11) and rotates at different speeds through a servo motor; A pressure wheel assembly (4) is arranged on the upper carrier (11) and can change the linear distance between the pressure wheel assembly (4) and the acceleration wheel (3) by adjustment; A width detection component (5) is disposed on the upper carrier (11) and is used to detect the thickness of the edge banding strip; A winding assembly (6) is disposed in the lower carrier (12) and is used to drive the winding shaft (7) to wind up the edge banding strip; A pushing component (8) is located at the top of the winding component (6) and is arranged in the lower carrier (12) for pushing the winding shaft (7) to move; A conveying assembly (9), arranged on the lower carrier (12), and used for conveying the reel (7); The grouping component (10) is located on a side of the conveying component (9) away from the pushing component (8) and is arranged in the lower carrier (12) for receiving the reel (7) dropped by the movement of the pushing component (8).

2. The edge banding specification detection device according to claim 1, characterized in that: The pressure wheel assembly (4) comprises a cylinder (41), a connecting shaft (42) and a heavy pressure wheel (43); There are two cylinders (41) symmetrically arranged on the housing (1); There are two connecting shafts (42) disposed at the bottoms of the two cylinders (41); The two ends of the heavy pressure wheel (43) are connected to two connecting shafts (42).

3. The edge banding specification detection device according to claim 1, characterized in that: The winding assembly (6) comprises a driver (61), a positioning shaft (62) and a driving rod (63); The driver (61) is arranged in the lower carrier (12); The locking shaft (62) is connected to the driver (61); The driving rod (63) is fixedly connected to a side of the locking shaft (62) away from the driver (61).

4. The edge banding specification detection device according to claim 1, characterized in that: One end of the driving reel (7) extends outwardly to form a cone, and the surface of the cone is provided with teeth, and the teeth are meshed with the inner cavity of the end of the positioning shaft (62) away from the driver (61).

5. The edge banding specification detection device according to claim 1, characterized in that: The pushing assembly (8) comprises a linear slide rail (81) and a telescopic rod (82); The linear slide rail (81) is arranged on the inner top wall of the lower carrier (12); The telescopic rod (82) is arranged on a slide block in the linear slide rail (81).

6. The edge banding specification detection device according to claim 1, characterized in that: The conveying assembly (9) comprises a conveying channel (91), a first shielding rod (92) and a second shielding rod (93); The conveying channel (91) is arranged in the lower carrier (12) at a side of the driving rod (63) away from the locking shaft (62); The first shielding rod (92) and the second shielding rod (93) are arranged equidistantly on the conveying channel (91).

7. The edge banding specification detection device according to claim 1, characterized in that: The grouping assembly (10) comprises a ladder-shaped slide (101), a driving member (102) and a shielding plate (103); The trapezoidal slide (101) has two exits; There are two driving members (102), both of which are arranged on the top of the trapezoidal slide (101); There are two shielding plates (103), and the two shielding plates (103) are arranged corresponding to the two groups of driving components (102).

8. The edge banding specification detection device according to claim 6 or 7, characterized in that: An inlet is provided at the upper end of one side surface of the trapezoidal slide (101), and the inlet is connected to one end of the conveying channel (91) and is flush with the bottom of the conveying channel (91).

9. The edge banding specification detection device according to claim 7, characterized in that: The driving member (102) comprises a driving motor (1021) and a driving shaft (1022); The driving motor (1021) is installed on the trapezoidal slide (101); The driving shaft (1022) is connected to the output end of the driving motor (1021), wherein the surface of the driving shaft (1022) is meshed with the top of the shielding plate (103).

10. A detection method using the edge banding specification detection device according to any one of claims 1 to 9, characterized in that: The following steps are involved: Step 1: The width of the edge banding strip is detected by the width detection component (5), and the control cabinet (2) receives the detection signal and controls the rotation speed of the acceleration wheel (3), thereby pulling and changing the width of the edge banding strip; when the rotation speed of the acceleration wheel (3) does not reach the required speed, the control cabinet (2) controls to send out an alarm signal; and because the required width of the edge banding strip is different, the spacing from the acceleration wheel (3) is changed by adjusting the pressure wheel component (4); In step 2, the edge banding strip processed in step 1 is manually assisted to be rolled up through the reel (7) on the reeling component (6), and the reel (7) is positioned by the pushing component (8) during the rolling process to prevent the reel (7) from moving; after the rolling is completed, the reel (7) is moved to the grouping component (10) by the pushing component (8), and the direction of the grouping component (10) to transport the reel (7) outward is controlled by the alarm signal collected by the control cabinet (2), so as to classify the reels (7) with edge banding strips that are to be re-inspected and those that are not to be re-inspected. Step three, replenishing the conveying reel (7) inwardly through the conveying component (9), and setting the replenished reel (7) on the winding component (6) again through the pushing component (8).