A device for measuring the thickness of waterproof coiled materials

By designing a waterproof coil thickness measurement device, the complicated processing steps before inspection are solved, and fast and accurate coil sample preparation is achieved, and the detection efficiency and accuracy are improved.

CN119469029BActive Publication Date: 2025-06-17ALPHA NEW MATERIALS JIANGSU CO LTD +1
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Patent Information

Application Number
CN202411583394.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-07
Publication Date
2025-06-17
Estimated Expiration
2044-11-07

AI Technical Summary

Technical Problem

In the prior art, the processing steps before the detection of waterproof coils are complicated and difficult to complete in the detection room, which affects measurement efficiency and accuracy.

Method used

A waterproof coil thickness measurement device is designed, including a processing table, a cutting module, a cleaning and flattening module and a semiconductor refrigeration sheet. It can complete the cutting, cleaning, flattening and temperature control of the coil on the processing table to ensure that the samples comply with national standards.

Benefits of technology

Through this device, coil samples can be prepared quickly and accurately, measuring errors can be reduced, and detection efficiency and accuracy can be improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to a thickness measuring device for waterproof coiled materials, which comprises a processing table. One end of the processing table is hinged with a cutting module arranged oppositely up and down. A cleaning and flattening module is arranged on the processing table near the cutting module. A semiconductor refrigerating sheet is arranged in the area of the processing table near the cleaning and flattening module. A sliding measuring rod is arranged at the end of the processing table far from the cutting module. The present invention realizes top-width cutting through the cutting module, can remove and flatten the particulate matters on the surface of the waterproof coiled material through the cleaning and flattening module, then controls the temperature of the coiled material through the semiconductor refrigerating sheet, and finally measures the thickness through the sliding measuring rod.
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Description

Technical Field

[0001] The present invention belongs to the technical field of coil measurement, and specifically refers to a waterproof coil thickness measuring device. Background Art

[0002] SBS asphalt waterproof coil is a waterproof material with excellent performance, which uses styrene-butadiene-styrene rubber modified asphalt as the coating, fiberglass felt, polyester felt, or fiberglass-reinforced polyester felt as the base, and is covered with release materials on both sides. It has the advantages of heat resistance, cold resistance, corrosion resistance, high tensile strength, and strong tear resistance, and is widely used in industrial and civil buildings. Among them, there are certain differences in the release materials according to different working conditions. Commonly used release materials include polyethylene film, fine sand, mineral flakes (granules), aluminum foil, copper foil, etc.

[0003] When the waterproof coil leaves the factory, it needs to meet certain thickness standards. The thickness measurement of the waterproof coil needs to be carried out according to the national standards GB18242-2008 "Elastomer Modified Asphalt Waterproof Coils" and GB / T328.4-2007 "Test Methods for Building Coils". According to the provisions of Article 6, Paragraph 3 of GB18242-2008 and Article 4, Paragraph 3 of GB / T328.4-2007, the following conditions need to be met during measurement:

[0004] 1. The waterproof coil needs to be cut into a certain length and width;

[0005] 2. During detection, it is necessary to ensure the flatness of the waterproof coil, and a pressure of 20 kPa can be applied if necessary;

[0006] 3. Detection can usually be carried out at room temperature, and baking or cooling can be carried out if necessary;

[0007] 4. For waterproof coils with fine sand surface and mineral granules, it is necessary to remove the surface particles before measuring the coil thickness.

[0008] The above-mentioned pretreatment steps before coil detection are difficult to complete in the detection room. The pretreatment steps before detection are relatively complicated and need to be improved. Summary of the Invention

[0009] In view of the above situation, in order to overcome the defects of the prior art, the present invention provides a waterproof coil thickness measuring device, which solves at least part of the above problems.

[0010] The technical solution adopted by the present invention is as follows: A waterproof coil thickness measuring device proposed by the present invention includes a processing table. The cutting, cleaning, flattening, and temperature control of the waterproof coil are all completed on the processing table to ensure that the sample form meets the national standards during thickness measurement;

[0011] Further, one end of the processing table is hinged with a cutting module arranged vertically up and down. The cutting module is used to cut the waterproof coiled material so that the width of the waterproof coiled material sample is consistent with the requirements of the national standard, and the length of the sample can be controlled according to the scale on the processing table;

[0012] Further, a cleaning and flattening module is arranged at a position on the processing table close to the cutting module. The cleaning and flattening module is used to process the surface of the waterproof coiled material, so that the particles on the surface of the waterproof coiled material fall off, and can apply a certain pressure to the waterproof coiled material, so that the surface of the waterproof coiled material changes from a wavy shape to a flat state that meets the detection requirements, so as to reduce the measurement error;

[0013] Further, a semiconductor refrigeration sheet is arranged in the area on the processing table close to the cleaning and flattening module. The semiconductor refrigeration sheets are arranged in pairs on the upper and lower sides of the upper wall of the processing table, and the surface temperature of the waterproof coiled material can be controlled when necessary;

[0014] Further, a sliding measuring rod is arranged at one end of the processing table away from the cutting module. The sliding measuring rod can slide along the side wall of the processing table to any position of the waterproof coiled material, and then cooperate with the thickness measuring head slidably arranged on the sliding measuring rod, and the thickness of different positions of the coiled material can be measured.

[0015] Further, double-layer racks are symmetrically arranged on the side wall at one end of the processing table. A feeding groove is arranged on the upper wall of the processing table close to the double-layer rack, a vibration groove is arranged on the upper wall of the processing table close to the feeding groove, a cleaning groove is arranged on the upper wall of the processing table close to the vibration groove, and a pressing groove is arranged on the upper wall of the processing table close to the cleaning groove;

[0016] Further, a heating plate is arranged on one side of the upper wall of the processing table close to the sliding measuring rod. An upper heating groove is arranged in the heating plate, and a lower heating groove is arranged in the area of the processing table below the heating plate;

[0017] Further, the two groups of semiconductor refrigeration sheets are respectively installed in the upper heating groove and the lower heating groove. The opposite sides of the two groups of semiconductor refrigeration sheets can be heated or cooled simultaneously, so as to heat or cool the upper and lower walls of the waterproof coiled material simultaneously. Whether the semiconductor refrigeration sheet cools or heats is related to the connection direction of the power supply at its two ends.

[0018] Further, the cleaning and flattening module includes side plates, and the side plates are symmetrically fixed in the area between the heating plate and the double-layer rack on both sides of the processing table;

[0019] A feeding shaft is rotatably arranged on the side plate, and a feeding shaft is also arranged in the feeding groove. The two feeding shafts can drive the waterproof coiled material to move;

[0020] Further, a camshaft is rotatably provided on the side plate near the feed shaft, and a camshaft is also provided in the vibration groove. When the two camshafts rotate, they can extrude the coil material and make it vibrate, so that the particles on the coil material can be separated for subsequent detection.

[0021] Further, a rotary brush is rotatably provided on the side plate near the camshaft, and a rotary brush is also provided in the cleaning groove. The two rotary brushes can brush off the residual particles on the surface of the coil material.

[0022] Further, an air blowing head is fixed on one side of the cleaning groove. The air blowing heads are arranged in pairs, and the two groups of air blowing heads blow towards the upper and lower sides of the coil material respectively. The upper air blowing head is fixed between the two groups of side plates.

[0023] Further, a flattening shaft is slidably provided on the side plate near the rotary brush, and a flattening shaft is also rotatably provided in the pressing groove. The distance between the flattening shaft sliding on the side plate and the flattening shaft in the pressing groove is adjustable. When the distance between them changes, the pressure on the coil material will also change, so as to flatten the coil material.

[0024] Further, a chain surrounding the feed shaft, camshaft, rotary brush and flattening shaft is provided on the side plate. A feed motor penetrating the double-layer frame is provided on the feed shaft. When the feed motor rotates, the feed shaft, camshaft, rotary brush and flattening shaft are driven to rotate synchronously through the chain.

[0025] Further, in order to adjust the distance between the flattening shafts to change the pressure on the waterproof coil material, an L-shaped lifting plate is slidably provided on the side plate. The flattening shaft located above the processing table is rotatably arranged in the L-shaped lifting plate. A cylinder is fixed at the upper end of the side plate. The extending end of the cylinder is arranged on the L-shaped lifting plate. When the cylinder extends and retracts, it can adjust the height of the L-shaped lifting plate, so as to adjust the distance between the flattening shafts on both sides of the coil material and change the pressure on the coil material.

[0026] Further, when the distance between the flattening shafts changes, in order to keep the chain in a tensioned state, a tensioning plate slides horizontally on the side plate. A roller is provided on the side of the tensioning plate close to the chain. The chain is wound around the roller. A first spring is connected between the tensioning plate and the side plate. The first spring always pulls the tensioning plate away from the flattening shaft, so as to keep the chain in a tensioned state all the time.

[0027] Further, the cutting module includes an angle-adjusting rod. The angle-adjusting rods rotate in pairs on the double-layer frames on both side walls of the processing table. A second spring is connected between the angle-adjusting rod and the double-layer frame. Preferably, a waist-shaped hole is provided in the middle of the angle-adjusting rod, and a guide post penetrating the waist-shaped hole is provided in the middle of the second spring. The guide post can prevent the second spring from deflecting, and the second spring always pulls the angle-adjusting rod towards the upper wall of the processing table.

[0028] Further, a cutting motor with an output shaft passing through the angle-adjusting rod is provided on the double-layer rack. The output shaft of the cutting motor passes through the angle-adjusting rod, and the cutting motor is fixed on the side wall of the double-layer rack. When the cutting motor rotates, it will not drive the angle-adjusting rod to rotate. One end of the angle-adjusting rod away from the cutting motor is rotatably provided with a rotating shaft, and a belt is wound around the rotating shaft and the output shaft of the cutting motor. When the cutting motor rotates, the rotating shaft is driven to rotate through the belt;

[0029] Further, a cutting wheel is fixed on the rotating shaft, and positioning holes are arranged in an array on the rotating shaft. The cutting wheel is fixed to the rotating shaft through the positioning holes, and the position of the cutting wheel is determined by the positioning holes. The distance between the two cutting wheels is the width of the cut coil.

[0030] The beneficial effects achieved by the present invention with the above structure are as follows:

[0031] 1. The cutting module can adjust the cutting width as needed, and the adjustment method is flexible, simple and fast, suitable for use in the detection room;

[0032] 2. The cleaning and flattening module can loosen the particles on the surface through the vibration extrusion of the camshaft, and then separate them from the coil through the rolling brush and the air blowing head, so as to remove the particles on the surface of the waterproof coil and easily realize the preparation of the coil detection sample;

[0033] 3. The air cylinder can apply a fixed pressure to the coil, and the tester can flatten the coil as needed, while the semiconductor refrigeration sheet can heat up or cool down the surface of the coil, and the tester can use it flexibly according to the room temperature. BRIEF DESCRIPTION OF THE DRAWINGS

[0034] Figure 1 It is a schematic structural diagram of an embodiment of the present invention;

[0035] Figure 2 It is a broken view of a cross-sectional view of the processing table;

[0036] Figure 3 It is a schematic structural diagram of the processing table;

[0037] Figure 4 It is Figure 1 a partial cross-sectional view of;

[0038] Figure 5 It is a schematic structural diagram of the cleaning and flattening module;

[0039] Figure 6 It is Figure 4 an enlarged view of part I in;

[0040] Figure 7 It is Figure 5 an enlarged view of part II in;

[0041] Figure 8Schematic diagram of the positional relationship between the side plate, the L-shaped lifting plate and the tensioning plate;

[0042] Figure 9 Is a broken view of the structural schematic diagram of the cutting module.

[0043] Among them, 1. Processing table, 2. Cutting module, 3. Cleaning and flattening module, 4. Semiconductor refrigeration sheet, 5. Sliding measuring rod, 6. Double-layer rack, 7. Feeding groove, 8. Vibration groove, 9. Cleaning groove, 10. Pressing groove, 11. Heating plate, 12. Upper heating groove, 13. Lower heating groove, 14. Thickness measuring head, 15. Side plate, 16. Feeding motor, 17. Chain, 18. Feeding shaft, 19. Camshaft, 20. Rotary brush, 21. Flattening shaft, 22. Air blowing head, 23. Cylinder, 24. L-shaped lifting plate, 25. Tensioning plate, 26. Roller, 27. Spring 1, 28. Angle adjusting rod, 29. Cutting motor, 30. Guide post, 31. Spring 2, 32. Slot hole, 33. Belt, 34. Rotating shaft, 35. Positioning hole, 36. Cutting wheel.

[0044] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation to the present invention. Detailed implementation manners

[0045] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments; based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.

[0046] In the description of the present invention, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing 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 cannot be understood as a limitation to the present invention.

[0047] As Figure 1 shown, a waterproof coiled material thickness measuring device proposed by the present invention includes a processing table 1. The cutting, cleaning, flattening and temperature control of the waterproof coiled material are all completed on the processing table 1 to make the type of the sample meet the national standard during thickness measurement;

[0048] One end of the processing table 1 is hinged with a cutting module 2 arranged up and down relatively. The cutting module 2 is used to cut the waterproof coiled material so that the width of the waterproof coiled material sample is consistent with the requirements of the national standard, and the length of the sample can be controlled according to the scale on the processing table 1;

[0049] A cleaning and flattening module 3 is arranged on the processing table 1 near the cutting module 2. The cleaning and flattening module 3 is used to process the surface of the waterproof coiled material, so that the particles on the surface of the waterproof coiled material fall off, and can apply a certain pressure to the waterproof coiled material to change the surface of the waterproof coiled material from a wavy shape to a flat state that meets the detection requirements, so as to reduce the measurement error;

[0050] A semiconductor refrigerating sheet 4 is arranged in the area on the processing table 1 near the cleaning and flattening module 3. The semiconductor refrigerating sheets 4 are arranged in pairs on the upper and lower sides of the upper wall of the processing table 1, and the surface temperature of the waterproof coiled material can be controlled when necessary;

[0051] A sliding measuring rod 5 is arranged at one end of the processing table 1 far from the cutting module 2. The sliding measuring rod 5 can slide along the side wall of the processing table 1 to any position of the waterproof coiled material, as Figure 1 and Figure 4 shown. Then, in cooperation with the thickness measuring head 14 slidably arranged on the sliding measuring rod 5, the measurement can be carried out at different positions of the coiled material.

[0052] As Figure 2 and Figure 3 shown, double-layer racks 6 are symmetrically arranged on the side wall at one end of the processing table 1. A feeding groove 7 is arranged on the upper wall of the processing table 1 near the double-layer rack 6. A vibration groove 8 is arranged on the upper wall of the processing table 1 near the feeding groove 7. A cleaning groove 9 is arranged on the upper wall of the processing table 1 near the vibration groove 8. A pressurizing groove 10 is arranged on the upper wall of the processing table 1 near the cleaning groove 9;

[0053] A heating plate 11 is arranged on one side of the upper wall of the processing table 1 near the sliding measuring rod 5. An upper heating groove 12 is arranged in the heating plate 11. A lower heating groove 13 is arranged in the area of the processing table 1 below the heating plate 11; Refer to Figure 4 shown, two groups of semiconductor refrigerating sheets 4 are respectively installed in the upper heating groove 12 and the lower heating groove 13. The opposite sides of the two groups of semiconductor refrigerating sheets 4 can be heated or cooled simultaneously, so as to heat or cool the upper and lower walls of the waterproof coiled material simultaneously. Whether the semiconductor refrigerating sheet 4 cools or heats is related to the connection direction of the power supply at both ends of it.

[0054] As Figure 4 and Figure 5As shown in the figure, the cleaning and flattening module 3 includes side plates 15, which are symmetrically fixed on both sides of the processing table 1 in the area between the heating plate 11 and the double-layer rack 6; a feed shaft 18 is rotatably provided on the side plates 15, and a feed shaft 18 is also provided in the feed groove 7. The two feed shafts 18 can drive the waterproof coiled material to move; a camshaft 19 is rotatably provided on the side plates 15 near the feed shaft 18, and a camshaft 19 is also provided in the vibration groove 8. When the two camshafts 19 rotate, they can extrude the coiled material and make it vibrate, so that the particles on the coiled material fall off for subsequent detection; a rolling brush 20 is rotatably provided on the side plates 15 near the camshaft 19, and a rolling brush 20 is also provided in the cleaning groove 9. The two rolling brushes 20 can brush off the residual particles on the surface of the coiled material;

[0055] Reference Figure 3 and Figure 6 As shown in the figure, an air blowing head 22 is fixed on one side of the cleaning groove 9. The air blowing heads 22 are arranged in pairs, and the two groups of air blowing heads 22 blow towards the upper and lower sides of the coiled material respectively. The upper air blowing head 22 is fixed between the two groups of side plates 15;

[0056] As Figure 5 shown in the figure, a flattening shaft 21 is slidably provided on the side plates 15 near the rolling brush 20, and a flattening shaft 21 is also rotatably provided in the pressing groove 10. The distance between the flattening shaft 21 sliding on the side plates 15 and the flattening shaft 21 in the pressing groove 10 is adjustable. When the distance between them changes, the pressure on the coiled material will also change, so as to flatten the coiled material;

[0057] A chain 17 surrounding the feed shaft 18, camshaft 19, rolling brush 20 and flattening shaft 21 is provided on the side plates 15. Reference Figure 1 and Figure 5 shown in the figure, a feed motor 16 penetrating the double-layer rack 6 is provided on the feed shaft 18. When the feed motor 16 rotates, it drives the feed shaft 18, camshaft 19, rolling brush 20 and flattening shaft 21 to rotate synchronously through the chain 17.

[0058] As Figure 5 , Figure 7 and Figure 8 shown in the figure, in order to adjust the distance between the flattening shafts 21 to change the pressure on the waterproof coiled material, an L-shaped lifting plate 24 is slidably provided on the side plates 15. The flattening shaft 21 located above the processing table 1 is rotatably arranged in the L-shaped lifting plate 24. A cylinder 23 is fixed at the upper end of the side plates 15, and the extending end of the cylinder 23 is arranged on the L-shaped lifting plate 24. When the cylinder 23 extends and retracts, it can adjust the height of the L-shaped lifting plate 24, so as to adjust the distance between the flattening shafts 21 on both sides of the coiled material, and change the pressure on the coiled material;

[0059] When the distance between the flattening shafts 21 changes, in order to keep the chain 17 in a tensioned state, a tensioning plate 25 slides horizontally on the side plate 15. A roller 26 is provided on the side of the tensioning plate 25 close to the chain 17, and the chain 17 is wound around the roller 26. A first spring 27 is connected between the tensioning plate 25 and the side plate 15. The first spring 27 always pulls the tensioning plate 25 in a direction away from the flattening shaft 21, so that the chain 17 is always kept in a tensioned state.

[0060] As Figure 1 , Figure 3 , Figure 4 and Figure 9 shown, the cutting module 2 includes an angle-adjusting rod 28. The angle-adjusting rods 28 rotate in pairs on the double-layer racks 6 on both side walls of the processing table 1. A second spring 31 is connected between the angle-adjusting rod 28 and the double-layer rack 6. Preferably, a waist-shaped hole 32 is provided in the middle of the angle-adjusting rod 28, and a guide post 30 passing through the waist-shaped hole 32 is provided in the middle of the second spring 31. The guide post 30 can prevent the second spring 31 from deflecting, and the second spring 31 always pulls the angle-adjusting rod 28 in the direction of the upper wall of the processing table 1;

[0061] A cutting motor 29 with an output shaft passing through the angle-adjusting rod 28 is provided on the double-layer rack 6. The output shaft of the cutting motor 29 passes through the angle-adjusting rod 28. The cutting motor 29 is fixed on the side wall of the double-layer rack 6. When the cutting motor 29 rotates, it will not drive the angle-adjusting rod 28 to rotate. A rotating shaft 34 is rotatably provided at one end of the angle-adjusting rod 28 away from the cutting motor 29. A belt 33 is wound around the output shaft of the rotating shaft 34 and the cutting motor 29. When the cutting motor 29 rotates, the rotating shaft 34 is driven to rotate through the belt 33;

[0062] A cutting wheel 36 is fixed on the rotating shaft 34. Positioning holes 35 are arranged in an array on the rotating shaft 34. The cutting wheel 36 is fixed to the rotating shaft 34 through the positioning holes 35. The position of the cutting wheel 36 is determined by the positioning holes 35. The distance between the two cutting wheels 36 is the width of the cut coil.

[0063] Before the specific operation, confirm the cutting width of the coil according to the specifications of the coil to be measured, and move the cutting wheel 36 to the appropriate positioning hole 35 so that the distance between the two cutting wheels 36 matches the width to be cut.

[0064] Then pry the angle-adjusting rods 28 to both sides to open the angle-adjusting rods 28 on both sides against the resistance of the second spring 31. Then fill the waterproof coil into the cutting wheel 36, and then release the angle-adjusting rods 28. The angle-adjusting rods 28 on both sides are clamped towards the middle under the action of the second spring 31, so as to clamp and fix the coil in the middle of the cutting wheel 36.

[0065] Restart the cutting motor 29 and the feeding motor 16. The cutting motor 29 drives the rotation of the rotating shaft 34 through the belt 33, while the feeding shaft 18, the camshaft 19, the brush roller 20, and the flattening shaft 21 are driven to rotate by the chain 17. When the rotating shaft 34 rotates, it drives the cutting wheel 36 to rotate. While cutting the coiled material, the cutting wheel 36 also provides a certain frictional force to the coiled material. Under the action of the frictional force, the coiled material moves forward. When the coiled material moves to the feeding shaft 18, the feeding shaft 18 continues to drive the coiled material forward.

[0066] When the coiled material moves to the camshaft 19, the camshaft 19 rotates rapidly. While squeezing the coiled material, it also drives the coiled material to vibrate violently, and the particles on the surface of the coiled material fall off from the coiled material and are then stripped off by vibration.

[0067] The coiled material continues to move forward. When the coiled material moves to the brush roller 20, the brush roller 20 continuously brushes the upper and lower surfaces of the coiled material, further stripping the adhered particles on the surface of the coiled material. Then, in cooperation with the air blowing heads 22 on both sides, the particulate matter is thoroughly cleaned, thereby reducing the impact of particulate matter on subsequent measurements.

[0068] When the coiled material is cleaned, if necessary, the coiled material is kept flat to improve the test results. At this time, the extension amount of the cylinder 23 can be adjusted. The longer the cylinder 23 extends, the greater the pressure exerted by the flattening shaft 21 on the coiled material. The pressure adjustment amount is implemented according to the actual situation.

[0069] When the cylinder 23 extends, the telescopic end of the cylinder 23 drives the L-shaped lifting plate 24 to move downward, and the flattening shaft 21 on the L-shaped lifting plate 24 moves downward synchronously. The distance between the two flattening shafts 21 decreases. When the coiled material passes between the two groups of flattening shafts 21, it will be flattened. When the L-shaped lifting plate 24 descends, the tensioning plate 25 moves away from the flattening shaft 21 under the action of the first spring 27 to ensure the tension of the chain 17, so as to make the transmission system of the cleaning and flattening module 3 operate normally.

[0070] After the coiled material is flattened, it is judged whether temperature control treatment is required for the surface of the coiled material according to the on-site detection ambient temperature. The national standard requires that the detection temperature of the coiled material should be around 23 degrees. If cooling treatment is required, the semiconductor refrigeration sheet 4 is started. The semiconductor refrigeration sheets 4 on both sides cool the upper and lower walls of the coiled material at the same time. If heating treatment is required, the semiconductor refrigeration sheet 4 is connected reversely, and the semiconductor refrigeration sheets 4 on both sides heat the upper and lower walls of the coiled material at the same time.

[0071] When the temperature of the coiled material reaches the appropriate requirement, the coiled material continues to move to the detection area of the sliding measuring rod 5. Move the sliding measuring rod 5 left and right, then move the thickness measuring head 14 back and forth, and turn the thickness measuring head 14 to measure the thickness of the coiled material.

[0072] It should be noted that, in this document, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variation thereof is intended to cover non-exclusive inclusion, such that a process, method, article or device comprising a series of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article or device.

[0073] Although the embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention.

[0074] The above description of the present invention and its embodiments is not restrictive. What is shown in the drawings is only one of the embodiments of the present invention, and the actual structure is not limited thereto. In short, if those of ordinary skill in the art are inspired by it and design similar structural modes and embodiments without creative efforts without departing from the purpose of the present invention, they shall fall within the protection scope of the present invention.

Claims

1. A waterproof coiled material thickness measuring device, characterized in that: include: A processing table (1), wherein a vibration groove (8) is provided on the upper wall of the processing table (1), a cleaning groove (9) is provided on the upper wall of the processing table (1) near the vibration groove (8), and a pressurizing groove (10) is provided on the upper wall of the processing table (1) near the cleaning groove (9); A cutting module (2) is hingedly mounted on one end of the processing table (1); A cleaning and flattening module (3) is arranged on the processing table (1) at a position close to the cutting module (2), the cleaning and flattening module (3) comprises a side plate (15), the side plate (15) is symmetrically fixed on both sides of the processing table (1), a cam shaft (19) is rotatably provided on the side plate (15), the cam shaft (19) is also provided in the vibration groove (8), a roller brush (20) is rotatably provided on the side plate (15) near the cam shaft (19), the cleaning groove (9) is also provided with a roller brush (20), an air blowing head (22) is fixed on one side of the cleaning groove (9), the air blowing heads (22) are arranged in pairs, a flattening shaft (21) is slidably provided on the side plate (15) near the roller brush (20), and the flattening shaft (21) is also rotatably provided in the pressure groove (10); A semiconductor cooling sheet (4) for adjusting the surface temperature of the coiled material is arranged on the processing platform (1) in an area close to the cleaning and flattening module (3), and the semiconductor cooling sheets (4) are arranged in pairs on the upper and lower sides of the upper wall of the processing platform (1); And a sliding measuring rod (5) for measuring thickness, which is arranged at one end of the processing table (1) away from the cutting module (2), and a thickness measuring head (14) is slidably arranged on the sliding measuring rod (5).

2. The waterproof coiled material thickness measuring device according to claim 1, characterized in that: A double-layer frame (6) is symmetrically arranged on the side wall at one end of the processing table (1), a feed groove (7) is arranged on the upper wall of the processing table (1) near the double-layer frame (6), and the vibration groove (8) is arranged near the feed groove (7).

3. The waterproof coiled material thickness measuring device according to claim 1, characterized in that: A heating plate (11) is provided on one side of the upper wall of the processing table (1) close to the sliding measuring rod (5), an upper heating groove (12) is provided in the heating plate (11), a lower heating groove (13) is provided in the area of ​​the processing table (1) below the heating plate (11), and two groups of semiconductor cooling sheets (4) are respectively installed in the upper heating groove (12) and the lower heating groove (13).

4. The waterproof coiled material thickness measuring device according to claim 2, characterized in that: A feed shaft (18) is rotatably provided on the side plate (15), and a feed shaft (18) is also provided in the feed groove (7). The feed shaft (18) is arranged close to the cam shaft (19).

5. The waterproof coiled material thickness measuring device according to claim 4, characterized in that: The side plate (15) is provided with a chain (17) surrounding a feed shaft (18), a cam shaft (19), a roller brush (20) and a flattening shaft (21); the feed shaft (18) is provided with a feed motor (16) penetrating the double-layer frame (6).

6. The waterproof coiled material thickness measuring device according to claim 1, characterized in that: An L-shaped lifting plate (24) is slidably provided on the side plate (15), the flattening shaft (21) located above the processing table (1) is rotatably provided in the L-shaped lifting plate (24), a cylinder (23) is fixed to the upper end of the side plate (15), and the protruding end of the cylinder (23) is provided on the L-shaped lifting plate (24).

7. The waterproof coiled material thickness measuring device according to claim 5, characterized in that: A tensioning plate (25) is horizontally slidably disposed on the side plate (15); a roller (26) is disposed on a side of the tensioning plate (25) close to the chain (17); the chain (17) is wound around the roller (26); and a spring (27) is connected between the tensioning plate (25) and the side plate (15).

8. The waterproof coiled material thickness measuring device according to claim 2, characterized in that: The cutting module (2) comprises an angle adjustment rod (28), the angle adjustment rod (28) being rotatable in pairs on double-layer frames (6) on both side walls of the processing table (1), a second spring (31) being connected between the angle adjustment rod (28) and the double-layer frame (6), a waist hole (32) being provided in the middle of the angle adjustment rod (28), and a guide column (30) penetrating the waist hole (32) being provided in the middle of the second spring (31).

9. The waterproof coiled material thickness measuring device according to claim 8, characterized in that: The double-layer frame (6) is provided with a cutting motor (29) whose output shaft passes through the angle adjustment rod (28); an end of the angle adjustment rod (28) away from the cutting motor (29) is rotatably provided with a rotating shaft (34); a belt (33) is wound around the rotating shaft (34) and the output shaft of the cutting motor (29).

10. The waterproof coiled material thickness measuring device according to claim 9, characterized in that: A cutting wheel (36) is fixed on the rotating shaft (34), positioning holes (35) are arranged in an array on the rotating shaft (34), and the cutting wheel (36) is fixed to the rotating shaft (34) via the positioning holes (35).

Citation Information

Patent Citations

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    CN219028471U

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    CN219690931U