New energy automobile driving motor iron core cleaning device
Technical Field
The utility model belongs to the field of new energy automobile driving motor iron core cleaning equipment, and particularly relates to a new energy automobile driving motor iron core cleaning device.
Background
The iron core of the driving motor of the new energy automobile is an important component part of the driving motor, the quality of the iron core directly influences the performance and the efficiency of the motor, for example, the irregular groove shape can influence the quality of an embedded line, the overlarge burrs can cause the inter-sheet short circuit of the iron core, the iron loss and the temperature rise are increased, the incomplete or unclean punching sheet can influence the press-fit coefficient and the performance of the iron core, the cleanliness of the iron core directly influences the performance and the efficiency of the motor, and if dirt or impurities exist on the surface of the iron core, the friction of the motor can be increased during the running of the motor, so that the efficiency is reduced and the energy consumption is increased;
According to China patent application number 202321006203.2, a motor stator and rotor iron core cleaning device is disclosed, the motor stator and rotor iron core cleaning device comprises a mounting and fixing support, a dust accumulation funnel is connected to the mounting and fixing support, the upper end of the dust accumulation funnel is opened, a tray support is connected to the upper port of the dust accumulation funnel, a rotatable tray is connected to the upper end of the tray support, a plurality of positioning pins are arranged at the upper end of the tray, an air blowing knife is further arranged above the tray and connected to the air blowing knife support, one end of the air blowing knife support is connected to a lifting cylinder driving the air blowing knife support to reciprocate up and down, a steering driving mechanism driving the tray to rotate circumferentially is further arranged on the side face of the tray, the steering driving mechanism comprises a rotating wheel, a rotating shaft and a rotating shaft driving part driving the rotating shaft, the upper end of the rotating shaft is connected with the rotating wheel, the lower end of the rotating shaft is connected with the rotating shaft driving part, and the outer ring of the rotating wheel is tightly attached to the side wall of the tray;
the effectual cleaning method who has solved the washing mode that uses traditional washing liquid washing of prior art, will not avoid the washing liquid not remain in the lamination clearance, can bring the problem of uncertainty influence to the follow-up use of motor, have cleaning efficiency high, reduce the advantage that improves motor core result of use, but this kind of cleaning device operation is comparatively loaded down with trivial details, can not carry out effectual cleanness to the iron core inner circle to motor core's cleaning efficiency has been reduced.
In summary, the present utility model provides a new energy automobile driving motor core cleaning device to solve the above problems.
Disclosure of utility model
In order to solve the technical problems, the utility model provides the following technical scheme:
The utility model provides a new energy automobile driving motor iron core cleaning device, includes the support, the surface mounting of support has clean subassembly, clean subassembly includes shell and hopper, hopper and support fixed connection, the shell is fixed in the top of hopper, one side of support is provided with the sand blasting machine, the reposition of redundant personnel box is installed to the inner chamber of shell, the bottom intercommunication of reposition of redundant personnel box has the shunt tubes, the output intercommunication of sand blasting machine has communicating pipe, the one end that the sand blasting machine was kept away from to communicating pipe runs through to the inner chamber of shell and communicates with the inner chamber of reposition of redundant personnel box, the bottom intercommunication of shunt tubes has first shower nozzle, the center department intercommunication of shunt box bottom has the second shower nozzle, the second shower nozzle is used for cleaning motor iron core inner circle, first shower nozzle is used for cleaning motor iron core outer lane, the top fixedly connected with supporting network of hopper, lifting assembly is installed at the top of shell, lifting assembly is used for driving the reposition of redundant personnel box up and down.
Further, in the utility model, the cyclone dust collector is fixedly connected to the other side of the bracket, the inlet of the cyclone dust collector is communicated with the dust collection pipe, and one end of the dust collection pipe, which is far away from the cyclone dust collector, is communicated with the inner cavity of the shell.
Furthermore, in the utility model, the number of the shunt pipes and the first spray heads is provided with a plurality of shunt pipes and the first spray heads are uniformly distributed around the bottom of the shunt box, and the bottom of the hopper is communicated with a discharge valve.
Further, in the utility model, the lifting assembly comprises a supporting box, a servo motor, a sliding rod, a gear, a rack and a sliding seat, wherein the sliding rod, the gear, the rack, the sliding seat and the sliding strip are all arranged in the inner cavity of the supporting box.
Further, in the utility model, the supporting box is fixed at the top of the shell, the servo motor is fixed on the surface of the supporting box, both ends of the sliding rod extend to the outside of the supporting box and are in sliding connection with the inner cavity of the supporting box, and the bottom of the sliding rod penetrates to the inner cavity of the shell and is fixedly connected with the shunt box.
Further, in the utility model, the output shaft of the servo motor penetrates through the inner cavity of the supporting box and is in transmission connection with the gear, the rack is fixed on the surface of the sliding rod, and the gear is meshed with the rack.
Further, in the utility model, the sliding bar is fixed on the surface of the sliding bar, the sliding seat is fixedly connected with the inner wall of the supporting box, and the sliding bar extends to the inner cavity of the sliding seat and is in sliding connection with the inner cavity of the sliding seat.
The utility model has the following beneficial effects:
According to the utility model, the shell, the hopper, the sand blasting machine, the shunt box, the shunt pipe, the communicating pipe, the first spray head, the second spray head, the supporting net, the cyclone dust collector, the dust collection pipe and the discharge valve are arranged, so that the motor iron core can be cleaned, the shell and the hopper are used for providing a cleaning space, and the sand blasting machine, the shunt box, the shunt pipe, the communicating pipe, the first spray head and the second spray head are used for cleaning the motor iron core in a sand blasting mode, so that impurities on the surface and the inner wall of the iron core can be removed, and the quality and the cleanliness of the iron core are improved.
Drawings
FIG. 1 is a schematic diagram of the front view of the present utility model;
FIG. 2 is a schematic cross-sectional view of the housing of the present utility model;
FIG. 3 is a schematic rear view of the housing of the present utility model;
Fig. 4 is a schematic structural view of a connection state of a communication pipe and a shunt pipe according to the present utility model;
fig. 5 is a schematic view of a connection state structure of the lifting assembly of the present utility model.
In the figure:
1. the cleaning device comprises a bracket, 2, a cleaning assembly, 201, a shell, 202, a hopper, 203, a sand blasting machine, 204, a distribution box, 205, a distribution pipe, 206, a communication pipe, 207, a first nozzle, 208, a second nozzle, 209, a support net, 210, a cyclone dust collector, 211, a dust collection pipe, 212, a discharge valve, 3, a lifting assembly, 301, a support box, 302, a servo motor, 303, a slide bar, 304, a gear, 305, a rack, 306, a slide seat, 307 and a slide bar.
Detailed Description
For a better understanding of the technical content of the present utility model, specific examples are set forth below, along with the accompanying drawings. Aspects of the utility model are described in this disclosure with reference to the drawings, in which are shown a number of illustrative embodiments. The embodiments of the present disclosure need not be defined to include all aspects of the present utility model. It should be understood that the various concepts and embodiments described above, as well as those described in more detail below, may be implemented in any of a number of ways, as the disclosed concepts and embodiments are not limited to any implementation. Additionally, some aspects of the disclosure may be used alone or in any suitable combination with other aspects of the disclosure.
Example 1
As shown in fig. 1-5, in a first embodiment of the present utility model, a new energy automobile driving motor core cleaning device is provided, which includes a support 1, a cleaning component 2 is installed on a surface of the support 1, the cleaning component 2 includes a housing 201 and a hopper 202, the hopper 202 is fixedly connected with the support 1, the housing 201 is fixed on a top of the hopper 202, a sand blaster 203 is disposed on one side of the support 1, a shunt box 204 is installed in an inner cavity of the housing 201, a shunt pipe 205 is connected to a bottom of the shunt box 204, an output end of the sand blaster 203 is connected to a communicating pipe 206, one end of the communicating pipe 206 far from the sand blaster 203 penetrates into the inner cavity of the housing 201 and is connected to the inner cavity of the shunt box 204, a first spray nozzle 207 is connected to a bottom of the shunt pipe 205, a second spray nozzle 208 is connected to a center of the bottom of the shunt box 204, the second spray nozzle 208 is used for cleaning an inner ring of the motor core, the first spray nozzle 207 is fixedly connected to a supporting net 209 on a top of the hopper 202, a lifting component 3 is installed on a top of the housing 201, and the lifting component 3 is used for driving the shunt box 204 to move up and down.
As shown in fig. 1 to 5, the casing 201 is used for providing airtight clean space, thereby can prevent that the clean smoke and dust that produces of iron core from polluting surrounding environment, the surface of casing 201 articulates through the hinge has the door plant, can conveniently take motor core, the support net 209 is used for providing the bearing to the iron core, can fall into the inner chamber of hopper 202 with debris such as iron fillings through the mesh on support net 209 surface, collect iron fillings through hopper 202, the abrasive grain is used for carrying abrasive grain to the sand blaster 203, provide power to abrasive grain through outside compressed air, make abrasive grain can spray the iron core surface with high speed, communicating pipe 206 and sand blaster 203's output intercommunication, abrasive grain is through communicating pipe 206 water conservancy diversion to shunt tubes 205's inner chamber, and shunt tubes 205 through shunt tubes 207 and second shower nozzle 208, through first shower nozzle 207 and second shower nozzle 208 with abrasive grain to the surface and the inner wall of iron core spray, abrasive grain can high-speed spray under compressed air's effect, thereby can clear away the impurity such as iron core surface and inner wall's rust, the effectual clean effect that improves motor core.
Example 2
Referring to fig. 1-4, a second embodiment of the present utility model is based on the previous embodiment.
In this embodiment, the cyclone cleaner 210 is fixedly connected to the other side of the support 1, the inlet of the cyclone cleaner 210 is communicated with the dust collection tube 211, and one end of the dust collection tube 211 away from the cyclone cleaner 210 is communicated with the inner cavity of the housing 201.
The number of the shunt tubes 205 and the first spray heads 207 is a plurality, and the shunt tubes 205 and the first spray heads 207 are evenly distributed around the bottom of the shunt box 204, and the bottom of the hopper 202 is communicated with a discharge valve 212.
As shown in fig. 1 to 4, the outlet of the cyclone dust collector 210 may be connected to a bag-type dust collector, and the dust collecting pipe 211 may collect dust by suction generated by the cyclone dust collector 210, thereby ensuring the cleanliness of the working environment and the health of operators, and discharging scrap iron collected by the hopper 202 through the discharge valve 212.
Example 3
Referring to fig. 1, 2 and 5, a third embodiment of the present utility model is based on the first two embodiments.
In this embodiment, the lifting assembly 3 includes a support box 301, a servo motor 302, a slide bar 303, a gear 304, a rack 305, and a slide 306, where the slide bar 303, the gear 304, the rack 305, the slide 306, and the slide 307 are all mounted in the inner cavity of the support box 301.
The supporting box 301 is fixed on the top of the housing 201, the servo motor 302 is fixed on the surface of the supporting box 301, both ends of the sliding rod 303 extend to the outside of the supporting box 301 and are in sliding connection with the inner cavity of the supporting box 301, and the bottom of the sliding rod 303 penetrates through the inner cavity of the housing 201 and is fixedly connected with the shunt box 204.
The output shaft of the servo motor 302 penetrates through the inner cavity of the supporting box 301 and is in transmission connection with a gear 304, a rack 305 is fixed on the surface of the sliding rod 303, and the gear 304 is meshed with the rack 305.
The sliding bar 307 is fixed on the surface of the sliding bar 303, the sliding seat 306 is fixedly connected with the inner wall of the supporting box 301, and the sliding bar 307 extends to the inner cavity of the sliding seat 306 and is in sliding connection with the inner cavity of the sliding seat 306.
As shown in fig. 1, 2 and 5, the output shaft of the servo motor 302 rotates forward to drive the gear 304 to rotate, the gear 304 drives the rack 305 to move downwards when rotating, the rack 305 drives the slide bar 303 to move towards the inner cavity of the outer shell 201 when moving, the slide bar 303 pushes the shunt box 204 to move downwards when moving downwards, the shunt pipe 205, the first spray head 207 and the second spray head 208 are driven to move downwards when moving downwards, the shunt pipe 205 and the first spray head 207 move downwards along the periphery of the outer wall surface of the iron core, the second spray head 208 moves towards the inner cavity of the iron core, thereby cleaning the surface and the inner ring of the iron core, the first spray head 207 adopts a flat duckbill spray head to increase the spraying range of abrasive particles, the second spray head 208 adopts a porous spray head to uniformly spray the inner wall of the iron core, and the output shaft of the servo motor 302 rotates reversely to drive the shunt box 204 to move upwards.
When the abrasive grain cleaning device is used, the motor iron core is vertically placed at the top of the supporting net 209, the door plate is closed, the sand blasting machine 203 is connected with the compressor through an air pipe, power is provided for abrasive grains through external compressed air, the abrasive grains can be sprayed to the surface of the iron core at high speed, the output shaft of the servo motor 302 positively rotates to drive the gear 304 to rotate, the gear 304 drives the rack 305 to move downwards when moving, the rack 305 simultaneously drives the slide bar 303 to move towards the inner cavity of the shell 201, the slide bar 303 moves simultaneously to push the shunt box 204 to move downwards, the shunt pipe 205, the first spray head 207 and the second spray head 208 are driven to move downwards when the shunt box 204 moves downwards, the shunt pipe 205 and the first spray head 207 move downwards along the periphery of the outer wall surface of the iron core, the second spray head 208 moves towards the inner cavity of the iron core, the abrasive grains are guided to the inner cavity of the shunt pipe 205 through the communicating pipe 206, and are shunted to the first spray head 207 and the second spray head 208 through the first spray head 207 and the second spray head 208, the abrasive grains towards the surface and the inner wall of the iron core under the action of compressed air, and the abrasive grains can clean the surface of the iron core at high speed, the effect of the iron core can be improved, and the cleaning effect of the rust cleaning effect of the iron core can be achieved.
Standard parts used in the file of the application can be purchased from market, and can be customized according to the description of the specification and the drawings, the specific connection modes of all parts adopt conventional means such as mature bolts, rivets, welding and the like in the prior art, the machinery, the parts and the equipment adopt conventional models in the prior art, the control mode is controlled automatically by a controller, a control circuit of the controller can be realized by simple programming of a person skilled in the art, the application belongs to common general knowledge in the art, and the application is mainly used for protecting mechanical devices, so the application does not explain the control mode and circuit connection in detail.
While the utility model has been described with reference to preferred embodiments, it is not intended to be limiting. Those skilled in the art will appreciate that various modifications and adaptations can be made without departing from the spirit and scope of the present utility model. Accordingly, the scope of the utility model is defined by the appended claims.