A trimming machine for processing insulation boards

By designing a trimming machine for insulation board processing and adopting a motor-driven cutting disc and synchronous belt structure, the problem that existing equipment cannot realize complex processes is solved, and high-precision insulation board edge cutting and chamfering processing is achieved to meet the diverse needs of board materials.

CN120056199BActive Publication Date: 2025-09-12YANGZHONG HUALONG RUBBER & PLASTIC ELECTRIC CO LTD
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Patent Information

Application Number
CN202510445236.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-10
Publication Date
2025-09-12
Estimated Expiration
2045-04-10

AI Technical Summary

Technical Problem

Existing insulation board processing equipment is unable to perform complex processes such as chamfering and bevel processing, and cannot adapt to the diverse needs of board materials. The operation is cumbersome and the adaptability is insufficient.

Method used

A trimming machine for insulation board processing is designed, which includes a trimming component, a clearance component and an adjustment component. The motor drives the cutting disc, synchronous belt and rotating shaft to achieve straight line and chamfer cutting. The optical axis and rectangular block structures ensure stability, and the adjustment component can adjust the chamfer size.

Benefits of technology

It realizes high-precision cutting and chamfering of the edge of the insulation board, adapts to boards of different thicknesses, is easy to operate, and improves processing accuracy and scope of application.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention belongs to the field of thermal insulation board processing technology, specifically a trimming machine for thermal insulation board processing, comprising a processing table, the surface of the processing table is provided with a trimming assembly, and the trimming assembly comprises an optical axis arranged above the processing table and a rectangular block sleeved on the surface of the optical axis and a supporting platform for trimming the thermal insulation board, a side cross plate, a synchronous belt, a synchronous wheel, a rotating shaft, a first longitudinal axis, a cutting disk, a first motor, a U-shaped clamping rod, a built-in square plate, a second motor and an L-shaped mounting block; the present invention is conducive to realizing cutting of the edge of the thermal insulation board during the process of the first longitudinal axis moving from right to left, and when the first longitudinal axis moves to the position of the circumferential surface of the synchronous wheel, the cutting disk rotates to an appropriate angle with the optical axis as the axis center, and the process of cutting and chamfering the thermal insulation board is realized during the process of the first longitudinal axis moving from left to right, and at the same time, the supporting platform can drive the thermal insulation board to move in a direction away from the cutting disk, effectively limiting the shape and size of the chamfer and avoiding excessive cutting size.
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Description

Technical Field

[0001] The invention belongs to the technical field of thermal insulation board processing, and particularly relates to a trimming machine for thermal insulation board processing. Background Art

[0002] In the modern construction industry, insulation boards, as core thermal insulation materials, are widely used in exterior walls, roofs, and other areas. The quality of their processing directly impacts a building's energy efficiency, structural tightness, and aesthetic appearance. In particular, the precision of trimming and chamfering determines the tightness of insulation board splices and the control of heat loss during long-term use. However, existing processing equipment has significant deficiencies in functionality and adaptability, manifested in the following issues:

[0003] Traditional trimming machines are limited to straight-line cutting and are unable to perform complex processes such as chamfering and beveling. Some machines with chamfering capabilities often use fixed-angle molds, which can only accommodate insulation boards of specific thicknesses or specifications. However, angle adjustment relies on manual mold replacement, which is cumbersome and incapable of continuous diameter processing, making it difficult to handle the diverse board materials used in construction projects.

[0004] For this reason, a trimming machine for processing thermal insulation boards is designed to solve the above problems. Summary of the Invention

[0005] In order to solve the problems raised in the above background technology, the present invention provides a trimming machine for processing insulation boards, which can effectively solve the problems raised in the above background technology.

[0006] To achieve the above-mentioned object, the present invention provides the following technical solutions: a trimming machine for processing insulation boards, comprising a processing table;

[0007] The surface of the processing table is provided with a trimming assembly, which includes an optical axis arranged above the processing table, a rectangular block sleeved on the surface of the optical axis, and a supporting platform for trimming the insulation board, a side horizontal plate, a synchronous belt, a synchronous wheel, a rotating shaft, a first longitudinal shaft, a cutting disc, a first motor, a U-shaped clamping rod, a built-in square plate, a second motor and an L-shaped mounting block;

[0008] A clearance assembly is provided on one side of the carrying platform, and the clearance assembly includes a first connecting plate for cutting and chamfering the insulation board, a built-in slide plate, a second connecting plate, a square positioning plate, a second longitudinal axis, a hollow rod and a third longitudinal axis;

[0009] An adjustment component is provided on the surface of the square positioning plate. The adjustment component includes a first bearing, a threaded rod and a positioning screw for adjusting the size of the chamfer of the cutting of the insulation board.

[0010] As a preferred trimming machine for processing insulation boards of the present invention, the two sides of the processing table are respectively fixedly connected with side support plates, an optical axis is fixedly connected between the two side support plates, a rectangular block is sleeved on the surface of the optical axis, the rectangular block and the optical axis are slidably connected, an L-shaped mounting block is fixedly connected to one side of the rectangular block, the bottom surface of the L-shaped mounting block is fixedly connected to the first motor, the end of the output shaft of the first motor is fixedly connected to the cutting disk, the upper surface of the processing table is provided with a bearing platform, and the surface of the bearing platform is provided with a clamping member. The U-shaped clamping rod is inserted into the lower groove opened on the bottom surface of the L-shaped mounting block, and the built-in square plate is inserted into the groove opened at the bottom end of the U-shaped clamping rod. The built-in square plate is in contact with the upper surface of the processing table, and the built-in square plate is slidably connected to the processing table. The U-shaped clamping rod is rotatably connected to the L-shaped mounting block through the first rotating shaft, and the built-in square plate is rotatably connected to the U-shaped clamping rod through the second rotating shaft. The surface of the U-shaped clamping rod is in contact with the groove wall of the lower groove opened on the bottom surface of the L-shaped mounting block, and the surface of the built-in square plate is in contact with the groove wall of the groove opened at the bottom end of the U-shaped clamping rod.

[0011] As a preferred trimming machine for processing insulation boards of the present invention, the clamping part includes a U-shaped bracket, an electric push rod and a rubber pressure plate. The U-shaped bracket is fixedly connected to the upper surface of the supporting platform. Multiple electric push rods are installed inside the U-shaped bracket, and the end of the electric push rod telescopic rod is fixedly connected to the rubber pressure plate.

[0012] As a preferred trimming machine for processing insulation boards of the present invention, a side horizontal plate is fixedly connected to one side of the processing table, and two rotating shafts are provided on the upper surface of the side horizontal plate, and the two rotating shafts are rotatably connected to the side horizontal plate through bearings respectively, and a synchronous wheel is fixedly sleeved on the surface of each rotating shaft, and a second motor is installed on the bottom surface of the side horizontal plate, and the end of the output shaft of the second motor is fixedly connected to the bottom end of one of the rotating shafts, and a synchronous belt is sleeved on the surface of the two synchronous wheels, and a first longitudinal shaft is fixedly connected to the upper surface of the synchronous belt, and the first longitudinal shaft is inserted into the longitudinal hole opened in the built-in square plate, and the first longitudinal shaft is rotatably connected to the built-in square plate.

[0013] As a preferred trimming machine for processing insulation boards of the present invention, a U-shaped limit frame is fixedly connected to the upper surface of the processing table, the built-in square plate is located between the U-shaped limit frame and the processing table, and the U-shaped limit frame and the built-in square plate are slidably connected.

[0014] As a preferred trimming machine for processing insulation boards of the present invention, the upper surface of the side horizontal plate is fixedly connected with a first positioning plate, a second positioning plate, a third positioning plate and a fourth positioning plate, the second positioning plate and the third positioning plate are located inside the synchronous belt, the synchronous belt is located between the first positioning plate and the fourth positioning plate, the third positioning plate is located between the fourth positioning plate and the second positioning plate, the second positioning plate is located between the third positioning plate and the first positioning plate, one end of the fourth positioning plate and the third positioning plate is symmetrically provided with a guide section one, and one end of the second positioning plate and the first positioning plate is symmetrically provided with a guide section two.

[0015] The two guide rails are connected to each other in a fixed manner and the guide rails are connected to each other in a fixed manner. The guide rails are connected to the second guide rail by a fixed structure having a first end fixed to the first end and a second end fixed to the second end.

[0016] As a preferred trimming machine for processing insulation boards of the present invention, a second longitudinal axis is inserted into the interior of the hollow rod, and the bottom end of the second longitudinal axis is fixedly connected to a square positioning plate, and the square positioning plate is inserted into a square positioning groove opened on the upper surface of the processing table, and the second longitudinal axis and the hollow rod are slidably connected.

[0017] As a preferred trimming machine for processing insulation boards of the present invention, the bottom surface of the supporting platform is fixedly connected to two dovetail plates, the dovetail plates are inserted into dovetail grooves opened on the upper surface of the processing platform, and the dovetail plates and the processing platform are slidably connected.

[0018] As a preferred trimming machine for processing insulation boards of the present invention, a threaded rod is inserted into the second threaded hole opened inside the square positioning plate, the threaded rod and the square positioning plate are threadedly connected, the surface of the threaded rod is sleeved with two first bearings, the first bearings are installed in the square positioning grooves opened on the upper surface of the processing table, the threaded rod is rotatably connected to the processing table through the first bearing, the square positioning plate and the processing table are slidably connected, one end of the threaded rod is fixedly connected to a rotating disk, and positioning screws are respectively inserted into the two first threaded holes opened at both ends of the second connecting plate, the positioning screw and the second connecting plate are threadedly connected, and one end of the positioning screw is in contact with the surface of the built-in skateboard.

[0019] Compared with the prior art, the present invention has the following beneficial effects:

[0020] 1. A trimming assembly is provided. The first motor drives the cutting disc to rotate at high speed. Combined with the synchronous belt, synchronous wheel, rotating shaft and other structures, the linear and rotational motion of the cutting disc is realized. It can efficiently cut and trim the edge of the insulation board. It can also perform stable chamfering operation on the insulation board by controlling the inclination angle of the cutting disc. The inclination angle is consistent each time to ensure processing accuracy.

[0021] The sliding connection between the optical axis and the rectangular block, combined with the U-shaped clamping rod, built-in square plate and other structures, ensures the stability of the movement and rotation of the L-shaped mounting block and cutting disc, improving the quality of trimming and chamfering;

[0022] The first positioning plate, the second positioning plate, the third positioning plate and the fourth positioning plate cooperate with the guide section to prevent the first longitudinal axis position deviation caused by loosening of the synchronous belt, thereby ensuring the accuracy of the edge cutting of the insulation board. Not only can straight line trimming be performed, but also chamfering processing can be performed, and the chamfer size is adjustable, meeting diverse processing needs. Through the cooperation of structures such as the optical axis, synchronous belt, and synchronous wheel, the stability of the cutting disk during movement and rotation is ensured, deviations during the cutting process are avoided, and processing accuracy is improved.

[0023] 2. A yield component is provided, which is conducive to cutting the edge of the insulation board during the movement of the first longitudinal axis from right to left. When the first longitudinal axis moves to the position of the circumferential surface of the synchronous wheel, the cutting disk rotates to an appropriate angle with the optical axis as the axis. During the movement of the first longitudinal axis from left to right, the process of cutting and chamfering the insulation board is realized. At the same time, the supporting platform can drive the insulation board to move away from the cutting disk, effectively limiting the size of the chamfer shape, avoiding excessive cutting size, realizing automatic tilting and resetting of the cutting disk and precise adjustment of the chamfer size, reducing manual intervention and improving operational convenience.

[0024] 3. An adjustment component is provided. Through the rotating disk, threaded rod, positioning screw and other structures, the position of the square positioning plate and the second longitudinal axis can be easily adjusted, thereby changing the moving distance of the carrier platform to achieve precise adjustment of the chamfer size of the insulation board cutting. According to different engineering requirements, the chamfer size can be flexibly adjusted. It is suitable for the processing of insulation boards of different thicknesses, expanding the scope of application of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] 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 of the present invention. In the accompanying drawings:

[0026] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0027] Figure 2 It is a structural diagram of the side horizontal plate and the processing table in the present invention;

[0028] Figure 3 Schematic diagram of the structure of the rectangular block and the optical axis in the present invention;

[0029] Figure 4 A schematic structural diagram of the built-in slide plate and the second connecting plate in the present invention;

[0030] Figure 5 Schematic diagram of the structure of the second connecting plate and the hollow rod in the present invention;

[0031] Figure 6 This is a schematic diagram of the structure of the L-shaped mounting block and the rectangular block in the present invention;

[0032] Figure 7 Schematic diagram of the structure of the square positioning plate and the threaded rod in the present invention;

[0033] Figure 8 A schematic structural diagram of the first positioning plate and the second positioning plate in the present invention;

[0034] Figure 9 Schematic diagram of the structure of the first longitudinal shaft and the synchronous belt in the present invention;

[0035] Figure 10 Schematic diagram of the structure of the second longitudinal axis and the hollow rod in the present invention;

[0036] Figure 11 Schematic diagram of the structure of the first connecting plate and the built-in slide plate in the present invention;

[0037] Figure 12 Schematic diagram of the structure of the second connecting plate in the present invention;

[0038] In the picture:

[0039] 1. Processing table;

[0040] 2. Trimming assembly; 21. Side support plate; 22. Optical axis; 23. Carrying platform; 24. Clamping piece; 241. U-shaped bracket; 242. Electric push rod; 243. Rubber pressure plate; 25. U-shaped limit frame; 26. Side cross plate; 27. Synchronous belt; 28. Synchronous pulley; 29. ​​Rotating axis; 210. First longitudinal axis; 211. Cutting disc; 212. First motor; 213. Rectangular block; 214. Lower groove; 215. U-shaped clamping rod; 216. Built-in square plate; 217. Vertical hole; 218. Second motor; 219. First positioning plate; 220. Second positioning plate; 221. Third positioning plate; 222. Fourth positioning plate; 223. L-shaped mounting block;

[0041] 3. Yield assembly; 31. First built-in chute; 32. First connecting plate; 33. Built-in square groove; 34. Built-in slide plate; 35. Second connecting plate; 36. Upper chute; 37. Inner chute; 38. Dovetail groove; 39. Dovetail plate; 310. Square positioning plate; 311. Second longitudinal axis; 312. Square positioning groove; 313. Second built-in chute; 314. U-shaped block; 315. Hollow rod; 316. Third longitudinal axis;

[0042] 4. Adjustment assembly; 41. Rotating disk; 42. First bearing; 43. Threaded rod; 44. Positioning screw; 45. First threaded hole; 46. Second threaded hole. DETAILED DESCRIPTION

[0043] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0044] Example: Figure 1 - Figure 12As shown, the present invention provides a technical solution, a trimming machine for processing insulation boards, including a processing table 1, a trimming assembly 2 is provided on the surface of the processing table 1, and the trimming assembly 2 includes a side support plate 21, an optical axis 22, a rectangular block 213, a bearing platform 23, a clamping member 24, a U-shaped limit frame 25, a side cross plate 26, a synchronous belt 27, a synchronous wheel 28, a rotating shaft 29, a first longitudinal axis 210, a cutting disc 211, a first motor 212, a U-shaped clamping rod 215, a built-in square plate 216, a second motor 218, a first positioning plate 219, a second positioning plate 220, a third positioning plate 221, a fourth positioning plate 222 and an L-shaped mounting block 223, both sides of the processing table 1 are fixedly connected with the side support plates 21, the optical axis 22 is fixedly connected between the two side support plates 21, the surface of the optical axis 22 is sleeved with a rectangular block 213, the rectangular block 213 and the optical axis 22 are slidably connected, and one side of the rectangular block 213 is fixedly connected with an L-shaped The mounting block 223 is fixedly connected to the bottom surface of the L-shaped mounting block 223 with the first motor 212, and the end of the output shaft of the first motor 212 is fixedly connected to the cutting disc 211. The upper surface of the processing table 1 is provided with a bearing platform 23, and the surface of the bearing platform 23 is provided with a clamping member 24. A U-shaped clamping rod 215 is inserted into the lower groove 214 opened on the bottom surface of the L-shaped mounting block 223, and a built-in square plate 216 is inserted into the groove opened at the bottom end of the U-shaped clamping rod 215. The built-in square plate 216 is in contact with the upper surface of the processing table 1, the built-in square plate 216 is slidingly connected to the processing table 1, the U-shaped clamping rod 215 is rotatably connected to the L-shaped mounting block 223 through the rotating shaft 1, the built-in square plate 216 is rotatably connected to the U-shaped clamping rod 215 through the rotating shaft 2, the surface of the U-shaped clamping rod 215 is in contact with the groove wall of the lower groove 214 opened on the bottom surface of the L-shaped mounting block 223, and the surface of the built-in square plate 216 is in contact with the groove wall opened at the bottom end of the U-shaped clamping rod 215.

[0045] The clamping member 24 includes a U-shaped bracket 241, an electric push rod 242 and a rubber pressure plate 243. The U-shaped bracket 241 is fixedly connected to the upper surface of the supporting platform 23. A plurality of electric push rods 242 are installed inside the U-shaped bracket 241. The electric push rods 242 are driven by an external controller and can adjust the pressure to adapt to insulation boards of different thicknesses. The end of the telescopic rod of the electric push rod 242 is fixedly connected to the rubber pressure plate 243.

[0046] A side horizontal plate 26 is fixedly connected to one side of the processing table 1, and two rotating shafts 29 are provided on the upper surface of the side horizontal plate 26. The two rotating shafts 29 are rotatably connected to the side horizontal plate 26 through bearings respectively. A synchronous wheel 28 is fixedly sleeved on the surface of each rotating shaft 29, and a second motor 218 is installed on the bottom surface of the side horizontal plate 26. The end of the output shaft of the second motor 218 is fixedly connected to the bottom end of one of the rotating shafts 29. The surfaces of the two synchronous wheels 28 are sleeved with a synchronous belt 27. The upper surface of the synchronous belt 27 is fixedly connected to the first longitudinal shaft 210. The first longitudinal shaft 210 is inserted into the longitudinal hole 217 opened inside the built-in square plate 216, and the first longitudinal shaft 210 and the built-in square plate 216 are rotatably connected.

[0047] A U-shaped limiting frame 25 is fixedly connected to the upper surface of the processing table 1 , and a built-in square plate 216 is located between the U-shaped limiting frame 25 and the processing table 1 , and the U-shaped limiting frame 25 and the built-in square plate 216 are slidably connected.

[0048] The upper surface of the side horizontal plate 26 is fixedly connected with the first positioning plate 219, the second positioning plate 220, the third positioning plate 221 and the fourth positioning plate 222. The second positioning plate 220 and the third positioning plate 221 are located inside the synchronous belt 27, and the synchronous belt 27 is located between the first positioning plate 219 and the fourth positioning plate 222. The third positioning plate 221 is located between the fourth positioning plate 222 and the second positioning plate 220. The second positioning plate 220 is located between the third positioning plate 221 and the first positioning plate 219. One end of the fourth positioning plate 222 and the third positioning plate 221 is symmetrically provided with a guide section one, and one end of the second positioning plate 220 and the first positioning plate 219 is symmetrically provided with a guide section two.

[0049] A yield component 3 is provided on one side of the carrier platform 23, and the yield component 3 includes a first connecting plate 32, a built-in slide 34, a second connecting plate 35, a dovetail plate 39, a square positioning plate 310, a second longitudinal axis 311, a U-shaped block 314, a hollow rod 315 and a third longitudinal axis 316. The surface of the first connecting plate 32 is fixedly connected to two built-in slides 34, and the two built-in slides 34 are respectively inserted into the first built-in slide groove 31 opened inside the processing table 1, and the built-in slide 34 and the processing table 1 are slidably connected. The first longitudinal axis 210 is located in the built-in square groove 33 opened inside the first connecting plate 32, and the first longitudinal axis 210 and the first connecting plate 32 are slidably connected. The two built-in slides 34 are respectively inserted into the two second built-in slide grooves 31 opened inside the second connecting plate 35 The cam 314 is fixed on the support 23 and the support 316 is fixed on the support 23. The cam 314 is fixed on the support 23 and the support 316 is fixed on the support 23. The cam 314 is fixed on the support 23 and the support 316 is fixed on the support 23. The cam 314 is fixed on the support 23 and the support 316 is fixed on the support 23. The cam 314 is fixed on the support 23

[0050] A second longitudinal axis 311 is inserted into the interior of the hollow rod 315, and a square positioning plate 310 is fixedly connected to the bottom end of the second longitudinal axis 311. The square positioning plate 310 is inserted into a square positioning groove 312 opened on the upper surface of the processing table 1, and the second longitudinal axis 311 and the hollow rod 315 are slidably connected.

[0051] Two dovetail plates 39 are fixedly connected to the bottom surface of the supporting platform 23 . The dovetail plates 39 are inserted into dovetail grooves 38 provided on the upper surface of the processing platform 1 . The dovetail plates 39 and the processing platform 1 are slidably connected.

[0052] An adjustment component 4 is provided on the surface of the square positioning plate 310, and the adjustment component 4 includes a rotating disk 41, a first bearing 42, a threaded rod 43 and a positioning screw 44. A threaded rod 43 is inserted into the second threaded hole 46 opened inside the square positioning plate 310, and the threaded rod 43 and the square positioning plate 310 are threadedly connected. The surface of the threaded rod 43 is sleeved with two first bearings 42, and the first bearing 42 is installed in the square positioning groove 312 opened on the upper surface of the processing table 1. The threaded rod 43 is rotatably connected to the processing table 1 through the first bearing 42, and the square positioning plate 310 is slidingly connected to the processing table 1. One end of the threaded rod 43 is fixedly connected to the rotating disk 41, and the two first threaded holes 45 opened at both ends of the second connecting plate 35 are respectively inserted with positioning screws 44. The positioning screw 44 is threadedly connected to the second connecting plate 35, and one end of the positioning screw 44 is in contact with the surface of the built-in slide plate 34.

[0053] Working principle: When the trimmer is in use, the device is connected to an external power supply, and the insulation board to be trimmed is placed on the surface of the carrier 23. After the position of the insulation board is adjusted, the controller starts multiple electric push rods 242, thereby extending the telescopic rods of the electric push rods 242, and then squeezing and fixing the insulation board through the rubber pressure plate 243. The electric push rods 242 and the rubber pressure plate 243 in the clamping member 24 can firmly fix the insulation board to prevent displacement during processing and ensure processing accuracy. In the process of cutting the edge of the insulation board, the external controller starts the first motor 212 and the second motor 218. The operation of the first motor 212 drives its output shaft to rotate the cutting disc 211, and the operation of the second motor 218 drives the cutting disc 211 to rotate. The output shaft drives one of the rotating shafts 29 to rotate, and then drives the synchronous wheel 28 to rotate. Under the action of the synchronous belt 27, the two synchronous wheels 28 rotate synchronously, and then drive the synchronous belt 27 to rotate. The rotation of the synchronous belt 27 drives the first longitudinal shaft 210 to rotate synchronously. When the first longitudinal shaft 210 moves from right to left, the movement of the first longitudinal shaft 210 drives the built-in square plate 216 to move. The movement of the built-in square plate 216 drives the U-shaped clamping rod 215 to move, and then drives the L-shaped mounting block 223 to move synchronously, so that the rectangular block 213 slides on the surface of the optical axis 22. As the L-shaped mounting block 223 moves from right to left and during the rotation of the cutting disk 211, the edge of the insulation board is cut.

[0054] When the first longitudinal shaft 210 moves to the left synchronous wheel 28 driven by the synchronous belt 27, since the first longitudinal shaft 210 moves inside the built-in square groove 33, it will not drive the first connecting plate 32 to move. When the first longitudinal shaft 210 moves to the position close to the synchronous wheel 28, the first longitudinal shaft 210 rotates around the surface of the synchronous wheel 28, and then pulls the built-in square plate 216 to slide between the U-shaped limit frame 25 and the processing table 1 through the first longitudinal shaft 210. The movement of the built-in square plate 216 drives the bottom end of the U-shaped clamping rod 215 to move, thereby causing the rectangular block 213 to move in the U-shaped limit frame 25. The surface of the optical axis 22 rotates, and the rotation of the rectangular block 213 drives the L-shaped mounting block 223, the first motor 212, and the cutting disk 211 to rotate around the optical axis 22 until the first longitudinal axis 210 moves away from the arc surface of the synchronous wheel 28. At this time, the cutting disk 211 is tilted at a suitable angle, and this tilt angle is controlled by the diameter of the synchronous wheel 28, so that the tilt angle of the cutting disk 211 is the same each time. As the second motor 218 continues to operate, the first longitudinal axis 210 drives the built-in square plate 216 to move from left to right, thereby completing the process of cutting and chamfering the insulation board;

[0055] At the same time, when the first longitudinal axis 210 rotates around the surface of the synchronous wheel 28, the movement of the first longitudinal axis 210 drives the first connecting plate 32 to move synchronously, so that the first connecting plate 32 moves in the direction away from the processing table 1, thereby causing the two built-in slides 34 to slide inside the processing table 1, and the movement of the built-in slide 34 drives the second connecting plate 35 to move synchronously, thereby causing the second connecting plate 35 to move in the direction close to the processing table 1, thereby driving the third longitudinal axis 316 to move, and the movement of the third longitudinal axis 316 causes the hollow rod 315 to rotate on the surface of the second longitudinal axis 311 and move, thereby achieving the effect of driving the U-shaped block 314 to move, and the movement of the U-shaped block 314 drives the carrier 23 to slide on the surface of the processing table 1, and the movement of the carrier 23 causes the dovetail plate 39 to slide inside the dovetail groove 38, thereby allowing the carrier 23 to move The movable heat preservation plate moves smoothly, thereby achieving the effect of limiting the size of the chamfer shape of the heat preservation plate cutting, avoiding the situation that the cutting size is too large when the heat preservation plate is cut and chamfered after the cutting disc 211 is tilted, which is conducive to driving the first longitudinal shaft 210 to move when the second motor 218 is running, and the first longitudinal shaft 210 is used to cut the edge of the heat preservation plate during the process of moving from right to left. When the first longitudinal shaft 210 moves to the position of the circumferential surface of the synchronous wheel 28, the cutting disc 211 is rotated to a suitable angle with the optical axis 22 as the axis, and the process of cutting the chamfer of the heat preservation plate is achieved during the process of moving the first longitudinal shaft 210 from left to right. At the same time, the supporting platform 23 can drive the heat preservation plate to move in the direction away from the cutting disc 211, which can achieve the effect of limiting the size of the chamfer shape of the heat preservation plate cutting, avoiding the problem that the cutting size is too large when the heat preservation plate is cut and chamfered after the cutting disc 211 is tilted;

[0056] When the first longitudinal axis 210 moves to a position close to the circumferential surface of the other synchronous wheel 28, that is, when the first longitudinal axis 210 moves from left to right to the limit position, the first longitudinal axis 210 pushes the built-in square plate 216 to move, thereby causing the rectangular block 213 to rotate on the surface of the optical axis 22 until the cutting disk 211 moves to a vertical state, and in this process, the first longitudinal axis 210 drives the first connecting plate 32 to move in the direction close to the processing table 1, and drives the second connecting plate 35 to move through the built-in slide 34, so that the second connecting plate 35 moves in the direction away from the processing table 1, and the movement of the second connecting plate 35 drives the third longitudinal axis 316 to move, thereby causing the hollow rod 315 to rotate on the surface of the second longitudinal axis 311 and move, thereby achieving the effect of resetting the supporting platform 23, facilitating the process of cutting and chamfering the edge of another insulation board again, and improving the use effect of the trimming machine;

[0057] When the shape and size of the chamfered corners of the insulation board need to be adjusted, the two positioning screws 44 are rotated so that the ends of the positioning screws 44 are no longer in the position between the second connecting plate 35 and the built-in slide 34. At this time, the second connecting plate 35 can slide on the surface of the built-in slide 34, and the rotating disk 41 is rotated. The rotation of the rotating disk 41 drives the threaded rod 43 to rotate. The rotation of the threaded rod 43 can make the square positioning plate 310 slide inside the square positioning groove 312 under the action of the second threaded hole 46. The movement of the square positioning plate 310 drives the second longitudinal axis 311 to move synchronously, so that the second longitudinal axis 311 is in the hollow rod 315. The second longitudinal axis 311 is moved to rotate the hollow rod 315 inside the U-shaped block 314. The hollow rod 315 drives the third longitudinal axis 316 to slide inside the upper slide groove 36 during the rotation process, so that the second connecting plate 35 slides on the surface of the built-in slide plate 34. After the position of the second longitudinal axis 311 is adjusted, the positioning screw 44 is rotated. Under the action of the thread, the end of the positioning screw 44 is pressed against the built-in slide plate 34, thereby fixing the position between the built-in slide plate 34 and the second connecting plate 35. As a result, the bearing platform 23 can be driven to move synchronously when the second connecting plate 35 moves.

[0058] When the second fixing plate 311 is moved to the left of the fixing plate 314, the fixing plate 310 is moved to the right of the fixing plate 315. When the second fixing plate 311 is moved to the right of the fixing plate 314, the fixing plate 310 is moved to the right of the fixing plate 315.

[0059] When the first longitudinal axis 210 moves from right to left, the first longitudinal axis 210 can be easily slid into between the fourth positioning plate 222 and the third positioning plate 221 under the action of the guide section 1 symmetrically provided at one end of the fourth positioning plate 222 and the third positioning plate 221, and the position of the first longitudinal axis 210 during the movement is restricted under the restriction of the fourth positioning plate 222 and the third positioning plate 221. When the first longitudinal axis 210 moves from left to right, the first longitudinal axis 210 can be easily slid into between the second positioning plate 220 and the first positioning plate 219 under the action of the guide section 2 symmetrically provided at one end of the second positioning plate 220 and the first positioning plate 219, and the position of the first longitudinal axis 210 during the movement is restricted under the restriction of the second positioning plate 220 and the first positioning plate 219, thereby avoiding the situation in which the synchronous belt 27 becomes loose during use, causing the position of the first longitudinal axis 210 to be offset, thereby causing deviation in the cutting of the insulation board, and ensuring the accuracy of the edge cutting of the insulation board.

[0060] Finally, it should be noted that the above descriptions are merely preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art will be able to modify the technical solutions described in the aforementioned embodiments or substitute equivalents for some of the technical features. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.

Claims

1. A trimming machine for processing insulation boards, comprising a processing table (1); Its characteristics are: The surface of the processing table (1) is provided with a trimming assembly (2), the trimming assembly (2) comprising an optical axis (22) arranged above the processing table (1) and a rectangular block (213) sleeved on the surface of the optical axis (22), the trimming assembly (2) further comprising a bearing platform (23), a side transverse plate (26), a synchronous belt (27), a synchronous wheel (28), a rotating shaft (29), a first longitudinal axis (210), a cutting disc (211), a first motor (212), a U-shaped clamping rod (215), a built-in square plate (216), a second motor (218) and an L-shaped mounting block (223), the two sides of the processing table (1) are respectively fixedly connected with side support plates (21), and the optical axis ( 22), a rectangular block (213) is sleeved on the surface of the optical axis (22), the rectangular block (213) and the optical axis (22) are slidably connected, an L-shaped mounting block (223) is fixedly connected to one side of the rectangular block (213), the bottom surface of the L-shaped mounting block (223) is fixedly connected to the first motor (212), the end of the output shaft of the first motor (212) is fixedly connected to the cutting disk (211), the upper surface of the processing table (1) is provided with a bearing platform (23), the surface of the bearing platform (23) is provided with a clamping member (24), a U-shaped clamping rod (215) is inserted into the lower groove (214) opened on the bottom surface of the L-shaped mounting block (223), and an inner groove opened at the bottom end of the U-shaped clamping rod (215) is inserted into the inner groove A square plate (216) is placed, the built-in square plate (216) and the upper surface of the processing table (1) are fitted together, the built-in square plate (216) and the processing table (1) are slidably connected, the U-shaped clamping rod (215) is rotatably connected to the L-shaped mounting block (223) through a rotating shaft 1, the built-in square plate (216) is rotatably connected to the U-shaped clamping rod (215) through a rotating shaft 2, the surface of the U-shaped clamping rod (215) and the groove wall of the lower groove (214) opened on the bottom surface of the L-shaped mounting block (223) are fitted together, the surface of the built-in square plate (216) and the groove wall of the groove opened at the bottom end of the U-shaped clamping rod (215) are fitted together, one side of the processing table (1) is fixedly connected to a side horizontal plate (26), and the upper surface of the side horizontal plate (26) is provided with two A rotating shaft (29), wherein the two rotating shafts (29) are rotatably connected via bearings and side transverse plates (26), and a synchronous wheel (28) is fixedly sleeved on the surface of each rotating shaft (29). A second motor (218) is installed on the bottom surface of the side transverse plate (26), and the end of the output shaft of the second motor (218) is fixedly connected to the bottom end of one of the rotating shafts (29). A synchronous belt (27) is sleeved on the surface of the two synchronous wheels (28), and a first longitudinal shaft (210) is fixedly connected to the upper surface of the synchronous belt (27). The first longitudinal shaft (210) is inserted into a longitudinal hole (217) opened inside the built-in square plate (216), and the first longitudinal shaft (210) and the built-in square plate (216) are rotatably connected; A clearance component (3) is provided on one side of the carrier platform (23), and the clearance component (3) is used for cutting and chamfering the insulation board. The clearance component (3) includes a first connecting plate (32), a built-in slide plate (34), a second connecting plate (35), a square positioning plate (310), a second longitudinal axis (311), a hollow rod (315) and a third longitudinal axis (316). The surface of the first connecting plate (32) is fixedly connected with two built-in slide plates (34). The two built-in slide plates (34) are respectively inserted into the first built-in slide groove (31) opened inside the processing table (1). The built-in slide plates (34) and the processing table (1) are slidably connected. The first longitudinal axis (210) is located in the built-in square groove (33) opened inside the first connecting plate (32). The first longitudinal axis (210) and the first connecting plate (32) are slidably connected. The two built-in slide plates (34) are respectively inserted into the two second inner grooves (33) opened inside the second connecting plate (35). The second connecting plate (35) and the built-in slide (34) are slidably connected in the slide groove (313), a U-shaped block (314) is fixedly connected to one side of the carrier (23), one end of the hollow rod (315) is inserted into the inside of the U-shaped block (314), one end of the hollow rod (315) is rotatably connected to the U-shaped block (314) through the rotating shaft three, and the other end of the hollow rod (315) is inserted into the inner sliding groove opened in the second connecting plate (35). In the groove (37), a third longitudinal axis (316) is longitudinally inserted at one end of the hollow rod (315) away from the U-shaped block (314), the third longitudinal axis (316) and the hollow rod (315) are fixedly connected, the third longitudinal axis (316) is inserted in an upper sliding groove (36) opened on the surface of the second connecting plate (35), the third longitudinal axis (316) and the second connecting plate (35) are slidably connected, and the interiors of the upper sliding groove (36) and the inner sliding groove (37) are connected; An adjustment component (4) is provided on the surface of the square positioning plate (310), and the adjustment component (4) is used to adjust the size of the chamfered corners of the insulation board. The adjustment component (4) comprises a first bearing (42), a threaded rod (43), and a positioning screw (44).

2. The trimming machine for processing thermal insulation boards according to claim 1, characterized in that: The clamping member (24) comprises a U-shaped bracket (241), an electric push rod (242) and a rubber pressure plate (243); the U-shaped bracket (241) is fixedly connected to the upper surface of the bearing platform (23); a plurality of electric push rods (242) are installed inside the U-shaped bracket (241); and the ends of the telescopic rods of the electric push rods (242) are fixedly connected to the rubber pressure plate (243).

3. The trimming machine for processing thermal insulation boards according to claim 1, characterized in that: A U-shaped limiting frame (25) is fixedly connected to the upper surface of the processing table (1), the built-in square plate (216) is located between the U-shaped limiting frame (25) and the processing table (1), and the U-shaped limiting frame (25) and the built-in square plate (216) are slidably connected.

4. The trimming machine for processing thermal insulation boards according to claim 1, characterized in that: The upper surface of the side transverse plate (26) is fixedly connected with a first positioning plate (219), a second positioning plate (220), a third positioning plate (221) and a fourth positioning plate (222); the second positioning plate (220) and the third positioning plate (221) are located inside the synchronous belt (27); the synchronous belt (27) is located between the first positioning plate (219) and the fourth positioning plate (222); the third positioning plate (221) is located between the fourth positioning plate (222) and the second positioning plate (220); the second positioning plate (220) is located between the third positioning plate (221) and the first positioning plate (219); one end of the fourth positioning plate (222) and the third positioning plate (221) is symmetrically provided with a guide section 1; one end of the second positioning plate (220) and the first positioning plate (219) is symmetrically provided with a guide section 2.

5. The trimming machine for processing thermal insulation boards according to claim 1, characterized in that: A second longitudinal axis (311) is inserted into the interior of the hollow rod (315), and a square positioning plate (310) is fixedly connected to the bottom end of the second longitudinal axis (311). The square positioning plate (310) is inserted into a square positioning groove (312) provided on the upper surface of the processing table (1), and the second longitudinal axis (311) and the hollow rod (315) are slidably connected.

6. The trimming machine for processing thermal insulation boards according to claim 1, characterized in that: The bottom surface of the supporting platform (23) is fixedly connected to two dovetail plates (39), and the dovetail plates (39) are inserted into dovetail grooves (38) provided on the upper surface of the processing platform (1). The dovetail plates (39) and the processing platform (1) are slidably connected.

7. The trimming machine for processing thermal insulation boards according to claim 1, characterized in that: A threaded rod (43) is inserted into the second threaded hole (46) opened inside the square positioning plate (310), and the threaded rod (43) and the square positioning plate (310) are threadedly connected. Two first bearings (42) are sleeved on the surface of the threaded rod (43), and the first bearings (42) are installed in the square positioning groove (312) opened on the upper surface of the processing table (1). The threaded rod (43) is rotatably connected to the processing table (1) through the first bearings (42). The square positioning plate (310) and the processing table (1) are slidably connected. One end of the threaded rod (43) is fixedly connected to the rotating disk (41). Two first threaded holes (45) opened at both ends of the second connecting plate (35) are respectively inserted with positioning screws (44). The positioning screw (44) and the second connecting plate (35) are threadedly connected, and one end of the positioning screw (44) is in contact with the surface of the built-in slide plate (34).

Citation Information

Patent Citations

  • Plate chamfering cutting machine

    CN219171017U

  • Chamfering device for decorative laminated board

    CN221364929U