Gear polishing equipment of high-pressure gear pump
Technical Field
The utility model relates to the technical field of polishing, in particular to gear polishing equipment based on a high-pressure gear pump.
Background
In the polishing process based on the gear pump, most polishing processing is a grinder at present, and the existing grinder adopts motor drive to polish, and mainly utilizes the high-speed rotation of the motor to drive the high-speed rotation of the grinding wheel to achieve the purpose of polishing a workpiece.
The patent publication No. CN 219380178U discloses a steering polishing device based on a gear pump, and belongs to the technical field of workpiece polishing. The invention discloses a steering polishing device of a gear pump, which comprises a base, wherein the base consists of a lower mounting seat and an upper mounting seat arranged at the back of the lower mounting seat, a plurality of groups of rotating seats are arranged at the upper end of the upper mounting seat and close to the back, limiting components are connected to the rotating seats, each limiting component consists of a locating sleeve, a liquid inlet port, a telescopic cylinder and a connecting plate, a plurality of groups of workpiece rotating components and a plurality of groups of polishing components are arranged on the front of the upper mounting seat, and a supporting box is arranged at the upper end of the lower mounting seat.
Above-mentioned related art can accumulate a certain amount of sweeps and waste water in holding in the palm the box after using a period, and waste water and sweeps are difficult to separate the processing when operating personnel clear up the holding in the palm the box, influence and hold in the palm box cleaning efficiency.
Disclosure of utility model
In order to easily separate waste water and scraps and improve the cleaning efficiency of the support box, the utility model provides gear polishing equipment of a high-pressure gear pump.
The technical scheme includes that the gear polishing equipment of the high-pressure gear pump comprises a polishing device and a waste water collecting device, wherein the waste water collecting device is located at the lower side of the polishing device and comprises a waste treatment mechanism and a waste water treatment mechanism, the waste treatment mechanism comprises a filter screen, the waste water treatment mechanism comprises a liquid storage tank, and the filter screen is located right above the liquid storage tank.
Through adopting above-mentioned technical scheme, waste water sweeps that produces of polishing filters through the filter screen, and waste water flows into the liquid reserve tank, and rethread waste water treatment mechanism carries out the collection of waste water, and the sweeps carries out the collection of sweeps through sweeps treatment mechanism, and sweeps waste water collection device can separate the sweeps and the waste water of accumulating a certain amount to handle, improves the cleaning efficiency of sweeps and waste water.
Optionally, the sweeps processing mechanism further comprises a turnover assembly and a sweeps collecting assembly, wherein the turnover assembly is used for driving the filter screen to turn over on the vertical plane by 180 degrees, and the sweeps collecting assembly is used for collecting sweeps on the filter screen.
Through adopting above-mentioned technical scheme, upset subassembly drive filter screen overturns on vertical face, collects the sweeps on the filter screen through the sweeps collection subassembly, has improved the collection efficiency of sweeps.
Optionally, the upset subassembly includes workstation, axis of rotation and upset motor, the upset motor is fixed on the workstation, the axis of rotation rotates to be connected in the workstation, the upset motor with coaxial fixed connection of axis of rotation, filter screen and axis of rotation fixed connection.
Through adopting above-mentioned technical scheme, the upset motor passes through the axis of rotation and drives the filter screen and overturn 180 on vertical face, effectually pours the sweeps on the conveyer belt of sweeps collection subassembly, has formed automated processing sweeps.
The polishing device comprises a polishing device, a supporting table, a pushing device, a polishing device and a polishing device, wherein the polishing device is arranged on the upper end face of the supporting table, the pushing device comprises a cylinder, a chute and a plurality of rollers, the cylinder is fixedly connected to the upper end face of the supporting table, two chutes are arranged on the supporting table, and the rollers are arranged at the bottom of the polishing device and roll in the chute.
Through adopting above-mentioned technical scheme, the left and right flexible of cylinder on the brace table can promote gear grinding device and polish the back at brace table upper level shifter, is favorable to the filter screen to overturn to the automated processing of sweeps on sweeps collection assembly's the conveyer belt through the upset subassembly.
Optionally, the sweeps collection assembly includes conveyer belt part and sweeps storage container, and the conveyer belt part includes the belt conveyor, sweeps storage container is located the belt conveyor and keeps away from the one end of filter screen under, sweeps storage container is used for collecting the sweeps that drop on the belt conveyor.
Through adopting above-mentioned technical scheme, on the sweeps on the filter screen was poured into the conveyer belt through the upset of flip subassembly, the conveyer belt transported the afterbody with the sweeps, all got into the storage container of sweeps eventually, and the sweeps collection subassembly has improved the collection efficiency of sweeps.
Optionally, the scrap collecting assembly further includes a bristle member located at a lower side of the belt conveyor and away from one end of the polishing device, and a width of a brush of the bristle member is consistent with a width of a conveyor belt of the belt conveyor, and the brush of the bristle member reduces scrap residue on the conveyor belt of the belt conveyor.
Through adopting above-mentioned technical scheme, the width of the brush of brush hair part and the width of conveyer belt are unanimous effectual clear up the sweeps on the conveyer belt through brush hair part, great improvement the efficiency that the sweeps was collected.
Optionally, the scrap collecting assembly further includes a protecting component, the protecting component is arranged at the upper end of the support of the belt conveyor, and the arrangement of the protecting component reduces the scraps to fall out of the conveying belt.
Through adopting above-mentioned technical scheme, install the protection component on the conveyer belt and can effectually reduce the sweeps and fall out the conveyer belt, great improvement sweeps's collection efficiency.
Optionally, the sweeps handling mechanism further includes a shake subassembly, and shake subassembly includes a plurality of cylinder, and the cylinder setting is in the workstation downside and is used for driving the reciprocal lift of workstation, shake subassembly is used for reducing remaining sweeps on the filter screen.
Through adopting above-mentioned technical scheme, cylinder in the shake subassembly drives the reciprocal lift of workstation through flexible from top to bottom and promotes remaining sweeps on the filter screen and all can fall into on the conveyer belt, the residue of great reduction sweeps on the filter screen.
Optionally, the wastewater treatment mechanism further comprises a recovery tank and a transfusion tube, one end of the transfusion tube is connected to the bottom of the liquid storage tank, the other end of the transfusion tube is inserted into the recovery tank, and the recovery tank is located below the liquid storage tank.
Through adopting above-mentioned technical scheme, the collection of the convenient waste water of setting up of liquid reserve tank and collection box, the collection box setting is retrieved in the effectual inflow of waste water in the convenient liquid reserve tank of difference in height of below at the liquid reserve tank to the collection box.
In summary, the utility model has the following beneficial effects:
1. The gear polishing equipment of the high-pressure gear pump improves the cleaning efficiency of waste water treatment.
2. The polishing device and the pushing device are arranged, so that the problem that after gears are polished, the polishing device is pushed to horizontally move in the chute on the upper end face of the supporting table through left and right expansion of the cylinder, and after waste scraps and waste water on the filter screen are filtered, the filter screen can be turned over, and the waste scraps are effectively poured into the conveying belt, so that waste scraps and waste water are effectively collected.
3. The conveying belt component, the protection component and the bristle component in the scrap collecting component are arranged to effectively improve the scrap collecting efficiency.
4. The arrangement of the height difference of the liquid storage tank and the recovery tank in the sweeps treatment mechanism improves the efficiency of wastewater collection.
5. The arrangement of the cylinder in the shaking assembly is beneficial to reducing the residue of scraps on the filter screen.
Drawings
Fig. 1 is a perspective view of the gear grinding apparatus for a high-pressure gear pump of the present utility model.
Fig. 2 is a top view of the gear grinding device of the high-pressure gear pump of the utility model.
Fig. 3 is a cross-sectional view of a structural top view of the high pressure gear pump gear grinding apparatus of the present utility model.
Reference numerals illustrate:
10. A polishing device; 11, a polishing base, 12, a polishing mechanism;
20. A scrap waste water collection device;
30. The device comprises a scrap processing mechanism, a vibrating assembly, a first cylinder, a filter screen, a 33, a turnover assembly, a 331, a rotating shaft, a 332, a turnover motor, a 333, a workbench, a 3331, a working bottom plate, a 3332, a central supporting seat, a 3333, a blanking groove, a 34, a scrap collecting assembly, a 35, a conveying belt part, a 351, a belt conveyor, a 36, a protective part, a 361, a protective plate, a 37, a bristle part and a 38, and a storage container;
40. Waste water treatment mechanism, 41, liquid storage tank, 42, recovery tank, 43, transfusion tube;
50. 51 parts of pushing device, 511 parts of pushing mechanism, 511 parts of second cylinder, 512 parts of chute, 513 parts of roller, 52 parts of supporting table.
Detailed Description
The utility model is described in further detail below with reference to fig. 1-3.
The embodiment of the application discloses a gear polishing device of a high-pressure gear pump, which comprises a polishing device 10, a waste water collecting device 20 and a pushing device 50, wherein the polishing device 10 is positioned on the upper side of the waste water collecting device 20, the polishing device 10 is used for polishing gears, the waste water collecting device 20 comprises a waste water treatment mechanism 30 and a waste water treatment mechanism 40, the waste water collecting device 20 and the pushing device 50 are adjacently arranged, the waste water collecting device 20 is used for collecting waste water and waste water, and the pushing device 50 is used for pushing the polishing device 10 to horizontally move and be close to or far away from the waste water collecting device 20.
Referring to fig. 1 and 3, the scrap handling mechanism 30 includes a filter screen 32, a shaking unit 31, a turning unit 33 and a scrap collecting unit 34, wherein the turning unit 33 includes a rotation shaft 331, a turning motor 332 and a working table 333, the working table 333 includes a working bottom plate 3331, a central support base 3332 and a blanking slot 3333, the central support base 3332 is fixedly connected to an upper end surface of the working bottom plate 3331, the turning motor 332 is fixed to a side end surface of the central support base 3332, a mounting slot is formed in the central support base 3332, the rotation shaft 331 is rotatably connected between a pair of vertical side walls of the mounting slot, the rotation shaft 331 is parallel to the working bottom plate 3331 and is perpendicular to a horizontal moving direction of the polishing device 10, the turning motor 332 and the rotation shaft 331 are fixedly connected coaxially, and the filter screen 32 is fixedly connected to the rotation shaft 331 for filtering scraps. The turnover motor 332 drives the filter screen 32 to turn over 180 degrees on the vertical surface through the rotating shaft 331, so that scraps on the filter screen 32 can be conveniently collected through the scraps collecting assembly 34, and the scraps collecting assembly 34 improves the scraps collecting efficiency.
Referring to fig. 3, the shaking assembly 31 includes a plurality of first cylinders 311, the cylinder bottoms of the plurality of first cylinders 311 are fixed with the ground, the piston rods are fixedly connected with the bottom of the workbench 333, the first cylinders 311 stretch up and down to drive the workbench 333 to lift up and down, and the shaking assembly 31 is used for reducing the waste scraps remained on the filter screen 32.
Referring to fig. 1, the scrap collecting assembly 34 includes a conveyor belt member 35 and a scrap storage receptacle 38, the conveyor belt member 35 including a belt conveyor 351, the conveying direction of the belt conveyor 351 being perpendicular to a rotation axis 331. The scrap storage container 38 is positioned under one end of the conveyor belt of the belt conveyor 351, which is far away from the rotating shaft 331, scraps on the filter screen 32 are turned over to be right above the belt conveyor 351 through the turning component 33, most scraps fall onto the belt conveyor 351, and residual scraps in the filter screen 32 are shaken off onto the belt conveyor 351 through the reciprocating lifting process of the plurality of first cylinders 311 in the shaking component 31, and the scraps are transported into the scrap storage container 38 through the belt conveyor 351, so that the scrap collection efficiency is greatly improved.
In order to reduce the residue of the scraps on the belt conveyor 351 and improve the efficiency of scraps collection, the belt conveyor 351 is provided with a brushing part 37, referring to fig. 1, the brushing part 37 is positioned at one end, far away from the rotating shaft 331, of the lower side of a conveying belt of the belt conveyor 351, the brushing part 37 consists of a brush and a brush driving motor, the brush is rotationally connected to a frame of the belt conveyor 351, the brush driving motor is fixed to the frame of the belt conveyor 351, the brush is fixedly connected with an output shaft of the brush driving motor coaxially, the axial direction of the brush is perpendicular to the conveying direction of the belt conveyor 351, the brush driving motor drives the brush to rotationally clean the residual scraps on the conveying belt of the belt conveyor 351, and the width of the brush is consistent with that of the belt conveyor 351, so that the brushing part 37 reduces the scraps residue on the belt conveyor 351. The work bottom plate 3331 is kept away from the one end of grinding device 10 and has been seted up blanking groove 3333, and blanking groove 3333 is located under the brush, and sweeps storage container 38 is located under the brush hair part 37, and sweeps can all fall into sweeps storage container 38 in the length and width setting of sweeps storage container 38.
In order to reduce the likelihood of swarf accidentally falling off the belt, referring to fig. 1, the belt conveyor 351 is provided with a guard member 36, the guard member 36 includes a pair of guard plates 361 secured to the frame of the belt conveyor 351, the pair of guard plates 361 being provided on either side of the belt conveyor 351, the provision of the guard member 36 being advantageous in reducing swarf from falling out of the belt conveyor 351.
Referring to fig. 1, a polishing apparatus 10 includes a polishing base 11 and a polishing mechanism 12, the polishing mechanism 12 being provided on the polishing base 11 and used for polishing gears, the polishing mechanism being the same as in the prior art.
Referring to fig. 1, the pushing device 50 includes a pushing mechanism 51 and a supporting table 52, the pushing mechanism 51 is located on an upper end surface of the supporting table 52, the pushing mechanism 51 pushes the polishing device 10 to move horizontally on the upper end surface of the supporting table 52, the pushing mechanism 51 includes a second air cylinder 511, a cylinder body of the second air cylinder 511 is fixedly connected to the upper end surface of the supporting table 52, a polishing base 11 is fixedly connected to a piston rod of the second air cylinder 511, two sliding grooves 512 are formed in the supporting table 52, a plurality of rollers 513 are mounted on a lower end surface of the polishing base 11, and the rollers 513 roll in the sliding grooves 512. After the gear is polished, the left and right telescopic pushing polishing device 10 of the second cylinder 511 horizontally moves on the upper end face of the supporting table 52, so that the filter screen 32 in the waste water collection device 20 can be turned over conveniently, waste is poured onto the belt conveyor 351, waste and waste water are effectively and separately treated, collection of waste water by the waste water treatment mechanism 30 and the waste water treatment mechanism 40 is facilitated, and cleaning efficiency is improved.
Referring to fig. 1, the wastewater treatment mechanism 40 includes a tank 41, a recovery tank 42 and a transfer pipe 43, the tank 41 is fixed on the upper end surface of the work bottom plate 3331 and is located at one side far away from the belt conveyor 351, the tank 41 is located under the filter screen 32 when gears are polished, one end of the transfer pipe 43 is connected to the bottom of the tank 41, the other end is inserted into the recovery tank 42, the recovery tank 42 is arranged at the lower side of the tank 41, wastewater after gears are polished flows into the tank 41 through the filter screen 32, and wastewater in the tank 41 flows into the recovery tank 42 through a height difference. The wastewater treatment mechanism 40 is used for collecting wastewater, and the wastewater treatment mechanism 40 improves the wastewater collection efficiency.
The implementation principle of the gear polishing device of the high-pressure gear pump provided by the embodiment of the application is as follows:
Waste water and scraps are generated when the polishing device 10 polishes gears, the waste water and scraps are filtered by the lower filter screen 32, the waste water and scraps flow into the liquid storage tank 41 through the filter screen 32, the pushing device 50 pushes the polishing device 10 to horizontally move in the sliding groove 512 on the upper end face of the supporting table 52, the polishing device 10 can be far away from the filter screen 32, the turnover motor 332 drives the filter screen 32 to vertically turn 180 degrees through the rotating shaft 331, most of the waste scraps on the filter screen 32 fall onto the belt conveyor 351, then the dithering assembly 31 drives the filter screen 32 to reciprocally lift, the residual waste scraps on the filter screen 32 fall onto the belt conveyor 351, then the belt conveyor 351 conveys the waste scraps into the storage container 38, the bristle part 37 on the lower side of the belt conveyor 351 brushes the residual waste scraps on the conveying belt of the belt conveyor 351 into the storage container 38, and the waste water in the liquid storage tank 41 flows into the recovery tank 42 through the liquid conveying pipe 43 for waste water collection.
The above embodiments are not intended to limit the scope of the utility model, so that the equivalent changes of the structure, shape and principle of the utility model are covered by the scope of the utility model.