Motor part machining platform

By designing an automated cleaning system on the motor parts processing platform, using the motor-driven mechanical structure to achieve efficient cleaning of dust and iron filings, the problems of low manual cleaning efficiency and health risks in the existing technology are solved, and processing efficiency and resource utilization are improved.

CN223044192UActive Publication Date: 2025-07-01ANHUI HONGGUANG PUMP VALVE MFG CO LTD
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Patent Information

Application Number
CN202421141467.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-05-23
Publication Date
2025-07-01
Estimated Expiration
2034-05-23

AI Technical Summary

Technical Problem

In the prior art, dust and iron filing cleaning of motor parts processing platform relies on manual operation, which is inefficient and can easily cause staff to inhale dust, affecting health.

Method used

A motor component processing platform is designed, and the cleaning parts including a first motor, a screw rod, a sliding rod, a second motor, a rotor, a push-pull rod, a slider, a telescopic hose, a suction pump and a chip collector are automatically cleaned through a motor-driven mechanical structure.

Benefits of technology

It improves cleaning efficiency, reduces the time and labor intensity of manual cleaning, avoids the risk of staff inhaling dust, and at the same time realizes the collection and reuse of iron filing dust, improving resource utilization.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223044192U_ABST
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Abstract

The utility model relates to the technical field of motor machining, and discloses a motor part machining platform which comprises a support, one side of the support is fixedly connected with a first motor through a bolt, the first motor is fixedly connected with a lead screw through an output shaft, the surface of the lead screw is in threaded connection with a threaded sleeve, and the threaded sleeve is fixedly connected with a motor. The bottom of the threaded sleeve is fixedly connected with a fixing frame through a bolt, and a cleaning piece is arranged at the bottom of the fixing frame. Through cooperative use of the cleaning piece and other related assemblies, the whole device is easy and convenient to use and operate, dust, scrap iron and the like remaining on the machining platform can be rapidly cleaned, the cleaning efficiency is improved, the actual machining efficiency of parts is improved, meanwhile, the situation that dust and the like are prone to being sucked in during manual cleaning can be avoided, and the working efficiency is improved. And moreover, scrap iron dust and the like left after machining can be collected and can be conveniently treated and reused in the later period, and the resource utilization rate is increased.
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Description

Technical Field

[0001] The utility model relates to the technical field of motor processing, in particular to a processing platform for motor parts. Background Art

[0002] The processing of motor parts refers to the process of manufacturing various components of the motor, including the rotor, stator, bearing housing, end cover, winding, etc. of the motor. During the manufacturing process of the motor, these parts need to be precisely processed to ensure the performance, quality, and reliability of the motor. During the processing, the parts are generally processed such as turning, milling, grinding, drilling, etc. on the processing platform through corresponding equipment and tools. Then, during the grinding and drilling processes, there will definitely be corresponding iron filings and dust residues on the processing platform. If not cleaned in time, they may adhere to the surfaces of the subsequent parts to be processed, affecting the processing of the subsequent parts. Therefore, the staff will regularly manually clean the iron filings and dust residues on the processing platform with cleaning tools such as brushes.

[0003] Regarding the above related technologies, the inventor believes that when manually cleaning the iron filings and dust residues on the processing platform with corresponding cleaning tools, during the cleaning process, the staff is easily inhaled into the raised dust, affecting the health of the staff. At the same time, manually cleaning the dust and iron filings on the entire processing platform has relatively low overall efficiency, and it will also affect the actual processing efficiency of the parts.

[0004] The above information disclosed in this background art is only used to increase the understanding of the background art of the utility model. Therefore, it may include prior arts that are not known to those of ordinary skill in the art. Summary of the Utility Model

[0005] In order to solve the problems that when manually cleaning the dust and iron filings on the processing platform, the staff is easily inhaled into the raised dust, affecting the health of the staff, and the manual cleaning efficiency is not high, which will also affect the actual processing efficiency, the utility model provides a processing platform for motor parts.

[0006] The processing platform for motor parts provided by the utility model adopts the following technical solutions:

[0007] A motor part processing platform, including a bracket, the inner cavity side wall of the bracket is fixedly connected with a processing table through bolts, one side of the bracket is fixedly connected with a first motor through bolts, the first motor is fixedly connected with a lead screw through an output shaft, the end of the lead screw far away from the first motor rotates through the bracket and extends into the interior of the bracket, the end of the lead screw passing through the bracket is rotationally connected to the inner cavity side wall of the bracket through a rotating shaft, the surface of the lead screw is threadedly connected with a threaded sleeve, the bottom of the threaded sleeve is fixedly connected with a fixing frame through bolts, the inner cavity side wall of the fixing frame is slidably connected with two groups of sliding rods, both ends of the two groups of sliding rods are fixedly connected to the inner cavity side wall of the bracket through bolts, a cleaning member is arranged at the bottom of the fixing frame, and the cleaning member is arranged inside the bracket.

[0008] Preferably, the cleaning member includes a second motor, a rotating wheel, a push-pull rod, a sliding frame, a telescopic hose, a suction pump, a chip collection box, a slider and a chip collection cover. The bottom of the fixing frame is fixedly connected with a second motor through bolts, and the second motor is fixedly connected with a rotating wheel through an output shaft.

[0009] Preferably, one side of the rotating wheel far away from the second motor is rotationally connected with a push-pull rod through a rotating shaft, one end of the push-pull rod far away from the rotating wheel is rotationally connected with a slider through a rotating shaft, and the surface of the slider is slidably connected with a sliding frame.

[0010] Preferably, the top of the sliding frame is fixedly connected to the bottom of the fixing frame through bolts, the bottom of the slider is fixedly connected with a chip collection cover through bolts, and one side of the chip collection cover is fixedly connected with a telescopic hose through bolts.

[0011] Preferably, one end of the telescopic hose far away from the chip collection cover is fixedly connected with a suction pump through bolts, the bottom of the suction pump is fixedly connected with a chip collection box through bolts, and the bottom of the chip collection box is fixedly connected to the inner cavity bottom of the bracket through bolts.

[0012] In summary, the present utility model includes the following beneficial technical effects:

[0013] Through the coordinated use of the cleaning component and other related components, by utilizing the output of the first motor and cooperating with its lead screw and sliding rod, the fixing frame and the cleaning component at the bottom can be driven to move. At the same time, through the output of its second motor and cooperating with the rotating wheel and the push-pull rod, the chip collecting cover at the bottom of the slider can be driven to reciprocate left and right. At this time, through the output of the suction pump, the dust and iron filings on the processing table can be cleaned and sucked into the chip collecting box. Compared with the prior art, the overall use and operation are simple, and the residual dust, iron filings, etc. on the processing platform can be quickly cleaned, which not only improves the cleaning efficiency and the actual processing efficiency of its components, but also avoids the inhalation of dust and the like during manual cleaning, which affects the health of the staff. Moreover, the iron filings, dust, etc. remaining after processing can be collected, which is convenient for subsequent treatment and reuse, and improves the resource utilization rate. Description of the Drawings

[0014] Figure 1 is the first perspective three-dimensional structural schematic diagram of the embodiment of the present utility model;

[0015] Figure 2 is the sectional view of the bracket and the partial structural schematic diagram of related components of the embodiment of the present utility model;

[0016] Figure 3 is the partial structural schematic diagram of the chip collecting cover, the slider and related components of the embodiment of the present utility model.

[0017] Description of the reference numerals: 1, bracket; 2, processing table; 3, first motor; 4, sliding rod; 5, lead screw; 6, fixing frame; 7, second motor; 8, rotating wheel; 9, push-pull rod; 10, sliding frame; 11, telescopic hose; 12, suction pump; 13, chip collecting box; 14, threaded sleeve; 15, slider; 16, chip collecting cover. Detailed Description of the Embodiment

[0018] The following is a further detailed description of the present utility model in conjunction with the attached Figures 1-3 drawings.

[0019] An embodiment of the present utility model discloses a processing platform for motor parts. Refer to Figures 1-3, a machining platform for motor components, comprising a bracket 1. The inner cavity side wall of the bracket 1 is fixedly connected with a machining table 2 by bolts. One side of the bracket 1 is fixedly connected with a first motor 3 by bolts. The first motor 3 is fixedly connected with a lead screw 5 through an output shaft. One end of the lead screw 5 far from the first motor 3 rotates through the bracket 1 and extends into the interior of the bracket 1. One end of the lead screw 5 passing through the bracket 1 is rotatably connected to the inner cavity side wall of the bracket 1 through a rotating shaft. The surface of the lead screw 5 is threadedly connected with a threaded sleeve 14. The bottom of the threaded sleeve 14 is fixedly connected with a fixing frame 6 by bolts. The inner cavity side wall of the fixing frame 6 is slidably connected with two groups of sliding rods 4. Both ends of the two groups of sliding rods 4 are fixedly connected to the inner cavity side wall of the bracket 1 by bolts. A cleaning member is provided at the bottom of the fixing frame 6, and the cleaning member is arranged inside the bracket 1;

[0020] By adopting the above technical solution, the machining table 2 fixedly connected to the inner cavity side wall of the bracket 1 can be used for machining motor components. At the same time, when there is a lot of residual dust, iron filings, etc. on the machining table 2, the first motor 3 can be output to drive the lead screw 5 to rotate. Through the limiting effect of the two groups of sliding rods 4 on the fixing frame 6, the fixing frame 6 can be driven to move by the threaded sleeve 14 threadedly connected to the surface of the lead screw 5. Thus, during the movement, the residual dust, iron filings, etc. on the machining table 2 can be cleaned by the cleaning member at the bottom of the fixing frame 6, avoiding affecting the subsequent machining of components.

[0021] Refer to Figure 1 , Figure 2 and Figure 3 , the cleaning member includes a second motor 7, a runner 8, a push-pull rod 9, a sliding frame 10, a telescopic hose 11, a suction pump 12, a chip collection box 13, a slider 15 and a chip collection cover 16. The bottom of the fixing frame 6 is fixedly connected with a second motor 7 by bolts. The second motor 7 is fixedly connected with a runner 8 through an output shaft. One side of the runner 8 far from the second motor 7 is rotatably connected with a push-pull rod 9 through a rotating shaft. One end of the push-pull rod 9 far from the runner 8 is rotatably connected with a slider 15 through a rotating shaft. The surface of the slider 15 is slidably connected with a sliding frame 10. The top of the sliding frame 10 is fixedly connected to the bottom of the fixing frame 6 by bolts. The bottom of the slider 15 is fixedly connected with a chip collection cover 16. One side of the chip collection cover 16 is fixedly connected with a telescopic hose 11 by bolts. One end of the telescopic hose 11 far from the chip collection cover 16 is fixedly connected with a suction pump 12 by bolts. The bottom of the suction pump 12 is fixedly connected with a chip collection box 13 by bolts. The bottom of the chip collection box 13 is fixedly connected to the inner cavity bottom of the bracket 1 by bolts;

[0022] By adopting the above technical solution, the output of the second motor 7 at the bottom of the fixing frame 6 can drive the rotating wheel 8 to rotate. Through the limiting effect of the sliding frame 10 on its slider 15, the push-pull rod 9 rotatably connected to one side of the rotating wheel 8 can drive its slider 15 to move left and right reciprocally inside the sliding frame 10. Synchronously, the chip collecting cover 16 at the bottom of the slider 15 can be driven to move. During the moving process, the output of the suction pump 12 can be used to suck the dust, iron filings, etc. into the chip collecting box 13 through the telescopic hose 11 via the chip collecting cover 16. And the chip collecting box 13 can collect the residual dust and iron filings from the processing, which is also convenient for subsequent processing and reuse, etc.

[0023] The implementation principle of an embodiment of the motor component processing platform of the present utility model is as follows: The processing table 2 fixedly connected to the inner cavity side wall of the bracket 1 can be used for processing motor components. At the same time, when there are a large amount of residual dust, iron filings, etc. on the processing table 2, the output of the first motor 3 can drive its lead screw 5 to rotate. Through the limiting effect of the two sliding rods 4 on the fixing frame 6, the fixing frame 6 can be driven to move by the thread sleeve 14 threadedly connected to the surface of the lead screw 5. And the output of the second motor 7 at the bottom of the fixing frame 6 can drive the rotating wheel 8 to rotate. Through the limiting effect of the sliding frame 10 on its slider 15, the push-pull rod 9 rotatably connected to one side of the rotating wheel 8 can drive its slider 15 to move left and right reciprocally inside the sliding frame 10. Synchronously, the chip collecting cover 16 at the bottom of the slider 15 can be driven to move. During the moving process, the output of the suction pump 12 can be used to suck the dust, iron filings, etc. into the chip collecting box 13 through the telescopic hose 11 via the chip collecting cover 16, so as to clean the residual dust, iron filings, etc. on the processing table 2 and avoid affecting the subsequent component processing. And the chip collecting box 13 can collect the residual dust and iron filings from the processing, which is also convenient for subsequent processing and reuse, etc. The above first motor 3 and second motor 7 can both be selected as NEMA 17 stepper motors. The NEMA 17 stepper motor is a synchronous motor, and the movement of the rotor is controlled by applying a pulse signal. And the suction pump can be selected as WD 4Premium model. The overall use and operation are simple and convenient, and the residual dust, iron filings, etc. on the processing platform can be quickly cleaned. It not only improves the cleaning efficiency and the actual processing efficiency of the components, but also can avoid the dust being easily inhaled during manual cleaning, which affects the health of the staff. And it can collect the iron filings and dust remaining from the processing, which is convenient for subsequent processing and reuse, and improves the resource utilization rate.

[0024] The following points should be noted: First, in the description of the present utility model, it should be noted that unless otherwise specified and defined, the terms "installation", "connection", and "coupling" should be understood in a broad sense, which can be a mechanical connection or an electrical connection, or the communication inside two components, and can be a direct connection. The terms "upper", "lower", "left", "right", etc. are only used to represent the relative position relationship. When the absolute position of the object being described changes, the relative position relationship may change;

[0025] Second, in the attached drawings of the disclosed embodiments of the present utility model, only the structures related to the disclosed embodiments are involved. For other structures, reference can be made to the general design. Without conflict, the same embodiment and different embodiments of the present utility model can be combined with each other;

[0026] Finally, the above are only the preferred embodiments of the present utility model and are not used to limit the present utility model. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

[0027] The above are all the preferred embodiments of the present utility model, and the protection scope of the present utility model is not limited hereby. Therefore, all equivalent changes made according to the structure, shape, and principle of the present utility model shall be covered within the protection scope of the present utility model.

Claims

1. A motor parts processing platform, comprising a bracket (1), characterized in that: The inner cavity side wall of the bracket (1) is fixedly connected to the processing table (2) by bolts, and one side of the bracket (1) is fixedly connected to the first motor (3) by bolts. The first motor (3) is fixedly connected to a screw rod (5) by an output shaft. The end of the screw rod (5) away from the first motor (3) rotates through the bracket (1) and extends to the inside of the bracket (1). The end of the screw rod (5) that passes through the bracket (1) is rotatably connected to the inner cavity side wall of the bracket (1) by a rotating shaft. The surface of the screw rod (5) is threadedly connected to a threaded sleeve (14). The bottom of the threaded sleeve (14) is fixedly connected to a fixing frame (6) by bolts. The inner cavity side wall of the fixing frame (6) is slidably connected to two groups of sliding rods (4). Both ends of the two groups of sliding rods (4) are fixedly connected to the inner cavity side wall of the bracket (1) by bolts. A cleaning piece is provided at the bottom of the fixing frame (6), and the cleaning piece is arranged inside the bracket (1).

2. The motor parts processing platform according to claim 1, characterized in that: The cleaning component comprises a second motor (7), a rotating wheel (8), a push-pull rod (9), a sliding frame (10), a telescopic hose (11), a suction pump (12), a chip collecting box (13), a sliding block (15) and a chip collecting cover (16); the bottom of the fixed frame (6) is fixedly connected to the second motor (7) by bolts, and the second motor (7) is fixedly connected to the rotating wheel (8) by an output shaft.

3. The motor parts processing platform according to claim 2, characterized in that: The side of the rotating wheel (8) away from the second motor (7) is rotatably connected to a push-pull rod (9) via a rotating shaft, and the end of the push-pull rod (9) away from the rotating wheel (8) is rotatably connected to a slider (15) via a rotating shaft, and the surface of the slider (15) is slidably connected to a sliding frame (10).

4. The motor parts processing platform according to claim 3, characterized in that: The top of the sliding frame (10) is fixedly connected to the bottom of the fixed frame (6) by bolts, the bottom of the sliding block (15) is fixedly connected to a chip collecting cover (16) by bolts, and one side of the chip collecting cover (16) is fixedly connected to a telescopic hose (11) by bolts.

5. The motor parts processing platform according to claim 4, characterized in that: One end of the telescopic hose (11) away from the chip collecting cover (16) is fixedly connected to a suction pump (12) by means of bolts, the bottom of the suction pump (12) is fixedly connected to a chip collecting box (13) by means of bolts, and the bottom of the chip collecting box (13) is fixedly connected to the bottom of the inner cavity of the bracket (1) by means of bolts.