Intelligent equipment pre-processing grinding device

By using a flipping device and optimizing the structure, the problems of waste accumulation and splashing in intelligent equipment grinding equipment have been solved, achieving effective waste discharge and extending the life of the cutting head, thus improving processing safety and efficiency.

CN120734847BActive Publication Date: 2025-11-04江苏润昊智能装备有限公司
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Patent Information

Application Number
CN202511262435.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-09-05
Publication Date
2025-11-04
Estimated Expiration
2045-09-05

AI Technical Summary

Technical Problem

Existing grinding equipment used for pre-processing of intelligent equipment generates a large amount of waste during processing, which can easily accumulate in data cable interfaces or grooves. Furthermore, the high-speed rotating cutting head may cause waste to splash, reducing the life of the cutting head and damaging the inner wall.

Method used

The system employs a combination of a tilting device, a main rotating drum, a secondary rotating drum, gears, racks, and an adjusting mechanism. The adjusting mechanism tilts the secondary rotating drum, allowing gravity to cause the waste material to fall. A transmission ring, slider, and baffle structure prevent waste from splashing, thus improving waste discharge efficiency.

Benefits of technology

It effectively prevents waste accumulation and splashing, extends the life of the cutting head, reduces safety hazards, and improves processing efficiency and waste removal.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of intelligent equipment processing, particularly relates to a grinding device for preprocessing and processing of intelligent equipment, which comprises a processing table, a protective cover is arranged above the processing table, a tool bit fixer for driving the rotation of the tool bit is arranged in the protective cover, a mounting seat for fixing the intelligent equipment is arranged below the tool bit fixer, and a turnover device for driving the rotation of the tool bit fixer and the mounting seat is arranged in the protective cover. Through the cooperation of the turnover device, the main rotating cylinder, the auxiliary rotating cylinder, the gear, the rack and the adjusting mechanism and other structures, the intelligent equipment on the tool bit fixer and the mounting seat is changed from the vertical state to the inclined state by the auxiliary rotating cylinder, so that the waste produced after the grinding of the intelligent equipment is affected by gravity and falls off, thereby not only can the waste be prevented from accumulating in the data line interface or the groove of the intelligent equipment, but also the splashing of the waste caused by the cutting of the tool bit can be avoided, and the service life of the cutting tool bit is improved.
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Description

Technical Field

[0001] This invention relates to the field of intelligent equipment processing technology, and in particular to a grinding device for pre-processing intelligent equipment. Background Technology

[0002] Intelligent equipment refers to advanced equipment with sensing, analysis, reasoning, decision-making, and control functions. It integrates multiple disciplines such as mechanics, electronics, control, computers, and artificial intelligence, and plays a vital role in modern manufacturing. However, the production of intelligent equipment requires the use of grinding equipment to process the shape of the equipment and the interface of the data lines.

[0003] While existing grinding equipment for pre-processing intelligent equipment can use a robotic arm to drive a cutting head to drill holes and cut shapes into the intelligent equipment at different angles, it generates a large amount of waste material during processing. This waste material easily accumulates in the cut data cable interfaces or grooves. The high-speed rotating cutting head not only cuts the waste material but also causes it to splatter, which not only reduces the service life of the cutting head but also easily damages the inner wall of the processed data cable interfaces, increasing the defect rate of the intelligent equipment during grinding. Therefore, we propose a grinding equipment for pre-processing intelligent equipment. Summary of the Invention

[0004] In order to overcome the shortcomings of the prior art, the present invention provides a grinding device for intelligent equipment pretreatment.

[0005] To solve the above-mentioned technical problems, the present invention provides the following technical solution:

[0006] A grinding device for pre-processing intelligent equipment, comprising:

[0007] A processing table, with a protective cover above it, a cutter head retainer for driving the cutter head to rotate inside the protective cover, and a mounting base for fixing the intelligent equipment below the cutter head retainer.

[0008] The protective cover is equipped with a flipping device that drives the cutter head retainer and the mounting base to rotate simultaneously.

[0009] The flipping device includes a main rotating cylinder rotatably mounted above the processing table. Inside the main rotating cylinder is a rotatable secondary rotating cylinder. Two mounting rings are fixed to the inner wall of the main rotating cylinder. Two rotatable rotating shafts are arranged facing each other on the two mounting rings. The ends of the two rotating shafts away from the mounting rings are fixed to the two ends of the secondary rotating cylinder. An adjustment mechanism is provided between one of the rotating shafts and the main rotating cylinder. The secondary rotating cylinder is composed of two arc-shaped plates and two rectangular plates spliced ​​together. The centers of the two arc-shaped plates and the center of the main rotating cylinder are set on the same horizontal plane. The cutter head retainer is fixed on one of the rectangular plates, and the mounting base is fixed on the other rectangular plate.

[0010] The adjusting mechanism includes a gear fixed on one of the rotating shafts, a rack meshing with the gear above it, a rotatable threaded rod at one end of the rack, and an extension rod fixed at the other end of the rack. A support plate is provided between the threaded rod and the extension rod, and a threaded hole adapted to the threaded rod is provided on one of the support plates. By rotating the threaded rod to engage with the threaded hole, the threaded rod pushes the rack to move, causing the rack to drive the gear meshing with it to rotate, and the gear drives the auxiliary rotating cylinder to rotate through the rotating shaft.

[0011] As a preferred embodiment of the present invention, a limiting plate is fixed to the side of the rack, and a limiting groove adapted to the limiting plate is provided on the inner wall of the main rotating cylinder. One end of the extension rod passes through another support plate and is fixed with a blocking block. The rack is limited by the cooperation between the limiting plate and the limiting groove to prevent the threaded rod from driving the rack to rotate when rotating. The rack is prevented from separating from the gear when moving by the cooperation between the blocking block and another support plate.

[0012] As a preferred embodiment of the present invention, a transmission ring is fixed to the outer wall of the main rotating cylinder, a fixing block is fixed to the top of the inner wall of the protective cover, a fixing frame is fixed to the bottom of the fixing block, two insert rods are symmetrically fixed to the bottom of the fixing frame, and annular grooves that are adapted to the two insert rods are symmetrically arranged on both sides of the transmission ring. By the cooperation of the insert rods with the annular grooves of the transmission ring, the main rotating cylinder is suspended inside the protective cover by the transmission ring, so that the main rotating cylinder can rotate inside the protective cover.

[0013] As a preferred embodiment of the present invention, two height frames are symmetrically fixed on the top of the processing table, and two pulleys are provided on each of the two height frames. Two handles are symmetrically fixed on one side of the main rotating cylinder. The pulleys are in contact with the outer wall of the main rotating cylinder, and the main rotating cylinder is supported by the pulleys to prevent the main rotating cylinder from shaking when rotating. The handles also make it easy for people to control the rotation angle of the main rotating cylinder.

[0014] As a preferred embodiment of the present invention, two sliders are symmetrically fixed on the side of the main rotating cylinder away from the handle, and two fixing rods are symmetrically fixed on the inner wall of the protective cover. Two arc-shaped frames are fixed on the opposite side of the two fixing rods, and an arc-shaped groove adapted to the slider is provided in the middle of the two arc-shaped frames. Through the cooperation of the arc-shaped groove and the slider, the arc-shaped frame limits the main rotating cylinder through the slider, so as to avoid the main rotating cylinder rotating at too large an angle, which would affect the grinding effect.

[0015] As a preferred embodiment of the present invention, a sliding rod is fixed inside the arc-shaped groove, two springs are symmetrically arranged between the slider and the arc-shaped groove, and a through hole adapted to the sliding rod is opened in the middle of the slider. The spring releases the elastic force to push the slider to move, so that the slider drives the main rotating cylinder to quickly reset.

[0016] As a preferred embodiment of the present invention, two baffle plates are symmetrically fixed at the bottom of the inner wall of the main rotating cylinder, and a distribution plate is fixed between the two baffle plates. The top of the distribution plate is provided with an inclined surface, and the bottom of the main rotating cylinder is also provided with multiple discharge holes. The multiple discharge holes are evenly arranged between the two. The inclined surface of the distribution plate allows the grinding waste to be quickly discharged through the discharge port. The baffle plates block the waste inside the fixed block, preventing the centrifugal force generated when the main rotating cylinder rotates from causing the waste to splash.

[0017] As a preferred embodiment of the present invention, a baffle is fixed to the inner wall of the main rotating cylinder, and a waste collection frame is fixed to the top of the processing table to collect waste. The baffle blocks the rack and threaded rod to prevent waste from falling between the rack and threaded rod.

[0018] Compared with the prior art, the beneficial effects that this invention can achieve are:

[0019] 1. Through the cooperation of structures such as the flipping device, main rotating cylinder, auxiliary rotating cylinder, gears, racks and pinions and adjustment mechanism, the auxiliary rotating cylinder drives the intelligent equipment on the cutter head holder and mounting base from a vertical state to an inclined state. This causes the waste material generated after the intelligent equipment is ground to fall off due to gravity. This not only prevents the waste material from accumulating in the data cable interface or groove of the intelligent equipment, but also avoids the cutting head from cutting the waste material and causing it to splatter. This improves the service life of the cutting head and reduces safety hazards.

[0020] 2. By pushing the handle, the handle drives the main rotating cylinder to rotate, which in turn drives the transmission ring to rotate. Through the cooperation of the annular groove and the insert rod, the main rotating cylinder rotates around its axis, causing the fixed rod to rotate through the collar to drive the rotating shaft. The rotating shaft then drives the auxiliary rotating cylinder to rotate horizontally, which in turn drives the cutter head holder and mounting base to rotate horizontally. This allows the intelligent equipment to rotate horizontally, enabling waste materials to fall quickly from the intelligent equipment and improving waste removal efficiency during processing.

[0021] 3. The inclined plane of the height frame moves the waste material that falls into the main rotating drum after grinding to both sides of the main rotating drum, so that the waste material can be quickly discharged through the discharge port. This prevents the waste material from accumulating inside the main rotating drum, causing the center of gravity of the main rotating drum to shift and rotate, which would affect the processing of the intelligent equipment.

[0022] 4. The main rotating cylinder drives the slider to rotate, causing the slider to move along the annular groove of the arc frame. The slider causes the slide rod to deform and generate elastic force, which pushes the slider to move back and forth multiple times. This causes the slider to drive the main rotating cylinder to move back and forth multiple times, shaking the waste material accumulated inside the main rotating cylinder, preventing the waste material from accumulating on the main rotating cylinder, and improving the waste discharge efficiency of the discharge hole. Attached Figure Description

[0023] Figure 1 This is a schematic diagram of the structure of the present invention;

[0024] Figure 2 This is a schematic diagram of the structure of the flipping device of the present invention;

[0025] Figure 3 This is a schematic diagram of the main rotating cylinder of the present invention;

[0026] Figure 4 This is a schematic diagram of the structure of the fixing block of the present invention;

[0027] Figure 5 This is a schematic diagram of the main rotating cylinder of the present invention;

[0028] Figure 6 This is a schematic diagram of the structure of the secondary rotating cylinder of the present invention;

[0029] Figure 7 This is a schematic diagram of the structure of the extension rod of the present invention;

[0030] Figure 8 This is a schematic diagram of the arc-shaped frame of the present invention;

[0031] Figure 9 This is a schematic diagram of the slider of the present invention;

[0032] Figure 10 For the present invention Figure 3 A magnified schematic diagram of the structure at point A in the middle.

[0033] The components include: 1. Processing table; 2. Protective cover; 3. Fixer; 4. Mounting base; 5. Tilting device; 6. Scrap box; 7. Material distribution plate; 8. Handle; 9. Height frame; 10. Baffle plate; 501. Fixing block; 502. Main rotating cylinder; 503. Secondary rotating cylinder; 504. Gear; 505. Rack; 506. Threaded rod; 507. Extension rod; 508. Fixing frame; 509. Insert rod; 510. Slider; 511. Transmission ring; 512. Fixing rod; 513. Arc frame; 514. Slide rod; 515. Spring; 516. Baffle. Detailed Implementation

[0034] To make the technical means, creative features, and achieved objectives and effects of this invention easier to understand, the invention is further described below with reference to specific embodiments. However, the following embodiments are merely preferred embodiments of this invention and not all of them. Other embodiments obtained by those skilled in the art based on the embodiments described herein without creative effort are all within the protection scope of this invention. Unless otherwise specified, the experimental methods in the following embodiments are conventional methods, and the materials and reagents used in the following embodiments are commercially available unless otherwise specified.

[0035] Example: The present invention provides, as follows Figure 1 The grinding equipment shown includes:

[0036] A processing table 1 is provided, and a protective cover 2 is provided above the processing table 1. Inside the protective cover 2, a cutter head retainer 3 is provided to drive the cutter head to rotate. Below the cutter head retainer 3, a mounting base 4 is provided to fix the intelligent equipment.

[0037] As can be seen from the above, when it is necessary to process the intelligent equipment, first place the intelligent equipment to be processed on the mounting base 4, fix the intelligent equipment through the mounting base 4, then install the corresponding cutter head on the output end of the cutter head retainer 3, and then process the intelligent equipment through the cutter head retainer 3.

[0038] refer to Figures 1-10 As shown, the protective cover 2 is equipped with a flipping device 5 that drives the cutter head retainer 3 and the mounting base 4 to rotate simultaneously.

[0039] The flipping device 5 includes a main rotating cylinder 502 rotatably mounted above the processing table 1. A rotatable secondary rotating cylinder 503 is provided inside the main rotating cylinder 502. Two mounting rings are fixed to the inner wall of the main rotating cylinder 502. Two rotatable rotating shafts are arranged facing each other on the two mounting rings. The ends of the two rotating shafts away from the mounting rings are fixed to the two ends of the secondary rotating cylinder 503. An adjustment mechanism is provided between one of the rotating shafts and the main rotating cylinder 502. The secondary rotating cylinder 503 is composed of two arc-shaped plates and two rectangular plates spliced ​​together. The center of the two arc-shaped plates and the center of the main rotating cylinder 502 are set on the same horizontal plane. The cutter head retainer 3 is fixed on one of the rectangular plates, and the mounting base 4 is fixed on the other rectangular plate.

[0040] The adjusting mechanism includes a gear 504 fixed on one of the rotating shafts, a rack 505 meshing with the gear 504 above it, a rotatable threaded rod 506 at one end of the rack 505, and an extension rod 507 fixed at the other end of the rack 505. A support plate is provided between the threaded rod 506 and the extension rod 507, and a threaded hole adapted to the threaded rod 506 is provided on one of the support plates. By rotating the threaded rod 506 to engage with the threaded hole, the threaded rod 506 pushes the rack 505 to move, causing the rack 505 to drive the gear 504 meshing with it to rotate, and the gear 504 drives the auxiliary rotating cylinder 503 to rotate through the rotating shaft.

[0041] A limiting plate is fixed to the side of the rack 505. The inner wall of the main rotating cylinder 502 is provided with a limiting groove that matches the limiting plate. One end of the extension rod 507 passes through another support plate and is fixed with a blocking block. The rack 505 is limited by the cooperation between the limiting plate and the limiting groove to prevent the threaded rod 506 from driving the rack 505 to rotate when it rotates. The rack 505 is prevented from separating from the gear 504 when it moves by the cooperation between the blocking block and another support plate.

[0042] By adopting the above technical solution:

[0043] In use, when processing the intelligent equipment, the threaded rod 506 is rotated, and the threaded rod 506 engages with the threaded hole on one of the support plates, causing the threaded rod 506 to reciprocate along the support plate. The threaded rod 506 pushes the rack 505 to reciprocate, causing the rack 505 to drive the gear 504 meshing with it to rotate, causing the shaft of the gear 504 to rotate, causing the shaft to drive the auxiliary rotating cylinder 503 to rotate around the axis of the shaft, causing the auxiliary rotating cylinder 503 to change from a vertical state to an inclined state. The auxiliary rotating cylinder 503 causes the intelligent equipment on the cutter head holder 3 and the mounting base 4 to change from a vertical state to an inclined state, so that the waste generated after the intelligent equipment is ground falls off due to gravity, preventing the waste from accumulating in the data cable interface or groove of the intelligent equipment.

[0044] Secondly, refer to Figures 1-10As shown, a transmission ring 511 is fixed to the outer wall of the main rotating cylinder 502, a fixing block 501 is fixed to the top of the inner wall of the protective cover 2, a fixing frame 508 is fixed to the bottom of the fixing block 501, and two insert rods 509 are symmetrically fixed to the bottom of the fixing frame 508. Annular grooves that match the two insert rods 509 are symmetrically arranged on both sides of the transmission ring 511. By cooperating with the annular grooves of the transmission ring 511, the main rotating cylinder 502 is suspended inside the protective cover 2 through the transmission ring 511, allowing the main rotating cylinder 502 to rotate inside the protective cover 2.

[0045] Two height frames 9 are symmetrically fixed on the top of the processing table 1. Each height frame 9 is equipped with two pulleys. Two handles 8 are symmetrically fixed on one side of the main rotating cylinder 502. The pulleys are in contact with the outer wall of the main rotating cylinder 502. The pulleys support the main rotating cylinder 502 and prevent it from shaking when rotating. The handles 8 also make it easy for people to control the rotation angle of the main rotating cylinder 502.

[0046] The inner wall of the main rotating cylinder 502 is also fixed with a baffle 516, and the top of the processing table 1 is fixed with a waste collection frame 6 for collecting waste. The baffle 516 blocks the rack 505 and the threaded rod 506 to prevent waste from falling between the rack 505 and the threaded rod 506.

[0047] By adopting the above technical solution:

[0048] When in use, push the handle 8, which drives the main rotating cylinder 502 to rotate. The main rotating cylinder 502 drives the transmission ring 511 to rotate. Through the cooperation of the annular groove and the insertion rod 509, the main rotating cylinder 502 rotates around its axis. The fixed rod 512 rotates through the collar and the rotating shaft. The rotating shaft drives the auxiliary rotating cylinder 503 to rotate horizontally. The auxiliary rotating cylinder 503 drives the cutter head holder 3 and the mounting base 4 to rotate horizontally. This causes the intelligent equipment to rotate horizontally, allowing waste to fall quickly from the intelligent equipment and improving the waste removal efficiency during processing.

[0049] Again, refer to Figures 1-10 As shown, two baffle plates 10 are symmetrically fixed at the bottom of the inner wall of the main rotating cylinder 502. A distribution plate 7 is fixed between the two baffle plates 10. The top of the distribution plate 7 is provided with an inclined surface, and the bottom of the main rotating cylinder 502 is also provided with multiple discharge holes. The multiple discharge holes are evenly arranged between the two. The inclined surface of the distribution plate 7 allows the grinding waste to be discharged quickly through the discharge port. The baffle plates 10 block the waste inside the fixed block 501, preventing the centrifugal force generated when the main rotating cylinder 502 rotates from causing the waste to splash.

[0050] By adopting the above technical solution:

[0051] During use, the inclined surface of the material distribution plate 7 causes the waste material that falls inside the main rotating cylinder 502 after grinding to move to both sides of the main rotating cylinder 502, so that the waste material can be quickly discharged through the discharge port, preventing the waste material from accumulating inside the main rotating cylinder 502, causing the center of gravity of the main rotating cylinder 502 to shift and rotate, which would affect the processing of the intelligent equipment.

[0052] Finally, refer to Figures 1-10 As shown, two sliders 510 are symmetrically fixed on the side of the main rotating cylinder 502 away from the handle 8, and two fixing rods 512 are symmetrically fixed on the inner wall of the protective cover 2. Two arc-shaped frames 513 are fixed on the side of the two fixing rods 512 facing each other. The middle of the two arc-shaped frames 513 is provided with an arc-shaped groove that matches the sliders 510. Through the cooperation of the arc-shaped groove and the sliders 510, the arc-shaped frames 513 limit the main rotating cylinder 502 through the sliders 510, so as to avoid the main rotating cylinder 502 rotating too much and affecting the grinding effect.

[0053] A slide rod 514 is fixed inside the arc-shaped groove. Two springs 515 are symmetrically arranged between the slider 510 and the arc-shaped groove. A through hole adapted to the slide rod 514 is also opened in the middle of the slider 510. The spring 515 releases the elastic force to push the slider 510 to move, so that the slider 510 drives the main rotating cylinder 502 to quickly reset.

[0054] By adopting the above technical solution:

[0055] In use, when the main rotating drum 502 rotates, it drives the slider 510 to rotate, causing the slider 510 to move along the annular groove of the arc frame 513. The slider 510 causes the slide rod 514 to deform and generate elastic force, which pushes the slider 510 to move back and forth multiple times. This causes the slider 510 to drive the main rotating drum 502 to move back and forth multiple times, shaking the waste material accumulated inside the main rotating drum 502, preventing the waste material from accumulating on the main rotating drum 502, and improving the waste discharge efficiency of the discharge hole.

[0056] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited thereto. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the spirit of the present invention.

Claims

1. A grinding device for pre-processing intelligent equipment, characterized in that, include: A processing table (1) is provided with a protective cover (2) above the processing table (1). Inside the protective cover (2) is a cutter head retainer (3) that drives the cutter head to rotate. Below the cutter head retainer (3) is a mounting base (4) for fixing the intelligent equipment. The protective cover (2) is equipped with a flipping device (5) that drives the blade holder (3) and the mounting base (4) to rotate simultaneously. The flipping device (5) includes a main rotating cylinder (502) rotatably mounted above the processing table (1). A rotatable auxiliary rotating cylinder (503) is provided inside the main rotating cylinder (502). Two mounting rings are fixed on the inner wall of the main rotating cylinder (502). Two rotatable rotating shafts are arranged facing each other on the two mounting rings. One end of the two rotating shafts away from the mounting rings is fixed to both ends of the auxiliary rotating cylinder (503). An adjustment mechanism is provided between one of the rotating shafts and the main rotating cylinder (502). The adjustment mechanism includes a gear (504) fixed on one of the rotating shafts, a rack (505) meshing with the gear (504) is provided above the gear (504), a rotatable threaded rod (506) is provided at one end of the rack (505), and an extension rod (507) is fixed at the other end of the rack (505). A support plate is provided between the threaded rod (506) and the extension rod (507), and a threaded hole adapted to the threaded rod (506) is provided on one of the support plates. The top of the processing table (1) is symmetrically fixed with two height frames (9), and each height frame (9) is provided with two pulleys. Two handles (8) are symmetrically fixed on one side of the main rotating cylinder (502), and the pulleys are in contact with the outer wall of the main rotating cylinder (502). Two sliders (510) are symmetrically fixed on the side of the main rotating cylinder (502) away from the handle (8), and two fixing rods (512) are symmetrically fixed on the inner wall of the protective cover (2). Two arc-shaped frames (513) are fixed on the side of the two fixing rods (512) facing each other. An arc-shaped groove that matches the slider (510) is provided in the middle of the two arc-shaped frames (513). A slide rod (514) is fixed inside the arc-shaped groove. Two springs (515) are symmetrically arranged between the slider (510) and the arc-shaped groove. A through hole adapted to the slide rod (514) is also opened in the middle of the slider (510).

2. The grinding equipment for pre-processing of intelligent equipment according to claim 1, characterized in that, A limiting plate is fixed to the side of the rack (505), and a limiting groove adapted to the limiting plate is provided on the inner wall of the main rotating cylinder (502). One end of the extension rod (507) passes through another support plate and is fixed with a blocking block.

3. The grinding equipment for pre-processing of intelligent equipment according to claim 1, characterized in that, The outer wall of the main rotating cylinder (502) is fixed with a transmission ring (511), the top of the inner wall of the protective cover (2) is fixed with a fixing block (501), the bottom of the fixing block (501) is fixed with a fixing frame (508), the bottom of the fixing frame (508) is symmetrically fixed with two insert rods (509), and the two sides of the transmission ring (511) are symmetrically provided with annular grooves that are compatible with the two insert rods (509).

4. The grinding equipment for pre-processing of intelligent equipment according to claim 1, characterized in that, The inner wall of the main rotating cylinder (502) has two baffles (10) fixed symmetrically at the bottom. A distribution plate (7) is fixed between the two baffles (10). The top of the distribution plate (7) is provided with an inclined surface, and the bottom of the main rotating cylinder (502) is also provided with multiple discharge holes.

5. The grinding equipment for pre-processing of intelligent equipment according to claim 3, characterized in that, The inner wall of the main rotating cylinder (502) is also fixed with a baffle (516), and the top of the processing table (1) is fixed with a waste collection frame (6) for collecting waste.

Citation Information

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