An intelligent industrial energy-saving and environmentally friendly equipment

By introducing grinding balls and an inner spherical shell structure into environmental protection equipment, combined with components such as a moving ring and a rotating disk, efficient grinding and position adjustment of waste paper boxes are achieved, solving the problems of low grinding efficiency and accumulation in existing equipment and improving recycling efficiency.

CN119869656BActive Publication Date: 2025-09-26JIANGSU DERUIKE ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Application Number
CN202510254650.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-05
Publication Date
2025-09-26
Estimated Expiration
2045-03-05

AI Technical Summary

Technical Problem

The existing environmentally friendly shredding equipment has low grinding efficiency and waste paper boxes are prone to accumulation, resulting in reduced recycling efficiency.

Method used

It adopts grinding balls and inner spherical shell structure, combined with moving ring, hemispherical shell, spring and rotating disk components, and realizes intermittent grinding and position adjustment of paper scraps through rotation and oscillation mechanism.

Benefits of technology

It improves the grinding efficiency of waste paper boxes, prevents the accumulation of crushed waste paper boxes, and improves the overall efficiency of recycling equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of environmental protection equipment, specifically an intelligent industrial energy-saving environmental protection equipment, the grinding ball and the inner spherical shell sleeved on the grinding ball, further comprising: a moving ring, the moving ring is fixedly connected to the inner spherical shell, the bottom surface of the moving ring is fixedly connected with a pushing block at equal intervals, the outer rotatable connection of the inner spherical shell is connected to a hemispherical shell, the inner wall of the hemispherical shell is fixedly connected with a spring member at equal intervals, the end of the spring member facing away from the hemispherical shell is fixedly connected with an abutment block, and the inner spherical shell is fixedly connected with an arc top block. When the inner spherical shell rotates, the squeezed spring member can drive the abutment block to collide with the inside of the arc top block, so that the paper scraps inside the inner spherical shell can be vibrated. A track groove is provided on the rotating disk. When the environmental protection equipment is actually used, the output end of the hydraulic cylinder can drive the hemispherical shell to move up and down, which can facilitate the crushing structure to transport the paper scraps to the inside of the inner spherical shell, and also facilitate the grinding ball to crush the paper scraps inside the inner spherical shell.
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Description

Technical Field

[0001] The present invention relates to the technical field of environmental protection equipment, and in particular to an intelligent industrial energy-saving environmental protection equipment. Background Art

[0002] In the process of recycling waste cartons, environmentally friendly shredding equipment is needed. Environmentally friendly shredding equipment can shred waste cartons and save resources required for carton production.

[0003] After searching, it was found that patent announcement number CN117920714B discloses a waste cardboard crushing and recycling device for logistics, which is used for waste cardboard crushing and recycling. The invention grinds the cut cardboard by rotating the grinding balls in cooperation with the outer grinding sleeve. Then the second rotary drive mechanism drives the connecting arm to rotate, and the connecting arm can drive the outer grinding sleeve to pull down. As the height of the outer grinding sleeve decreases, the gap between the grinding balls and the outer grinding sleeve gradually increases, and the cardboard can enter the gap between the grinding balls and the outer grinding sleeve, so that the grinding balls can cooperate with the outer grinding sleeve to crush the waste cardboard.

[0004] However, although this environmental protection equipment can achieve a good crushing effect on waste paper boxes in actual use, it still has many defects, such as:

[0005] 1. When the recycling device is actually used, the contact time between the grinding balls and the outer grinding sleeve is relatively short. After the two third drive discs rotate, they only contact and grind for a split second. This results in low grinding efficiency of the waste paper box passing through the recycling device, which in turn reduces the recycling efficiency of the waste paper box.

[0006] 2. In actual use, the recycling device does not have a structure for adjusting the grinding angle of the waste paper box, which easily causes the crushed waste paper box to accumulate at the bottom of the outer grinding sleeve, and also leads to low grinding efficiency of the waste paper box by the recycling device;

[0007] To this end, we propose an intelligent industrial energy-saving and environmentally friendly equipment. Summary of the Invention

[0008] A technical problem to be solved by the present application is that the grinding efficiency of waste paper boxes through the recycling device is low and the crushed waste paper boxes are easily accumulated at the bottom of the outer grinding sleeve.

[0009] To solve the above technical problems, the present invention provides an intelligent industrial energy-saving and environmentally friendly device, comprising a grinding ball and an inner spherical shell sleeved on the grinding ball, and further comprising:

[0010] A moving ring, the moving ring is fixedly connected to the inner spherical shell, the bottom surface of the moving ring is fixedly connected with pushing blocks at equal intervals, the outer part of the inner spherical shell is rotatably connected to the hemispherical shell, the inner wall of the hemispherical shell is fixedly connected with spring members at equal intervals, the end of the spring member facing away from the hemispherical shell is fixedly connected with an abutment block, and the inner spherical shell is fixedly connected with an arc-shaped top block. When the inner spherical shell rotates, the squeezed spring member can drive the abutment block to collide with the inside of the arc-shaped top block, so that the paper scraps inside the inner spherical shell can be shaken;

[0011] A rotating disk, a track groove is provided on the rotating disk, a rotating head is slidably connected to the track groove on the rotating disk, a connecting rod is rotatably connected to the rotating head, an end of the connecting rod facing away from the rotating head is rotatably connected to a rotating end head, the rotating end head is fixedly connected to the hemispherical shell, and a pushing assembly is distributed on one side of the rotating disk. When the rotating disk rotates, the rotating disk can drive the connecting rod to move the hemispherical shell through the rotating head, and at the same time, the rotating disk can also drive the pushing assembly to drive the moving ring to rotate, so as to adjust the grinding position of the paper scraps inside the inner spherical shell.

[0012] In some embodiments, an annular groove is provided at the bottom of the movable ring between the push block and the inner spherical shell, and a rotating tube is rotatably connected inside the annular groove, and the rotating tube is fixedly connected to the hemispherical shell.

[0013] In some embodiments, a through hole is opened on the hemispherical shell, a discharge pipe passes through the through hole, and the discharge pipe is fixedly connected to the inner spherical shell.

[0014] In some embodiments, a support frame is distributed below the hemispherical shell, a sliding track is fixedly connected to the support frame, a sliding block is slidably connected to the sliding track, and the sliding block is fixedly connected to the hemispherical shell.

[0015] In some embodiments, the pushing assembly includes a pushing end abutting against the pushing block, a telescopic top rod is fixedly connected to the pushing end, a fixing rod is sleeved on the telescopic top rod, an end of the fixing rod facing away from the telescopic top rod is fixedly connected to the support frame, and a connecting spring is fixedly connected between the fixing rod and the telescopic top rod.

[0016] In some embodiments, the end of the telescopic push rod away from the pushing end is fixedly connected to the abutting end, and the part of the rotating disk close to the abutting end is fixedly connected to the abutting column, and the abutting column can abut against the abutting end.

[0017] In some embodiments, a mounting plate is distributed above the support frame, the bottom surface of the mounting plate is fixedly connected to the sliding track, a rotating motor is detachably connected to the mounting plate, and the output end of the rotating motor is fixedly connected to the grinding ball.

[0018] In some embodiments, a controller and a crushing structure are detachably connected to the mounting plate. The crushing structure can transport the shredded paper into the interior of the inner spherical shell, and the controller is electrically connected to the control end of the crushing structure.

[0019] In some embodiments, a transmission motor is detachably connected to the support frame, an output shaft of the transmission motor is fixedly connected to the rotating disk, and a control end of the transmission motor is electrically connected to the controller.

[0020] The present invention has at least the following beneficial effects:

[0021] 1. When the environmental protection equipment is actually used, when the rotating disk drives the rotating head to drive the internal rotation of the track groove, the rotating head can drive the hemispherical shell to move on the sliding track through the connecting rod. Due to the special design of the track groove, when the hemispherical shell drives the inner spherical shell to move upward, the grinding ball can intermittently grind the paper scraps inside the inner spherical shell.

[0022] 2. When the hemispherical shell in the environmental protection equipment moves up and down, the telescopic top rod can drive the abutment end to push the push block. At this time, the moving ring can drive the inner spherical shell to rotate inside the hemispherical shell, so that the grinding position of the shredded paper can be adjusted.

[0023] 3. When the moving ring in the environmental protection equipment drives the inner spherical shell to rotate, the inner spherical shell can drive the arc-shaped top block to rotate. At this time, the spring part can drive the abutment block to impact the arc-shaped top block, which can realize the vibration of the paper scraps inside the inner spherical shell, which can be conducive to the flipping of the paper scraps inside the inner spherical shell and realize the rapid grinding of the paper scraps inside the inner spherical shell. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0025] Figure 2 Schematic diagram of the distribution of grinding balls and hemispherical shells in the present invention;

[0026] Figure 3 Schematic diagram of the connection between the hydraulic cylinder and the hemispherical shell in the present invention;

[0027] Figure 4 Schematic diagram of the distribution of the hemispherical shell and the inner spherical shell in the present invention;

[0028] Figure 5 Schematic diagram of the connection between the arc-shaped top block and the abutment block in the present invention;

[0029] Figure 6 Schematic diagram of the connection between the rotating tube and the inner spherical shell in the present invention;

[0030] Figure 7 Schematic diagram of the connection between the moving ring and the inner spherical shell in the present invention;

[0031] Figure 8 Schematic diagram of the connection between the sliding block and the inner spherical shell in the present invention;

[0032] Figure 9 Schematic diagram of the connection between the telescopic top rod and the fixed rod in the present invention;

[0033] Figure 10 for Figure 5 A is an enlarged schematic diagram;

[0034] Figure 11 This is a structural diagram of the track groove in the present invention.

[0035] In the figure: 1. Rotating motor; 2. Mounting plate; 3. Controller; 4. Crushing structure; 5. Moving ring; 51. Hemispherical shell; 52. Discharge pipe; 53. Sliding block; 54. Through hole; 55. Rotating tube; 56. Arc top block; 57. Inner spherical shell; 58. Annular groove; 59. Pushing block; 510. Abutment block; 511. Spring member; 6. Telescopic top rod; 61. Fixed rod; 62. Rotating disk; 63. Track groove; 64. Transmission motor; 65. Connecting spring; 66. Abutment end; 67. Rotating end; 68. Pushing end; 69. Abutment column; 610. Rotating head; 7. Support frame; 8. Sliding track; 9. Grinding ball; 10. Connecting rod; 11. Pushing assembly. DETAILED DESCRIPTION

[0036] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0037] Example 1: Please refer to Figure 1-9 , the present invention provides a technical solution:

[0038] An intelligent industrial energy-saving and environmentally friendly device, comprising a grinding ball 9 and an inner spherical shell 57 sleeved on the grinding ball 9, and further comprising:

[0039] The movable ring 5 is fixedly connected to the inner spherical shell 57. The bottom surface of the movable ring 5 is fixedly connected with push blocks 59 at equal intervals. The outer portion of the inner spherical shell 57 is rotatably connected to the hemispherical shell 51. The inner wall of the hemispherical shell 51 is fixedly connected with spring members 511 at equal intervals. The end of the spring member 511 facing away from the hemispherical shell 51 is fixedly connected with an abutment block 510. The inner spherical shell 57 is fixedly connected with an arc-shaped top block 56. When the inner spherical shell 57 rotates, the squeezed spring member 511 can drive the abutment block 510 to collide with the inside of the arc-shaped top block 56, so that the paper scraps inside the inner spherical shell 57 can be shaken.

[0040] The arc-shaped top block 56 should be made of a metal material with good elasticity. When the arc-shaped top block 56 is connected to the inner spherical shell 57, a sealing material should be used to seal the arc-shaped top block 56 and the inner spherical shell 57 to prevent paper scraps from entering between the arc-shaped top block 56 and the inner spherical shell 57. When the movable ring 5 drives the inner spherical shell 57 to rotate, the paper scraps inside the inner spherical shell 57 can also rotate relative to the grinding balls 9. At this time, the grinding balls 9 can cooperate with the inner spherical shell 57 to quickly grind the paper scraps.

[0041] It should be noted that the grinding balls 9 shown in this document are spherical structures with a rough surface, and the surface of the inner spherical shell 57 that contacts the grinding balls 9 is also relatively rough. When paper scraps enter the inner spherical shell 57, the inner spherical shell 57 can cooperate with the grinding balls 9 to quickly grind the paper scraps.

[0042] Example 2: Please refer to Figure 1-9 , the present invention provides a technical solution:

[0043] Since the abutment block 510 is clamped between the hemispherical shell 51 and the inner spherical shell 57, and a spring member 511 is connected between the abutment block 510 and the hemispherical shell 51, when the movable ring 5 drives the inner spherical shell 57 to rotate, the abutment block 510 can squeeze the spring member 511. At this time, the spring member 511 accumulates force and works. The repulsive force generated by the spring member 511 can drive the abutment block 510 to collide with the arc-shaped top block 56, so that the arc-shaped top block 56 can drive the paper scraps inside the inner spherical shell 57 to vibrate, thereby realizing the adjustment of the grinding position of the paper scraps.

[0044] Example 3: Please refer to Figure 1-11 , the present invention provides a technical solution:

[0045] The rotating disk 62 has a track groove 63 formed on the rotating disk 62. A rotating head 610 is slidably connected to the track groove 63 on the rotating disk 62. The rotating head 610 is rotatably connected to the connecting rod 10. The end of the connecting rod 10 facing away from the rotating head 610 is rotatably connected to the rotating end 67. The rotating end 67 is fixedly connected to the hemispherical shell 51. A pushing component 11 is distributed on one side of the rotating disk 62. When the rotating disk 62 rotates, the rotating disk 62 can drive the connecting rod 10 to move the hemispherical shell 51 through the rotating head 610. At the same time, the rotating disk 62 can also drive the pushing component 11 to drive the moving ring 5 to rotate, thereby adjusting the grinding position of the paper scraps inside the inner spherical shell 57.

[0046] The track groove 63 includes an ascending section a, a descending section b and a pressing section c. Figure 11When the rotating disk 62 is rotating, the rotating head 610 will slide inside the ascending section a, the descending section b and the top pressure section c. When the rotating head 610 slides inside the ascending section a, the rotating head 610 will drive the hemispherical shell 51 to move upward through the connecting rod 10. At this time, the paper scraps inside the inner spherical shell 57 will abut against the grinding balls 9. Then the rotating head 610 will enter the top pressure section c. At this time, the paper scraps inside the inner spherical shell 57 will continue to contact the grinding balls 9. The length of the top pressure section c can be adjusted according to actual conditions. The longer the length of the top pressure section c is, the longer the contact time between the paper scraps and the grinding balls 9 will be. This can increase the efficiency of paper scrap grinding. When the rotating head 610 enters the interior of the descending section b, the rotating head 610 will drive the hemispherical shell 51 to move downward through the connecting rod 10. At this time, the grinding balls 9 no longer grind the paper scraps inside the inner spherical shell 57.

[0047] Example 4: Please refer to Figure 1-8 , the present invention provides a technical solution:

[0048] An annular groove 58 is provided at the bottom of the movable ring 5 between the push block 59 and the inner spherical shell 57 . A rotating tube 55 is rotatably connected to the interior of the annular groove 58 . The rotating tube 55 is fixedly connected to the hemispherical shell 51 .

[0049] A through hole 54 is formed in the hemispherical shell 51 . A discharge pipe 52 passes through the through hole 54 . The discharge pipe 52 is fixedly connected to the inner spherical shell 57 .

[0050] A support frame 7 is distributed below the hemispherical shell 51. A sliding track 8 is fixedly connected to the support frame 7. A sliding block 53 is slidably connected to the sliding track 8. The sliding block 53 is fixedly connected to the hemispherical shell 51.

[0051] The sliding track 8 provided on the support frame 7 can limit the moving position of the sliding block 53, so that the hemispherical shell 51 can drive the sliding block 53 to move inside the sliding track 8, and the hemispherical shell 51 can drive the inner spherical shell 57 to move up and down stably.

[0052] Example 5: Please refer to Figure 1-11 , the present invention provides a technical solution:

[0053] The pushing assembly 11 includes a pushing end 68 abutting against the pushing block 59, and the pushing end 68 is fixedly connected to the telescopic top rod 6, and a fixing rod 61 is sleeved on the telescopic top rod 6. The end of the fixing rod 61 facing away from the telescopic top rod 6 is fixedly connected to the support frame 7, and a connecting spring 65 is fixedly connected between the fixing rod 61 and the telescopic top rod 6.

[0054] One end of the telescopic push rod 6 away from the pushing end 68 is fixedly connected to the abutting end 66 , and the part of the rotating disk 62 close to the abutting end 66 is fixedly connected to the abutting column 69 , which can abut against the abutting end 66 .

[0055] A mounting plate 2 is distributed above the support frame 7 , the bottom surface of the mounting plate 2 is fixedly connected to the sliding track 8 , a rotating motor 1 is detachably connected to the mounting plate 2 , and the output end of the rotating motor 1 is fixedly connected to the grinding ball 9 .

[0056] The mounting plate 2 is detachably connected to a controller 3 and a crushing structure 4. The crushing structure 4 can transport shredded paper to the interior of the inner spherical shell 57. The controller 3 is electrically connected to the control end of the crushing structure 4. The crushing structure 4 can use an existing structure on the market. In this document, it plays the role of preheating and crushing the paper material. When the paper material enters the interior of the crushing structure 4, the crushing structure 4 can transport the crushed paper material to the interior of the inner spherical shell 57, thereby realizing the grinding of the inner spherical shell 57 in cooperation with the grinding balls 9.

[0057] The support frame 7 is detachably connected to a transmission motor 64, the output shaft of the transmission motor 64 is fixedly connected to the rotating disk 62, and the control end of the transmission motor 64 is electrically connected to the controller 3;

[0058] When the output shaft of the transmission motor 64 drives the rotating disk 62 to rotate, the rotating head 610 can slide inside the track groove 63. At this time, the rotating head 610 can drive the hemispherical shell 51 to move up and down through the connecting rod 10, so that the grinding ball 9 can intermittently grind the paper scraps inside the inner spherical shell 57. When the rotating head 610 enters the descending section b of the track groove 63, the abutment column 69 can hit the abutment end 66. The number of abutment columns 69 can be set according to actual conditions. When the abutment column 69 hits the abutment end 66, the telescopic push rod 6 can slide on the fixed rod 61. At this time, the pushing end 68 can push the pushing block 59, so that the moving ring 5 can drive the inner spherical shell 57 inside the hemispherical shell 51 to rotate, thereby realizing the adjustment of the grinding position of the paper scraps inside the inner spherical shell 57. Since a connecting spring 65 is connected between the telescopic push rod 6 and the fixed rod 61, when the telescopic push rod 6 slides on the fixed rod 61, the connecting spring 65 can store force to work, thereby realizing that the connecting spring 65 can drive the telescopic push rod 6 to reset.

[0059] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.

[0060] While the embodiments of the present invention have been shown and described, it will be apparent to those skilled in the art that various changes, modifications, substitutions, and alterations can be made to the embodiments without departing from the principles and spirit of the invention.

Claims

1. An intelligent industrial energy-saving and environmentally friendly device, comprising a grinding ball (9) and an inner spherical shell (57) sleeved on the grinding ball (9), characterized in that: Also includes: A movable ring (5), wherein the movable ring (5) is fixedly connected to the inner spherical shell (57), a push block (59) is fixedly connected to the bottom surface of the movable ring (5) at equal intervals, the outer portion of the inner spherical shell (57) is rotatably connected to a hemispherical shell (51), an inner wall of the hemispherical shell (51) is fixedly connected to a spring member (511) at equal intervals, an end of the spring member (511) facing away from the hemispherical shell (51) is fixedly connected to an abutment block (510), and an arc-shaped top block (56) is fixedly connected to the inner spherical shell (57), and when the inner spherical shell (57) rotates, the squeezed spring member (511) can drive the abutment block (510) to collide with the inside of the arc-shaped top block (56), so that the paper scraps inside the inner spherical shell (57) can be shaken; A rotating disk (62) is provided with a track groove (63) on the rotating disk (62). A rotating head (610) is slidably connected to the track groove (63) on the rotating disk (62). A connecting rod (10) is rotatably connected to the rotating head (610). One end of the connecting rod (10) facing away from the rotating head (610) is rotatably connected to a rotating end head (67). The rotating end head (67) is fixedly connected to the hemispherical shell (51). One end of the rotating disk (62) is rotatably connected to the rotating head (610). A pushing assembly (11) is distributed on the side. When the rotating disk (62) rotates, the rotating disk (62) can drive the connecting rod (10) to move the hemispherical shell (51) through the rotating head (610), so that the grinding balls (9) can intermittently grind the paper scraps inside the inner spherical shell (57). At the same time, the rotating disk (62) can also drive the pushing assembly (11) to drive the moving ring (5) to rotate, so as to adjust the grinding position of the paper scraps inside the inner spherical shell (57).

2. The intelligent industrial energy-saving and environmentally friendly equipment according to claim 1 is characterized in that: The bottom of the movable ring (5) is provided with an annular groove (58) between the pushing block (59) and the inner spherical shell (57). A rotating tube (55) is rotatably connected inside the annular groove (58), and the rotating tube (55) is fixedly connected to the hemispherical shell (51).

3. The intelligent industrial energy-saving and environmentally friendly equipment according to claim 1 is characterized in that: The hemispherical shell (51) is provided with a through hole (54), the interior of the through hole (54) is penetrated by a discharge pipe (52), and the discharge pipe (52) is fixedly connected to the inner spherical shell (57).

4. The intelligent industrial energy-saving and environmentally friendly equipment according to claim 1 is characterized in that: A support frame (7) is distributed below the hemispherical shell (51), a sliding track (8) is fixedly connected to the support frame (7), a sliding block (53) is slidably connected to the sliding track (8), and the sliding block (53) is fixedly connected to the hemispherical shell (51).

5. The intelligent industrial energy-saving and environmentally friendly equipment according to claim 1 is characterized in that: The pushing assembly (11) comprises a pushing end (68) abutting against the pushing block (59); a telescopic push rod (6) is fixedly connected to the pushing end (68); a fixing rod (61) is sleeved on the telescopic push rod (6); an end of the fixing rod (61) facing away from the telescopic push rod (6) is fixedly connected to the support frame (7); and a connecting spring (65) is fixedly connected between the fixing rod (61) and the telescopic push rod (6).

6. The intelligent industrial energy-saving and environmentally friendly equipment according to claim 5, characterized in that: One end of the telescopic push rod (6) away from the pushing end (68) is fixedly connected to the abutting end (66); a portion of the rotating disk (62) close to the abutting end (66) is fixedly connected to an abutting column (69); and the abutting column (69) is capable of abutting the abutting end (66).

7. The intelligent industrial energy-saving and environmentally friendly equipment according to claim 4 is characterized in that: A mounting plate (2) is distributed above the support frame (7), the bottom surface of the mounting plate (2) is fixedly connected to the sliding track (8), a rotating motor (1) is detachably connected to the mounting plate (2), and the output end of the rotating motor (1) is fixedly connected to the grinding ball (9).

8. The intelligent industrial energy-saving and environmentally friendly equipment according to claim 7 is characterized in that: The mounting plate (2) is detachably connected to a controller (3) and a crushing structure (4), the crushing structure (4) being capable of conveying paper scraps into the interior of the inner spherical shell (57), and the controller (3) is electrically connected to a control end of the crushing structure (4).

9. The intelligent industrial energy-saving and environmentally friendly equipment according to claim 7, characterized in that: A transmission motor (64) is detachably connected to the support frame (7), an output shaft of the transmission motor (64) is fixedly connected to the rotating disk (62), and a control end of the transmission motor (64) is electrically connected to the controller (3).

Citation Information

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