Machining equipment for integrated inner gear ring and adapter plate

By introducing a cleaning device into the internal ring processing equipment, using a negative pressure fan and a filter plate to clean metal debris, the problem of debris affecting processing stability is solved, and the processing effect and equipment service life are improved.

CN120205913AActive Publication Date: 2025-06-27中国航发南京航空动力有限责任公司
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Patent Information

Application Number
CN202510605747.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-12
Publication Date
2025-06-27
Estimated Expiration
2045-05-12

AI Technical Summary

Technical Problem

When using a CNC gear inserter to cut the inner ring, a large amount of metal debris will be generated. If not processed in time, the debris will adhere to the surface of the tool or workpiece, affecting the stability of the cutting process, resulting in an increase in the roughness of the processing surface and a dimensional deviation, which will not meet the design requirements and reduce the effectiveness of the processing equipment.

Method used

A processing equipment with integrated internal ring gear and adapter plate is designed, including cleaning devices, which collects and cleanses metal debris generated during the cutting process through a negative pressure fan and a filter plate to prevent debris from adhering to the cutting tool and workpiece surface.

Benefits of technology

It effectively avoids metal debris affecting the stability of the cutting process, improves the smoothness and dimensional accuracy of the processing surface, extends the service life of the processing equipment, and improves the processing effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides machining equipment for an integrated inner gear ring and an adapter disc, and relates to the technical field of machining equipment for the integrated inner gear ring and the adapter disc. The machining equipment comprises a machine body, a servo motor is arranged on one side of the bottom end of the machine body, and a bearing disc is installed at the output end of the servo motor through a coupler; a cleaning device is arranged on the outer surface of the bearing disc, the cleaning device comprises a filter screen plate and a negative pressure fan, the negative pressure fan is installed on one side of the bottom end of the bearing disc, the negative pressure fan is of a built-in power source type, a circular groove is formed in the bearing disc, and an exhaust pipe is fixedly connected to the inner wall of the circular groove. The negative pressure fan is operated to generate wind power, so that metal scraps enter the outer surface of the bearing disc, the metal scraps are blocked through the filter screen on the outer surface of the bearing disc, the sucked-in metal scraps are conveniently cleaned, and the situation that the metal scraps are attached to the surfaces of a cutting knife and a workpiece to affect the cutting effect of machining equipment is avoided as much as possible.
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Description

Technical Field

[0001] The present invention relates to the technical field of processing equipment for an integrated internal gear ring and an adapter plate, and particularly to processing equipment for an integrated internal gear ring and an adapter plate. Background Art

[0002] The internal gear ring in a planetary gear is a thin-walled part that encloses all planetary gears. The adapter plate is a part that transmits and outputs the torque on the internal gear ring and bears bearings and clutches. After integrating the internal gear ring and the adapter plate, the structure can be made simpler, and the design and manufacture of parts and structures can be reduced. When producing the internal gear ring, a CNC gear shaper is usually used to generate the convex teeth inside the internal gear ring.

[0003] When using a CNC gear shaper to cut and process the internal gear ring, a large amount of metal chips will be generated. If the chips are not processed in time and adhere to the surface of the tool or the workpiece, it will affect the stability of the cutting process, resulting in an increase in the surface roughness of the processed surface and size deviation, unable to meet the design requirements, and reducing the use effect of the processing equipment. Summary of the Invention

[0004] The object of the present invention is to solve the problem that when using a CNC gear shaper to cut and process the internal gear ring, a large amount of metal chips will be generated. If the chips are not processed in time and adhere to the surface of the tool or the workpiece, it will affect the stability of the cutting process, resulting in an increase in the surface roughness of the processed surface and size deviation, unable to meet the design requirements, and reducing the use effect of the processing equipment, and to propose processing equipment for an integrated internal gear ring and an adapter plate.

[0005] To achieve the above object, the present invention adopts the following technical scheme: Processing equipment for an integrated internal gear ring and an adapter plate, including a machine body. A servo motor is provided on one side of the bottom end of the machine body. The output end of the servo motor is installed with a carrier plate through a coupling. A plurality of positioning blocks are installed on the top end of the carrier plate through bolts. The positioning blocks are used to limit the position of the internal gear ring on the carrier plate. A hydraulic rod is provided on one side of the top end of the machine body. The output rod of the hydraulic rod is installed with a top plate. An electric push rod is provided at the bottom end of the top plate. The output rod of the electric push rod is installed with a mounting plate. A cutting tool is provided at the bottom end of the mounting plate. A cleaning device capable of collecting and cleaning the chips generated during the cutting process is provided on the outer surface of the carrier plate.

[0006] The effects achieved by the above components are as follows: When machining the internal gear ring using a processing device, place the internal gear ring on the bearing plate, and install the positioning block on the bearing plate through bolts. Fix the position of the internal gear ring on the bearing plate through the positioning block. Subsequently, control the operating parameters of the machine body through the control panel on one side of the machine body. Control the hydraulic rod to extend to lower the top plate, so that the cutting tool below the mounting plate approaches the internal gear ring. Then, operate the electric push rod below the top plate to control the up and down movement of the mounting plate. Cut the inner wall side of the internal gear ring with the cutting tool below the mounting plate. After one cutting is completed, stop the operation of the electric push rod. Then, operate the servo motor at the bottom end of the machine body, drive the bearing plate to slowly rotate a certain angle through the servo motor. Subsequently, control the electric push rod to operate to cut the internal gear ring again. Repeat this step to perform internal cutting on the internal gear ring. After the cutting is completed, remove the internal gear ring.

[0007] Preferably, the cleaning device includes a filter screen plate and a negative pressure fan. The negative pressure fan is installed on one side of the bottom end of the bearing plate. The negative pressure fan is of the built-in power supply type. A circular groove is formed inside the bearing plate. The inner wall of the circular groove is fixedly connected with an air extraction pipe. The top end of the air extraction pipe communicates with the top end inner wall of the circular groove. A plurality of through grooves are formed at the top end of the bearing plate. One end of the negative pressure fan is connected to one end of the air extraction pipe. A slot is formed on one side of the bearing plate. The inner wall of the slot is slidably inserted with a filter screen plate. The outer surface of the filter screen plate is provided with a filter net.

[0008] The effects achieved by the above components are as follows: By setting the air extraction pipe, during or after the process of cutting and processing the internal gear ring workpiece using a processing device, the filter screen plate can be inserted into the slot of the bearing plate to install the filter screen plate inside the bearing plate. Subsequently, operate the negative pressure fan to generate wind power. The wind power passes through the air extraction pipe, and the debris above the bearing plate is sucked into the circular groove through the through grooves on the outer surface of the bearing plate by the wind power. When the metal debris passes through the filter net on the outer surface of the filter screen plate, the metal debris can be blocked on the surface of the filter screen plate by the filter net on the outer surface of the filter screen plate. After the negative pressure fan operates for a period of time, stop the operation of the negative pressure fan, and pull out the filter screen plate from the inside of the slot to clean the metal debris on the filter net of the filter screen plate.

[0009] Preferably, a limiting component is arranged inside the bearing plate to fasten the position of the filter screen plate inside the bearing plate.

[0010] Preferably, the limiting component includes two groove blocks. A rotating shaft is rotatably connected to the inner wall of the groove block. A clamping block is fixedly connected to the outer surface of the rotating shaft. A torsion spring is arranged at the top end of the rotating shaft. Two ends of the torsion spring are respectively fixedly connected to one side of the rotating shaft and one side of the groove block. Card slots are formed on both sides of the bearing plate.

[0011] The effect achieved by the above components is: when installing the filter plate, after the filter plate is inserted into the slot on the outer surface of the carrier plate, when one end of the clamping block contacts the outer surface of the carrier plate, it will push the clamping block and the rotating shaft to rotate away from the carrier plate and cause the coil spring to deform. When the filter plate is completely in the slot, the coil spring returns to its original state to drive the rotating shaft and the clamping block to rotate, and one end of the clamping block is clamped into the slot to fix the position of the filter plate inside the carrier plate, thereby improving the stability of the filter plate after installation.

[0012] Preferably, a protrusion is fixedly connected to one side of the clamping block, and a certain oblique angle is formed between the protrusion and the clamping block.

[0013] The effect achieved by the above components is: when the filter plate needs to be removed, pinching the protrusions on one side of the block on both sides of the filter plate can more conveniently pry the block away from the slot, pull one end of the block out of the slot, remove the filter plate and clean the filter on the filter plate.

[0014] Preferably, an operating block is fixedly connected to one side of the filter plate, and grooves are respectively provided at the upper and lower ends of the operating block.

[0015] The effect achieved by the above components is that the operation block can be more conveniently grasped by pinching the grooves on the upper and lower sides of the operation block to control the filter plate to disassemble and assemble the filter plate.

[0016] Preferably, an auxiliary device is provided on the outer surface of the mounting plate, and the auxiliary device includes a sliding plate, a plurality of brush strips are provided at the bottom end of the sliding plate, and two springs are provided at the bottom end of the sliding plate, and the upper and lower ends of the springs are respectively fixedly connected to the bottom end of the sliding plate and the top end of the mounting plate, and two positioning rods are fixedly connected to the top end of the mounting plate, and the sliding plate slides on the outer surface of the positioning rods, and support rods are rotatably connected on both sides of the output rod of the electric push rod, and two positioning grooves are provided at the top end of the sliding plate.

[0017] The effect achieved by the above components is as follows: after the processing equipment is used, the sliding plate can be pushed downward on the top of the mounting plate to slide on the outer surface of the positioning rod and compress the spring, so that the height of the brush strip at the bottom end of the sliding plate is lower than the bottom end of the cutting knife, and then the support rods on both sides of the electric push rod output rod are pushed to rotate, and the bottom ends of the support rods are inserted into the two positioning grooves at the top of the sliding plate to fix the position of the sliding plate, and then the electric push rod is operated to extend so that the brush strip at the bottom end of the sliding plate contacts the surface of the carrying plate, and the servo motor is operated to drive the carrying plate to rotate, and at the same time the cleaning device is controlled to operate, and the debris on the outer surface of the carrying plate is further swept by the brush strip, and the debris is further cleaned by the cleaning device, thereby improving the use effect of the cleaning device. After use, press the sliding plate to move downward, and then push the bottom ends of the two support rods out of the positioning groove. The spring returns to its original state and pushes the sliding plate to move upward to return the sliding plate to its original position.

[0018] Preferably, a rubber strip is provided on one side of the bottom end of the support rod.

[0019] The effect achieved by the above components is that when the support rod is inserted into the positioning groove at the top of the sliding plate, the rubber strip at the bottom of the support rod can further tighten the position of the support rod in the positioning groove, thereby improving the stability of the support rod tightening the sliding plate.

[0020] Compared with the prior art, the advantages and positive effects of the present invention are: In the present invention, a cleaning device is provided and a negative pressure fan is operated to generate wind force, so that the wind force passes through the exhaust pipe to draw metal debris on the outer surface of the carrier plate into the circular groove through the through groove on the outer surface of the carrier plate, so that the metal debris enters the outer surface of the carrier plate, and the metal debris is blocked by the filter net on the outer surface of the carrier plate, which facilitates the cleaning of the drawn-in metal debris, thereby avoiding as much as possible the adhesion of metal debris to the cutting tool and the workpiece surface during the processing, thereby affecting the cutting effect of the processing equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 A schematic diagram of the three-dimensional structure of the processing equipment for the integrated inner gear ring and the adapter plate proposed by the present invention; Figure 2 A schematic diagram of the three-dimensional structure of the body of the processing equipment for the integrated inner gear ring and the adapter plate proposed by the present invention; Figure 3 The present invention proposes an integrated inner gear ring and adapter plate processing device Figure 2 A local enlarged three-dimensional structure schematic diagram; Figure 4 A schematic diagram of the three-dimensional structure of the negative pressure fan in the processing equipment of the integrated inner gear ring and the adapter plate proposed by the present invention; Figure 5 The present invention proposes an integrated inner gear ring and adapter plate processing device Figure 4 A schematic diagram of a partially enlarged three-dimensional structure at B; Figure 6 A schematic diagram of the three-dimensional structure of the carrier plate in the processing equipment of the integrated inner gear ring and the adapter plate proposed by the present invention; Figure 7 A schematic diagram of the three-dimensional structure of the filter plate in the processing equipment of the integrated inner gear ring and the adapter plate proposed by the present invention; Figure 8 The present invention provides a schematic diagram of the three-dimensional structure of the sliding disk in the processing equipment of the integrated inner gear ring and the adapter disk.

[0022] Legend: 1. Machine body; 2. Cleaning device; 3. Auxiliary device; 4. Servo motor; 5. Carrier plate; 6. Hydraulic rod; 7. Top plate; 8. Electric push rod; 9. Mounting plate; 21. Circular groove; 22. Exhaust duct; 23. Through groove; 24. Negative pressure fan; 25. Slot; 26. Filter plate; 27. Limiting component; 271. Card slot; 272. Groove block; 273. Rotating shaft; 274. Torsion spring; 275. Block; 276. Convex block; 277. Operating block; 31. Sliding plate; 32. Brush strip; 33. Spring; 34. Support rod; 35. Positioning groove; 36. Positioning rod. Detailed implementation mode

[0023] Example 1, as Figure 1-2 shown, the processing equipment for the integrated internal gear ring and adapter plate includes a machine body 1. A servo motor 4 is arranged on one side of the bottom end of the machine body 1. The output end of the servo motor 4 is installed with a carrier plate 5 through a coupling. A plurality of positioning blocks are installed on the top end of the carrier plate 5 through bolts. The positioning blocks are used to limit the position of the internal gear ring on the carrier plate 5. A hydraulic rod 6 is arranged on one side of the top end of the machine body 1. The output rod of the hydraulic rod 6 is installed with a top plate 7. A electric push rod 8 is arranged at the bottom end of the top plate 7. The output rod of the electric push rod 8 is installed with a mounting plate 9. A cutting tool is arranged at the bottom end of the mounting plate 9. A cleaning device 2 for collecting and cleaning the chips generated during the cutting process is arranged on the outer surface of the carrier plate 5. When using the processing equipment to process the internal gear ring, place the internal gear ring on the carrier plate 5 and install the positioning blocks on the carrier plate 5 through bolts. Fix the position of the internal gear ring on the carrier plate 5 through the positioning blocks. Then, control the operating parameters of the machine body 1 through the control panel on one side of the machine body 1. Control the hydraulic rod 6 to extend to lower the top plate 7 so that the cutting tool below the mounting plate 9 approaches the internal gear ring. Then, operate the electric push rod 8 below the top plate 7 to control the up and down movement of the mounting plate 9. Cut the inner wall side of the internal gear ring with the cutting tool below the mounting plate 9. After one cutting is completed, stop the operation of the electric push rod 8. Then, operate the servo motor 4 at the bottom end of the machine body 1. Drive the carrier plate 5 to slowly rotate a certain angle through the servo motor 4. Then, control the electric push rod 8 to operate to cut the internal gear ring. Repeat this step to perform internal cutting on the internal gear ring. After the cutting is completed, remove the internal gear ring.

[0024] Refer to Figure 1-5As shown in the figure, in this embodiment: The cleaning device 2 includes a filter plate 26 and a negative pressure fan 24. The negative pressure fan 24 is installed on one side of the bottom end of the bearing plate 5. The negative pressure fan 24 is of the built-in power supply type. A circular groove 21 is opened inside the bearing plate 5. The inner wall of the circular groove 21 is fixedly connected with an air extraction pipe 22. The top end of the air extraction pipe 22 communicates with the top end of the inner wall of the circular groove 21. A number of through grooves 23 are opened at the top end of the bearing plate 5. One end of the negative pressure fan 24 is connected to one end of the air extraction pipe 22. A slot 25 is opened on one side of the bearing plate 5. The inner wall of the slot 25 is slidably inserted with a filter plate 26. The outer surface of the filter plate 26 is provided with a filter net. By providing the air extraction pipe 22, during or after the machining equipment performs cutting on the internal gear ring workpiece, the filter plate 26 can be inserted into the slot 25 of the bearing plate 5 to install the filter plate 26 inside the bearing plate 5. Subsequently, the negative pressure fan 24 is operated to generate wind power, so that the wind power passes through the air extraction pipe 22 to suck the debris above the bearing plate 5 into the circular groove 21 through the through grooves 23 on the outer surface of the bearing plate 5. When the metal debris passes through the filter net on the outer surface of the filter plate 26, the metal debris can be blocked on the surface of the filter plate 26 by the filter net on the outer surface of the filter plate 26. After the negative pressure fan 24 operates for a period of time, the operation of the negative pressure fan 24 is stopped, and the filter plate 26 is pulled to extract the filter plate 26 from the inside of the slot 25 to clean the metal debris on the filter net of the filter plate 26. By providing the cleaning device 2, by operating the negative pressure fan 24 to generate wind power, the wind power passes through the air extraction pipe 22 to suck the metal debris on the outer surface of the bearing plate 5 into the circular groove 21 through the through grooves 23 on the outer surface of the bearing plate 5, so that the metal debris enters the outer surface of the bearing plate 5. The metal debris is blocked by the filter net on the outer surface of the bearing plate 5, which is convenient for cleaning the sucked metal debris, and as much as possible to avoid the metal debris adhering to the cutting tool and the workpiece surface, affecting the cutting effect of the machining equipment.

[0025] Referring to Figure 2-7As shown, in this embodiment: A limiting component 27 for fastening the position of the filter screen plate 26 inside the carrier plate 5 is provided inside the carrier plate 5. The limiting component 27 includes two groove blocks 272. A rotating shaft 273 is rotatably connected to the inner wall of the groove block 272. A clamping block 275 is fixedly connected to the outer surface of the rotating shaft 273. A torsion spring 274 is provided at the top of the rotating shaft 273. Two ends of the torsion spring 274 are respectively fixedly connected to one side of the rotating shaft 273 and one side of the groove block 272. Card slots 271 are formed on both sides of the carrier plate 5. When installing the filter screen plate 26, after inserting the filter screen plate 26 into the slot 25 on the outer surface of the carrier plate 5, when one end of the clamping block 275 contacts the outer surface of the carrier plate 5, it will push the clamping block 275 and the rotating shaft 273 to rotate away from the carrier plate 5 and cause the torsion spring 274 to deform. When the filter screen plate 26 is completely inside the slot 25, the torsion spring 274 returns to its original state, driving the rotating shaft 273 and the clamping block 275 to rotate, and clamping one end of the clamping block 275 into the card slot 271 to fix the position of the filter screen plate 26 inside the carrier plate 5, improving the stability of the filter screen plate 26 after installation.

[0026] Referring to Figure 2-7 As shown, in this embodiment: A convex block 276 is fixedly connected to one side of the clamping block 275. There is a certain angle between the convex block 276 and the clamping block 275. When it is necessary to remove the filter screen plate 26, pinching the convex block 276 on one side of the clamping block 275 on both sides of the filter screen plate 26 can more conveniently bend the clamping block 275 away from the card slot 271 and pull out one end of the clamping block 275 from the card slot 271 to remove the filter screen plate 26 and clean the filter net on the filter screen plate 26. An operation block 277 is fixedly connected to one side of the filter screen plate 26. Grooves are respectively formed at the upper and lower ends of the operation block 277. Pinching the grooves on the upper and lower sides of the operation block 277 can more conveniently hold and operate the operation block 277 to control the disassembly and assembly of the filter screen plate 26.

[0027] Referring to Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 and Figure 8As shown in the figure, in this implementation: an auxiliary device 3 is provided on the outer surface of the mounting disk 9. The auxiliary device 3 includes a sliding disk 31. A number of brush strips 32 are provided at the bottom end of the sliding disk 31. Two springs 33 are provided at the bottom end of the sliding disk 31. The upper and lower ends of the springs 33 are respectively fixedly connected to the bottom end of the sliding disk 31 and the top end of the mounting disk 9. Two positioning rods 36 are fixedly connected to the top end of the mounting disk 9. The sliding disk 31 slides on the outer surface of the positioning rods 36. Struts 34 are respectively rotatably connected to both sides of the output rod of the electric push rod 8. Two positioning grooves 35 are provided at the top end of the sliding disk 31. After the processing equipment is used up, the sliding disk 31 can be pushed downward on the outer surface of the positioning rods 36 on the top end of the mounting disk 9 to compress the springs 33, so that the height of the brush strips 32 at the bottom end of the sliding disk 31 is lower than the bottom end of the cutting tool. Subsequently, the struts 34 on both sides of the output rod of the electric push rod 8 are pushed to rotate, and the bottom ends of the struts 34 are inserted into the two positioning grooves 35 at the top end of the sliding disk 31 to fix the position of the sliding disk 31. Subsequently, the electric push rod 8 is operated to extend so that the brush strips 32 at the bottom end of the sliding disk 31 contact the surface of the bearing disk 5, and the servo motor 4 is operated to drive the bearing disk 5 to rotate. At the same time, the cleaning device 2 is controlled to operate. The brush strips 32 are used to further sweep the debris on the outer surface of the bearing disk 5, and the cleaning device 2 is used to further clean the debris, improving the use effect of the cleaning device 2. After use, the sliding disk 31 is pressed downward, and then the bottom ends of the two struts 34 are toggled to disengage from the positioning grooves 35. The springs 33 return to their original state and push the sliding disk 31 upward to return the sliding disk 31 to its original position.

[0028] Referring to Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 8 As shown, in this implementation: a rubber strip is provided on one side of the bottom end of the strut 34. When the strut 34 is inserted into the positioning groove 35 at the top end of the sliding disk 31, the position of the strut 34 inside the positioning groove 35 can be further tightened through the rubber strip at the bottom end of the strut 34, improving the stability of the strut 34 in tightening the position of the sliding disk 31.

[0029] Working principle: When machining the internal gear ring using a processing device, the filter screen plate 26 can be installed inside the carrier plate 5. When the filter screen plate 26 is inserted into the slot 25 on the outer surface of the carrier plate 5, when one end of the clamping block 275 contacts the outer surface of the carrier plate 5, it will push the clamping block 275 and the rotating shaft 273 to rotate away from the carrier plate 5 and cause the coil spring 274 to deform. After the filter screen plate 26 is completely inside the slot 25, the coil spring 274 will return to its original state, drive the rotating shaft 273 and the clamping block 275 to rotate, and snap one end of the clamping block 275 into the clamping groove 271 to fix the position of the filter screen plate 26 inside the carrier plate 5. Then, place the internal gear ring on the outer surface of the carrier plate 5, install the positioning block on the carrier plate 5 through bolts, and fix the position of the internal gear ring on the carrier plate 5 through the positioning block. Subsequently, control the operating parameters of the machine body 1 through the control panel on one side of the machine body 1, control the hydraulic rod 6 to extend to lower the top plate 7, and make the cutting tool below the mounting plate 9 approach the internal gear ring. Then, operate the electric push rod 8 below the top plate 7 to control the up and down movement of the mounting plate 9, and cut the inner wall side of the internal gear ring with the cutting tool below the mounting plate 9. After one cutting is completed, stop the operation of the electric push rod 8, then operate the servo motor 4 at the bottom end of the machine body 1, drive the carrier plate 5 to slowly rotate by a certain angle through the servo motor 4, and then control the electric push rod 8 to operate to cut the internal gear ring. Repeat this step to perform internal cutting on the internal gear ring. During the cutting process, the negative pressure fan 24 can be operated to generate wind force, and the wind force will pass through the air extraction pipe 22 to suck the debris above the carrier plate 5 into the circular groove 21 through the through groove 23 on the outer surface of the carrier plate 5. When the metal debris passes through the filter net on the outer surface of the filter screen plate 26, the metal debris can be blocked on the surface of the filter screen plate 26 through the filter net on the outer surface of the filter screen plate 26. After the cutting is completed, remove the internal gear ring, push the sliding plate 31 downward on the outer surface of the positioning rod 36 at the top of the mounting plate 9 to compress the spring 33, so that the height of the brush strip 32 at the bottom end of the sliding plate 31 is lower than the bottom end of the cutting tool. Then, push the support rods 34 on both sides of the output rod of the electric push rod 8 to rotate, and snap the bottom ends of the support rods 34 into the two positioning grooves 35 at the top of the sliding plate 31 to fix the position of the sliding plate 31. Subsequently, operate the electric push rod 8 to extend so that the brush strip 32 at the bottom end of the sliding plate 32 contacts the surface of the carrier plate 5, and further sweep the debris on the outer surface of the carrier plate 5 through the brush strip 32. After the negative pressure fan 24 operates for a period of time, stop the operation of the negative pressure fan 24, and pull out the filter screen plate 26 from the inside of the slot 25 to clean the metal debris on the filter net of the filter screen plate 26.

[0030] As described above, it is only the preferred embodiment of the present invention, and it is not a limitation to the present invention in other forms. Any person skilled in the art may use the technical content disclosed above to make changes or modifications into equivalent embodiments with equivalent changes and apply them to other fields. However, as long as it does not depart from the technical solution content of the present invention, any simple modification, equivalent change and modification made to the above embodiments based on the technical essence of the present invention still belong to the protection scope of the technical solution of the present invention. In the description of the present invention, it should be noted that unless otherwise clearly specified and defined, the terms "installation", "connection" and "connection" should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection or an integral connection; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood through specific situations.

Claims

1. The processing equipment of integrated inner gear ring and adapter plate is characterized by: The invention comprises a machine body (1), wherein a servo motor (4) is arranged on one side of the bottom end of the machine body (1), a bearing plate (5) is mounted on the output end of the servo motor (4) via a coupling, a plurality of positioning blocks are mounted on the top end of the bearing plate (5) via bolts, and the positioning blocks are used to limit the position of the inner gear ring on the bearing plate (5), a hydraulic rod (6) is arranged on one side of the top end of the machine body (1), an output rod of the hydraulic rod (6) is mounted with a top plate (7), an electric push rod (8) is arranged at the bottom end of the top plate (7), an output rod of the electric push rod (8) is mounted with a mounting plate (9), a cutting knife is arranged at the bottom end of the mounting plate (9), and a cleaning device (2) is arranged on the outer surface of the bearing plate (5) for collecting and cleaning debris generated during the cutting process.

2. The processing equipment of the integrated inner gear ring and adapter plate according to claim 1 is characterized in that: The cleaning device (2) comprises a filter plate (26) and a negative pressure fan (24). The negative pressure fan (24) is mounted on one side of the bottom end of the carrier plate (5). The negative pressure fan (24) is of a built-in power supply type. A circular groove (21) is provided inside the carrier plate (5). An exhaust pipe (22) is fixedly connected to the inner wall of the circular groove (21). The top of the exhaust pipe (22) is connected to the top of the inner wall of the circular groove (21). A plurality of through grooves (23) are provided at the top of the carrier plate (5). One end of the negative pressure fan (24) is connected to one end of the exhaust pipe (22). A slot (25) is provided on one side of the carrier plate (5). A filter plate (26) is slidably inserted into the inner wall of the slot (25). A filter screen is provided on the outer surface of the filter plate (26).

3. The processing equipment of the integrated inner gear ring and adapter plate according to claim 2 is characterized in that: A limiting component (27) capable of fastening the filter plate (26) in a position inside the supporting plate (5) is arranged inside the supporting plate (5).

4. The processing equipment of the integrated inner gear ring and adapter plate according to claim 3 is characterized in that: The limit assembly (27) comprises two slot blocks (272), the inner wall of the slot block (272) is rotatably connected to a rotating shaft (273), the outer surface of the rotating shaft (273) is fixedly connected to a clamping block (275), a coil spring (274) is provided at the top end of the rotating shaft (273), and the two ends of the coil spring (274) are respectively fixedly connected to one side of the rotating shaft (273) and one side of the slot block (272), and clamping grooves (271) are provided on both sides of the carrier plate (5).

5. The processing equipment of the integrated inner gear ring and adapter plate according to claim 4 is characterized in that: A protrusion (276) is fixedly connected to one side of the clamping block (275), and a certain oblique angle is formed between the protrusion (276) and the clamping block (275).

6. The processing equipment of the integrated inner gear ring and adapter plate according to claim 5, characterized in that: An operating block (277) is fixedly connected to one side of the filter plate (26), and grooves are respectively provided at the upper and lower ends of the operating block (277).

7. The processing equipment of the integrated inner gear ring and adapter plate according to claim 2, characterized in that: An auxiliary device (3) is provided on the outer surface of the mounting plate (9), and the auxiliary device (3) comprises a sliding plate (31). A plurality of brush strips (32) are provided at the bottom end of the sliding plate (31). Two springs (33) are provided at the bottom end of the sliding plate (31), and the upper and lower ends of the springs (33) are fixedly connected to the bottom end of the sliding plate (31) and the top end of the mounting plate (9), respectively.

8. The processing equipment of the integrated inner gear ring and adapter plate according to claim 7, characterized in that: Two positioning rods (36) are fixedly connected to the top end of the mounting plate (9), and the sliding plate (31) slides on the outer surfaces of the positioning rods (36).

9. The processing equipment of the integrated inner gear ring and adapter plate according to claim 8, characterized in that: Support rods (34) are rotatably connected to the output rod of the electric push rod (8) on both sides, and two positioning grooves (35) are formed on the top of the sliding plate (31).

10. The processing equipment of the integrated inner gear ring and adapter plate according to claim 9, characterized in that: A rubber strip is provided on one side of the bottom end of the support rod (34).

Citation Information

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