Reed composite board deformation detection device and method

By designing a detection device including a detection platform and a detection auxiliary module, the problem of laser scanning method for detection after expansion and deformation of the reed composite sheet is solved, and large-area detection of the sheet is realized, and the comprehensiveness and accuracy of the detection results are improved.

CN120101683AInactive Publication Date: 2025-06-06NIELKODA (TIELING) HIGH-TECH MATERIALS CO LTD
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Patent Information

Application Number
CN202510483796.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-17
Publication Date
2025-06-06
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Reed composite sheets are prone to expansion and deformation due to environmental factors during long-term placement. The existing laser scanning method is not suitable for large-area testing, which reduces the comprehensiveness and accuracy of the detection results.

Method used

A detection device including a detection platform, a detection auxiliary module and a horizontal laser detector is designed. The detection auxiliary module can move on the surface of the composite sheet and detect the expansion point through components such as walking wheels, lifting detection columns and transmission slide columns, and trigger alarm indicator lights through airbags and receiving reactors to ensure that the laser can pass through multiple expansion points for large-area inspection.

Benefits of technology

This device can effectively prevent the laser from passing through multiple expansion points on the surface of the board, and is suitable for large-area inspection of the board, improving the comprehensiveness and accuracy of the detection results.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of plate detection, particularly relates to a reed composite plate deformation detection device and method, and aims to solve the problems that laser cannot penetrate through multiple expansion points on the surface of a plate and is not suitable for large-area detection of the plate due to the fact that multiple positions of the surface of the plate possibly deform after the plate expands and deforms. In order to reduce the comprehensiveness and accuracy of the detection result, the invention provides the following scheme that the device comprises a detection platform, a detection auxiliary module is arranged above the detection platform, the detection auxiliary module comprises a plurality of tool supporting columns, and the opposite sides of the two tool supporting columns located on the same side are connected with the same guide rail through bolts; and the interiors of the two guide rails are slidably connected with lead screw nut sliding seats. The reed composite board deformation detection device and method have the advantages that the situation that laser cannot penetrate through multiple expansion points on the surface of the board is avoided, the device and method are suitable for large-area detection of the board, and the comprehensiveness and accuracy of the detection result are improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of plate detection, and in particular to a device and method for detecting deformation of a reed composite plate. Background Art

[0002] Reed composite board is a man-made board made of reed as the main raw material, which is crushed, dried, polished, screened, and applied with formaldehyde-free MDI glue, and is made under high temperature and high pressure. The manufacture of reed composite board mainly uses reed stems. The wettability of the outer surface of reed stems is weaker than that of wood but better than that of crop straw, and the wettability of the inner surface is better than that of wood. Compared with ordinary wood-based panels, reed composite boards have the advantages of no formaldehyde, light color, fine material, no irritating odor, moisture-proof, and durable. Therefore, the use of advanced manufacturing technology to prepare green and environmentally friendly high-performance reed composite boards is a truly green and environmentally friendly building material on the market, which fully meets people's requirements for environmental protection and healthy life.

[0003] Reed composite boards are easily affected by environmental factors during long-term storage, causing the boards to expand and deform. Before using the boards, they need to be tested for deformation. Deformation detection includes testing the levelness of the boards. Existing detection methods generally use laser scanning to test the levelness of the boards. After the boards expand and deform, deformation may occur at multiple locations on the board surface, resulting in the laser being unable to pass through multiple expansion points on the board surface. This is not suitable for large-area detection of the boards, reducing the comprehensiveness and accuracy of the detection results. Summary of the invention

[0004] The present invention discloses a reed composite board deformation detection device and method, aiming to solve the technical problem in the background technology that after the board expands and deforms, deformation may occur at multiple locations on the board surface, resulting in the inability of laser to pass through the multiple expansion points on the board surface, making it unsuitable for large-area detection of the board, thereby reducing the comprehensiveness and accuracy of the detection results.

[0005] A reed composite board deformation detection device proposed in the present invention comprises a detection platform, an auxiliary detection module is arranged above the detection platform, and the auxiliary detection module comprises a plurality of tooling support columns, the opposite sides of two tooling support columns located on the same side are connected to the same guide rail by bolts, and the interiors of the two guide rails are slidably connected with screw nut slides, and one side of the two screw nut slides is fixedly connected with a tooling limit frame, the two tooling limit frames are fixedly connected with an electric drive rod on the side away from the detection platform, and the driving ends of the two electric drive rods are fixedly connected with the same lifting support plate, a horizontal laser detector is arranged above the detection platform, and a data monitoring station is arranged on one side of the detection platform.

[0006] In a preferred solution, two support plates are fixedly connected to one side of the two guide rails, and a circular hole is opened on one side of the multiple support plates, and the interiors of the two opposite circular holes are connected to the same screw rod through bearings, and one side of the two guide rails is connected to a screw motor through bolts, and the driving end of the screw motor is connected to one end of the screw rod through a coupling, and limited smooth holes are opened at equal distances on one side of the lifting support plate, and lifting detection columns are slidably connected to the interiors of the multiple limited smooth holes, and the multiple lifting detection columns are fixedly connected to one side of the lifting support plate with the same telescopic spring.

[0007] In a preferred solution, a plurality of the lifting and detection columns are fixedly connected to a mounting frame on one side facing the detection platform, and a plurality of the mounting frames are provided with two circular holes on both sides, the interiors of the two circular holes on the same mounting frame are connected to the same walking wheel through a bearing, one end of the plurality of walking wheels is fixedly connected to a touch reactor, tooling rods are equidistantly connected to both sides of the lifting and detection plate through bolts, one side of the two tooling rods on the same side are fixedly connected to the same supporting cross platform, a limiting slot is provided on one side of the plurality of supporting cross platforms, a transmission slide column is slidably connected to the interiors of the plurality of limiting slots, and one end of the transmission slide column is abutted against one end of the lifting and detection column.

[0008] In a preferred solution, one side of each of the plurality of transmission slides is fixedly connected with a measuring plate, each of the plurality of supporting horizontal platforms is provided with a limiting circular hole, the interiors of the plurality of limiting circular holes are slidably connected with a limiting circular rod, one end of the limiting circular rod is fixedly connected to one side of the transmission slide, and two return springs are fixedly connected to the opposite side of the transmission slide and the supporting horizontal platform, and the return spring is wrapped around the outside of the limiting circular rod.

[0009] In a preferred solution, a plurality of the supporting platforms are fixedly connected to a tooling circular frame on one side away from the lifting support plate, and a mounting opening is opened on one side of the plurality of tooling circular frames, and an airbag is fixedly connected inside the plurality of mounting openings, and the extrusion end of the airbag is abutted against one end of the transmission slide column, and a receiving reactor is fixedly connected to one side of the plurality of tooling circular frames, and the receiving end of the receiving reactor faces the air outlet end of the airbag, and an alarm indicator light and a monitor are respectively provided on one side of the plurality of supporting platforms.

[0010] By providing an auxiliary detection module, when the composite plate is leveled, when the composite plate enters the detection platform, the horizontal laser detector located above the detection platform detects the level of the composite plate. When the composite plate stops moving, the electric drive rod is started, and the electric drive rod drives the walking wheel under the lifting support plate to contact the surface of the composite plate, and then the screw motor is started, and the screw motor drives the screw to rotate, so that the screw nut slide seat drives the walking wheel to move on the surface of the composite plate. When the walking wheel moves to the expansion point of the surface of the composite plate, the corresponding walking wheel drives the lifting detection column to move upward, and the transmission sliding column is driven to move upward at the same time through the lifting detection column. One end of the column squeezes the airbag so that the air outlet end of the airbag inflates the receiving reactor, which causes the receiving reactor to drive the corresponding alarm indicator light to flash, and then the staff records the expansion point. The transmission slide column rises while the measuring plate moves. At this time, the expansion data of the expansion point is photographed by the monitor and then transmitted to the data monitoring station. After the recording is completed, the walking wheel continues to move and re-contacts the surface of the composite plate through the elasticity of the telescopic spring, and continues to detect the remaining expansion points on the surface of the composite plate. By detecting the auxiliary module, it is avoided that the laser cannot pass through multiple expansion points on the surface of the plate. It is suitable for large-area detection of the plate and improves the comprehensiveness and accuracy of the detection results.

[0011] In a preferred scheme, one side of the detection platform is fixedly connected to a feeding platform, and a side detection module is arranged on the feeding platform, the side detection module includes a driving motor, one side of the feeding platform is connected to two limit rails by bolts, the interiors of the two limit rails are slidably connected to reciprocating slides, one side of the two reciprocating slides are connected to mounting support rods by bolts, one side of the two mounting support rods are fixedly connected to side cross plates, smooth openings are opened on the two side cross plates at equal distances, smooth rods are slidably connected to the interiors of the multiple smooth openings, the smooth rods are fixedly connected to the same reset spring 2 on the opposite side of the side cross plate, and one end of the multiple smooth rods is fixedly connected to a pressure sensor.

[0012] In a preferred solution, the two reciprocating slides are connected to a linkage gear rod on one side away from the mounting support rod by bolts, the driving end of the driving motor is fixedly connected to an adjusting gear, and the adjusting gear is meshed with the linkage gear rod.

[0013] By providing an edge detection module, the composite sheet is transmitted to the top of the detection platform through the feeding platform. When the composite sheet enters the top of the feeding platform, the driving motor is started at this time, and the adjusting gear is driven by the driving motor to rotate. At this time, the adjusting gear drives the linkage gear rod to make the reciprocating slide move towards each other inside the two limit tracks. First, the composite sheet is driven to the middle position of the feeding platform through multiple smooth rods on the side cross plate on the reciprocating slide, and then the driving motor is started to reset the reciprocating slide, and the driving motor is started again, so that the driving motor drives the reciprocating slides on both sides to move towards each other again. At this time, the pressure sensor located on the smooth rod contacts the side of the composite sheet. When the side of the composite sheet is deformed, the pressures displayed by multiple pressure sensors are inconsistent, thereby realizing a rapid judgment of the deformation condition of the side of the composite sheet.

[0014] In a preferred solution, the same cleaning module is provided on the opposite side of the two tooling support columns, and the cleaning module includes a support panel, a side of the support panel away from the detection platform is fixedly connected to an electric telescopic rod, one side of the support panel is provided with two limiting circular holes, the interiors of the two limiting circular holes are slidably connected to guide cylinders, the two guide cylinders are fixedly connected to the same cleaning brush plate on the side facing the detection platform, and the driving end of the electric telescopic rod is fixedly connected to one side of the cleaning brush plate.

[0015] In a preferred solution, a hollow suction plate is fixedly connected to one side of the cleaning brush plate, and suction ports are equidistantly provided on the side of the hollow suction plate facing the detection platform, a plurality of suction ports are fixedly connected to the insides of the hollow convex suction plates, a conveying pipe is fixedly connected to one side of the hollow suction plate, a dust collecting box is provided on one side of the detection platform, a dust pump is fixedly connected to one side of the dust collecting box, the dust suction end of the dust pump is connected to one end of the conveying pipe through a metal telescopic tube, and a unloading platform is provided on one side of the detection platform.

[0016] By providing a cleaning module, when the composite plate enters above the detection platform, the electric telescopic rod is started, and the cleaning brush plate is driven down by the electric telescopic rod, so that the cleaning brush plate contacts the surface of the composite plate. When the composite plate moves, the cleaning brush plate is used to clean the composite plate to avoid the influence of attached impurities on the accuracy of the composite plate horizontality detection result. While cleaning, the dust suction pump is started to absorb impurities through the multiple hollow convex suction plates on the hollow suction plate, and then discharged into the dust collecting box for unified collection.

[0017] A method for using a reed composite board deformation detection device, using the reed composite board deformation detection device as described above, comprises the following steps: Step 1: When the composite plate is tested for levelness, when the composite plate enters the testing platform, the horizontal laser detector located above the testing platform tests the levelness of the composite plate; Step 2: When the composite plate stops moving, the electric drive rod is started, and the electric drive rod drives the walking wheel under the lifting support plate to contact the surface of the composite plate; Step 3, then start the screw motor, and drive the screw to rotate through the screw motor, so that the screw nut slide seat drives the walking wheel to move on the surface of the composite plate. When the walking wheel moves to the expansion point on the surface of the composite plate, the corresponding walking wheel drives the lifting detection column to move upward, and drives the transmission slide column to move upward at the same time through the lifting detection column. At this time, one end of the transmission slide column squeezes the airbag, so that the air outlet end of the airbag inflates the receiving reactor, so that the receiving reactor drives the relative alarm indicator light to flash, and then the staff records the expansion point, and the measuring plate moves with the transmission slide column as it rises. At this time, the expansion data of the expansion point is photographed by the monitor, and then uniformly transmitted to the data monitoring station; Step 4: After the recording is completed, the travel wheel continues to move and contacts the surface of the composite plate again through the elasticity of the telescopic spring, and continues to detect the remaining expansion points on the surface of the composite plate.

[0018] From the above, it can be seen that the reed composite board deformation detection device provided by the present invention has the beneficial effect of preventing the laser from passing through multiple expansion points on the surface of the board, being suitable for large-area detection of the board, and improving the comprehensiveness and accuracy of the detection results. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a schematic diagram of the main structure of a reed composite board deformation detection device proposed by the present invention; Figure 2 A side structural schematic diagram of a reed composite board deformation detection device proposed by the present invention; Figure 3 This is a front view structural schematic diagram of a reed composite board deformation detection device proposed by the present invention; Figure 4 A schematic diagram of the structure of a detection auxiliary module of a reed composite board deformation detection device proposed by the present invention; Figure 5 This is a partial structural schematic diagram of a detection auxiliary module of a reed composite board deformation detection device proposed by the present invention; Figure 6 A schematic diagram of the structure of the travel wheels of a reed composite board deformation detection device proposed by the present invention; Figure 7 for Figure 6 A schematic diagram of the enlarged structure of part A; Figure 8 This is a schematic diagram of the structure of an edge detection module of a reed composite board deformation detection device proposed by the present invention; Fig. 9This is a schematic diagram of the structure of the edge detection module of a reed composite board deformation detection device proposed by the present invention; Fig.10 This is a schematic diagram of the cleaning module structure of a reed composite board deformation detection device proposed in the present invention.

[0020] In the figure: 1. detection platform; 2. horizontal laser detector; 3. data monitoring platform; 4. unloading platform; 5. detection auxiliary module; 501. guide rail; 502. screw nut slide; 503. support plate; 504. tooling support column; 505. screw; 506. screw motor; 507. tooling limit frame; 508. electric drive rod; 509. lifting support plate; 510. lifting detection column; 511. telescopic spring; 512. installation frame; 513. walking wheel; 514. touch reactor; 515. transmission slide column; 516. limit round rod; 517. reset spring 1; 518. tooling rod; 519. alarm indicator light; 520. monitor; 521. support horizontal platform; 5 22. Measuring plate; 523. Air bag; 524. Tooling round frame; 525. Receiving reactor; 6. Feeding platform; 7. Edge detection module; 701. Limiting track; 702. Reciprocating slide; 703. Mounting support rod; 704. Side cross plate; 705. Smooth rod; 706. Reset spring 2; 707. Pressure sensor; 708. Driving motor; 709. Adjusting gear; 710. Linking gear rod; 8. Cleaning module; 801. Support panel; 802. Guide cylinder; 803. Electric telescopic rod; 804. Hollow suction plate; 805. Hollow convex suction plate; 806. Cleaning brush plate; 807. Delivery pipe; 808. Metal telescopic pipe; 809. Dust box; 810. Dust pump. DETAILED DESCRIPTION

[0021] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0022] The reed composite board deformation detection device disclosed in the present invention is mainly used in scenarios where after the board expands and deforms, deformation may occur at multiple locations on the board surface, resulting in the laser being unable to pass through multiple expansion points on the board surface. The device is not suitable for large-area detection of the board, and the comprehensiveness and accuracy of the detection results are reduced.

[0023] Reference Figure 1-Figure 7A reed composite board deformation detection device comprises a detection platform 1, a detection auxiliary module 5 is arranged above the detection platform 1, and the detection auxiliary module 5 comprises a plurality of tooling support columns 504, the opposite sides of the two tooling support columns 504 located on the same side are connected with the same guide rail 501 by bolts, and the interiors of the two guide rails 501 are slidably connected with screw nut slides 502, and one side of the two screw nut slides 502 are fixedly connected with a tooling limit frame 507, the two tooling limit frames 507 are fixedly connected with an electric drive rod 508 on the side away from the detection platform 1, and the driving ends of the two electric drive rods 508 are fixedly connected with the same lifting support plate 509, a horizontal laser detector 2 is arranged above the detection platform 1, and a data monitoring platform 3 is arranged on one side of the detection platform 1.

[0024] Reference Figure 1-Figure 7 , one side of the two guide rails 501 is fixedly connected with two support plates 503, and one side of the multiple support plates 503 is provided with a circular hole one, the interior of the two opposite circular holes one is connected with the same screw rod 505 through a bearing, one side of the two guide rails 501 is connected with a screw motor 506 through a bolt, the driving end of the screw motor 506 is connected to one end of the screw rod 505 through a coupling, one side of the lifting support plate 509 is provided with limited position smooth holes at equal distances, the interior of the multiple limited position smooth holes is slidably connected with a lifting detection column 510, and the multiple lifting detection columns 510 are fixedly connected to one side of the lifting support plate 509 with the same telescopic spring 511.

[0025] Reference Figure 1-Figure 7 , a plurality of lifting detection columns 510 are fixedly connected to a mounting frame 512 on one side facing the detection platform 1, and a plurality of mounting frames 512 are provided with round holes 2 on both sides, the interiors of the two round holes 2 on the same mounting frame 512 are connected to the same walking wheel 513 through bearings, and one end of the plurality of walking wheels 513 is fixedly connected to a touch reactor 514, and tooling rods 518 are equidistantly connected to both sides of the lifting support plate 509 through bolts, and one side of the two tooling rods 518 on the same side are fixedly connected to the same supporting horizontal platform 521, and a limiting slot is provided on one side of the plurality of supporting horizontal platforms 521, and a transmission slide column 515 is slidably connected to the interiors of the plurality of limiting slots, and one end of the transmission slide column 515 is against one end of the lifting detection column 510.

[0026] Reference Figure 1-Figure 7One side of the plurality of transmission slide columns 515 is fixedly connected with a measuring plate 522, and a plurality of supporting horizontal platforms 521 are provided with limiting circular holes, and the interiors of the plurality of limiting circular holes are slidably connected with limiting circular rods 516, and one end of the limiting circular rod 516 is fixedly connected to one side of the transmission slide column 515, and two return springs 517 are fixedly connected to the opposite side of the transmission slide column 515 and the supporting horizontal platform 521, and the return spring 517 surrounds the outside of the limiting circular rod 516.

[0027] Reference Figure 1-Figure 7 , a plurality of support platforms 521 are fixedly connected to a tooling circular frame 524 on one side away from the lifting support plate 509, and a mounting opening is opened on one side of the plurality of tooling circular frames 524, and an airbag 523 is fixedly connected to the inside of the plurality of mounting openings, and the extrusion end of the airbag 523 is abutted against one end of the transmission slide column 515, and a receiving reactor 525 is fixedly connected to one side of the plurality of tooling circular frames 524, and the receiving end of the receiving reactor 525 faces the air outlet end of the airbag 523, and an alarm indicator light 519 and a monitor 520 are respectively provided on one side of the plurality of support platforms 521.

[0028] In a specific application scenario, when the composite plate enters the detection platform 1, the horizontal laser detector 2 located above the detection platform 1 detects the horizontality of the composite plate. When the composite plate stops moving, the electric drive rod 508 is started, and the electric drive rod 508 drives the walking wheel 513 under the lifting support plate 509 to contact the surface of the composite plate, and then the screw motor 506 is started, and the screw motor 506 drives the screw 505 to rotate, so that the screw nut slide 502 drives the walking wheel 513 to move on the surface of the composite plate. When the walking wheel 513 moves to the expansion point on the surface of the composite plate, the corresponding walking wheel 513 drives the lifting detection column 510 to move upward, and the lifting detection column 510 is lifted. The column 510 drives the transmission slide column 515 to move upward at the same time. At this time, one end of the transmission slide column 515 squeezes the airbag 523, so that the air outlet end of the airbag 523 inflates the receiving reactor 525, thereby causing the receiving reactor 525 to drive the relative alarm indicator 519 to flash, and then the staff records the expansion point. While the transmission slide column 515 rises, the measuring plate 522 moves with it. At this time, the expansion data of the expansion point is photographed by the monitor 520, and then uniformly transmitted to the data monitoring station 3. After the recording is completed, the walking wheel 513 continues to move through the elasticity of the telescopic spring 511 to re-contact the surface of the composite plate, and continue to detect the remaining expansion points on the surface of the composite plate.

[0029] Reference Figure 1 , Figure 4 , Figure 8 and Fig. 9One side of the detection platform 1 is fixedly connected to a feeding platform 6, and a side detection module 7 is arranged on the feeding platform 6, the side detection module 7 includes a driving motor 708, one side of the feeding platform 6 is connected to two limit rails 701 by bolts, the interiors of the two limit rails 701 are slidably connected to reciprocating slides 702, one side of the two reciprocating slides 702 are connected to mounting support rods 703 by bolts, one side of the two mounting support rods 703 are fixedly connected to side cross plates 704, smooth openings are evenly spaced on the two side cross plates 704, and smooth rods 705 are slidably connected to the interiors of the multiple smooth openings, the smooth rods 705 are fixedly connected to the same reset spring 2 706 on the opposite side of the side cross plate 704, and one end of the multiple smooth rods 705 is fixedly connected to a pressure sensor 707.

[0030] Reference Figure 1 , Figure 4 , Figure 8 and Fig. 9 The two reciprocating slides 702 are connected to a linkage gear rod 710 on one side away from the mounting support rod 703 by bolts, and the driving end of the driving motor 708 is fixedly connected to an adjusting gear 709, and the adjusting gear 709 is meshed with the linkage gear rod 710.

[0031] In a specific application scenario, the composite plate is transmitted to the top of the detection platform 1 through the feeding platform 6. When the composite plate enters the top of the feeding platform 6, the driving motor 708 is started at this time, and the adjusting gear 709 is driven by the driving motor 708 to rotate. At this time, the adjusting gear 709 drives the linkage gear rod 710 to make the reciprocating slide 702 move towards each other inside the two limit rails 701. First, the composite plate is driven to the middle position of the feeding platform 6 by multiple smooth rods 705 on the side cross plate 704 on the reciprocating slide 702, and then the driving motor 708 is started to reset the reciprocating slide 702, and the driving motor 708 is started again, so that the driving motor 708 drives the reciprocating slides 702 on both sides to move towards each other again. At this time, the pressure sensor 707 located on the smooth rod 705 contacts the side of the composite plate. When the side of the composite plate is deformed, the pressures displayed by the multiple pressure sensors 707 are inconsistent, thereby realizing a rapid judgment of the deformation condition of the side of the composite plate.

[0032] Reference Figure 1 , Figure 4 and Fig.10, wherein the same cleaning module 8 is arranged on the opposite side of the two tooling support columns 504, and the cleaning module 8 includes a support panel 801, and the side of the support panel 801 away from the detection platform 1 is fixedly connected to an electric telescopic rod 803, and one side of the support panel 801 is provided with two limiting circular holes, and the insides of the two limiting circular holes are slidably connected with guide cylinders 802, and the two guide cylinders 802 are fixedly connected with the same cleaning brush plate 806 on the side facing the detection platform 1, and the driving end of the electric telescopic rod 803 is fixedly connected to one side of the cleaning brush plate 806.

[0033] Reference Figure 1 and Fig.10 A hollow suction plate 804 is fixedly connected to one side of the cleaning brush plate 806, and suction ports are equidistantly provided on the side of the hollow suction plate 804 facing the detection platform 1, and a hollow convex suction plate 805 is fixedly connected to the inside of the multiple suction ports. A delivery pipe 807 is fixedly connected to one side of the hollow suction plate 804, a dust collecting box 809 is provided on one side of the detection platform 1, and a dust suction pump 810 is fixedly connected to one side of the dust collecting box 809, and the dust suction end of the dust suction pump 810 is connected to one end of the delivery pipe 807 through a metal telescopic tube 808, and a material unloading platform 4 is provided on one side of the detection platform 1.

[0034] In a specific application scenario, when the composite plate enters above the detection platform 1, the electric telescopic rod 803 is started, and the cleaning brush plate 806 is driven down by the electric telescopic rod 803, so that the cleaning brush plate 806 contacts the surface of the composite plate. When the composite plate moves, the cleaning brush plate 806 is used to clean the composite plate to prevent the attached impurities from affecting the accuracy of the composite plate horizontality detection result. While cleaning, the dust suction pump 810 is started, and the impurities are absorbed through the multiple hollow convex suction plates 805 on the hollow suction plate 804, and then discharged to the dust box 809 for unified collection.

[0035] A method for using a reed composite board deformation detection device, using the reed composite board deformation detection device as described above, comprises the following steps: Step 1: When the composite plate is tested for levelness, when the composite plate enters the testing platform 1, the horizontal laser detector 2 located above the testing platform 1 tests the levelness of the composite plate; Step 2: When the composite plate stops moving, the electric drive rod 508 is started, and the electric drive rod 508 drives the walking wheel 513 under the lifting support plate 509 to contact the surface of the composite plate; Step 3, then start the screw motor 506, and the screw motor 506 drives the screw 505 to rotate, so that the screw nut slide 502 drives the walking wheel 513 to move on the surface of the composite plate. When the walking wheel 513 moves to the expansion point on the surface of the composite plate, the corresponding walking wheel 513 drives the lifting detection column 510 to move upward, and the lifting detection column 510 drives the transmission slide 515 to move upward at the same time. At this time, one end of the transmission slide 515 squeezes the air bag 523, so that the air outlet end of the air bag 523 inflates the receiving reactor 525, so that the receiving reactor 525 drives the relative alarm indicator 519 to flash, and then the staff records the expansion point, and the measuring plate 522 moves with the rise of the transmission slide 515. At this time, the expansion data of the expansion point is photographed by the monitor 520, and then uniformly transmitted to the data monitoring station 3; Step 4: After the recording is completed, the travel wheel 513 continues to move and contacts the surface of the composite plate again through the elasticity of the telescopic spring 511, and continues to detect the remaining expansion points on the surface of the composite plate.

[0036] Working principle: When the composite sheet enters the top of the feeding platform 6, the driving motor 708 is started at this time, and the adjusting gear 709 is driven to rotate by the driving motor 708. At this time, the adjusting gear 709 drives the linkage gear rod 710 to make the reciprocating slide 702 move towards each other inside the two limit rails 701. First, the composite sheet is driven to the middle position of the feeding platform 6 by multiple smooth rods 705 on the side cross plate 704 on the reciprocating slide 702, and then the driving motor 708 is started to reset the reciprocating slide 702, and the driving motor 708 is started again, so that the driving motor 708 drives the reciprocating slides 702 on both sides to move towards each other again. At this time, the pressure sensor 707 located on the smooth rod 705 contacts the side of the composite sheet. When deformation occurs on the side of the composite plate, the pressures displayed by the multiple pressure sensors 707 are inconsistent, thereby realizing rapid judgment of the deformation condition of the side of the composite plate. After the side detection is completed, the composite plate enters the detection platform 1, and the electric telescopic rod 803 is started at this time, and the cleaning brush plate 806 is driven down by the electric telescopic rod 803, so that the cleaning brush plate 806 contacts the surface of the composite plate. When the composite plate moves, the cleaning brush plate 806 is used to clean the composite plate to prevent the attached impurities from affecting the accuracy of the composite plate horizontality detection result. While cleaning, the dust suction pump 810 is started, and the impurities are sucked up by the multiple hollow convex suction plates 805 on the hollow suction plate 804, and then uniformly discharged into the dust collecting box 809. During the process of the composite plate entering the detection platform 1, the horizontal laser detector 2 located above the detection platform 1 detects the horizontality of the composite plate. When the composite plate stops moving, the electric drive rod 508 is started, and the electric drive rod 508 drives the walking wheel 513 under the lifting support plate 509 to contact the surface of the composite plate, and then the screw motor 506 is started, and the screw motor 506 drives the screw 505 to rotate, so that the screw nut slide 502 drives the walking wheel 513 to move on the surface of the composite plate. When the walking wheel 513 moves to the expansion point on the surface of the composite plate, the corresponding walking wheel 513 drives the lifting detection column 510 to move upward, and the transmission slide column 515 is driven by the lifting detection column 510. At the same time, it moves upward. At this time, one end of the transmission slide column 515 squeezes the airbag 523, so that the air outlet end of the airbag 523 inflates the receiving reactor 525, so that the receiving reactor 525 drives the relative alarm indicator 519 to flash, and then the staff records the expansion point. While the transmission slide column 515 rises, the measuring plate 522 moves along. At this time, the expansion data of the expansion point is photographed by the monitor 520, and then uniformly transmitted to the data monitoring station 3. After the recording is completed, the walking wheel 513 continues to move through the elasticity of the telescopic spring 511 to re-contact the surface of the composite plate, and continue to detect the remaining expansion points on the surface of the composite plate. After the composite plate detection is completed, it is unloaded through the unloading platform 4.

[0037] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical scheme and inventive concept of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A reed composite board deformation detection device, comprising a detection platform (1), characterized in that: A detection auxiliary module (5) is arranged above the detection platform (1), and the detection auxiliary module (5) includes a plurality of tooling support columns (504), and opposite sides of two tooling support columns (504) located on the same side are connected to the same guide rail (501) by bolts, and the insides of the two guide rails (501) are slidably connected to screw nut slides (502), and one side of the two screw nut slides (502) is fixedly connected to a tooling limit frame (507), and the sides of the two tooling limit frames (507) away from the detection platform (1) are fixedly connected to electric drive rods (508), and the driving ends of the two electric drive rods (508) are fixedly connected to the same lifting support plate (509), and a horizontal laser detector (2) is arranged above the detection platform (1), and a data monitoring platform (3) is arranged on one side of the detection platform (1).

2. A reed composite board deformation detection device according to claim 1, characterized in that: One side of the two guide rails (501) is fixedly connected to two support plates (503), and one side of the plurality of support plates (503) is provided with a circular hole, and the interiors of the two opposing circular holes are connected to the same screw rod (505) via bearings. One side of the two guide rails (501) is connected to a screw motor (506) via bolts, and the driving end of the screw motor (506) is connected to one end of the screw rod (505) via a coupling. One side of the lifting support plate (509) is provided with limited position smooth holes at equal distances, and the interiors of the plurality of limited position smooth holes are slidably connected to lifting detection columns (510), and the plurality of lifting detection columns (510) are fixedly connected to one side of the lifting support plate (509) with the same telescopic spring (511).

3. A reed composite board deformation detection device according to claim 2, characterized in that: The plurality of lifting detection columns (510) are fixedly connected to a mounting frame (512) on one side facing the detection platform (1), and two circular holes are provided on both sides of the plurality of mounting frames (512), and the interiors of the two circular holes located on the same mounting frame (512) are connected to the same running wheel (513) via bearings, and one end of the plurality of running wheels (513) is fixedly connected to a touch reactor (514), and tooling rods (518) are equidistantly connected to both sides of the lifting support plate (509) via bolts, and one side of the two tooling rods (518) located on the same side is fixedly connected to the same supporting horizontal platform (521), and one side of the plurality of supporting horizontal platforms (521) is provided with a limiting slot, and the interiors of the plurality of limiting slots are slidably connected to a transmission slide column (515), and one end of the transmission slide column (515) is abutted against one end of the lifting detection column (510).

4. A reed composite board deformation detection device according to claim 3, characterized in that: One side of the plurality of transmission slide columns (515) is fixedly connected to a measuring plate (522), and a plurality of support horizontal platforms (521) are provided with limit circular holes, and the interiors of the plurality of limit circular holes are slidably connected to a limit circular rod (516), and one end of the limit circular rod (516) is fixedly connected to one side of the transmission slide column (515), and two return springs (517) are fixedly connected to the opposite side of the transmission slide column (515) and the support horizontal platform (521), and the return springs (517) are surrounded by the outside of the limit circular rod (516).

5. A reed composite board deformation detection device according to claim 4, characterized in that: A tooling circular frame (524) is fixedly connected to one side of the multiple supporting platforms (521) away from the lifting supporting plate (509), and a mounting opening is opened on one side of the multiple tooling circular frames (524), and an air bag (523) is fixedly connected inside the multiple mounting openings, and the extrusion end of the air bag (523) is abutted against one end of the transmission sliding column (515), and a receiving reactor (525) is fixedly connected to one side of the multiple tooling circular frames (524), and the receiving end of the receiving reactor (525) faces the air outlet end of the air bag (523), and an alarm indicator light (519) and a monitor (520) are respectively provided on one side of the multiple supporting platforms (521).

6. A reed composite board deformation detection device according to claim 5, characterized in that: One side of the detection platform (1) is fixedly connected to a feeding platform (6), and an opposite edge detection module (7) is arranged on the feeding platform (6), the opposite edge detection module (7) comprises a driving motor (708), one side of the feeding platform (6) is connected to two limit rails (701) by bolts, the interiors of the two limit rails (701) are slidably connected to reciprocating slides (702), one side of the two reciprocating slides (702) are connected to mounting support rods (703) by bolts, one side of the two mounting support rods (703) are fixedly connected to side cross plates (704), the two side cross plates (704) are provided with smooth openings at equal distances, the interiors of the multiple smooth openings are slidably connected to smooth rods (705), the smooth rods (705) are fixedly connected to the same return spring 2 (706) on the opposite side of the side cross plate (704), and one end of the multiple smooth rods (705) are fixedly connected to pressure sensors (707).

7. A reed composite board deformation detection device according to claim 6, characterized in that: The two reciprocating slides (702) are both connected to a linkage gear rod (710) via bolts on one side away from the mounting support rod (703); the driving end of the driving motor (708) is fixedly connected to an adjustment gear (709), and the adjustment gear (709) is meshed with the linkage gear rod (710).

8. The reed composite board deformation detection device according to claim 7, characterized in that: The same cleaning module (8) is arranged on opposite sides of two of the tooling support columns (504), and the cleaning module (8) includes a support panel (801), and a side of the support panel (801) away from the detection platform (1) is fixedly connected to an electric telescopic rod (803), and one side of the support panel (801) is provided with two limiting circular holes, and the insides of the two limiting circular holes are slidably connected to guide cylinders (802), and the two guide cylinders (802) are fixedly connected to the same cleaning brush plate (806) on the side facing the detection platform (1), and the driving end of the electric telescopic rod (803) is fixedly connected to one side of the cleaning brush plate (806).

9. A reed composite board deformation detection device according to claim 8, characterized in that: One side of the cleaning brush plate (806) is fixedly connected to a hollow suction plate (804), and suction ports are equidistantly provided on a side of the hollow suction plate (804) facing the detection platform (1), and a hollow convex suction plate (805) is fixedly connected inside each of the plurality of suction ports. One side of the hollow suction plate (804) is fixedly connected to a delivery pipe (807), a dust collecting box (809) is provided on one side of the detection platform (1), a dust collecting pump (810) is fixedly connected to one side of the dust collecting box (809), and a dust collecting end of the dust collecting pump (810) is connected to one end of the delivery pipe (807) via a metal telescopic tube (808), and a material unloading platform (4) is provided on one side of the detection platform (1).

10. A method for using a reed composite board deformation detection device, using the reed composite board deformation detection device according to claim 9, characterized in that: The steps include: Step 1: When the composite plate is tested for levelness, when the composite plate enters the testing platform (1), the horizontal laser detector (2) located above the testing platform (1) tests the levelness of the composite plate; Step 2: When the composite board stops moving, the electric drive rod (508) is started, and the electric drive rod (508) drives the running wheel (513) below the lifting support plate (509) to contact the surface of the composite board; Step 3: Then start the screw motor (506), and drive the screw (505) to rotate through the screw motor (506), so that the screw nut slide seat (502) drives the walking wheel (513) to move on the surface of the composite plate. When the walking wheel (513) moves to the expansion point on the surface of the composite plate, the corresponding walking wheel (513) drives the lifting detection column (510) to move upward, and drives the transmission slide column (515) to move upward at the same time through the lifting detection column (510). At this time, the transmission slide column (5 15) one end squeezes the airbag (523) so that the air outlet end of the airbag (523) inflates the receiving reactor (525), thereby causing the receiving reactor (525) to drive the corresponding alarm indicator light (519) to flash, and then the staff records the expansion point, and the transmission slide column (515) rises while the scale plate (522) moves accordingly. At this time, the expansion data of the expansion point is photographed by the monitor (520), and then uniformly transmitted to the data monitoring station (3); Step 4: After the recording is completed, the travel wheel (513) continues to move and contacts the surface of the composite plate again through the elasticity of the telescopic spring (511), and continues to detect the remaining expansion points on the surface of the composite plate.

Citation Information

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