Environment-friendly integrated material chiseling table
By designing an environmentally friendly integrated chipping table, dust is sucked in using a hood and dust collection equipment, and the debris is collected and shaken off by a side-tilting component, thus solving the problem of dust diffusion in silicon rod production and achieving environmental protection and efficient debris collection.
Patent Information
- Application Number
- CN202411333307.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-24
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2044-09-24
AI Technical Summary
In silicon rod production, dust generated during the manual crushing of large raw materials causes air pollution, and existing protective measures are ineffective in preventing dust dispersion.
An environmentally friendly integrated material-carrying platform was designed, including a wind hood, a material-carrying chamber, a dust collection port, and a dust collection device. It draws in dust through negative pressure and uses a side-tilting component to achieve tilted collection and shaking of the broken material, preventing dust from spreading.
It achieves centralized dust collection, reducing environmental pollution; efficient collection and shaking of broken materials prevents dust spread and protects workers' health.
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Figure CN119746980B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of silicon rod production, in particular to an environment-friendly integrated chisel material table. BACKGROUND
[0002] In the early stage of silicon rod production, large pieces of raw materials need to be crushed to facilitate the later melting. While relying on large crushers to crush the raw materials, a small amount of large pieces of raw materials picked out can be crushed by hand. When crushing large pieces of raw materials by hand, a specific tool is often used to crush the large pieces of raw materials. However, dust is generated during the crushing process. Although most of the dust can be prevented from harming the workers by relying on masks and goggles, the dust will still spread into the air, causing pollution. SUMMARY
[0003] To achieve the above purpose, the present application discloses an environment-friendly integrated chisel material table, which comprises:
[0004] a bottom support table;
[0005] a wind cover installed at the top end of the bottom support table, two chisel material chambers being oppositely arranged at the side ends of the wind cover, and a chisel workbench being integrally formed at the bottom of the chisel material chamber;
[0006] a dust collecting port located at the top end of the wind cover and communicating with the two chisel material chambers, and the dust collecting port being connected with a dust collecting device through a pipeline.
[0007] Preferably, the inner walls of the two chisel material chambers close to each other are arranged in an arc surface, the arc surface extends into the chisel workbench, and the inner walls of the two chisel material chambers close to each other are provided with a strip-shaped hole communicating with the dust collecting port.
[0008] Preferably, the chisel workbench is recessed with a work area at the end away from the arc surface, the work area is centrally arranged, a notch adapted to the work area is formed at the top end of the bottom support seat, and the chisel workbench away from the arc surface end is further provided with a discharging port communicating with the chisel workbench, and a discharging hopper is installed on the discharging port.
[0009] Preferably, the top end of the wind cover is arranged in a closed manner.
[0010] Preferably, the inner wall of the chisel material chamber away from the arc surface end is arranged in an inclined manner extending outward.
[0011] Preferably, the bottom support table is installed with a side turnover assembly connected with the chisel workbench, the side turnover assembly is arranged close to the notch, and when the chisel workbench is turned over, it is arranged close to the inner wall of the chisel material chamber, so that the chippings on the chisel workbench fall close to the work area, thereby facilitating the collection of chippings.
[0012] Preferably, the side turnover assembly comprises:
[0013] The bottom arch-shaped mounting frame is installed in the bottom supporting table, the chiseling workbench is rotationally installed at the top end of the bottom arch-shaped mounting frame, and the end of the chiseling workbench away from the bottom arch-shaped mounting frame is abutted to the arc surface;
[0014] The double-end screw rod is installed in the bottom arch-shaped mounting frame;
[0015] The two sliding screw sleeves are sleeved on the double-end screw rod;
[0016] The side lifting plate is fixedly installed at the bottom of the bottom arch-shaped mounting frame;
[0017] The lifting sleeve is sleeved on the side lifting plate;
[0018] The shaking assembly is installed in the bottom arch-shaped mounting frame and above the double-end screw rod;
[0019] The at least four turnover plates are rotationally installed on the shaking assembly, and the end of the turnover plate away from the shaking assembly is abutted to the chiseling workbench;
[0020] The two inclined guide rods are symmetrically installed on the lifting sleeve, the low end of the inclined guide rod is close to the lifting sleeve, and the inclined guide slot is horizontally arranged at the end close to the lifting sleeve;
[0021] The side transverse plate is fixedly installed at the side end of the sliding screw sleeve, the guide sliding block is installed at the end of the side transverse plate away from the sliding screw sleeve, and the guide sliding block is slidably connected in the inclined guide slot;
[0022] The top rod is arranged in a right angle, one end of the top rod is fixedly connected with the lifting sleeve, the other end of the top rod is provided with the installation horizontal rod, and the middle segment of each turnover plate is hingedly connected with the connecting rod, and the connecting rod away from the turnover plate is sleeved on the installation horizontal rod.
[0023] Preferably, the shaking assembly comprises:
[0024] The transmission screw rod is installed in the bottom arch-shaped mounting frame and above the double-end screw rod;
[0025] The fixed horizontal plate is installed in the bottom arch-shaped mounting frame and between the transmission screw rod and the double-end screw rod;
[0026] The transmission screw block is sleeved on the transmission screw rod, and the number of the transmission screw block is equal to that of the turnover plate;
[0027] The arch-shaped lifting frame is installed at the bottom end of the transmission screw block through the spring rod, the turnover plate is rotationally installed on the arch-shaped lifting frame, and the bottom end of the arch-shaped lifting frame is slidably installed at the top end of the fixed horizontal plate;
[0028] The wedge is installed at the bottom end of the arc-shaped lifting frame, and the top end of the fixed horizontal plate is adapted to the wedge and is provided with a plurality of equidistant wedge grooves;
[0029] The transmission belt wheel is installed on the transmission screw rod, and the other transmission belt wheel is installed on the double-end screw rod.
[0030] The driving motor is installed on the arc-shaped mounting frame, and the output end of the driving motor is connected with the double-end screw rod.
[0031] Preferably, the side lifting plate is fixedly installed on the fixed horizontal plate away from the end of the bottom arc-shaped mounting frame.
[0032] Compared with the prior art, the present application has the following beneficial effects:
[0033] (1) The present application provides an environment-friendly integrated chisel bench. Workers complete the crushing of large raw materials on the chisel bench. In the crushing process, the outdoor dust collecting equipment works, thereby generating negative pressure in the chisel chamber. The dust generated in the crushing process is sucked into the air cover and collected into the dust collecting equipment through the dust collecting port and the pipeline connected with the dust collecting port. The dust generated in the crushing of large raw materials is concentrated and collected, thereby preventing the spread of dust and reducing environmental pollution.
[0034] (2) The present application provides an environment-friendly integrated chisel bench. The driving motor installed on the arc-shaped mounting frame works, thereby driving the double-end screw rod installed at the output end of the driving motor to rotate. The two sliding nuts move towards each other. The sliding nuts drive the side transverse plates connected therewith and the guide sliding blocks installed on the side transverse plates to slide in the inclined guide grooves. The lifting sleeve connected with the inclined guide rod and the top rod installed on the lifting sleeve are lifted along the side lifting plate. After the top rod drives the turnover plate to turn through the installation horizontal rod and the connecting rod installed on the installation horizontal rod, the turnover plate away from the shaking assembly end abuts against the chisel bench, thereby driving the chisel bench to turn over at the top end of the bottom arc-shaped mounting frame. In this way, the chisel bench is arranged in an inclined manner. The crushed materials on the chisel bench are collected on one side close to the working area along the inclined surface of the chisel bench. At the same time, the transmission screw rod is synchronously rotated with the double-end screw rod through the cooperation of the transmission belt wheel. The transmission screw rod drives the transmission screw block sleeved thereon and the arc-shaped lifting frame installed at the bottom end of the transmission screw block to slide on the fixed horizontal plate. Under the cooperation of the wedge and the wedge groove, when the wedge slides out of the wedge groove, the spring rod is contracted. When the wedge slides into the wedge groove, the spring rod is extended. In this way, the arc-shaped lifting frame and the turnover plate connected therewith are periodically shaken. The four turnover plates are displaced and synchronously knock the bottom end of the chisel bench, thereby shaking the crushed materials on the chisel bench comprehensively and completely without leaving any dead angle. BRIEF DESCRIPTION OF DRAWINGS
[0035] In order to more clearly illustrate the technical solutions in the specific embodiments of the present application or the prior art, the accompanying drawings needed to be used in the specific embodiments or prior art description will be briefly introduced. Obviously, the accompanying drawings in the following description are only some embodiments of the present application, and all other embodiments obtained by those of ordinary skill in the art without creative work based on these accompanying drawings also belong to the protection scope of the present application.
[0036] Figure 1 is a front view of the present application;
[0037] Figure 2 is a side view of the present application;
[0038] Figure 3 is a side view of the present application;
[0039] Figure 4 is a side view of the present application;
[0040] Figure 5 is a bottom end distribution diagram of the turning plate in the chisel material workbench.
[0041] In the figure: 10. bottom support table; 11. air cover; 12. chisel material chamber; 13. chisel material workbench; 14. dust collection port; 15. working area; 16. feeding hopper; 21. bottom arc-shaped mounting frame; 22. double-head screw rod; 23. sliding screw sleeve; 24. side lifting plate; 25. lifting sleeve; 26. turning plate; 27. inclined guide rod; 28. inclined guide groove; 29. side transverse moving plate; 30. guide sliding block; 31. top rod; 32. mounting cross bar; 33. connecting rod; 34. transmission screw rod; 35. fixed cross plate; 36. transmission screw block; 37. arc-shaped lifting frame; 38. spring rod; 39. wedge-shaped block; 40. wedge-shaped groove; 41. transmission belt; 42. driving motor. DETAILED DESCRIPTION
[0042] The technical solutions of the present application will be described clearly and completely in combination with the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present application, and not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative work also belong to the protection scope of the present application.
[0043] EMBODIMENT
[0044] The present application will be further described in combination with the accompanying drawings.
[0045] As Figures 1 to 5 shown, the present embodiment provides an environment-friendly integrated chisel material table, which comprises:
[0046] bottom support table 10;
[0047] The wind cover 11 is installed at the top end of the bottom support table 10, and the two chiseling rooms 12 are oppositely arranged at the side ends of the wind cover 11, and the inner bottom of the chiseling room 12 is integrally formed with a chiseling workbench 13;
[0048] The dust collecting port 14 is located at the top end of the wind cover 11 and is communicated with the two chiseling rooms 12, and the dust collecting port 14 is connected with the dust collecting equipment through a pipeline.
[0049] The working principle and beneficial effects of the above technical solution are:
[0050] The worker completes the crushing of the large raw material on the chiseling workbench 13, and in the process of crushing, the outdoor dust collecting equipment works, so that the negative pressure is generated in the chiseling room 12, the dust generated in the crushing is sucked into the wind cover 11, and is collected into the dust collecting equipment through the dust collecting port 14 and the pipeline connected with the dust collecting port 14. The environmental protection type integrated chiseling table disclosed in the present application collects the dust generated in the crushing of the large raw material, avoids the diffusion of the dust, and reduces the environmental pollution.
[0051] In one embodiment, the inner wall of the two chiseling rooms 12 close to each other is arranged in an arc shape, the arc shape extends into the chiseling workbench 13, and the inner wall of the two chiseling rooms 12 close to each other is provided with a strip-shaped hole communicated with the dust collecting port 14.
[0052] The working principle and beneficial effects of the above technical solution are:
[0053] The outdoor dust collecting equipment works, so that the negative pressure is generated in the chiseling room 12, the dust generated in the crushing is sucked into the wind cover 11 through the strip-shaped hole, and is collected into the dust collecting equipment through the dust collecting port 14 and the pipeline connected with the dust collecting port 14.
[0054] In one embodiment, the chiseling workbench 13 is recessed with a working area 15 away from the arc-shaped end, the working area 15 is centrally arranged, the top end of the bottom support seat 10 is provided with a notch matched with the working area 15, and the chiseling workbench 13 is further provided with a discharging port away from the arc-shaped end, the discharging port is communicated with the chiseling workbench 13, and a discharging hopper 16 is installed on the discharging port.
[0055] The working principle and beneficial effects of the above technical solution are:
[0056] The setting of the working area 15 facilitates the standing of the worker, and the setting of the discharging hopper 16 facilitates the collection of the crushed material.
[0057] In one embodiment, the top end of the wind cover 11 is arranged in a closed manner.
[0058] In one embodiment, the inner wall of the chiseling room 12 is arranged in an inclined manner and extends outward away from the arc-shaped end.
[0059] The beneficial effects of the above technical solution are:
[0060] The inner wall of the chisel material chamber 12 is inclined outward away from the arc end, thereby preventing dust from overflowing as much as possible.
[0061] In an embodiment, a side overturning assembly 2 connected with the chisel workbench 13 is installed in the bottom support table 10, the side overturning assembly 2 is arranged close to the notch, when the chisel workbench 13 is overturned, it is arranged close to the inner wall of the chisel material chamber 12, and the debris on the chisel workbench 13 falls to the position close to the work area 15, thereby facilitating the collection of debris.
[0062] The working principle and beneficial effects of the above technical solution are:
[0063] The side overturning assembly 2 works, thereby driving the chisel workbench 13 to overturn close to the notch position, the debris on the chisel workbench 13 is collected to the side close to the work area 15 along the inclined surface of the chisel workbench 13, and the debris is concentrated to the position of the discharge hopper 16 along the side close to the work area 15 by manual operation, and then the debris is collected.
[0064] In an embodiment, the side overturning assembly 2 comprises:
[0065] A bottom arc-shaped mounting bracket 21 is installed in the bottom support table 10, the chisel workbench 13 is rotatably installed at the top end of the bottom arc-shaped mounting bracket 21, and the chisel workbench 13 is arranged close to the arc away from the end of the bottom arc-shaped mounting bracket 21;
[0066] A double-head screw rod 22 is installed in the bottom arc-shaped mounting bracket 21;
[0067] Two sliding screw sleeves 23 are sleeved on the double-head screw rod 22;
[0068] A side lifting plate 24 is fixedly installed at the bottom of the bottom arc-shaped mounting bracket 21;
[0069] A lifting sleeve 25 is sleeved on the side lifting plate 24;
[0070] A shaking assembly is installed in the bottom arc-shaped mounting bracket 21 and located above the double-head screw rod 22;
[0071] At least four overturning plates 26 are rotatably installed on the shaking assembly, and the overturning plates 26 are arranged close to the chisel workbench 13 away from the shaking assembly;
[0072] Two inclined guide rods 27 are symmetrically installed on the lifting sleeve 25, the lower ends of the inclined guide rods 27 are arranged close to the lifting sleeve 25, inclined guide grooves 28 are formed in the inclined guide rods 27, and the inclined guide grooves 28 are arranged in a horizontal manner close to the lifting sleeve 25.
[0073] A side horizontal moving plate 29 is fixedly installed at the side end of the sliding screw sleeve 23, and a guide sliding block 30 is installed at the end of the side horizontal moving plate 29 away from the sliding screw sleeve 23, and the guide sliding block 30 is slidingly connected in the inclined guide slot 28;
[0074] A top rod 31 is provided in a right-angle bending mode, one end of the top rod 31 is fixedly connected with the lifting sleeve 25, and the other end of the top rod 31 is installed with a mounting horizontal rod 32, and a connecting rod 33 is hingedly installed at the middle segment of each turnover plate 26, and the connecting rod 33 is sleeved on the mounting horizontal rod 32 away from the turnover plate 26.
[0075] The working principle and beneficial effects of the above technical scheme are:
[0076] The double-end screw rod 22 installed on the bottom arc-shaped mounting bracket 21 works, thereby driving the two sliding screw sleeves 23 sleeved on the double-end screw rod 22 to move towards each other, the sliding screw sleeves 23 drive the side horizontal moving plate 29 connected therewith, the guide sliding block 30 installed on the side horizontal moving plate 29 to slide in the inclined guide slot 28, thereby driving the lifting sleeve 25 connected with the inclined guide rod 27, the top rod 31 installed on the lifting sleeve 25 to make a lifting action along the side lifting plate 24, and after the turnover plate 26 is driven to turn over by the top rod 31 through the mounting horizontal rod 32 and the connecting rod 33 installed on the mounting horizontal rod 32, the turnover plate 26 abuts against the chiseling workbench 13 away from the shaking-off assembly, thereby driving the chiseling workbench 13 to turn over at the top end of the bottom arc-shaped mounting bracket 21, so as to realize the inclined arrangement of the chiseling workbench 13, and facilitate the collection of the chippings on the chiseling workbench 13 to the side close to the working area 15 along the inclined surface of the chiseling workbench 13.
[0077] In an embodiment, the shaking-off assembly comprises:
[0078] A transmission screw rod 34 is installed in the bottom arc-shaped mounting bracket 21, and the transmission screw rod 34 is located above the double-end screw rod 22;
[0079] A fixed horizontal plate 35 is installed in the bottom arc-shaped mounting bracket 21, and is located between the transmission screw rod 34 and the double-end screw rod 22;
[0080] An equal number of transmission screw blocks 36 are sleeved on the transmission screw rod 34;
[0081] An arc-shaped lifting frame 37 is installed at the bottom end of the transmission screw block 36 through a spring rod 38, the turnover plate 26 is rotatably installed on the arc-shaped lifting frame 37, and the bottom end of the arc-shaped lifting frame 37 is slidingly installed at the top end of the fixed horizontal plate 35;
[0082] The wedge-shaped block 39 is installed at the bottom end of the arc-shaped lifting frame 37, and the top end of the fixed horizontal plate 35 is adapted to the wedge-shaped block 39 and is provided with a plurality of equidistantly arranged wedge-shaped grooves 40.
[0083] The transmission pulleys, one of which is installed on the transmission screw rod 34, and the other of which is installed on the double-headed screw rod 22, and the transmission belt 41 is sleeved on the two transmission pulleys.
[0084] The driving motor 42 is installed on the arc-shaped mounting bracket 21, and the output end of the driving motor 42 is connected with the double-headed screw rod 22.
[0085] The working principle and beneficial effects of the above technical scheme are as follows:
[0086] The driving motor 42 installed on the arc-shaped mounting bracket 21 works, thereby driving the double-headed screw rod 22 installed at the output end thereof to rotate, and the two sliding nuts 23 move towards each other, thereby driving the chisel workbench 13 to overturn at the top end of the bottom arc-shaped mounting bracket 21, so as to realize the inclined arrangement of the chisel workbench 13, facilitate the collection of the chippings on the chisel workbench 13 to the side close to the work area 15 along the inclined surface of the chisel workbench 13, and synchronize the rotation of the transmission screw rod 34 with the double-headed screw rod 22 through the transmission pulleys, the transmission screw rod 34 drives the transmission nut 36 sleeved thereon, the arc-shaped lifting frame 37 installed at the bottom end of the transmission nut 36 to slide on the fixed horizontal plate 35, and under the cooperation of the wedge-shaped block 39 and the wedge-shaped groove 40, when the wedge-shaped block 39 slides out of the wedge-shaped groove 40, the spring rod 38 contracts, and when the wedge-shaped block 39 slides into the wedge-shaped groove 40, the spring rod 38 extends, so as to realize the periodic shaking of the arc-shaped lifting frame 37 and the overturning plate 26 connected with the arc-shaped lifting frame 37, the four overturning plates 26 move and simultaneously knock the bottom end of the chisel workbench 13, thereby shaking the chippings on the chisel workbench 13 comprehensively and thoroughly without leaving any dead angle.
[0087] In an embodiment, the side lifting plate 24 is fixedly installed on the fixed horizontal plate 35 away from the bottom arc-shaped mounting bracket 21 end.
[0088] Obviously, the above embodiment is only an example for clear illustration, and is not a limitation on the embodiments. Based on the above description, other different forms of changes or variations can be made by those skilled in the art. Here, all the embodiments need not and cannot be exhausted. The obvious changes or variations derived therefrom are still within the protection scope of the present application.
Claims
1. An environmentally friendly integrated chiseling table, characterized in that: include: bottom support table (10); A wind cover (11) is installed on the top of the bottom support table (10), two chiseling chambers (12) are arranged at the side ends of the wind cover (11) in opposite directions, and a chiseling workbench (13) is integrally formed at the bottom of the chiseling chamber (12); A dust collecting port (14) is located at the top of the wind cover (11) and is connected to the two chiseling chambers (12). The dust collecting port (14) is connected to the dust collecting equipment through a pipeline; The chiseling workbench (13) is provided with a work area (15) in the inner recess away from the arc surface end. The work area (15) is centrally arranged. A notch adapted to the work area (15) is provided at the top of the bottom support seat (10). The chiseling workbench (13) is also provided with a discharge port away from the arc surface end. The discharge port is connected to the chiseling workbench (13). A discharge hopper (16) is installed on the discharge port. A side flip assembly (2) connected to the chiseling workbench (13) is installed in the bottom support table (10). The side flip assembly (2) is arranged close to the notch. When the chiseling workbench (13) flips, it is arranged close to the inner wall of the chiseling chamber (12). The debris on the chiseling workbench (13) slides to a position close to the working area (15), thereby facilitating the collection of the debris. The side flip assembly (2) comprises: a bottom arch mounting frame (21) mounted in the bottom support table (10); a chiseling workbench (13) rotatably mounted on the top end of the bottom arch mounting frame (21); the chiseling workbench (13) is arranged on the arc surface away from the end of the bottom arch mounting frame (21); a double-headed screw rod (22) is mounted in the bottom arch mounting frame (21); two sliding screw sleeves (23) are sleeved on the double-headed screw rod (22); a side lifting plate (24) is fixedly mounted on the bottom of the bottom arch mounting frame (21); a lifting sleeve (25) is sleeved on the side lifting plate (24); a shaking-off assembly is mounted in the bottom arch mounting frame (21) and is located above the double-headed screw rod (22); at least four flip plates (26) are rotatably mounted on the shaking-off assembly, and the flip plates (26) are arranged on the chiseling workbench (13) away from the end of the shaking-off assembly; two oblique guide rods ( 27) is symmetrically mounted on the lifting sleeve (25), the lower end of the oblique guide rod (27) is arranged close to the lifting sleeve (25), and an oblique guide groove (28) is provided on the oblique guide rod (27), and the oblique guide groove (28) is arranged horizontally close to the end of the lifting sleeve (25); the side transverse shift plate (29) is fixedly mounted on the side end of the sliding screw sleeve (23), and the side transverse shift plate (29) is installed with a guide slider (30) at the end away from the sliding screw sleeve (23), and the guide slider (30) is slidably connected to the oblique guide groove (28); the top rod (31) is bent at a right angle, one end of the top rod (31) is fixedly connected to the lifting sleeve (25), and the other end of the top rod (31) is installed with a mounting cross bar (32), and the middle section of each flip plate (26) is hinged with a connecting rod (33), and the connecting rod (33) is sleeved on the mounting cross bar (32) at the end away from the flip plate (26); The shaking-off assembly comprises: a transmission screw (34) installed in a bottom arch-shaped mounting frame (21), the transmission screw (34) being located above a double-headed screw (22); a fixed transverse plate (35) being installed in the bottom arch-shaped mounting frame (21) and being located between the transmission screw (34) and the double-headed screw (22); a transmission screw block (36) having the same number as the flip plate (26) being sleeved on the transmission screw (34); a bow-shaped lifting frame (37) being installed on the bottom end of the transmission screw block (36) through a spring rod (38), the flip plate (26) being rotatably mounted on the bow-shaped lifting frame (37), and the bow-shaped lifting frame (37) being rotated and mounted on the flip plate (26). The bottom end of the lowering frame (37) is slidably mounted on the top end of the fixed transverse plate (35); a wedge block (39) is mounted on the bottom end of the bow-shaped lifting frame (37); the top end of the fixed transverse plate (35) is adapted to the wedge block (39) and is provided with a plurality of wedge grooves (40) arranged at equal intervals; one of the transmission pulleys is mounted on the transmission screw (34), the other transmission pulley is mounted on the double-headed screw (22), and a transmission belt (41) is sleeved on the two transmission pulleys; a driving motor is mounted on the bow-shaped mounting frame (21), and an output end of the driving motor (42) is connected to the double-headed screw (22).
2. The environmentally friendly integrated chiseling table according to claim 1, characterized in that: The inner walls of the two chiseling chambers (12) close to each other are arranged in an arc shape, and the arc shape extends into the chiseling workbench (13). The inner walls of the two chiseling chambers (12) close to each other are provided with a strip hole connected to the dust collecting port (14).
3. The environmentally friendly integrated chiseling table according to claim 1, characterized in that: The top end of the wind cover (11) is arranged in a closed-end manner.
4. The environmentally friendly integrated chiseling table according to claim 2, characterized in that: The inner wall of the chiseling chamber (12) is arranged to extend outward in an inclined manner away from the arc surface end.
5. The environmentally friendly integrated chiseling table according to claim 1, characterized in that: The side lifting plate (24) is fixedly mounted on the fixed transverse plate (35) away from the end of the bottom arched mounting frame (21).
Citation Information
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