Cutting device for producing and manufacturing arc-shaped doors and windows

By designing a cutting device for the production and manufacturing of arc-shaped doors and windows including cutting components, collection components and classification components, the problems of difficulty in adjusting cutting angles of arc-shaped profiles and cumbersome L-shaped sections in the prior art are solved, and the effect of efficient cutting and classification collection is achieved.

CN119927770AActive Publication Date: 2025-05-06GUANGDONG TENGYING HOUSEHOLD PROD CO LTD
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Patent Information

Application Number
CN202510399038.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2025-05-06
Estimated Expiration
2045-04-01

AI Technical Summary

Technical Problem

In the production of arc-shaped doors and windows, it is difficult to adjust the cutting angle when cutting arc-shaped profiles, resulting in low working efficiency. When forming an L-shaped section, multiple position adjustments and cutting are required, and the process is cumbersome.

Method used

A cutting device for the production and manufacturing of curved doors and windows including cutting components, collection components and classification components is designed. The cutting assembly drives the slide plate and the adjustment plate through the hydraulic cylinder to adjust the cutting angle, and completes the cutting of the L-shaped section through the combination of the No. 1 grinding wheel, the No. 2 grinding wheel and the No. 3 grinding wheel. The collection component collects waste and debris generated by cutting through the cooperation of pallets and elliptical blocks, and the classification component realizes the classification and collection of debris and waste through filters and dredging racks.

Benefits of technology

The cutting efficiency of arc-shaped profiles is improved, unnecessary operating procedures are reduced, stable clamping and efficient cutting of arc-shaped profiles are achieved, the flatness of cutting surfaces is ensured, and the treatment efficiency of waste and debris is improved through the classification collection of components.

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Abstract

The invention relates to the technical field of cutting devices, and discloses a cutting device for arc-shaped door and window production and manufacturing. The cutting assembly is used for cutting the arc-shaped profile; the collecting assembly is used for collecting chippings and waste materials generated by cutting; the classifying assembly is used for classifying and collecting the chippings and the waste materials; the cutting assembly comprises a sliding plate, and the sliding plate is installed in the installation base in a sliding mode. Through the arrangement of the cutting assembly, a first grinding wheel, a second grinding wheel and a third grinding wheel can complete cutting operation of three cutting faces through one-time reciprocating motion, an L-shaped connector section is formed by an arc-shaped profile, and the working efficiency is improved; through the arrangement of the two adjusting plates and the two adjusting rods, a worker can adjust the cutting angle according to actual requirements, the position of an arc-shaped profile does not need to be adjusted, unnecessary operation procedures are reduced, and the working efficiency is further improved.
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Description

Technical Field

[0001] The invention relates to the technical field of cutting devices, and in particular to a cutting device for producing curved doors and windows. Background Art

[0002] Curved doors and windows refer to doors and windows with curved designs on the top or sides. Curved doors and windows add beauty and visual experience to buildings with their unique shape and design. During the production process of curved doors and windows, the profiles need to be bent, cut by a cutting device, and the curved profiles in different parts are assembled to form curved door and window frames. When some curved profiles are cut, the interface section of the curved profile needs to be cut into an L shape for easy splicing and assembly.

[0003] However, the prior art has the following problems: 1. The prior art usually uses a grinding wheel to cut the profile longitudinally. Since the arc profile has certain angle requirements when cutting, the existing cutting machine is not convenient for adjusting the cutting angle when in use, resulting in the need for workers to adjust the angle of the profile during cutting, resulting in low work efficiency.

[0004] 2. The prior art uses a grinding wheel to cut the profile. In actual operation, when an L-shaped section needs to be cut, the profile needs to be adjusted several times and cut several times to form the L-shaped section. The work process is cumbersome and the work efficiency is low. Summary of the invention

[0005] The purpose of the present invention is to provide a cutting device for the production of curved doors and windows in order to solve the above-mentioned problems and overcome the defects of the prior art, as described in detail below.

[0006] To achieve the above object, the present invention provides the following technical solutions: The invention provides a cutting device for producing and manufacturing curved doors and windows, comprising: a mounting seat; a cutting assembly for cutting curved profiles; a collecting assembly for collecting debris and waste generated by cutting; and a classification assembly for classifying and collecting the debris and waste; the cutting assembly comprises a slide plate, the slide plate is slidably mounted in the mounting seat, a hydraulic cylinder is mounted in the mounting seat, the output end of the hydraulic cylinder is connected to the slide plate, two adjustment plates are mounted on the slide plate, a mounting frame is rotatably mounted between the two adjustment plates, a motor is mounted on the mounting frame, an output shaft is connected to the output end of the motor, a No. 1 grinding wheel and a No. 2 grinding wheel are mounted on the output shaft, a bevel gear is connected to the outer wall of the output shaft, a No. 1 bevel gear rod and a No. 2 bevel gear rod are rotatably mounted on the mounting frame, the No. 1 bevel gear rod and the No. 2 bevel gear rod are meshed, a No. 1 gear is connected to one end of the No. 1 bevel gear rod away from the No. 2 bevel gear rod, the No. 1 gear is meshed with the bevel gear, a No. 3 grinding wheel is mounted on one end of the No. 2 bevel gear rod away from the No. 1 bevel gear rod, and adjustment rods are slidably connected to adjustment rods on both sides of the mounting frame.

[0007] Preferably, the No. 2 grinding wheel is located between the motor and the No. 1 grinding wheel, the No. 1 grinding wheel is parallel to the No. 2 grinding wheel, the No. 3 grinding wheel is perpendicular to the No. 2 grinding wheel, and the diameter of the No. 2 grinding wheel is greater than the diameter of the No. 1 grinding wheel.

[0008] Preferably, the adjustment plate is provided with an arc groove, the arc groove of the adjustment plate is provided with a plurality of limit grooves, and the two adjustment rods are respectively slidably connected to the arc grooves of the two adjustment plates.

[0009] The top surface of the inclined slide is connected with a connecting frame, and the top surface of the connecting frame is connected with a push rod, and the top of the connecting frame is connected with a push rod, and the top of the connecting frame is connected with a push rod. The top of the mounting seat is rotatably mounted with a rotating rod through the bracket, and the clamping frame is mounted on the top of the mounting seat through the bracket. The supporting rod is installed on the clamping frame, and the sliding rod is slidably mounted on the clamping frame. One end of the sliding rod close to the supporting rod is connected with a pressure block, and a return spring is arranged between the sliding rod and the clamping frame, one end of the rotating rod is in sliding contact with the bottom of the push rod, and the other end of the rotating rod is in sliding contact with one end of the sliding rod away from the pressure block, and a storage plate is installed on the front outer wall of the mounting seat through the bracket.

[0010] Preferably, the cutting assembly also includes a cooling part, which includes a water tank, the water tank is installed on the slide, an air cylinder is installed on the front side of the water tank, the top of the water tank is connected to an atomizing nozzle through a water pipe, a triangular block is installed on the front inner wall of the mounting seat, the air cylinder contacts the triangular block during movement, and a recovery basin is installed on the slide via a bracket, and the recovery basin is located between the water tank and the No. 2 grinding wheel.

[0011] Preferably, the collecting assembly includes a collecting box, which is mounted on the rear outer walls of two adjusting plates, with a mounting shaft installed between the two adjusting plates, and a support plate is rotatably connected to the outer wall of the mounting shaft, a limiting rod is connected to the mounting frame, the limiting rod abuts against the bottom of the support plate, and the end of the support plate away from the limiting rod is located in the collecting box.

[0012] Preferably, a rotating shaft is rotatably installed through the inner wall of the collection box, one end of the rotating shaft is connected to an elliptical block, and the other end of the rotating shaft is connected to a No. 2 gear, the elliptical block is located inside the collection box, and the No. 2 gear is located outside the collection box, a rack is installed on the rear inner wall of the mounting seat, and the No. 2 gear is meshed with the rack, and a pull rod is connected to the bottom surface of one end of the support plate located in the collection box, and the elliptical block is in sliding contact with the pull rod.

[0013] Preferably, the classification component includes a classification box, which is slidably installed inside the collection box, and a waste box is slidably installed on the bottom inner wall of the classification box, and a filter is installed inside the classification box, and the filter is located above the waste box, and a plurality of filter holes are arranged on the filter, and a light rod is installed on the inner wall of the classification box, and a fork rod is slidably connected to the outer wall of the light rod, and a bevel wheel is connected to the outer wall of the rotating shaft, and the top end of the fork rod is set to a fork shape, and the bevel wheel is located in the fork-shaped top end of the fork rod, and two movable rods are slidably installed on the inner wall of the classification box, and the two movable rods are respectively located on both sides of the light rod, and connecting rods are respectively hinged on the two movable rods, and the ends of the two connecting rods away from the movable rod are respectively hinged to the two sides of the fork rod, and a plurality of shift rods are installed on the movable rod.

[0014] Preferably, a dredging rack is slidably installed on the inner wall of the classification box, the dredging rack is located below the filter, a plurality of dredging needles are arranged on the dredging rack, the plurality of dredging needles on the dredging rack are respectively located below a plurality of filter holes of the filter, a slide groove is arranged on the filter, a straight rod is connected to the bottom end of the fork rod, the outer wall of the straight rod is slidably connected to the slide groove of the filter, two sliding shafts are connected to the bottom of the straight rod, two inclined slot plates are connected to the dredging rack, an inclined slot is arranged on the inclined slot plate, and the two sliding shafts are respectively slidably connected to the inclined slots of the two inclined slot plates.

[0015] The beneficial effects are: 1. The cutting device for manufacturing curved doors and windows, through the setting of the cutting assembly, enables the first grinding wheel, the second grinding wheel and the third grinding wheel to complete the cutting operation of three cutting surfaces through one reciprocating movement, so that the curved profile forms an L-shaped interface section, which improves the work efficiency; through the setting of two adjustment plates and two adjustment rods, the staff can adjust the cutting angle according to actual needs, and there is no need to adjust the position of the curved profile, which reduces unnecessary operation procedures and further improves the work efficiency; through the setting of the clamping part, before the curved profile is cut, the pressure block can move downward and clamp the curved profile stably through the cooperation with the support rod, so as to avoid the shaking of the curved profile during the cutting process and affect the cutting effect; through the setting of the cooling part, during the cutting process of the curved profile, the atomizing nozzle sprays water atomization onto the first grinding wheel, the second grinding wheel, the third grinding wheel and the cutting surface of the curved profile, which plays a certain cooling role, so as to avoid the first grinding wheel, the second grinding wheel and the third grinding wheel from overheating after long-term use and affect the use effect and service life.

[0016] 2. The cutting device for the production of curved doors and windows, through the setting of the collecting component, enables the pallet to catch the waste and some debris generated during cutting. The waste and some debris slide along the pallet into the collection box for collection, which is convenient for the staff to handle later; through the cooperation of the elliptical block and the pull rod, the elliptical block can drive the pallet to shake continuously through the pull rod when it rotates, thereby promoting the sliding of the debris and waste above the pallet, avoiding some debris and waste from adhering to the pallet and causing jamming.

[0017] 3. The cutting device for the production of curved doors and windows, through the setting of the classification components, enables the filter in the classification box to classify and collect debris and waste. The debris enters the waste box through the filter, and the waste is temporarily retained in the classification box, thereby achieving the effect of classification and collection, which is convenient for the staff to subsequently transfer the debris and waste to different treatment methods; through the setting of multiple levers, the multiple levers can continuously move the waste that can be touched by reciprocating left and right, so that the waste is more evenly spread in the classification box to avoid waste accumulation, and the debris attached to the surface of the waste can be fallen off by moving the waste, further improving the effect of separating debris from waste; through the setting of the dredging frame, the dredging frame can continuously dredge the filter by reciprocating up and down, thereby avoiding clogging of the filter holes after long-term use, thereby affecting the effect of separating debris and waste. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.

[0019] Figure 1 It is a schematic diagram of the appearance of the present invention; Figure 2 It is a schematic diagram of the overall structure of the present invention; Figure 3 It is a schematic diagram of the structure of the cutting assembly of the present invention; Figure 4 It is a schematic diagram of the structure of the adjustment plate of the present invention; Figure 5 It is a schematic diagram of the structure of the mounting frame of the present invention; Figure 6 It is a schematic diagram of the structure of the clamping part of the present invention; Figure 7 It is a schematic diagram of the cooling unit structure of the present invention; Figure 8 It is a schematic diagram of the structure of the collection component of the present invention; Fig. 9 It is a schematic diagram of the structure of the skateboard of the present invention; Fig.10 It is a schematic diagram of the elliptical block structure of the present invention; Fig.11 It is a schematic diagram of the classification component structure of the present invention; Fig.12 It is a schematic diagram of the structure of the classification box of the present invention; Fig.13 It is a schematic diagram of the filter structure of the present invention; Fig.14 It is a schematic diagram of the structure of the dredging frame of the present invention.

[0020] The reference numerals are as follows: 1. mounting seat; 2. cutting assembly; 21. slide plate; 22. hydraulic cylinder; 23. adjustment plate; 24. mounting frame; 25. adjustment rod; 26. motor; 27. output shaft; 28. grinding wheel No. 1; 29. ​​grinding wheel No. 2; 210. bevel gear; 211. gear No. 1; 212. bevel gear rod No. 1; 213. bevel gear rod No. 2; 214. grinding wheel No. 3; 3. clamping part; 31. abutment rod; 32. inclined slide frame; 33. connecting frame; 34. push rod; 35. rotating rod; 36. clamping frame; 37. slide rod; 38. pressing block; 39. supporting rod; 4. cooling part; 41. Water tank; 42. Air cylinder; 43. Atomizing nozzle; 44. Triangle block; 45. Recovery basin; 5. Collection component; 51. Mounting shaft; 52. Support plate; 53. Limit rod; 54. Collection box; 55. Rotating shaft; 56. No. 2 gear; 57. Rack; 58. Elliptical block; 59. Pull rod; 6. Classification component; 61. Classification box; 62. Waste box; 63. Filter; 64. Light rod; 65. Fork rod; 66. Bevel wheel; 67. Connecting rod; 68. Movable rod; 69. Push rod; 610. Straight rod; 611. Dredging rack; 612. Sliding shaft; 613. Bevel trough plate; 7. Storage plate. DETAILED DESCRIPTION

[0021] To make the purpose, technical solution and advantages of the present invention clearer, the technical solution of the present invention will be described in detail below. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other implementation methods obtained by ordinary technicians in this field without making creative work belong to the scope of protection of the present invention. Example 1

[0022] See also Figure 1 - Figure 5A cutting device for manufacturing curved doors and windows comprises: a mounting seat 1; a cutting assembly 2 for cutting curved profiles; the cutting assembly 2 comprises a slide plate 21, the slide plate 21 is slidably mounted in the mounting seat 1, a hydraulic cylinder 22 is mounted in the mounting seat 1, the output end of the hydraulic cylinder 22 is connected to the slide plate 21, the output end of the hydraulic cylinder 22 extends to drive the slide plate 21 to move left or right, two adjustment plates 23 are mounted on the slide plate 21, a mounting frame 24 is rotatably mounted between the two adjustment plates 23, a motor 26 is mounted on the mounting frame 24, an output end of the motor 26 is connected to an output shaft 27, a first grinding wheel 28 and a second grinding wheel 29 are mounted on the output shaft 27, and the motor 26 drives the first grinding wheel 28 and the second grinding wheel 29 to rotate through the output shaft 27 The outer wall of the output shaft 27 is connected with a bevel gear 210, and a No. 1 bevel gear rod 212 and a No. 2 bevel gear rod 213 are rotatably installed on the mounting frame 24, and the No. 1 bevel gear rod 212 and the No. 2 bevel gear rod 213 are meshed, and the end of the No. 1 bevel gear rod 212 away from the No. 2 bevel gear rod 213 is connected to the No. 1 gear 211, and the No. 1 gear 211 is meshed with the bevel gear 210, and the No. 3 grinding wheel 214 is installed at the end of the No. 2 bevel gear rod 213 away from the No. 1 bevel gear rod 212, and the bevel gear 210 drives the No. 1 bevel gear rod 212 to rotate through the No. 1 gear 211, and the No. 1 bevel gear rod 212 drives the No. 3 grinding wheel 214 to rotate through the No. 2 bevel gear rod 213, and the No. 2 grinding wheel 29 is located between the motor 26 and the No. 1 grinding wheel 28, and the No. 1 grinding wheel 28 and the No. 2 grinding wheel 2 9 is parallel, the third grinding wheel 214 is perpendicular to the second grinding wheel 29, the diameter of the second grinding wheel 29 is greater than the diameter of the first grinding wheel 28, and the first grinding wheel 28, the second grinding wheel 29 and the third grinding wheel 214 are in the process of moving to the right, the first grinding wheel 28 and the second grinding wheel 29 first cut the arc-shaped profile, and the third grinding wheel 214 cuts the arc-shaped profile again. A total of three cutting surfaces are required for the L-shaped section, and the three cutting surfaces form an H shape when viewed from the side. The first grinding wheel 28, the second grinding wheel 29 and the third grinding wheel 214 can cut an L-shaped section on the arc-shaped profile by cooperation; the two sides of the mounting frame 24 are slidably connected with adjustment rods 25, the adjustment plate 23 is provided with an arc groove, and the arc groove of the adjustment plate 23 is provided with a plurality of limit grooves, and the two adjustment rods 25 are respectively connected to the mounting frame 24; the adjustment plate 23 is provided with an arc groove, and the arc groove of the adjustment plate 23 is provided with a plurality of limit grooves. The section rod 25 is slidably connected with the arc grooves of the two adjustment plates 23 respectively. Under normal circumstances, the two adjustment rods 25 are stuck in one of the limit grooves of the arc grooves of the two adjustment plates 23. Different limit grooves correspond to different cutting angles. When the cutting angle needs to be adjusted, the staff slides the two adjustment rods 25 outward from the center of the arc groove to make the two adjustment rods 25 disengage from the limit grooves. At this time, the staff can drive the mounting frame 24 to rotate through the two adjustment rods 25. At the same time, the two adjustment rods 25 slide in the two arc grooves respectively. When the mounting frame 24 rotates to the corresponding angle, the staff slides the two adjustment rods 25 into the corresponding two limit grooves to fix the cutting angle, thereby achieving the effect of adjusting the cutting angle according to actual needs.By setting the cutting assembly 2, the first grinding wheel 28, the second grinding wheel 29 and the third grinding wheel 214 can complete the cutting operation of three cutting surfaces through one reciprocating movement, so that the arc profile forms an L-shaped interface section, which improves the work efficiency; by setting the two adjustment plates 23 and the two adjustment rods 25, the staff can adjust the cutting angle according to actual needs, without the need to adjust the position of the arc profile, reducing unnecessary operation processes, and further improving the work efficiency. ;

[0023] For further information, see Figure 6 The cutting assembly 2 also includes a clamping portion 3, and the clamping portion 3 includes a resisting rod 31. The resisting rod 31 is mounted on the rear side of the slide plate 21. An inclined plane slide 32 is slidably mounted on the inner wall of the rear side of the mounting seat 1. The bottom surface of the inclined plane slide 32 is in sliding contact with the resisting rod 31. The slide plate 21 drives the resisting rod 31 to slide to the right. When the resisting rod 31 slides to the right, it slides along the bottom surface of the inclined plane slide 32, so that the resisting rod 31 pushes the inclined plane slide 32 upward along the inclined surface at the bottom of the inclined plane slide 32. The top surface of the mounting base 1 is connected with a connecting frame 33, the top surface of the connecting frame 33 is connected with a top rod 34, the top of the mounting base 1 is rotatably mounted with a rotating rod 35 through a bracket, the top of the mounting base 1 is mounted with a clamping frame 36 through a bracket, a supporting rod 39 is mounted on the clamping frame 36, a sliding rod 37 is slidably mounted on the clamping frame 36, and one end of the sliding rod 37 close to the supporting rod 39 is connected with a pressing block 38, which has a certain elasticity and can meet the clamping requirements of various profiles. The staff passes one end of the arc profile through the supporting rod The cam 37 is pressed against the bottom surface of the support frame 36, and the cam 37 is pressed against the bottom surface of the support frame 36, so that the cam 37 is pressed against the bottom surface of the support frame 36, and the cam 37 is pressed against the bottom surface of the support frame 36, so that the cam 37 is pressed against the bottom surface of the support frame 36, and the cam 37 is pressed against the bottom surface of the support frame 36, so that the cam 37 is pressed against the bottom surface of the support frame 36, and the cam 37 is pressed against the bottom surface of the support frame 36, so that the cam 37 is pressed against the bottom surface of the support frame 36, and the cam 37 is pressed against the bottom surface of the support frame 36, so that the cam 37 is pressed against the bottom surface of the support frame 36, so that the cam 37 is pressed against the bottom surface of the support frame 36, and the cam 37 is pressed against the bottom surface of the support frame 36, so that the cam 37 is pressed against the bottom surface of the support frame 36, so that the cam

[0024] For further information, see Figure 7The cutting assembly 2 also includes a cooling unit 4, which includes a water tank 41. The water tank 41 is mounted on the slide 21. An air cylinder 42 is mounted on the front side of the water tank 41. The top of the water tank 41 is connected to an atomizing nozzle 43 through a water pipe. A triangular block 44 is mounted on the front inner wall of the mounting seat 1. The air cylinder 42 contacts the triangular block 44 during movement. The air cylinder 42 has a telescopic end with self-resilience, and the telescopic end is set as an arc surface. After the telescopic end of the air cylinder 42 contacts the triangular block 44, in the process of the air cylinder 42 moving to the right, the telescopic end is gradually contracted by the reverse thrust of the inclined surface of the triangular block 44. When the telescopic end contracts, the air cylinder 42 injects air into the water tank 41, so that the water tank 41 transports water through the water pipe through the positive pressure. The cooling water is sent to the atomizing nozzle 43, and the atomizing nozzle 43 sprays the water into atomized form onto the first grinding wheel 28, the second grinding wheel 29 and the third grinding wheel 214. A recovery basin 45 is installed on the slide plate 21 through a bracket, and the recovery basin 45 is located between the water tank 41 and the second grinding wheel 29. Some debris and cooling water drip into the recovery basin 45 for collection. Through the arrangement of the cooling part 4, during the cutting process of the arc profile, the atomizing nozzle 43 sprays the water into atomized form onto the first grinding wheel 28, the second grinding wheel 29, the third grinding wheel 214 and the cutting surface of the arc profile, which plays a certain cooling role, thereby preventing the first grinding wheel 28, the second grinding wheel 29 and the third grinding wheel 214 from overheating after long-term use, thereby affecting the use effect and service life.

[0025] Further, see Figure 8 - Fig.10The collecting assembly 5 is used to collect the debris and waste generated by cutting. The collecting assembly 5 includes a collecting box 54, which is installed on the rear outer wall of the two adjusting plates 23. A mounting shaft 51 is installed between the two adjusting plates 23. The outer wall of the mounting shaft 51 is rotatably connected to a support plate 52. A limiting rod 53 is connected to the mounting frame 24. The limiting rod 53 abuts against the bottom of the support plate 52. One end of the support plate 52 away from the limiting rod 53 is located in the collecting box 54. The support plate 52 is inclined, and the waste and debris are collected in a certain manner. The support plate 52 slides into the collection box 54 for collection, which is convenient for the staff to handle later; a rotating shaft 55 is rotatably installed on the inner wall of the collection box 54, one end of the rotating shaft 55 is connected to an elliptical block 58, and the other end of the rotating shaft 55 is connected to a second gear 56, the elliptical block 58 is located in the collection box 54, and the second gear 56 is located outside the collection box 54. A rack 57 is installed on the inner wall of the rear side of the mounting seat 1, and the second gear 56 is meshed with the rack 57. When the rotating shaft 55 moves, it drives the second gear 56 When the second gear 56 moves, it rotates through meshing with the rack 57. When the second gear 56 rotates, it drives the rotating shaft 55 and the elliptical block 58 to rotate. The bottom surface of one end of the support plate 52 located in the collection box 54 is connected to a pull rod 59. The elliptical block 58 is in sliding contact with the pull rod 59. When the elliptical block 58 rotates, it can drive the support plate 52 to continuously shake up and down through the pull rod 59. The support plate 52 can promote the waste and debris above it to slide quickly into the collection box 54 by shaking up and down. The setting of the collecting component 5 enables the pallet 52 to catch the waste and some debris generated during cutting. The waste and some debris slide along the pallet 52 into the collecting box 54 for collection, which is convenient for the staff to handle later. Through the cooperation of the elliptical block 58 and the pull rod 59, the elliptical block 58 can drive the pallet 52 to shake continuously through the pull rod 59 when it rotates, thereby promoting the debris and waste above the pallet 52 to slide down, and avoiding some debris and waste from adhering to the pallet 52 and causing material jamming.

[0026] For further information, see Fig.11 - Fig.14The classification component 6 is used to classify and collect debris and waste. The classification component 6 includes a classification box 61, which is slidably installed inside the collection box 54. A waste box 62 is slidably installed on the bottom inner wall of the classification box 61. A filter screen 63 is installed inside the classification box 61. The filter screen 63 is located above the waste box 62. A plurality of filter holes are arranged on the filter screen 63. After the waste and debris fall into the collection box 54, they enter the classification box 61. The debris falls into the waste box 62 through the plurality of filter holes of the filter screen 63, and the waste stays above the filter screen 63, thereby achieving the effect of classifying and collecting the waste and debris. The classification box 61 can be pulled out of the collection box 54, and the waste box 62 can be pulled out of the classification box 61, which is convenient for workers. The staff takes out the waste and debris; the inner wall of the classification box 61 is installed with a polished rod 64, and the outer wall of the polished rod 64 is slidably connected with a fork rod 65, and the outer wall of the rotating shaft 55 is connected with an inclined wheel 66, and the top of the fork rod 65 is set to be fork-shaped, and the inclined wheel 66 is located in the fork-shaped top of the fork rod 65. When the inclined wheel 66 rotates, the fork rod 65 is shifted back and forth through the fork-shaped top of the fork rod 65, so that the fork rod 65 slides back and forth on the polished rod 64. Two movable rods 68 are slidably installed on the inner wall of the classification box 61. The two movable rods 68 are respectively located on both sides of the polished rod 64. The two movable rods 68 are respectively hinged with connecting rods 67. The ends of the two connecting rods 67 away from the movable rod 68 are respectively hinged to the two sides of the fork rod 65. 8 is equipped with a plurality of levers 69. When the fork lever 65 slides back and forth, the two movable levers 68 are driven to slide back and forth on the inner wall of the classification box 61 through the two connecting rods 67. The two movable levers 68 drive the plurality of levers 69 to move back and forth in the classification box 61. The plurality of levers 69 can move the waste in the classification box 61 to roll to both sides, so as to avoid the waste from accumulating in the middle position of the classification box 61 and causing blockage. A dredging frame 611 is slidably installed on the inner wall of the classification box 61. The dredging frame 611 is located below the filter screen 63. A plurality of dredging needles are arranged on the dredging frame 611. The plurality of dredging needles on the dredging frame 611 are respectively located below the plurality of filter holes of the filter screen 63. A slide groove is arranged on the filter screen 63. The bottom end of the fork rod 65 is connected with a straight rod 610, the outer wall of the straight rod 610 is slidably connected with the slide groove of the filter screen 63, the bottom of the straight rod 610 is connected with two sliding shafts 612, and the dredging frame 611 is connected with two inclined slot plates 613, and the inclined slot plates 613 are provided with inclined slots. The two sliding shafts 612 are slidably connected with the inclined slots of the two inclined slot plates 613 respectively. When the two sliding shafts 612 reciprocate back and forth, they can drive the two inclined slot plates 613 to reciprocate up and down. When the two inclined slot plates 613 reciprocate up and down, they drive the dredging frame 611 to reciprocate up and down. The multiple dredging needles on the dredging frame 611 can continuously dredge the multiple filter holes of the filter screen 63 through reciprocating up and down to avoid clogging of the filter holes of the filter screen 63.By setting the classification component 6, the filter 63 in the classification box 61 can classify and collect the debris and waste, and the debris enters the waste box 62 through the filter 63, and the waste is temporarily retained in the classification box 61, so as to achieve the effect of classification and collection, and facilitate the staff to transfer the debris and waste to different treatment paths later; by setting a plurality of levers 69, the plurality of levers 69 can continuously move the waste that can be touched by reciprocating left and right, so that the waste is more evenly spread in the classification box 61, avoiding the accumulation of waste, and the debris attached to the surface of the waste can be dropped by moving the waste, further improving the effect of separating the debris and the waste; by setting the dredging frame 611, the dredging frame 611 can continuously dredge the filter 63 by reciprocating up and down, avoiding the clogging of the filter holes of the filter 63 after long-term use, thereby affecting the effect of separating the debris and the waste. ;

[0027] With the above structure, the working principle of this case is that the staff passes one end of the arc-shaped profile through the gap between the support rod 39 and the pressure block 38, so that the bent end of the profile faces downward, and the profile is placed on the storage plate 7, and the motor 26 is started. The motor 26 drives the No. 1 grinding wheel 28 and the No. 2 grinding wheel 29 to rotate through the output shaft 27. The output shaft 27 rotates while driving the bevel gear 210 to rotate. The bevel gear 210 drives the No. 1 bevel gear rod 212 to rotate through the No. 1 gear 211. The No. 1 bevel gear rod 212 drives the No. 3 grinding wheel 214 to rotate through the No. 2 bevel gear rod 213. The hydraulic cylinder 22 is started, and the output end of the hydraulic cylinder 22 extends to drive the slide plate 21 to move rightward. When the slide plate 21 moves, it drives the mounting frame 24 to move rightward through the two adjustment plates 23. The installation The frame 24 drives the motor 26, output shaft 27, No. 1 grinding wheel 28, No. 2 grinding wheel 29, No. 1 bevel gear rod 212, No. 2 bevel gear rod 213 and No. 3 grinding wheel 214 above it to move to the right synchronously. In the process of No. 1 grinding wheel 28, No. 2 grinding wheel 29 and No. 3 grinding wheel 214 moving to the right, No. 1 grinding wheel 28 and No. 2 grinding wheel 29 first cut the arc profile, and No. 3 grinding wheel 214 then cuts the arc profile. A total of three cutting surfaces are required for the L-shaped section, and the three cutting surfaces form an H shape when viewed from the side. The No. 1 grinding wheel 28, No. 2 grinding wheel 29 and No. 3 grinding wheel 214 can cooperate to cut an L-shaped section on the arc profile. After the cutting is completed, the hydraulic cylinder 22 contracts and drives the slide plate 21 to move to the left and reset, and the mounting frame 24 and the frame above it are installed. The motor 26, the output shaft 27, the first grinding wheel 28, the second grinding wheel 29, the first bevel gear rod 212, the second bevel gear rod 213 and the third grinding wheel 214 are synchronously moved to the left and reset. When resetting, the first grinding wheel 28, the second grinding wheel 29 and the third grinding wheel 214 grind the three cutting surfaces of the arc-shaped profile again to improve the flatness of the cutting surface. Under normal circumstances, the two adjusting rods 25 are stuck in one of the limit grooves of the arc grooves of the two adjusting plates 23. Different limit grooves correspond to different cutting angles. When the cutting angle needs to be adjusted, the staff slides the two adjusting rods 25 outward from the center of the arc groove to disengage the two adjusting rods 25 from the limit grooves. At this time, the staff can drive the mounting frame 24 to rotate through the two adjusting rods 25. At the same time, the two adjusting rods 25 are The section rod 25 slides in the two arc grooves respectively. When the mounting frame 24 rotates to the corresponding angle, the staff slides the two adjustment rods 25 into the corresponding two limit grooves to fix the cutting angle, thereby achieving the effect of adjusting the cutting angle according to actual needs; through the setting of the cutting assembly 2, the No. 1 grinding wheel 28, the No. 2 grinding wheel 29 and the No. 3 grinding wheel 214 can complete the cutting operation of the three cutting surfaces through one reciprocating movement, so that the arc profile forms an L-shaped interface section, which improves work efficiency; through the setting of the two adjustment plates 23 and the two adjustment rods 25, the staff can adjust the cutting angle according to actual needs, without the need to adjust the position of the arc profile, reducing unnecessary operation procedures and further improving work efficiency.

[0028] When the slide plate 21 slides to the right, the slide plate 21 drives the resistance rod 31 to slide to the right. When the resistance rod 31 slides to the right, it slides along the bottom surface of the inclined slide 32, so that the resistance rod 31 pushes the inclined slide 32 upward along the inclined surface at the bottom of the inclined slide 32. When the inclined slide 32 moves upward, it drives the top rod 34 to move upward through the connecting frame 33. When the top rod 34 moves upward, it drives one end of the rotating rod 35 to rotate upward, so that the rotating rod 35 rotates the other end downward by using the lever principle. When the other end of the rotating rod 35 rotates downward, it pushes the sliding rod 37 downward, so that the sliding rod 37 drives the pressing block 38 to slide downward on the clamping frame 36, and the pressing block 38 It slides downward until it contacts the curved profile, so that the pressure block 38 and the support rod 39 clamp the profile before it is cut, thereby achieving the effect of clamping and fixing. The pressure block 38 has a certain elasticity and can meet the clamping needs of various profiles. After the resistance rod 31 is reset to the left, the inclined slide 32, the connecting frame 33 and the push rod 34 are reset by gravity, and the slide rod 37 is reset by the elastic force of the reset spring. Through the setting of the clamping part 3, the pressure block 38 can move downward before the curved profile is cut and clamp the curved profile stably through the cooperation with the support rod 39, so as to avoid the curved profile shaking during the cutting process and affecting the cutting effect.

[0029] When the slide plate 21 slides to the right, the slide plate 21 drives the water tank 41 and the recovery basin 45 to move to the right synchronously. When the profile is about to be cut, the air cylinder 42 contacts the triangular block 44. The air cylinder 42 has a telescopic end with its own resilience, and the telescopic end is set as an arc surface. After the telescopic end of the air cylinder 42 contacts the triangular block 44, in the process of the air cylinder 42 moving to the right, the telescopic end is gradually retracted by the reverse thrust of the inclined surface of the triangular block 44. When the telescopic end retracts, the air cylinder 42 injects air into the water tank 41, so that the water tank 41 transports water to the atomizing nozzle 43 through the water pipe through the positive pressure action, and the atomizing nozzle 43 sprays the water into the first grinding wheel 28, the second grinding wheel 29 and the third grinding wheel. On the wheel 214, during the cutting process, the atomizing nozzle 43 continuously sprays water to cool the cutting surface of the No. 1 grinding wheel 28, the No. 2 grinding wheel 29, the No. 3 grinding wheel 214 and the curved profile. Some debris and cooling water drip into the recovery basin 45 for collection, which is convenient for cleaning. Through the setting of the cooling part 4, during the cutting process of the curved profile, the atomizing nozzle 43 sprays water atomization onto the No. 1 grinding wheel 28, the No. 2 grinding wheel 29, the No. 3 grinding wheel 214 and the cutting surface of the curved profile, which plays a certain cooling role, thereby avoiding the No. 1 grinding wheel 28, the No. 2 grinding wheel 29 and the No. 3 grinding wheel 214 from overheating after long-term use, thereby affecting the use effect and service life.

[0030] The broken waste and some debris fall onto the support plate 52 during cutting. The support plate 52 is set to be inclined. The waste and debris slide along the support plate 52 into the collection box 54 for collection, which is convenient for the staff to handle later. When the slide plate 21 moves, the two adjustment plates 23 drive the collection box 54 to move synchronously. When the collection box 54 moves, it drives the rotating shaft 55 to move. When the rotating shaft 55 moves, it drives the second gear 56 to move. When the second gear 56 moves, it rotates through the meshing action with the rack 57. When the second gear 56 rotates, it drives the rotating shaft 55 to rotate. When the rotating shaft 55 rotates, it drives the elliptical block 58 to rotate. When the elliptical block 58 rotates, it continuously pushes the bottom of the pull rod 59 downward. When the pull rod 59 moves downward, it drives the rear end of the support plate 52 to move downward. Since the support plate 52 swings with the mounting shaft 51 as the center, the front section of the support plate 52 moves upward a certain distance, and the bottom of the support plate 52 and the limit rod 53 is out of contact. When the elliptical block 58 does not push the pull rod 59 downward, the support plate 52 falls back to its original position due to its own gravity and rests on the limit rod 53 again, so that the elliptical block 58 can drive the support plate 52 to shake up and down continuously through the pull rod 59 when it rotates. The support plate 52 can promote the waste and debris above it to slide quickly into the collection box 54 by shaking up and down. Through the setting of the collection component 5, the support plate 52 can catch the waste and part of the debris generated during cutting. The waste and part of the debris slide along the support plate 52 into the collection box 54 for collection, which is convenient for the staff to handle later. Through the cooperation of the elliptical block 58 and the pull rod 59, the elliptical block 58 can drive the support plate 52 to shake continuously through the pull rod 59 when it rotates, thereby promoting the debris and waste above the support plate 52 to slide down, and avoiding some debris and waste from adhering to the support plate 52, causing material jamming.

[0031] After falling into the collection box 54, the waste and debris enter the classification box 61, and the debris falls into the waste box 62 through the multiple filter holes of the filter screen 63, and the waste stays above the filter screen 63, achieving the effect of classifying and collecting the waste and debris. The classification box 61 can be drawn out of the collection box 54, and the waste box 62 can be drawn out of the classification box 61, which is convenient for the staff to take out the waste and debris; when the rotating shaft 55 rotates, it drives the inclined wheel 66 to rotate, and when the inclined wheel 66 rotates, the fork-shaped top of the fork rod 65 is used to shift the fork rod 65 back and forth, so that the fork rod 65 slides back and forth on the light rod 64, and when the fork rod 65 slides back and forth, it drives two movable The rod 68 slides back and forth on the inner wall of the classification box 61, and the two movable rods 68 drive multiple levers 69 to move back and forth in the classification box 61. The multiple levers 69 can move the waste in the classification box 61 to make the waste roll to both sides to avoid the waste from accumulating in the middle position of the classification box 61 and causing material blockage; when the fork rod 65 slides back and forth, it drives the straight rod 610 to move back and forth, and the straight rod 610 drives the two sliding shafts 612 to move back and forth. When the two sliding shafts 612 move back and forth, they apply thrust to the two inclined slot plates 613 through the inclined slots on the two inclined slot plates 613. When the sliding shaft 612 moves backward, the inclined slot plates 613 move downward. When the sliding shaft 612 moves forward, the inclined slot plate 613 moves upward, so that the two sliding shafts 612 can drive the two inclined slot plates 613 to move up and down when moving back and forth. When the two inclined slot plates 613 move up and down, they drive the dredging frame 611 to move up and down. The multiple dredging needles on the dredging frame 611 can continuously dredge the multiple filter holes of the filter screen 63 through the up and down reciprocating movement to avoid clogging of the filter holes of the filter screen 63; through the setting of the classification component 6, the filter screen 63 in the classification box 61 can classify and collect debris and waste, and the debris enters the waste box 62 through the filter screen 63, and the waste is temporarily retained in the classification box 61 , achieving the effect of classified collection, making it convenient for the staff to subsequently transfer the debris and waste to different treatment channels; through the setting of multiple levers 69, the multiple levers 69 can continuously move the waste that can be touched by reciprocating left and right, so that the waste can be spread more evenly in the classification box 61, avoiding waste accumulation, and by moving the waste, the debris attached to the surface of the waste can fall off, further improving the effect of separating the debris and waste; through the setting of the dredging frame 611, the dredging frame 611 can continuously dredge the filter 63 by reciprocating up and down, avoiding the clogging of the filter holes of the filter 63 after long-term use, thereby affecting the effect of separating the debris and waste.

[0032] The above is only a specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art can easily think of changes or substitutions within the technical scope disclosed by the present invention, which should be included in the protection scope of the present invention. Therefore, the protection scope of the present invention should be based on the protection scope of the claims.

Claims

1. A cutting device for manufacturing curved doors and windows, characterized in that: include: Mounting seat (1); A cutting assembly (2), used for cutting curved profiles; A collecting component (5) for collecting debris and waste generated by cutting; A sorting component (6) for collecting debris and waste materials by classification; The cutting assembly (2) comprises a slide plate (21), the slide plate (21) being slidably mounted in a mounting seat (1), a hydraulic cylinder (22) being mounted in the mounting seat (1), an output end of the hydraulic cylinder (22) being connected to the slide plate (21), two adjustment plates (23) being mounted on the slide plate (21), a mounting frame (24) being rotatably mounted between the two adjustment plates (23), a motor (26) being mounted on the mounting frame (24), an output end of the motor (26) being connected to an output shaft (27), a first grinding wheel (28) and a second grinding wheel (29) being mounted on the output shaft (27), and the output shaft (28) and the second grinding wheel (29) being mounted on the output shaft (27). The outer wall of the bevel gear (27) is connected to a bevel gear (210), a first bevel gear rod (212) and a second bevel gear rod (213) are rotatably mounted on the mounting frame (24), the first bevel gear rod (212) and the second bevel gear rod (213) are meshed, one end of the first bevel gear rod (212) away from the second bevel gear rod (213) is connected to a first gear (211), the first gear (211) is meshed with the bevel gear (210), one end of the second bevel gear rod (213) away from the first bevel gear rod (212) is installed with a third grinding wheel (214), and both sides of the mounting frame (24) are slidably connected to adjustment rods (25).

2. A cutting device for manufacturing curved doors and windows according to claim 1, characterized in that: The second grinding wheel (29) is located between the motor (26) and the first grinding wheel (28), the first grinding wheel (28) and the second grinding wheel (29) are parallel, the third grinding wheel (214) is perpendicular to the second grinding wheel (29), and the diameter of the second grinding wheel (29) is greater than the diameter of the first grinding wheel (28).

3. A cutting device for manufacturing curved doors and windows according to claim 2, characterized in that: The adjustment plate (23) is provided with an arc groove, the arc groove of the adjustment plate (23) is provided with a plurality of limit grooves, and the two adjustment rods (25) are respectively slidably connected to the arc grooves of the two adjustment plates (23).

4. A cutting device for manufacturing curved doors and windows according to claim 3, characterized in that: The cutting assembly (2) further comprises a clamping portion (3), wherein the clamping portion (3) comprises a resisting rod (31), wherein the resisting rod (31) is mounted on the rear side of the slide plate (21), an inclined plane slide (32) is slidably mounted on the inner wall of the rear side of the mounting seat (1), the bottom surface of the inclined plane slide (32) is in sliding contact with the resisting rod (31), the top surface of the inclined plane slide (32) is connected to a connecting frame (33), the top surface of the connecting frame (33) is connected to a top rod (34), a rotating rod (35) is rotatably mounted on the top of the mounting seat (1) via a bracket, and the top of the mounting seat (1) is connected to the top of the mounting seat (1) via a bracket. The bracket is installed with a clamping frame (36), a supporting rod (39) is installed on the clamping frame (36), a sliding rod (37) is slidably installed on the clamping frame (36), one end of the sliding rod (37) close to the supporting rod (39) is connected to a pressure block (38), a return spring is arranged between the sliding rod (37) and the clamping frame (36), one end of the rotating rod (35) is in sliding contact with the bottom of the top rod (34), and the other end of the rotating rod (35) is in sliding contact with one end of the sliding rod (37) away from the pressure block (38), and a storage plate (7) is installed on the front outer wall of the mounting seat (1) through the bracket.

5. A cutting device for manufacturing curved doors and windows according to claim 4, characterized in that: The cutting assembly (2) further comprises a cooling unit (4), the cooling unit (4) comprising a water tank (41), the water tank (41) being mounted on the slide plate (21), an air cylinder (42) being mounted on the front side of the water tank (41), the top of the water tank (41) being connected to an atomizing nozzle (43) via a water pipe, a triangular block (44) being mounted on the front inner wall of the mounting seat (1), the air cylinder (42) being in contact with the triangular block (44) during movement, and a recovery basin (45) being mounted on the slide plate (21) via a bracket, the recovery basin (45) being located between the water tank (41) and the second grinding wheel (29).

6. A cutting device for manufacturing curved doors and windows according to claim 5, characterized in that: The collecting assembly (5) comprises a collecting box (54), the collecting box (54) being mounted on the rear outer walls of the two adjusting plates (23), a mounting shaft (51) being mounted between the two adjusting plates (23), the outer wall of the mounting shaft (51) being rotatably connected to a support plate (52), a limiting rod (53) being connected to the mounting frame (24), the limiting rod (53) being in contact with the bottom of the support plate (52), and an end of the support plate (52) away from the limiting rod (53) being located in the collecting box (54).

7. A cutting device for manufacturing curved doors and windows according to claim 6, characterized in that: A rotating shaft (55) is rotatably installed through the inner wall of the collection box (54), one end of the rotating shaft (55) is connected to an elliptical block (58), and the other end of the rotating shaft (55) is connected to a second gear (56), the elliptical block (58) is located in the collection box (54), the second gear (56) is located outside the collection box (54), a rack (57) is installed on the rear inner wall of the mounting seat (1), the second gear (56) is meshed with the rack (57), and a pull rod (59) is connected to the bottom surface of one end of the support plate (52) located in the collection box (54), and the elliptical block (58) is in sliding contact with the pull rod (59).

8. The cutting device for manufacturing curved doors and windows according to claim 7, characterized in that: The classification component (6) comprises a classification box (61), the classification box (61) being slidably mounted inside a collection box (54), a waste box (62) being slidably mounted on the inner wall of the bottom of the classification box (61), a filter screen (63) being mounted inside the classification box (61), the filter screen (63) being located above the waste box (62), a plurality of filter holes being arranged on the filter screen (63), a polished rod (64) being mounted on the inner wall of the classification box (61), a fork rod (65) being slidably connected to the outer wall of the polished rod (64), and an outer wall of the rotating shaft (55) A bevel wheel (66) is connected, the top end of the fork rod (65) is set in a fork shape, the bevel wheel (66) is located inside the fork-shaped top end of the fork rod (65), and two movable rods (68) are slidably installed on the inner wall of the classification box (61), the two movable rods (68) are respectively located on both sides of the light rod (64), and the two movable rods (68) are respectively hinged with connecting rods (67), and the ends of the two connecting rods (67) away from the movable rods (68) are respectively hinged with the two sides of the fork rod (65), and a plurality of shift rods (69) are installed on the movable rod (68).

9. A cutting device for manufacturing curved doors and windows according to claim 8, characterized in that: A dredging frame (611) is slidably mounted on the inner wall of the classification box (61), the dredging frame (611) being located below the filter screen (63), a plurality of dredging needles being arranged on the dredging frame (611), the plurality of dredging needles on the dredging frame (611) being respectively located below a plurality of filter holes of the filter screen (63), a sliding groove being arranged on the filter screen (63), a straight rod (610) being connected to the bottom end of the fork rod (65), an outer wall of the straight rod (610) being slidably connected to the sliding groove of the filter screen (63), two sliding shafts (612) being connected to the bottom of the straight rod (610), two inclined slot plates (613) being connected to the dredging frame (611), an inclined slot being arranged on the inclined slot plate (613), and two sliding shafts (612) being respectively slidably connected to the inclined slots of the two inclined slot plates (613).

Citation Information

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