CN215700490U - Alloy material grinding device capable of assisting in heat dissipation - Google Patents

Alloy material grinding device capable of assisting in heat dissipation Download PDF

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Publication number
CN215700490U
CN215700490U CN202122069535.2U CN202122069535U CN215700490U CN 215700490 U CN215700490 U CN 215700490U CN 202122069535 U CN202122069535 U CN 202122069535U CN 215700490 U CN215700490 U CN 215700490U
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China
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fixedly connected
alloy material
assisting
heat dissipation
clamping block
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CN202122069535.2U
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席超
吴闵
王甜
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Suzhou Fuerman Precision Tools Co ltd
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Suzhou Fuerman Precision Tools Co ltd
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Abstract

The utility model discloses an alloy material grinding device capable of assisting in heat dissipation, which comprises a fixing component and a processing component, wherein the processing component is arranged above the fixing component and comprises a cross beam, a lifting rod, a bottom frame, an air inlet, an air outlet, a double-shaft motor, fan blades, a grinding wheel, a protective plate, an oil tank and a spray head, the lifting rod is arranged on the lower surface of the cross beam, the bottom frame is arranged at the lower end of the lifting rod, the air inlet is formed in the upper surface of the bottom frame, the air outlet is formed in the left surface of the bottom frame, the double-shaft motor is arranged inside the bottom frame, the fan blades are arranged at the left end of the double-shaft motor, the grinding wheel is arranged at the right end of the double-shaft motor, the protective plate is arranged outside the grinding wheel, the oil tank is arranged on the right side of the protective plate, and the spray head is arranged below the oil tank. According to the utility model, through the matching of parts of each part, the equipment can not only radiate the material when processing the material, but also radiate the device.

Description

Alloy material grinding device capable of assisting in heat dissipation
Technical Field
The utility model relates to the technical field of grinding devices, in particular to an alloy material grinding device capable of assisting in heat dissipation.
Background
And in the grinding process, the mechanical processing belongs to the processing modes of finish processing (including rough processing, finish processing, heat treatment and the like), the processing amount is small, and the precision is high. The carbon tool steel and the carburized and quenched steel parts subjected to heat treatment quenching are widely applied to the mechanical manufacturing industry, a large number of regularly arranged cracks, namely grinding cracks, often appear on the surface basically vertical to the grinding direction during grinding, and the grinding cracks not only affect the appearance of the parts, but also directly affect the quality of the parts more importantly.
When the existing grinding device on the market is used for processing materials, the materials and the grinding wheel are usually cooled only by using cooling liquid, the heat dissipation of the device is neglected, and therefore the alloy material grinding device capable of assisting in heat dissipation is provided.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide an alloy material grinding device capable of assisting in heat dissipation, and aims to solve the problem that when the existing grinding device proposed in the background art is used for processing materials, the materials and a grinding wheel are often dissipated by using cooling liquid, and the heat dissipation of the device is neglected.
In order to achieve the purpose, the utility model provides the following technical scheme: the utility model provides a can assist radiating alloy material grinding device, includes fixed subassembly and processing subassembly, the fixed subassembly top is provided with the processing subassembly, the processing subassembly includes crossbeam, lifter, underframe, air intake, air outlet, double-shaft motor, flabellum, emery wheel, backplate, oil tank and shower nozzle, surface mounting has the lifter under the crossbeam, the underframe is installed to the lifter lower extreme, the air intake has been seted up to the underframe upper surface, the air outlet has been seted up to the underframe left surface, the inside double-shaft motor that is provided with of underframe, the flabellum is installed to the double-shaft motor left end, the emery wheel is installed to the double-shaft motor right-hand member, the emery wheel outside is provided with the backplate, the right-hand oil tank that is provided with of backplate, the oil tank below is provided with the shower nozzle.
Preferably, fixed subassembly includes bottom plate, guide rail, litter, centre gripping spring, decides pole, clamp splice, gear, rocker, fixture block, locking spring and pulley, the bottom plate upper surface is provided with the guide rail, the guide rail top is provided with the litter, the right-hand centre gripping spring of installing of litter, the right-hand pole of deciding that is connected with of centre gripping spring, the litter is provided with the clamp splice with the upper end of deciding the pole, decide the right-hand gear that is provided with of pole, the right-hand rocker of installing of gear, the gear below is provided with the fixture block, the locking spring is installed to the fixture block below, the bottom plate below is provided with the pulley, the pulley below is provided with the removal subassembly.
Preferably, the sliding rod is embedded with the guide rail, the sliding rod is in sliding connection with the bottom plate through the guide rail, the sliding rod is fixedly connected with the clamping spring, the clamping spring is fixedly connected with the fixed rod, and the clamping block is in rotating connection with the sliding rod and the fixed rod through the rotating shaft.
Preferably, the gear is fixedly connected with the clamping block through the rotating shaft, the gear is fixedly connected with the rocker, the gear is embedded with the clamping block, and the clamping block is elastically connected with the bottom plate through the locking spring.
Preferably, the moving assembly comprises a base plate, a sliding groove, a roller, a chassis and a sliding rail, the sliding groove is formed in the upper surface of the base plate, the roller is arranged below the base plate, the chassis is arranged below the roller, and the sliding rail is arranged on the upper surface of the chassis.
Preferably, the bottom plate forms sliding connection with the backing plate through the pulley and the spout, and the backing plate forms sliding connection with the chassis through the gyro wheel and the slide rail.
Preferably, be fixed connection between crossbeam and the chassis, and be fixed connection between lifter and the crossbeam, be fixed connection between lifter and the underframe, and the lifter is the symmetric distribution about the underframe.
Preferably, be fixed connection between double-shaft motor and the underframe, and be fixed connection between backplate and the underframe, be fixed connection between double-shaft motor and the flabellum, and be fixed connection between double-shaft motor and the emery wheel.
Preferably, the oil tank is fixedly connected with the cross beam, and the spray head is fixedly connected with the oil tank.
The utility model provides an alloy material grinding device capable of assisting in heat dissipation, which has the following beneficial effects: according to the alloy material grinding device capable of assisting in heat dissipation, through the matching of parts of each part, when equipment is used for processing materials, the materials can be dissipated, and meanwhile, the device can also be dissipated;
1. according to the utility model, through the arrangement of the processing assembly, when the device is used for processing materials, the lifting rod can drive the bottom frame to descend so as to drive the grinding wheel to descend to be contacted with the materials for grinding the materials, and the double-shaft motor can drive the fan blades to rotate while processing is carried out, so that air flow is driven to flow into the bottom frame from the air inlet and then flow out from the air outlet to dissipate heat of the double-shaft motor, cooling oil in the oil tank can be sprayed onto the grinding wheel and the materials through the spray head to cool the grinding wheel and the materials, and meanwhile, scraps generated by processing are taken away;
2. according to the utility model, through the arrangement of the fixing component, the sliding rod can slide on the bottom plate through the guide rail, so that the clamping block can clamp materials with different lengths, and after the materials are placed into the clamping block, the clamping spring can drive the sliding rod to move, the materials are fixed in the clamping block by matching with the fixed rod, the materials are prevented from falling off in the processing process, and after one end face of the materials is processed, the rocker can be rocked by only pressing the clamping block, so that the clamping block is driven to rotate through the gear, so that the materials are driven to carry out end face conversion, the materials are not required to be dismounted and then clamped again, after the conversion is completed, the clamping block is loosened, the clamping block resets under the action of the locking spring, the gear is limited to rotate, and the state of the materials is fixed;
3. according to the utility model, through the arrangement of the moving assembly, when the device is used for processing materials, the base plate and the bottom plate can be moved according to the positions to be processed, so that the moving assembly drives the materials to move transversely and longitudinally, the smoothness of material movement can be ensured, and the processing efficiency and the processing quality of the materials are improved.
Drawings
FIG. 1 is a schematic cross-sectional front view of the present invention;
FIG. 2 is a schematic cross-sectional right side view of the present invention;
fig. 3 is a schematic perspective view of a clamping block according to the present invention.
In the figure: 1. a fixing assembly; 101. a base plate; 102. a guide rail; 103. a slide rod; 104. a clamping spring; 105. fixing a rod; 106. a clamping block; 107. a gear; 108. a rocker; 109. a clamping block; 110. a locking spring; 111. a pulley; 2. processing the assembly; 201. a cross beam; 202. a lifting rod; 203. a bottom frame; 204. an air inlet; 205. an air outlet; 206. a double-shaft motor; 207. a fan blade; 208. a grinding wheel; 209. a guard plate; 210. an oil tank; 211. a spray head; 3. a moving assembly; 301. a base plate; 302. a chute; 303. a roller; 304. a chassis; 305. a slide rail.
Detailed Description
As shown in fig. 1, 2 and 3, an alloy material grinding device capable of assisting heat dissipation comprises a fixing component 1 and a processing component 2, wherein the processing component 2 is arranged above the fixing component 1, the fixing component 1 comprises a bottom plate 101, a guide rail 102, a slide rod 103, a clamping spring 104, a fixed rod 105, a clamping block 106, a gear 107, a rocker 108, a clamping block 109, a locking spring 110 and a pulley 111, the guide rail 102 is arranged on the upper surface of the bottom plate 101, the slide rod 103 is arranged above the guide rail 102, the clamping spring 104 is arranged on the right side of the slide rod 103, the fixed rod 105 is connected on the right side of the clamping spring 104, the clamping block 106 is arranged at the upper ends of the slide rod 103 and the fixed rod 105, the slide rod 103 is embedded with the guide rail 102, the slide rod 103 is in sliding connection with the bottom plate 101 through the guide rail 102, the slide rod 103 is fixedly connected with the clamping spring 104, the clamping spring 104 is fixedly connected with the fixed rod 105, the clamping block 106 is in rotary connection with the slide rod 103 and the fixed rod 105 through a rotating shaft, a gear 107 is arranged on the right of the fixed rod 105, a rocker 108 is arranged on the right of the gear 107, a fixture block 109 is arranged below the gear 107, a locking spring 110 is arranged below the fixture block 109, the gear 107 is fixedly connected with the clamping block 106 through a rotating shaft, the gear 107 is fixedly connected with the rocker 108, the gear 107 is embedded with the fixture block 109, the fixture block 109 is elastically connected with the bottom plate 101 through the locking spring 110, a pulley 111 is arranged below the bottom plate 101, a moving assembly 3 is arranged below the pulley 111, through the arrangement of the fixing assembly 1, the sliding rod 103 can slide on the bottom plate 101 through the guide rail 102, so that the clamping block 106 can clamp materials with different lengths, and after the materials are placed into the clamping block 106, the clamping spring 104 can drive the sliding rod 103 to move to match with the fixed rod 105 to fix the materials in the clamping block 106, thereby preventing the materials from falling off during the processing process and after one end face of the materials is processed, the rocker 108 can be rocked by only pressing the fixture block 109, so that the gear 107 drives the clamping block 106 to rotate, the material is driven to perform end face conversion, the material does not need to be dismounted and clamped again, the fixture block 109 is loosened after conversion is completed, the fixture block 109 resets under the action of the locking spring 110, the gear 107 is limited to rotate, and the state of the material is fixed.
As shown in fig. 1 and 2, the processing assembly 2 includes a cross beam 201, a lifting rod 202, a bottom frame 203, an air inlet 204, an air outlet 205, a dual-shaft motor 206, a fan blade 207, a grinding wheel 208, a guard plate 209, an oil tank 210 and a spray head 211, the lifting rod 202 is mounted on the lower surface of the cross beam 201, the bottom frame 203 is mounted on the lower end of the lifting rod 202, the cross beam 201 is fixedly connected with the bottom frame 304, the lifting rod 202 is fixedly connected with the cross beam 201, the lifting rod 202 is fixedly connected with the bottom frame 203, the lifting rod 202 is symmetrically distributed with respect to the bottom frame 203, the air inlet 204 is disposed on the upper surface of the bottom frame 203, the air outlet 205 is disposed on the left surface of the bottom frame 203, the dual-shaft motor 206 is disposed inside the bottom frame 203, the fan blade 207 is mounted on the left end of the dual-shaft motor 206, the grinding wheel 208 is mounted on the right end of the dual-shaft motor 206, the guard plate 209 is disposed outside the grinding wheel 208, the dual-shaft motor 206 is fixedly connected with the bottom frame 203, and the guard plate 209 is fixedly connected with the bottom frame 203, the double-shaft motor 206 is fixedly connected with the fan blade 207, the double-shaft motor 206 is fixedly connected with the grinding wheel 208, the oil tank 210 is arranged on the right side of the protective plate 209, the spray head 211 is arranged below the oil tank 210, the oil tank 210 is fixedly connected with the cross beam 201, the spray head 211 is fixedly connected with the oil tank 210, through the arrangement of the processing assembly 2, when the device processes materials, the lifting rod 202 can drive the bottom frame 203 to descend, thereby driving the grinding wheel 208 to descend to be in contact with the materials, the material is ground, and the double-shaft motor 206 can drive the fan blade 207 to rotate while the material is processed, thereby driving the airflow to flow into the bottom frame 203 from the air inlet 204 and then flow out from the air outlet 205, the heat is dissipated from the dual-shaft motor 206, and the cooling oil in the oil tank 210 can be sprayed onto the grinding wheel 208 and the material through the spray head 211 to cool the grinding wheel 208 and the material and carry away the chips generated by the processing.
As shown in fig. 1 and 2, the moving assembly 3 includes a backing plate 301, a sliding groove 302, a roller 303, a chassis 304 and a sliding rail 305, the sliding groove 302 is arranged on the upper surface of the backing plate 301, the roller 303 is arranged below the backing plate 301, the chassis 304 is arranged below the roller 303, the sliding rail 305 is arranged on the upper surface of the chassis 304, the bottom plate 101 is in sliding connection with the backing plate 301 through the pulley 111 and the sliding groove 302, the backing plate 301 is in sliding connection with the chassis 304 through the roller 303 and the sliding rail 305, and the device is arranged through the moving assembly 3, so that when the device processes a material, the backing plate 301 and the bottom plate 101 can be moved according to the position to be processed, thereby the moving assembly 3 drives the material to move transversely and longitudinally, the smoothness of material movement can be ensured, and the processing efficiency and the processing quality of the material are improved.
In summary, when the alloy material grinding device capable of assisting heat dissipation is used, firstly, according to the structure shown in fig. 1, fig. 2 and fig. 3, the sliding rod 103 slides on the bottom plate 101 through the guide rail 102, then the material is placed between the clamping blocks 106, the sliding rod 103 is loosened, the clamping spring 104 can drive the sliding rod 103 to move, the material is fixed in the clamping blocks 106 by matching with the fixed rod 105, the material is prevented from falling off in the processing process, the lifting rod 202 can drive the bottom frame 203 to descend, so as to drive the grinding wheel 208 to descend to be in contact with the material, the material is ground, and while the material is being processed, the double-shaft motor 206 can drive the fan blade 207 to rotate, so as to drive the air flow to flow into the bottom frame 203 from the air inlet 204 and then flow out from the air outlet 205, the heat dissipation is performed on the double-shaft motor 206, and the cooling oil in the oil tank 210 can also be sprayed onto the grinding wheel 208 and the material through the spray nozzle 211 to cool the grinding wheel 208 and the material, simultaneously take away the piece that the processing produced, when the processing material, the position of processing as required removes backing plate 301 and bottom plate 101, thereby make removal subassembly 3 drive the material and carry out horizontal and longitudinal movement, after having processed an terminal surface of material, press fixture block 109, wave rocker 108, thereby drive clamp splice 106 through gear 107 and rotate, and then drive the material and carry out the terminal surface conversion, need not to lift the material off and again centre gripping, loosen fixture block 109 after the conversion is accomplished, fixture block 109 resets under locking spring 110's effect, restriction gear 107 rotates, it is fixed with the material state.

Claims (9)

1. The utility model provides a can assist radiating alloy material grinding device, includes fixed subassembly (1) and processing subassembly (2), its characterized in that, fixed subassembly (1) top is provided with processing subassembly (2), processing subassembly (2) include crossbeam (201), lifter (202), underframe (203), air intake (204), air outlet (205), biax motor (206), flabellum (207), emery wheel (208), backplate (209), oil tank (210) and shower nozzle (211), crossbeam (201) lower surface mounting has lifter (202), underframe (203) is installed to lifter (202) lower extreme, air intake (204) have been seted up to underframe (203) upper surface, air outlet (205) have been seted up to underframe (203) left surface, underframe (203) inside is provided with biax motor (206), flabellum (207) are installed to biax motor (206) left end, grinding wheel (208) is installed to biax motor (206) right-hand member, grinding wheel (208) outside is provided with backplate (209), backplate (209) right-hand oil tank (210) that is provided with, oil tank (210) below is provided with shower nozzle (211).
2. The alloy material grinding device capable of assisting in heat dissipation according to claim 1, wherein the fixing assembly (1) comprises a bottom plate (101), a guide rail (102), a slide rod (103), a clamping spring (104), a fixed rod (105), a clamping block (106), a gear (107), a rocker (108), a clamping block (109), a locking spring (110) and a pulley (111), the guide rail (102) is arranged on the upper surface of the bottom plate (101), the slide rod (103) is arranged above the guide rail (102), the clamping spring (104) is arranged on the right side of the slide rod (103), the fixed rod (105) is connected on the right side of the clamping spring (104), the clamping block (106) is arranged at the upper ends of the slide rod (103) and the fixed rod (105), the gear (107) is arranged on the right side of the fixed rod (105), the rocker (108) is arranged on the right side of the gear (107), the clamping block (109) is arranged below the gear (107), a locking spring (110) is installed below the clamping block (109), a pulley (111) is arranged below the base plate (101), and a moving assembly (3) is arranged below the pulley (111).
3. The alloy material grinding device capable of assisting in heat dissipation according to claim 2, wherein the slide rod (103) is embedded in the guide rail (102), the slide rod (103) is in sliding connection with the base plate (101) through the guide rail (102), the slide rod (103) is fixedly connected with the clamping spring (104), the clamping spring (104) is fixedly connected with the fixed rod (105), and the clamping block (106) is in rotating connection with the slide rod (103) and the fixed rod (105) through a rotating shaft.
4. The alloy material grinding device capable of assisting in heat dissipation according to claim 2, wherein the gear (107) is fixedly connected with the clamping block (106) through a rotating shaft, the gear (107) is fixedly connected with the rocker (108), the gear (107) is embedded with the clamping block (109), and the clamping block (109) is elastically connected with the bottom plate (101) through a locking spring (110).
5. The alloy material grinding device capable of assisting in heat dissipation according to claim 2, wherein the moving assembly (3) comprises a base plate (301), a sliding groove (302), a roller (303), a chassis (304) and a sliding rail (305), the sliding groove (302) is arranged on the upper surface of the base plate (301), the roller (303) is arranged below the base plate (301), the chassis (304) is arranged below the roller (303), and the sliding rail (305) is arranged on the upper surface of the chassis (304).
6. The alloy material grinding device capable of assisting in heat dissipation according to claim 5, wherein the base plate (101) is in sliding connection with the backing plate (301) through a pulley (111) and a sliding groove (302), and the backing plate (301) is in sliding connection with the chassis (304) through a roller (303) and a sliding rail (305).
7. The alloy material grinding device capable of assisting in heat dissipation according to claim 1, wherein the cross beam (201) is fixedly connected with the chassis (304), the lifting rod (202) is fixedly connected with the cross beam (201), the lifting rod (202) is fixedly connected with the bottom frame (203), and the lifting rods (202) are symmetrically distributed with respect to the bottom frame (203).
8. The alloy material grinding device capable of assisting in heat dissipation according to claim 1, wherein the double-shaft motor (206) is fixedly connected with the bottom frame (203), the guard plate (209) is fixedly connected with the bottom frame (203), the double-shaft motor (206) is fixedly connected with the fan blade (207), and the double-shaft motor (206) is fixedly connected with the grinding wheel (208).
9. The alloy material grinding device capable of assisting in heat dissipation according to claim 1, wherein the oil tank (210) is fixedly connected with the cross beam (201), and the spray head (211) is fixedly connected with the oil tank (210).
CN202122069535.2U 2021-08-30 2021-08-30 Alloy material grinding device capable of assisting in heat dissipation Active CN215700490U (en)

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CN202122069535.2U CN215700490U (en) 2021-08-30 2021-08-30 Alloy material grinding device capable of assisting in heat dissipation

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Application Number Priority Date Filing Date Title
CN202122069535.2U CN215700490U (en) 2021-08-30 2021-08-30 Alloy material grinding device capable of assisting in heat dissipation

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115487917A (en) * 2022-08-09 2022-12-20 郑先俊 Barite powder processing system and method

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115487917A (en) * 2022-08-09 2022-12-20 郑先俊 Barite powder processing system and method

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