Automatic grooving and assembling equipment for plate pipeline
By designing automatic groove assembly equipment for sheet pipelines, the angle adjustment part and positioning mechanism ensure the stability and accuracy of the sheet during cutting, the problems of low efficiency, low accuracy and high labor cost in the prior art are solved, and more efficient and more accurate grooved effect is achieved, and noise and dust propagation is reduced.
Patent Information
- Application Number
- CN202510439024.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-09
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2045-04-09
AI Technical Summary
The existing plate groove technology has problems such as high dust, high noise, low efficiency, low accuracy, high labor costs and possible cutting to the inner steel bars of the plate.
Design a plate pipeline automatic groove assembly equipment, including a conveyor table, a milling cutter drive body, an angle adjustment part and a positioning mechanism. The angle adjustment part is used to adjust the plate angle and clamp the position to ensure that the plate is in a right angle state during cutting; the milling cutter drive body and positioning mechanism are used to control the depth and position of the milling cutter to avoid cutting to the steel bars; noise reduction part and ash absorption part are provided inside the angle adjustment board to reduce the propagation of noise and dust.
It improves the efficiency and accuracy of the sheet groove, reduces labor costs, reduces the diffusion of dust and noise, and avoids the risk of cutting into the inner steel bars of the sheet.
Smart Images

Figure CN120038365A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of plate grooving and assembling equipment, and more specifically, to an automatic plate pipeline grooving and assembling equipment. Background Art
[0002] Currently, plate grooving is generally carried out manually on-site, which has the following defects: First, there is a large amount of dust generated during on-site plate grooving, resulting in relatively high noise and a large amount of garbage. Second, the efficiency of on-site plate grooving is low, and the processing accuracy is low. At the same time, the slurry applied manually takes a long time to dry, affecting the on-site construction progress. Third, on-site grooving may cut the internal steel bars of the plate, making manual grooving difficult and potentially affecting the performance of the plate. Fourth, the labor cost of on-site grooving is relatively high. Therefore, there is an urgent need for an improved technology to solve the above problems existing in the prior art. Summary of the Invention
[0003] The technical task of the present invention is to provide an automatic plate pipeline grooving and assembling equipment to solve the above problems in view of the above deficiencies.
[0004] The technical solution of the present invention is realized as follows: An automatic grooving and assembling device for sheet pipelines, comprising a conveying table. On both sides of the conveying table near the center, a set of supporting side tables are provided. A number of supporting feet are provided at the bottoms of the supporting side tables and the conveying table. A supporting column is provided at the top of the supporting side table. A first-axis moving seat is horizontally and transversely arranged between the tops of a set of supporting columns. A second-axis moving seat is mounted on the first-axis moving seat. A milling cutter driving body is provided on the second-axis moving seat. A milling cutter main shaft is provided on the milling cutter driving body. A milling cutter is provided on the milling cutter main shaft. Below the first-axis moving seat and at the bottom of the conveying table, an angle adjusting part is provided. The angle adjusting part includes an inner frame body, which is fixed on the bottom of the conveying table. At the center of the bottom of the inner frame body, a second track is provided. A set of matching slider two is provided on the second track. Symmetric L-shaped frame plates are respectively provided at the bottoms of the slider two. A driving arm is provided at the center of the bottom of the L-shaped frame plate. The other end of the driving arm is provided with an L-shaped connecting plate. A number of second air cylinders are provided on one side of the L-shaped connecting plate. A matching cylinder two is provided on the side of the second air cylinder away from the L-shaped connecting plate. A U-shaped frame is provided at the top of the cylinder two. Second L-shaped plates are provided on both sides of the top of the U-shaped frame. The sides of the second L-shaped plates are fixed at corresponding positions on one side of the conveying table. A set of first L-shaped plates is provided at the position corresponding to the second L-shaped plates on the other side of the conveying table. Fixed support sleeves are provided on the outer sides of the tops of the first L-shaped plates and the second L-shaped plates. A guiding rod is inserted in the fixed support sleeve. An angle adjusting plate is horizontally and transversely arranged between the side ends of a set of guiding rods. The angle adjusting plate is connected to the L-shaped frame plate through a driving part. A number of openings are provided on the inner side of the angle adjusting plate. A partition is provided inside the angle adjusting plate, which divides the interior into a noise reduction part and a dust absorption part. A reflux channel is provided on one side of the partition, which penetrates between the noise reduction part and the dust absorption part. A through hole is provided on the conveying table at the position below the milling cutter driving body. A positioning mechanism is provided at the bottom of the conveying table below the through hole. The positioning mechanism is matched with the milling cutter driving body.
[0005] Preferably, the driving part includes a bottom plate, which is fixed on the bottom of the angle adjusting plate. On both sides of the top of the bottom plate away from one side of the angle adjusting plate, connecting plate three are provided. On the top of the connecting plate three away from one side of the bottom plate, connecting plate two is provided. On the bottom of the connecting plate two away from one side of the connecting plate three, connecting plate one is provided. A support column is provided on the side of the connecting plate one away from the connecting plate two. The bottom of the support column is fixed at the center of the inner sides of the second L-shaped plate and the first L-shaped plate. A frame body is horizontally and transversely arranged between the centers of the bottoms of the connecting plate two. A shaft is inserted through the center of the frame body. The bottom of the shaft is fixed at the center of the top of one side of the L-shaped frame plate.
[0006] Preferably, the positioning mechanism includes a base. On one side of the top of the base, there is a vertical plate. On the top of the vertical plate, there is a fixing plate. The top of the fixing plate is fixed to the bottom of the conveying table on the side close to and below the through hole. At the center of the lower part on the left side of the vertical plate, there is a first cylinder. Inside the first cylinder, there is a matching first air rod. The first air rod penetrates through the first cylinder. On the side of the first air rod away from the first cylinder, there is a triangular moving block. At the center of the bottom of the triangular moving block, there is a first slider. Below the first slider, there is a matching first track. At the bottom of the first track, there is a side U-shaped frame. The bottom of the side U-shaped frame is fixed to the top of the base on the side away from the vertical plate.
[0007] Preferably, the first air rod penetrates through the side U-shaped frame. Above the triangular moving block, there is a matching limiting wheel. On both sides of the limiting wheel, there are clamping plates. On the top of the clamping plates, there is a limiting disc. On the top of the limiting disc, there is a top shaft. The top shaft penetrates through the side U-shaped frame. On the top of the top shaft, there is a top plate. At the center of the left side of the top plate, there is a side groove. The top plate penetrates through the through hole.
[0008] Preferably, there are several concave-convex surfaces on the inner wall of the noise reduction part. Inside the noise reduction part, there is a spiral compression ring. On both sides of the spiral compression ring, there are spring rings. The other ends of the spring rings are respectively fixed to the inner wall of the noise reduction part.
[0009] Preferably, on the inner wall of the dust suction part away from the opening side, there are several T-shaped solid convex blocks. The surface of the T-shaped solid convex blocks is provided with an activated carbon adsorption layer. On the inner wall of the dust suction part on the side of the partition plate and the corresponding side wall, there is a group of T-shaped cavity convex blocks. The T-shaped cavity convex blocks are connected by a connecting through pipe. Between the T-shaped cavity convex blocks and the connecting through pipe, there are water outlet holes. On the connecting through pipe, there are several foam blocks. Inside the foam blocks, there are several foam brackets. On the side of the foam brackets away from the foam blocks, there is a foam ball bin. Inside the foam ball bin, there is ice.
[0010] Preferably, the connecting through pipe penetrates through the foam block and is connected to the outer wall of the foam ball bin. Between the inner wall of the foam block and the outer wall of the foam ball bin on the connecting through pipe, there are several water inlet holes.
[0011] Preferably, the side of the T-shaped cavity convex block away from the connecting through pipe is connected with a shunt pipe. The shunt pipes are connected by a return pipe. On one side of the top of the return pipe, there is a water inlet. The water inlet is connected to an external water inlet pipe.
[0012] Compared with the prior art, the advantages and positive effects of the present invention are as follows: 1. A angle adjustment part is arranged at the cutter driving body. The angle of the conveyed plate is adjusted through the angle adjustment part, and the plate is clamped and positioned. When the plate is adjusted by the angle adjustment part, the plate always forms a right angle state, avoiding the phenomenon of crooked grooving during cutting and grooving, thereby improving the grooving effect and efficiency, and avoiding the phenomenon that the wire box cannot be installed during subsequent installation.
[0013] 2. After the angle adjustment part clamps and positions the plate, the stability of the plate is maintained, which is beneficial to grooving the plate and preventing the phenomenon of displacement of the plate during processing.
[0014] 3. A noise reduction part and a dust suction part are arranged inside the angle adjustment plate. A large amount of dust and noise generated during cutting and grooving will be transmitted into the angle adjustment part, and they are weakened by the internally arranged noise reduction part and dust suction part.
[0015] 4. A positioning mechanism is arranged at a position below and behind the cutter driving body. The positioning mechanism supports the milling cutter spindle. When an upward force acts on the milling cutter spindle, the downward telescopic depth of the milling cutter during cutting is controlled and positioned, avoiding the milling cutter cutting too deeply and cutting into the steel bars inside the plate.
[0016] 5. Effectively avoids the problem of high on-site labor cost, improves work efficiency, reduces the diffusion of dust, and weakens the propagation of noise. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required in the embodiments. Obviously, the following described drawings are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0018] Figure 1 is the overall structural schematic diagram according to the embodiment of the present invention; Figure 2 is the structural schematic diagram of the conveying table according to the embodiment of the present invention; Figure 3 is the structural schematic diagram of the angle adjustment part according to the embodiment of the present invention; Figure 4 is the structural schematic diagram of the L-shaped connecting plate according to the embodiment of the present invention; Figure 5 is the structural schematic diagram of the driving part according to the embodiment of the present invention; Figure 6 is the structural schematic diagram of the positioning mechanism according to the embodiment of the present invention; Figure 7Schematic diagram of the internal structure of the angle adjustment plate according to an embodiment of the present invention; Figure 8 Schematic diagram of the foam block structure according to an embodiment of the present invention.
[0019] In the figure: 1. Conveyor table; 2. Support side table; 3. Support feet; 4. Support columns; 5. First-axis moving seat; 6. Second-axis moving seat; 7. Milling cutter driving body; 8. Milling cutter main shaft; 9. Angle adjustment part; 10. Inner frame body; 11. Track two; 12. Slide block two; 13. L-shaped frame plate; 14. Driving arm; 15. L-shaped connecting plate; 16. Air rod two; 17. Cylinder two; 18. U-shaped frame; 19. Second L-shaped plate; 20. First L-shaped plate; 21. Fixed support sleeve; 22. Guide rod; 23. Angle adjustment plate; 24. Opening; 25. Partition board; 26. Noise reduction part; 27. Dust suction part; 28. Return channel; 29. Through hole; 30. Bottom plate; 31. Connecting plate three; 32. Connecting plate two; 33. Connecting plate one; 34. Pillar; 35. Frame body; 36. Base; 37. Vertical plate; 38. Fixed plate; 39. Cylinder one; 40. Air rod one; 41. Triangular moving block; 42. Slide block one; 43. Track one; 44. Side U-shaped frame; 45. Limiting wheel; 46. Support plate; 47. Limiting disc; 48. Top shaft; 49. Top plate; 50. Side groove; 51. Concave-convex surface; 52. Spiral compression ring; 53. Spring coil; 54. T-shaped solid convex block; 55. T-shaped cavity convex block; 56. Connecting through pipe; 57. Foam block; 58. Foam bracket; 59. Foam spherical cavity; 60. Ice cubes; 61. Water inlet hole; 62. Shunt pipe; 63. Return pipe; 64. Water inlet; 65. Water outlet hole. Detailed implementation manners
[0020] In order to more clearly understand the above-mentioned objects, features and advantages of the present invention, the present invention will be further described below with reference to the drawings and embodiments. It should be noted that, without conflict, the embodiments of the present application and the features in the embodiments may be combined with each other.
[0021] The present invention will be further described below with reference to the drawings and specific embodiments.
[0022] According to an embodiment of the present invention, as shown in Figures 1 - 8 shown: The present invention provides an automatic grooving and assembling device for sheet pipelines, including a conveying table 1. On both sides of the conveying table 1 near the center, there is a set of supporting side tables 2. At the bottom of both the supporting side tables 2 and the conveying table 1, there are several supporting feet 3. On the top of the supporting side tables 2, there are supporting columns 4. Between the tops of a set of horizontally arranged supporting columns 4, there is a first-axis moving seat 5 traversing. On the first-axis moving seat 5, there is a second-axis moving seat 6. On the second-axis moving seat 6, there is a milling cutter driving body 7. On the milling cutter driving body 7, there is a milling cutter main shaft 8, and a milling cutter is provided on the milling cutter main shaft. Below the first-axis moving seat 5 and at the bottom of the conveying table 1, there is an angle adjusting part 9. The angle adjusting part 9 includes an inner frame body 10, which is fixed on the bottom of the conveying table 1. At the center of the bottom of the inner frame body 10, there is a track two 11. On the track two 11, there is a set of cooperating slider two 12. At the bottoms of the slider two 12, there are symmetrically arranged L-shaped frame plates 13. At the center of the bottom of the L-shaped frame plates 13, there is a driving arm 14. At the other end of the driving arm 14, there is an L-shaped connecting plate 15. On one side of the L-shaped connecting plate 15, there are several air cylinders two 16. On the side of the air cylinders two 16 away from the L-shaped connecting plate 15, there are cooperating cylinder two 17. At the top of the cylinder two 17, there is a U-shaped frame 18. On both sides of the top of the U-shaped frame 18, there are second L-shaped plates 19, and the sides of the second L-shaped plates 19 are fixed at corresponding positions on one side of the conveying table 1. At the position corresponding to the second L-shaped plates 19 on the other side of the conveying table 1, there is a set of first L-shaped plates 20. On the outer sides of the tops of the first L-shaped plates 20 and the second L-shaped plates 19, there are fixed support sleeves 21. A guiding rod 22 is inserted through the fixed support sleeves 21. Between the side ends of a set of horizontally arranged guiding rods 22, there is an angle adjusting plate 23 traversing. The angle adjusting plate 23 is connected to the L-shaped frame plate 13 through a driving part. Inside the angle adjusting plate 23, there are several openings 24. Inside the angle adjusting plate 23, there is a partition plate 25, which divides the interior into a noise reduction part 26 and a dust absorption part 27. On one side of the partition plate 25, there is a reflux channel 28, which penetrates between the noise reduction part 26 and the dust absorption part 27. At the position below the milling cutter driving body 7 on the conveying table 1, there is a through hole 29. Below the through hole 29 and at the bottom of the conveying table 1, there is a positioning mechanism, which cooperates with the milling cutter driving body 7.
[0023] Among them, the driving part includes a bottom plate 30 which is fixed on the bottom of the angle adjustment plate 23. On both sides of one side of the top of the bottom plate 30 far from the angle adjustment plate 23, there are connecting plates three 31. On one side of the top of the connecting plate three 31 far from the bottom plate 30, there is a connecting plate two 32. On one side of the bottom of the connecting plate two 32 far from the connecting plate three 31, there is a connecting plate one 33. On one side of the connecting plate one 33 far from the connecting plate two 32, there is a support column 34. The bottom of the support column 34 is fixed at the inner center of the second L-shaped plate 19 and the first L-shaped plate 20. A frame body 35 is horizontally arranged between the centers of the bottom of the connecting plate two 32. A shaft is inserted through the center of the frame body 35. The bottom of the shaft is fixed at the center of the top of one side of the L-shaped frame plate 13. The positioning mechanism includes a base 36. On one side of the top of the base 36, there is a vertical plate 37. On the top of the vertical plate 37, there is a fixing plate 38. The top of the fixing plate 38 is fixed on the bottom of the conveying table 1 near one side below the through hole 29. At the center of the lower part on the left side of the vertical plate 37, there is a cylinder one 39. Inside the cylinder one 39, there is a matching air rod one 40. The air rod one 40 penetrates through the cylinder one 39. On one side of the air rod one 40 far from the cylinder one 39, there is a triangular moving block 41. At the center of the bottom of the triangular moving block 41, there is a slider one 42. Below the slider one 42, there is a matching track one 43. The bottom of the track one 43 is provided with a side U-shaped frame 44. The bottom of the side U-shaped frame 44 is fixed on the top of the base 36 on the side far from the vertical plate 37. The air rod one 40 penetrates through the side U-shaped frame 44. Above the triangular moving block 41, there is a matching limiting wheel 45. The two sides of the limiting wheel 45 are clamped with support plates 46. On the top of the support plates 46, there is a limiting disc 47. On the top of the limiting disc 47, there is a top shaft 48. The top shaft 48 penetrates through the side U-shaped frame 44. On the top of the top shaft 48, there is a top plate 49. At the center of the left side of the top plate 49, there is a side groove 50. The top plate 49 penetrates through the through hole 29.
[0024] In addition, several concave-convex surfaces 51 are provided on the inner wall of the noise reduction part 26. A spiral compression ring 52 is provided inside the noise reduction part 26. Spring rings 53 are provided on both sides of the spiral compression ring 52. The other ends of the spring rings 53 are respectively fixed on the inner wall of the noise reduction part 26. Several T-shaped solid bumps 54 are provided on the inner wall of the dust suction part 27 on the side away from the opening 24. An activated carbon adsorption layer is provided on the surface of the T-shaped solid bumps 54. A group of T-shaped cavity bumps 55 are provided on the inner wall of the dust suction part 27 on the partition 25 and on the side wall corresponding to the partition 25. The T-shaped cavity bumps 55 are connected by a connecting pipe 56. Water outlet holes 65 are provided between the T-shaped cavity bumps 55 and the connecting pipe 56. Several foam blocks 57 are provided on the connecting pipe 56. Several foam brackets 58 are provided on the inner wall of the foam blocks 57. A foam ball bin 59 is provided on the side of the foam bracket 58 away from the foam block 57. Ice cubes 60 are provided in the foam ball bin 59. The connecting pipe 56 penetrates through the outer wall of the foam block 57 and is connected to the foam ball bin 59. Several water inlet holes 61 are provided on the connecting pipe 56 between the inner wall of the foam block 57 and the outer wall of the foam ball bin 59. A shunt pipe 62 is connected to the side of the T-shaped cavity bump 55 away from the connecting pipe 56. The shunt pipes 62 are connected by a return pipe 63. A water inlet 64 is connected to one side of the top of the return pipe 63. The water inlet 64 is connected to an external water pipe.
[0025] The conveying table 1 is of an existing structure, so it is not described in detail in this application. Its main function is to convey the plates placed on it. Similarly, the provided milling cutter driving body 7 is of an existing structure, which is convenient for grooving the plates clamped below.
[0026] In addition, a through hole 29 is provided behind the milling cutter driving body 7. When the plate passes through the angle adjusting plates 23 on both sides and is clamped by the angle adjusting plates 23, the positioning mechanism will pass through the through hole, causing the top plate 49 to push up against the limiting disc provided at the bottom of the milling cutter spindle 8. The limiting disc is provided between the milling cutter spindle 8 and the milling cutter. The limiting disc will receive an upward force from below, providing a certain positioning effect for the milling cutter spindle 8, thereby effectively preventing the internal steel bars of the plate from being cut during cutting.
[0027] The detailed usage method and function of this embodiment: Place the sheet on the conveyor table 1, and convey the sheet forward through the conveyor table 1. When the sheet is conveyed to the end of the angle adjustment part 9, a telescopic movement occurs between the driving cylinder two 17 and the air rod two 16. The air rod two 16 drives the L-shaped connecting plate 15 to move. The L-shaped connecting plate 15 drives the L-shaped frame plate 13 through the driving arm 14. At this time, the slider two 12 arranged at the top of the L-shaped frame plate 13 moves in the corresponding direction on the track two 11 at the same time. When the L-shaped frame plate 13 moves in the corresponding direction at the same time, it will drive the frame body 35 to move. Both ends of the frame body 35 will drive the bottom plate 30 to move downward with the connection of the connecting plate. The bottom plate 30 drives the angle adjustment plate 23 arranged on the inner side of the top to move. When the two side angle adjustment plates 23 move toward the middle at the same time, the conveyed sheet will be clamped and limited. Then, drive the first shaft moving seat 5 and the second shaft moving seat 6 to adjust the milling cutter driving body 7 to a suitable position, and drive the milling cutter connected below by the milling cutter driving body 7 to groove the sheet below. During the grooving process, a telescopic movement occurs between the driving cylinder one 39 and the air rod one 40. The air rod one 40 presses against the triangular moving block 41. The slider one 42 at the bottom of the triangular moving block 41 moves on the track one 43. The top inclined surface of the triangular moving block 41 presses against the upper limiting wheel 45. The limiting wheel 45 presses the top shaft 48 upward. The top shaft 48 presses the top plate 49 through the through hole 29. The top plate 49 supports the milling cutter main shaft 8. The depth of the downward drive of the milling cutter main shaft 8 will be positioned, so that the milling cutter always maintains a certain depth during processing, avoiding the milling cutter cutting too deep during the cutting action and cutting into the internal steel bars of the sheet.
[0028] When a large amount of dust and noise generated during the grooving operation impact on the two side clamped angle adjustment plates 23, they enter into their interior through a number of openings 24 arranged on the inner side of the angle adjustment plates 23. After entering the noise reduction part 26 and the dust suction part 27, the dust and the generated noise pass through the spiral compression ring 52 in the noise reduction part 26. The noise is transmitted on the spiral compression ring 52, increasing the transmission path, so that the rebounded noise will be reduced. And the entered dust enters into the dust suction part 27 along the return channel 28. The surface of the foam block 57 inside the dust suction part 27 is provided with an adsorption material to adsorb the entered dust. At the same time, the external water source is introduced into the return pipe 63 through the water inlet 64, and enters into the T-shaped cavity convex block 55 from the return pipe 63 through the shunt pipe 62. The liquid inside the T-shaped cavity convex block 55 enters into the connecting through pipe 56 from the water outlet hole 65. The liquid inside the connecting through pipe 56 enters into the foam block 57 from the water inlet hole 61. The inside of the foam block 57 remains moist, maintaining the refrigeration of the internal ice block 60. At the same time, the surface of the foam block 57 always remains wet. The entered dust will be suppressed by the moisture, reducing the diffusibility of the dust dispersion and effectively weakening the dispersion of the dust.
[0029] Through the above specific embodiments, those skilled in the art can easily implement the present invention. However, it should be understood that the present invention is not limited to the above specific embodiments. Based on the disclosed embodiments, those skilled in the art can arbitrarily combine different technical features to achieve different technical solutions.
Claims
1. An automatic slotting and assembly equipment for plate pipelines, characterized in that: The invention comprises a conveying platform (1), wherein a group of supporting side platforms (2) are provided near the center of both sides of the conveying platform (1), a plurality of supporting feet (3) are provided at the bottom of the supporting side platforms (2) and the conveying platform (1), a supporting column (4) is provided at the top of the supporting side platforms (2), a first axis moving seat (5) is provided between the tops of the horizontal group of supporting columns (4), a second axis moving seat (6) is mounted on the first axis moving seat (5), a milling cutter driving body (7) is provided on the milling cutter driving body (7), a milling cutter spindle (8) is provided on the milling cutter spindle, and a milling cutter is provided on the milling cutter spindle; An angle adjustment portion (9) is provided below the first axis moving seat (5) at the bottom of the conveying platform (1), and the angle adjustment portion (9) includes an inner frame (10), and the inner frame (10) is fixed to the bottom of the conveying platform (1), and a track 2 (11) is provided at the center of the bottom of the inner frame (10), and a group of matching sliders 2 (12) are provided on the track 2 (11), and symmetrical L-shaped frame plates (13) are provided at the bottom of the sliders 2 (12), and a driving arm (14) is provided at the center of the bottom of the L-shaped frame plate (13), and an L-shaped connecting plate (15) is provided at the other end of the driving arm (14), and a plurality of gas rods 2 (16) are provided on one side of the L-shaped connecting plate (15), and the gas rods 2 (16) are far away from the L-shaped connecting plate (15). A matching cylinder (17) is provided on one side of the conveyor platform (1), a U-shaped frame (18) is provided on the top of the cylinder (17), and second L-shaped plates (19) are provided on both sides of the top of the U-shaped frame (18), and the side edges of the second L-shaped plates (19) are fixed at corresponding positions on one side of the conveyor platform (1), and a group of first L-shaped plates (20) are provided at positions corresponding to the second L-shaped plates (19) on the other side of the conveyor platform (1), and the tops of the first L-shaped plates (20) and the second L-shaped plates (19) are both provided with fixed support sleeves (21) on the outer sides, and guide rods (22) are inserted in the fixed support sleeves (21), and angle adjustment plates (23) are provided between the side ends of the group of guide rods (22), and the angle adjustment plates (23) are connected to the L-shaped frame plate (13) through a driving unit; A plurality of openings (24) are provided on the inner side of the angle adjustment plate (23); a partition plate (25) is provided inside the angle adjustment plate (23); the partition plate (25) divides the interior into a noise reduction portion (26) and an ash absorption portion (27); a return channel (28) is provided on one side of the partition plate (25); the return channel (28) passes through the noise reduction portion (26) and the ash absorption portion (27); A through hole (29) is provided on the conveying platform (1) at a position below the milling cutter drive body (7), and a positioning mechanism is provided at the bottom of the conveying platform (1) below the through hole (29), and the positioning mechanism cooperates with the milling cutter drive body (7).
2. The automatic slotting and assembly equipment for plate pipelines according to claim 1 is characterized in that: The driving part comprises a bottom plate (30), wherein the bottom plate (30) is fixed on the bottom of the angle adjustment plate (23), and connecting plates (31) are provided on both sides of the top of the bottom plate (30) away from the angle adjustment plate (23), and connecting plates (32) are provided on the top of the connecting plate (31) away from the bottom plate (30), and connecting plates (33) are provided on the bottom of the connecting plate (2) away from the connecting plate (31), and pillars (34) are provided on the side of the connecting plate (1) away from the connecting plate (32), and the bottom of the pillars (34) is fixed to the inner center of the second L-shaped plate (19) and the first L-shaped plate (20), and a frame (35) is provided transversely between the center of the bottom of the connecting plate (2) and the center of the frame (35), and a shaft is inserted at the center of the frame (35), and the bottom of the shaft is fixed to the center of the top of one side of the L-shaped frame plate (13).
3. The automatic slotting and assembly equipment for plate pipelines according to claim 1 is characterized in that: The positioning mechanism comprises a base (36), a vertical plate (37) is provided on one side of the top of the base (36), a fixed plate (38) is provided on the top of the vertical plate (37), the top of the fixed plate (38) is fixed to the bottom of the conveying platform (1) near the side below the through hole (29), a cylinder (39) is provided at the center of the lower left part of the vertical plate (37), a matching gas rod (40) is provided in the cylinder (39), the gas rod (40) passes through the cylinder (39), a triangular moving block (41) is provided on the side of the gas rod (40) away from the cylinder (39), a slider (42) is provided at the center of the bottom of the triangular moving block (41), a matching track (43) is provided below the slider (42), a side U-shaped frame (44) is provided at the bottom of the track (43), and the bottom of the side U-shaped frame (44) is fixed on the top of the base (36) away from the vertical plate (37).
4. The automatic slotting and assembly equipment for plate pipelines according to claim 3 is characterized in that: The gas rod 1 (40) passes through the side U-shaped frame (44), a matching limiting wheel (45) is provided above the triangular moving block (41), support plates (46) are clamped on both sides of the limiting wheel (45), a limiting plate (47) is provided on the top of the support plate (46), a top shaft (48) is provided on the top of the limiting plate (47), the top shaft (48) passes through the side U-shaped frame (44), a top plate (49) is provided on the top of the top shaft (48), a side groove (50) is provided at the center of the left side of the top plate (49), and the top plate (49) passes through the through hole (29).
5. The automatic slotting and assembly equipment for plate pipelines according to claim 1 is characterized in that: The inner wall of the noise reduction portion (26) is provided with a plurality of concave and convex surfaces (51), a spiral compression ring (52) is provided inside the noise reduction portion (26), spring rings (53) are provided on both sides of the spiral compression ring (52), and the other ends of the spring rings (53) are respectively fixed to the inner wall of the noise reduction portion (26).
6. The automatic slotting and assembly equipment for plate pipelines according to claim 1 is characterized in that: A plurality of T-shaped solid protrusions (54) are provided on the inner wall of the ash absorbing portion (27) at a side away from the opening (24), and an activated carbon adsorption layer is provided on the surface of the T-shaped solid protrusions (54). A group of T-shaped cavity protrusions (55) are provided on the inner wall of the ash absorbing portion (27) located at the partition (25) and on the side wall corresponding to the partition (25), the T-shaped cavity protrusions (55) are connected by a connecting pipe (56), a water outlet hole (65) is provided between the T-shaped cavity protrusions (55) and the connecting pipe (56), a plurality of foam blocks (57) are provided on the connecting pipe (56), a plurality of foam brackets (58) are provided on the inner wall of the foam blocks (57), a foam ball bin (59) is provided on the side of the foam bracket (58) away from the foam blocks (57), and ice blocks (60) are provided in the foam ball bin (59).
7. The automatic slotting and assembly equipment for plate pipelines according to claim 6 is characterized in that: The connecting pipe (56) passes through the foam block (57) and is connected to the outer wall of the foam ball bin (59). A plurality of water inlet holes (61) are provided on the connecting pipe (56) between the inner wall of the foam block (57) and the outer wall of the foam ball bin (59).
8. The automatic slotting and assembly equipment for plate pipelines according to claim 7 is characterized in that: A side of the T-shaped cavity protrusion (55) away from the connecting through pipe (56) is connected to a diversion pipe (62), the diversion pipes (62) are connected to each other via a return pipe (63), a top side of the return pipe (63) is connected to a water inlet (64), and the water inlet (64) is connected to an external water diversion pipe.
Citation Information
Patent Citations
Grooving device for sheet metal machining and working method thereof
CN114985812A
Surface grooving device for building stone processing
CN117944189A
Pipeline integration automatic slotting assembly equipment for plates
CN216758306U