CN119077550A - Surface grinding device for processing mold parts - Google Patents
Surface grinding device for processing mold parts Download PDFInfo
- Publication number
- CN119077550A CN119077550A CN202411585141.4A CN202411585141A CN119077550A CN 119077550 A CN119077550 A CN 119077550A CN 202411585141 A CN202411585141 A CN 202411585141A CN 119077550 A CN119077550 A CN 119077550A
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- Prior art keywords
- shaped
- component
- fixedly connected
- block
- polishing
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Classifications
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B24—GRINDING; POLISHING
- B24B—MACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
- B24B19/00—Single-purpose machines or devices for particular grinding operations not covered by any other main group
- B24B19/20—Single-purpose machines or devices for particular grinding operations not covered by any other main group for grinding dies
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B24—GRINDING; POLISHING
- B24B—MACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
- B24B27/00—Other grinding machines or devices
- B24B27/02—Bench grinders
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B24—GRINDING; POLISHING
- B24B—MACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
- B24B41/00—Component parts such as frames, beds, carriages, headstocks
- B24B41/005—Feeding or manipulating devices specially adapted to grinding machines
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B24—GRINDING; POLISHING
- B24B—MACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
- B24B41/00—Component parts such as frames, beds, carriages, headstocks
- B24B41/06—Work supports, e.g. adjustable steadies
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B24—GRINDING; POLISHING
- B24B—MACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
- B24B47/00—Drives or gearings; Equipment therefor
- B24B47/02—Drives or gearings; Equipment therefor for performing a reciprocating movement of carriages or work- tables
- B24B47/04—Drives or gearings; Equipment therefor for performing a reciprocating movement of carriages or work- tables by mechanical gearing only
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B24—GRINDING; POLISHING
- B24B—MACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
- B24B55/00—Safety devices for grinding or polishing machines; Accessories fitted to grinding or polishing machines for keeping tools or parts of the machine in good working condition
- B24B55/02—Equipment for cooling the grinding surfaces, e.g. devices for feeding coolant
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B24—GRINDING; POLISHING
- B24B—MACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
- B24B55/00—Safety devices for grinding or polishing machines; Accessories fitted to grinding or polishing machines for keeping tools or parts of the machine in good working condition
- B24B55/06—Dust extraction equipment on grinding or polishing machines
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P70/00—Climate change mitigation technologies in the production process for final industrial or consumer products
- Y02P70/10—Greenhouse gas [GHG] capture, material saving, heat recovery or other energy efficient measures, e.g. motor control, characterised by manufacturing processes, e.g. for rolling metal or metal working
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Constituent Portions Of Griding Lathes, Driving, Sensing And Control (AREA)
- Grinding And Polishing Of Tertiary Curved Surfaces And Surfaces With Complex Shapes (AREA)
Abstract
The invention discloses a surface polishing device for processing mold accessories, which relates to the technical field of polishing devices and comprises a processing table and a feeding assembly, wherein the feeding assembly comprises a conveying part, a guiding part, a driving part and a moving part, a mounting frame is fixedly connected to the processing table, the conveying part is connected to the mounting frame, the guiding part is connected to the mounting frame, the input end of the guiding part is used for placing a T-shaped punching needle, the output end of the guiding part is connected with the working end of the conveying part, and an L-shaped mounting plate is fixedly connected to the processing table. According to the invention, not only can the automatic polishing of a plurality of T-shaped punching needles be realized, but also the T-shaped punching needles can be placed one by one in the polishing process, meanwhile, the automatic feeding of the plurality of T-shaped punching needles can be realized after the polishing is finished, and the occurrence of the condition that the T-shaped punching needles are blocked when being placed can be avoided, so that the polishing efficiency of the T-shaped punching needles can be effectively improved.
Description
Technical Field
The invention relates to the technical field of polishing devices, in particular to a surface polishing device for processing mold accessories.
Background
The die fitting is a die component part and comprises various shaped parts, and when the die fitting is processed, the surface of the die fitting needs to be polished, so that the use quality of the die fitting is improved, and the quality of the formed die is improved. T type dashes needle and is one of the mould accessory, when polishing to T type dashes the needle, needs the manual work to dash putting of needle, is punching the needle through fixture to putting good T type and carries out the centre gripping, uses polishing machine to polish the operation at last, has increased staff's work burden, and has reduced the overall efficiency of polishing.
In the prior art, the mechanical arm is adopted to grasp the accessory for transferring, thereby completing the placement of the accessory, an automatic feeding mechanism is generally adopted to stably feed when the mechanical arm is used to grasp the accessory, the mechanical arm is convenient to grasp, a guide chute is adopted to cooperate with a rotating block provided with a groove, the rotating block rotates to drive the accessory to move through the groove, a conveyor belt is matched for conveying the accessory, the T-shaped punching needle is easy to be inclined and clamped in the guide chute when the T-shaped punching needle is used for feeding, the blanking effect is influenced, the automatic feeding efficiency is reduced, and residues splashed when the accessories are synchronously fed and polished easily influence adjacent accessories.
Disclosure of Invention
The invention aims to solve the problems that when a guide chute is adopted to feed a T-shaped punching needle, the T-shaped punching needle is easy to be inclined and clamped in the guide chute, the blanking effect is affected and the automatic feeding efficiency is reduced in the prior art, and provides a surface polishing device for processing a die accessory.
In order to achieve the purpose, the invention adopts the following technical scheme that the surface polishing device for processing the die fittings comprises a processing table and further comprises:
the feeding assembly comprises a conveying component, a guiding component, a driving component and a moving component, wherein the processing bench is fixedly connected with a mounting frame, the conveying component is connected to the mounting frame, the guiding component is connected to the mounting frame, the input end of the guiding component is used for placing a T-shaped punch needle, the output end of the guiding component is connected with the working end of the conveying component, the processing bench is fixedly connected with an L-shaped mounting plate, the driving component is connected to the L-shaped mounting plate, the moving component is connected to the output end of the driving component, the working end of the moving component is mutually matched with the working end of the conveying component, and the moving component is used for grabbing a plurality of T-shaped punch needles on the working end of the conveying component;
The fixing assembly comprises an upper clamping part and a lower clamping part, the upper clamping part is connected to the output end of the driving part, the lower clamping part is connected to the processing table, the working ends of the upper clamping part and the lower clamping part are matched with the working ends of the lower clamping part in an extrusion clamping manner through a plurality of T-shaped punching pins, and the working ends of the moving part are matched with the working ends of the lower clamping part;
The polishing assembly is connected to the processing table and used for polishing the plurality of T-shaped punching pins clamped by the working ends of the upper clamping part and the lower clamping part;
The liquid spraying components are connected to the lower clamping component, and fan-shaped water curtains are sprayed out of the gaps of the adjacent T-shaped punching pins.
In the above-mentioned surface grinding device is used in mould accessory processing, conveying part includes first horizontal migration portion, first horizontal migration portion installs on the mounting bracket, the backup pad is installed to first horizontal migration portion output, backup pad sliding connection is on the mounting bracket, first horizontal migration portion is used for driving backup pad linear reciprocating motion, a plurality of grooves of putting have been seted up in the backup pad, the less part of T type punch pin diameter with put the groove contact cooperation, a plurality of put groove and guide part output mutually support, first horizontal migration portion electric connection has the controller, the controller is installed on the processing platform.
In the above-mentioned surface grinding device is used in mould accessory processing, guide part includes the placing block, set up the guide way in the placing block and put away the position the groove, the guide way is curved form more, guide way one side and the groove intercommunication of stepping away, the great one end of T type punching needle diameter is put into the groove of stepping away, and the less one end of diameter is put into the guide way, the degree of depth of guide way is less than the great one end of T type punching needle diameter, the second motor is installed in the placing block outside, the second motor output runs through and stretches into in the placing block, and coaxial fixedly connected with rolling disc, a plurality of placing grooves have been seted up to rolling disc periphery side, rolling disc periphery side clearance fit has first arc board and second arc board, first arc board and second arc board fixed connection are in the placing block bottom, first arc board and second arc board top adjacent end enclose into the space, and the adjacent end in bottom forms the feeding space, the space is equipped with the bottom opening of the guide way and cooperates with the groove bottom opening, the discharging space and the corresponding placing groove of the placing block and the corresponding placing space are all equipped with the placing hole and the two side of a moving controller, the bottom is equipped with the horizontal position and the placing hole and the corresponding placing hole.
In the surface polishing device for processing the die accessory, the width of the abdication groove is the same as the length of the part with the larger diameter of the T-shaped punch pin, the width of the guide groove is the same as the length of the part with the smaller diameter of the T-shaped punch pin, two ends of the T-shaped punch pin are in one-to-one correspondence and lean against one side of the back in the guide groove and the abdication groove, the discharging gap is positioned at the bottommost part of the rotating disc, and the angle difference between the feeding gap and the discharging gap is sixty degrees by taking the center of the rotating disc as the vertex.
In the surface polishing device for processing the die accessory, the driving part comprises a first motor, the first motor is installed on the L-shaped mounting plate, the output end of the first motor penetrates through the L-shaped mounting plate and is coaxially and fixedly connected with a first screw rod, a first thread block is connected to the first screw rod in a threaded mode, the top of the first thread block is slidably connected to the L-shaped mounting plate, the bottom of the first thread block is connected with the moving part, and the first motor is electrically connected with the controller.
In the above-mentioned surface grinding device is used in mould accessory processing, the movable part includes the third electric telescopic handle, the third electric telescopic handle is installed in first screw thread piece bottom, third electric telescopic handle output fixedly connected with U-shaped plate, the equal fixedly connected with connecting plate of opposite one side in U-shaped plate bottom both ends, two equal fixedly connected with rack on the connecting plate, two the tooth's socket position of rack cooperates with the groove of putting of multiunit, and cooperates with lower clamp part work end each other, second motor and controller electric connection.
In the above-mentioned surface grinding device for mould accessory processing, go up the clamp part and include first electronic telescopic handle, threaded connection has the second screw thread piece on the first lead screw, second screw thread piece top sliding connection is on L shape mounting panel, first electronic telescopic handle is installed in second screw thread piece bottom, first electronic telescopic handle output fixedly connected with goes up the clamp splice, down the clamp part includes the crane, crane top fixedly connected with clamp splice down, the crane is used for lifting down the clamp splice, lower clamp splice and go up the clamp splice relative one side and a plurality of small one end centre gripping complex of diameter of T type punch pin a plurality of clamp grooves, tooth's socket position and a plurality of clamp grooves one-to-one on the clamp splice down mutually support, fixed subassembly still includes pushing component, pushing component includes the second electronic telescopic handle, the second electronic telescopic handle is installed at the crane top, and output fixedly connected with push pedal, the push pedal supports with the big one end of a plurality of T type punch pins, first electronic control rod, second electronic control rod and equal electric connection.
In the surface polishing device for machining the die accessory, the polishing assembly comprises an outer box, the outer box is fixedly connected to a machining table, a second horizontal movement part is installed in the outer box, the output end of the second horizontal movement part penetrates through the top of the outer box, a protective box with a side opening is fixedly connected to the output end of the second horizontal movement part, a strip-shaped opening for the output end of the second horizontal movement part to move is formed in the top of the outer box, a polishing part is installed in the protective box, the output end of the polishing part extends out of the side opening of the protective box and is matched with a plurality of T-shaped punching pins clamped by a lower clamping block and an upper clamping block, protection plates are fixedly connected to two sides of the side opening of the protective box, and a shielding plate is fixedly connected to one side of the strip-shaped opening close to the lower clamping block and one side of the upper clamping block, and the second horizontal movement part and the polishing part are electrically connected with a controller.
In the above-mentioned surface grinding device is used in mould accessory processing, the hydrojet subassembly includes the connecting pipe, and a plurality of connecting pipe fixed connection is on the clamp splice down, and the input is connected with outside water supply structure, and the output all communicates has fan-shaped shower nozzle, and a plurality of fan-shaped shower nozzle one-to-one is located a plurality of T type towards needle clearance departments, fan-shaped shower nozzle output is to adjacent T type towards needle clearance blowout and is the cutting fluid of fan-shaped water curtain, fan-shaped shower nozzle and controller electric connection.
In the surface polishing device for processing the die accessory, the edge of the top of the processing table is fixedly connected with the overflow preventing frame, the bottom of the overflow preventing frame is communicated with the water outlet pipe, and one end, far away from the overflow preventing frame, of the water outlet pipe is connected with the external collecting mechanism.
Compared with the prior art, the invention has the advantages that:
1. According to the T-shaped punch needle feeding mechanism, the guide component and the conveying component are arranged, the guide component and the abdication groove are matched with each other to form a limiting effect on the T-shaped punch needle, the T-shaped punch needle is effectively prevented from inclining when rolling along the guide groove, the T-shaped punch needles can be uniformly distributed, the situation that the T-shaped punch needles are blocked inside the guide groove can be avoided, the guide component and the conveying component are matched with each other, a plurality of placing grooves on the supporting plate are placed into the T-shaped punch needles one by one, one-by-one discharging of the T-shaped punch needles can be achieved, feeding operation of a plurality of T-shaped punch needles on one supporting plate is completed, the time for placing the T-shaped punch needles can be effectively saved, and therefore the overall polishing efficiency is improved.
2. According to the invention, the driving part and the moving part are arranged, the moving part can work to grab the plurality of T-shaped punching needles on the supporting plate, the driving part can work to drive the moving part to move so as to finish the transfer operation of the plurality of T-shaped punching needles, and meanwhile, the driving part can work to drive the upper clamping part to move so as to avoid the influence of the upper clamping part on the transfer operation of the moving part.
3. According to the invention, the upper clamping component and the lower clamping component can clamp the plurality of transported T-shaped punching pins, and the colleague can align the plurality of T-shaped punching pins by pushing the components, so that the plurality of T-shaped punching pins are orderly clamped, and the precision and the efficiency of subsequent polishing are improved.
4. According to the invention, the liquid spraying component is arranged, the fan-shaped spray heads work in the polishing process, fan-shaped water curtains are sprayed out to the gaps of the T-shaped punching pins, and the fan-shaped water curtains not only can cool and lubricate the polishing part during polishing, so that spark generation is reduced, but also can rinse the ground residues, and can prevent the influence of splashing of high-temperature residues during polishing on the adjacent T-shaped punching pins, and can effectively reduce the adverse influence of splashing residues during common polishing of the T-shaped punching pins on polishing quality.
In summary, the invention not only can realize automatic polishing of a plurality of T-shaped punching needles, but also can put the T-shaped punching needles one by one in the polishing process, simultaneously can realize automatic feeding of the plurality of T-shaped punching needles after polishing is finished, and can avoid the occurrence of the condition that the T-shaped punching needles are blocked when being put, thereby effectively improving the polishing efficiency of the T-shaped punching needles, and through the arrangement of the fan-shaped water curtain, not only can realize cleaning of dropped residues, but also can realize cooling and blocking of splashed high-temperature residues, thereby improving the polishing quality when the plurality of T-shaped punching needles are polished together.
Drawings
Fig. 1 is a schematic diagram of the overall structure of a surface polishing device for processing mold parts according to the present invention;
Fig. 2 is a schematic structural diagram of a feeding assembly of a surface polishing device for processing mold parts according to the present invention;
FIG. 3 is a schematic view of the structure of an L-shaped mounting plate, a driving part and a fixing assembly of the surface polishing device for processing mold fittings;
FIG. 4 is a schematic diagram of a conveying component of a surface polishing device for processing mold parts according to the present invention;
FIG. 5 is a cross-sectional view showing the structure of a conveying member and a guide member of a surface polishing device for mold part processing according to the present invention;
FIG. 6 is a cross-sectional view of a guide member of a surface grinding device for machining mold parts according to the present invention;
Fig. 7 is a schematic diagram of a second motor, a rotating disc, a placing groove, a first arc plate and a second arc plate of the surface polishing device for processing mold fittings;
FIG. 8 is a schematic view of the structure of a support plate, a moving part and a first screw block of a surface polishing device for processing mold parts according to the present invention;
fig. 9 is a schematic diagram showing a polishing assembly of a surface polishing device for processing mold parts according to the present invention;
FIG. 10 is a schematic view of a second screw block and a fixing assembly of a surface grinding device for machining mold parts according to the present invention;
Fig. 11 is an enlarged detail view of a surface polishing device for mold part processing in fig. 10 according to the present invention.
The device comprises a machining table, a 2, a feeding assembly, a 21, a conveying part, a 211, a mounting frame, a 212, a first horizontal moving part, a 213, a supporting plate, a 214, a placing groove, a 22, a guiding part, a 221, a placing block, a 222, a guiding groove, a 223, a yielding groove, a 224, a second motor, a 225, a rotating disc, a 226, a placing groove, a 227, a first arc plate, a 2271, a feeding gap, a 2272, a discharging gap, a 228, a second arc plate, a 23, an L-shaped mounting plate, a 24, a moving part, a 241, a third electric telescopic rod, a 242, a U-shaped plate, a 243, a connecting plate, a 244, a rack, a 25, a driving part, a 251, a first motor, a 252, a first screw rod, a 253, a first screw block, a 254, a second screw block, a 3, a polishing assembly, a 31, an outer box, a 32, a second horizontal moving part, a 33, a box, a 34, a polishing part, a 35, a shielding plate, a 36, a 4, a fixing assembly, a 41, a lifting frame, a 42, a lower clamping block, a 43, a first electric telescopic rod, a 44, a first electric telescopic rod, a 45, a second electric telescopic rod, a 45, a 46, a lifting frame, a 7, a fan-shaped telescopic rod, a 7, a water outlet pipe, a 7, a connecting pipe, a blow-shaped nozzle, a 7, a blow-shaped nozzle.
Detailed Description
The following examples are for illustrative purposes only and are not intended to limit the scope of the invention.
Referring to fig. 1 to 3, a surface polishing device for processing a mold part comprises a processing table 1, and further comprises:
The feeding assembly 2 comprises a conveying component 21, a guiding component 22, a driving component 25 and a moving component 24, wherein a mounting frame 211 is fixedly connected to the processing table 1, the conveying component 21 is connected to the mounting frame 211, the guiding component 22 is connected to the mounting frame 211, the input end of the guiding component 22 is used for placing the T-shaped punch needle 7, the output end of the guiding component is connected with the working end of the conveying component 21, an L-shaped mounting plate 23 is fixedly connected to the processing table 1, the driving component 25 is connected to the L-shaped mounting plate 23, the moving component 24 is connected to the output end of the driving component 25, the working end of the moving component 24 is matched with the working end of the conveying component 21, and the moving component 24 is used for grabbing a plurality of T-shaped punch needles 7 on the working end of the conveying component 21.
Referring to fig. 4, the conveying member 21 includes a first horizontal moving part 212, the first horizontal moving part 212 is mounted on a mounting frame 211, a supporting plate 213 is mounted at an output end of the first horizontal moving part 212, the supporting plate 213 is slidably connected to the mounting frame 211, the first horizontal moving part 212 is used for driving the supporting plate 213 to reciprocate linearly, a plurality of placing grooves 214 are formed in the supporting plate 213, a smaller diameter portion of the t-shaped punch pin 7 is in contact with the placing grooves 214, the placing grooves 214 are matched with an output end of the guiding member 22, a controller is electrically connected to the first horizontal moving part 212, and the controller is mounted on the processing table 1.
Referring to fig. 5-7, the guide member 22 includes a placement block 221, a guide groove 222 and a yielding groove 223 are formed in the placement block 221, the guide groove 222 is in a multi-bend shape, one side of the guide groove 222 is communicated with the yielding groove 223, one end with a larger diameter of the T-shaped punch needle 7 is placed in the yielding groove 223, one end with a smaller diameter is placed in the guide groove 222, the depth of the guide groove 222 is smaller than the diameter of one end with a larger diameter of the T-shaped punch needle 7, a second motor 224 is mounted on the outer side of the placement block 221, the output end of the second motor 224 penetrates through and stretches into the placement block 221, a rotating disc 225 is coaxially and fixedly connected with the rotating disc 225, a plurality of placement grooves 226 are formed on the outer periphery of the rotating disc 225, a first arc plate 227 and a second arc plate 228 are in clearance fit with the outer periphery of the rotating disc 225, the first arc plate 227 and the second arc plate 228 are fixedly connected to the bottoms of the placement block 221, the adjacent ends of the tops of the first arc plate 227 and the second arc plate 228 are surrounded to form a discharge gap 2272, the adjacent ends of the bottoms are formed into a feed 2271, the discharge gap 2272 is communicated with the bottoms of the guide groove 222, the bottoms of the discharge gap 2272 are opened, the discharge gap 226 is in communication with the bottoms of the guide groove 222, the discharge gap is in the opening, the corresponding to the discharge gap 2271, the bottoms of the two end of the two arc plates are in clearance and the corresponding to the two end portions of the support plates are in clearance fit with each other, and are in parallel with each other, and move to the bottom portion of the two end portions of the support plate and are in parallel to be in parallel to each other, and respectively, and arranged.
The width of the abdication groove 223 is the same as the length of the part with larger diameter of the T-shaped punch needle 7, the width of the guide groove 222 is the same as the length of the part with smaller diameter of the T-shaped punch needle 7, two ends of the T-shaped punch needle 7 are correspondingly leaned against one side of the inner sides of the guide groove 222 and the abdication groove 223, the discharging gap 2272 is positioned at the bottommost part of the rotating disc 225, and the angle difference between the feeding gap 2271 and the discharging gap 2272 is sixty degrees by taking the center of the rotating disc 225 as the vertex.
Referring to fig. 3, the driving part 25 includes a first motor 251, the first motor 251 is mounted on the L-shaped mounting plate 23, an output end of the first motor 251 penetrates through the L-shaped mounting plate 23 and is coaxially and fixedly connected with a first screw rod 252, a first threaded block 253 is screwed on the first screw rod 252, a top of the first threaded block 253 is slidably connected on the L-shaped mounting plate 23, a bottom of the first threaded block 253 is connected with the moving part 24, and the first motor 251 is electrically connected with the controller.
Referring to fig. 8, the moving part 24 includes a third electric telescopic rod 241, the third electric telescopic rod 241 is mounted at the bottom of the first threaded block 253, the output end of the third electric telescopic rod 241 is fixedly connected with a U-shaped plate 242, two opposite sides of two ends of the bottom of the U-shaped plate 242 are fixedly connected with connecting plates 243, racks 244 are fixedly connected to the two connecting plates 243, tooth slot positions of the two racks 244 are mutually matched with the plurality of groups of placing slots 214, and are mutually matched with the working end of the lower clamping part, and the second motor 224 is electrically connected with the controller.
Referring to fig. 3 and 10, the fixing assembly 4 includes an upper clamping member and a lower clamping member, the upper clamping member is connected to an output end of the driving member 25, the lower clamping member is connected to the processing table 1, the working ends of the upper clamping member and the lower clamping member are in extrusion clamping fit with the plurality of T-shaped punching pins 7, and the working ends of the moving member 24 are mutually matched with the working ends of the lower clamping member.
The upper clamping component comprises a first electric telescopic rod 43, a second threaded block 254 is connected to the first screw rod 252 in a threaded mode, the top of the second threaded block 254 is slidably connected to the L-shaped mounting plate 23, the first electric telescopic rod 43 is mounted at the bottom of the second threaded block 254, the output end of the first electric telescopic rod 43 is fixedly connected with an upper clamping block 44, the lower clamping component comprises a lifting frame 41, the top of the lifting frame 41 is fixedly connected with a lower clamping block 42, the lifting frame 41 is used for lifting the lower clamping block 42, one side, opposite to the upper clamping block 44, of the lower clamping block 42 is clamped and matched with a plurality of clamping grooves in a small-diameter mode of the plurality of T-shaped punching pins 7, the tooth groove positions of the racks 244 are matched with the clamping grooves in the lower clamping block 42 in a one-to-one mode, the fixing component 4 further comprises a pushing component, the second electric telescopic rod 45 is mounted at the top of the lifting frame 41, the output end of the second electric telescopic rod 45 is fixedly connected with a pushing plate 46, the pushing plate 46 is in abutting fit with one end, with the large-diameter end of the plurality of T-shaped punching pins 7, and the first electric telescopic rod 43, the lifting frame 41 and the second electric telescopic rod 45 are electrically connected with the controller.
Referring to fig. 3 and 9, a grinding assembly 3, the grinding assembly 3 is attached to the machining table 1 and is used to grind a plurality of T-punch pins 7 held by the working ends of the upper and lower clamp members.
The polishing assembly 3 comprises an outer box 31, the outer box 31 is fixedly connected to the processing table 1, a second horizontal movement part 32 is installed in the outer box 31, the output end of the second horizontal movement part 32 penetrates through the top of the outer box 31, a protective box 33 with a side opening is fixedly connected to the output end of the second horizontal movement part 32, a strip-shaped opening for the output end of the second horizontal movement part 32 to move is formed in the top of the outer box 31, a polishing part 34 is installed in the protective box 33, the output end of the polishing part 34 extends out of the side opening of the protective box 33 and is matched with a plurality of T-shaped punching needles clamped by a lower clamping block 42 and an upper clamping block 44, protection plates 36 are fixedly connected to two sides of the side opening of the protective box 33, shielding plates 35 are fixedly connected to one sides of the strip-shaped opening, close to the lower clamping block 42 and the upper clamping block 44, and the second horizontal movement part 32 and the polishing part 34 are electrically connected with a controller.
Referring to fig. 10 and 11, a plurality of spray assemblies are connected to the lower clip member and spray a fan-shaped water curtain to the gap of the adjacent T-shaped punch pins 7.
The liquid spraying assembly comprises connecting pipes 47, a plurality of connecting pipes 47 are fixedly connected to the lower clamping block 42, the input ends are connected with an external water supply structure, the output ends are all communicated with fan-shaped spray heads 48, the fan-shaped spray heads 48 are located at the gaps of the T-shaped punching needles 7 in a one-to-one correspondence mode, cutting fluid which is a fan-shaped water curtain is sprayed to the gaps of the adjacent T-shaped punching needles 7 from the output ends of the fan-shaped spray heads 48, and the fan-shaped spray heads 48 are electrically connected with the controller.
The edge of the top of the processing table 1 is fixedly connected with an overflow preventing frame 5, the bottom of the overflow preventing frame 5 is communicated with a water outlet pipe 6, and one end, far away from the overflow preventing frame 5, of the water outlet pipe 6 is connected with an external collecting mechanism.
In the invention, when in use, the lower clamping block 42 is firstly adjusted to the required height through the lifting frame 41, so that the clamping groove positions of the lower clamping block 42 and the upper clamping block 44 correspond to the positions of the polishing parts 34;
Placing a plurality of T-shaped punching needles 7 into the placing block 221 from the upper end of the guide groove 222, so that one end with larger diameter of the T-shaped punching needles 7 is placed into the abdication groove 223, the width of the abdication groove 223 is the same as the length of the part with larger diameter of the T-shaped punching needles 7, the width of the guide groove 222 is the same as the length of the part with smaller diameter of the T-shaped punching needles 7, the two ends of the T-shaped punching needles 7 can be contacted with the two sides of the placing block 221, the width of the guide groove 222 is smaller than the diameter of one end with larger diameter of the T-shaped punching needles 7, and one end with larger diameter of the T-shaped punching needles 7 cannot enter the guide groove 222, so that the T-shaped punching needles 7 can be prevented from inclining when rolling along the guide groove 222, the T-shaped punching needles 7 can be uniformly distributed through the arrangement of the guide groove 222 and the abdication groove 223, and the situation that the T-shaped punching needles 7 are blocked inside the guide groove 222 can be prevented from occurring when the T-shaped punching needles 7 move along the guide groove 222;
Placing a plurality of T-shaped punching needles 7 into the guide groove 222, and fully distributing the T-shaped punching needles 7 along the guide groove 222, so that a group of T-shaped punching needles 7 can enter the inside of the placing groove 226 along the guide groove 222 and the discharging gap 2272, and the feeding and discharging positions of the T-shaped punching needles 7 can be limited through the first arc plate 227 and the second arc plate 228;
Then, automatic polishing work is started, the second motor 224 is controlled to work, the rotating disc 225 is driven to intermittently rotate, the rotating disc 225 rotates for sixty degrees once, the T-shaped punching needles 7 entering the placing grooves 226 from the discharging gaps 2272 rotate to the feeding gaps 2271 and fall into one placing groove 214 on the supporting plate 213, the next T-shaped punching needle 7 in the guiding groove 222 automatically enters the subsequent placing groove 226 through the discharging gaps 2272 under the action of gravity, meanwhile, when the second motor 224 continuously rotates intermittently, the first horizontal moving part 212 is controlled to move intermittently with the supporting plate 213, a plurality of placing grooves 214 on the supporting plate 213 are placed into the T-shaped punching needles 7 one by one under the mutual cooperation of the two, the T-shaped punching needles 7 can be fed one by one, the feeding operation of the T-shaped punching needles 7 on one supporting plate 213 is completed, and then the second motor 224 is controlled to pause work, so that the time for placing the T-shaped punching needles 7 can be effectively saved, and the polishing efficiency is improved;
subsequently, the first horizontal moving part 212 is controlled to horizontally move the supporting plate 213, the supporting plate 213 carries the plurality of T-shaped punching pins 7 to move out of the lower part of the placing block 221 through the yielding holes and move to the upper part of the two racks 244, and the tooth slot positions of the racks 244 are matched with the plurality of groups of placing grooves 214;
Then the third electric telescopic rod 241 controls the output end thereof to shrink so that the U-shaped plate 242 moves upwards, thereby the connecting plate 243 and the racks 244 also move upwards, in the process, a plurality of groups of T-shaped punching needles 7 can be embedded into tooth grooves of the racks 244 and move along with the rising of the racks 244, and the grabbing operation of the plurality of T-shaped punching needles 7 is completed;
after the third electric telescopic rod 241 moves upwards for a certain distance, the first horizontal moving part 212 is controlled to enable the supporting plate 213 to move below the rotating disc 225 again to finish resetting, and the first horizontal moving part 212 cooperates with the second motor 224 to repeatedly perform blanking operations of a plurality of T-shaped punching pins 7;
when the racks 244 of the two groups lift the multiple groups of T-shaped punching pins 7 upwards, the output ends of the first electric telescopic rods 43 are controlled to shrink, so that the upper clamping blocks 44 move upwards, and an operator can take down the multiple groups of polished T-shaped punching pins 7 on the lower clamping blocks 42;
Then the first screw rod 252 is controlled to be driven to rotate through the first motor 251, so that the first thread block 253 and the second thread block 254 are close to the first motor 251, a plurality of groups of T-shaped punching needles 7 on the rack 244 correspond to a plurality of clamping groove positions of the lower clamping block 42, and then the plurality of groups of T-shaped punching needles 7 are placed on the lower clamping block 42 through the extension of the output end of the third electric telescopic rod 241, so that the transfer operation of the plurality of groups of T-shaped punching needles 7 is completed;
The first motor 251 is controlled to enable the first threaded block 253 and the second threaded block 254 to move away from the first motor 251, the third electric telescopic rod 241 is controlled to shrink at the output end, under the cooperation of the first motor 251 and the third electric telescopic rod 241, the U-shaped plate 242 and the connecting plate 243 drive the two racks 244 to reset, and the upper clamping block 44 is located right above the lower clamping block 42;
the second electric telescopic rod 45 is controlled to extend the output ends thereof, so that the push plate 46 pushes the plurality of groups of T-shaped punching needles 7 to move, the larger end of the T-shaped punching needles 7 is contacted with the outer surfaces of the lower clamping block 42 and the first electric telescopic rod 43, at the moment, one end of the T-shaped punching needles 7 to be polished is contacted with the outer surfaces of the polishing discs of the polishing part 34, and then the first electric telescopic rod 43 is controlled to extend the output ends thereof, so that the upper clamping block 44 moves downwards to clamp the plurality of groups of T-shaped punching needles 7 by matching with the lower clamping block 42;
then the second horizontal moving part 32 is controlled to drive the polishing part 34 to move, the polishing part 34 is controlled to work, the end faces of the T-shaped punching pins 7 which are orderly arranged can be polished through the moving polishing part 34, the protection plate 36 is used for blocking sparks splashed during polishing, and the shielding plate 35 is used for blocking cutting fluid from flowing into the outer box 31 from the surface of the outer box 31;
In the polishing process, the plurality of fan-shaped spray heads 48 work, cutting fluid is pumped in through the connecting pipe 47, fan-shaped water curtains are sprayed out to gaps of the plurality of T-shaped punching needles 7, the fan-shaped water curtains not only can cool and lubricate the polishing part 34 during polishing, so that spark generation is reduced, but also can rinse residues under polishing, meanwhile, the water curtains between the adjacent T-shaped punching needles 7 can block splashing of high-temperature residues during polishing, and adverse effects of the splashing residues on polishing quality during common polishing of the plurality of T-shaped punching needles 7 can be effectively reduced;
the sprayed cutting fluid can be discharged through the water outlet pipe 6 after being accumulated on the inner side of the overflow preventing frame 5, and the water outlet pipe 6 is connected with an external collecting mechanism.
The foregoing description of the preferred embodiments of the invention is not intended to limit the invention to the precise form disclosed, and any such modifications, equivalents, and alternatives falling within the spirit and scope of the invention are intended to be included within the scope of the invention.
Claims (10)
1. Surface grinding device is used in mould accessory processing, including processing platform (1), its characterized in that still includes:
The feeding assembly (2), the feeding assembly (2) comprises a conveying component (21), a guide component (22), a driving component (25) and a moving component (24), wherein a mounting frame (211) is fixedly connected to the processing table (1), the conveying component (21) is connected to the mounting frame (211), the guide component (22) is connected to the mounting frame (211), the input end of the guide component (22) is used for placing a T-shaped punch needle (7), the output end of the guide component is connected with the working end of the conveying component (21), an L-shaped mounting plate (23) is fixedly connected to the processing table (1), the driving component (25) is connected to the L-shaped mounting plate (23), the moving component (24) is connected to the output end of the driving component (25), the working end of the moving component (24) is mutually matched with the working end of the conveying component (21), and the moving component (24) is used for grabbing a plurality of T-shaped punch needles (7) on the working end of the conveying component (21).
The fixing assembly (4) comprises an upper clamping part and a lower clamping part, the upper clamping part is connected to the output end of the driving part (25), the lower clamping part is connected to the processing table (1), the working ends of the upper clamping part and the lower clamping part are in extrusion clamping fit with a plurality of T-shaped punching needles (7), and the working ends of the moving part (24) are mutually matched with the working ends of the lower clamping part;
The polishing assembly (3) is connected to the processing table (1) and is used for polishing a plurality of T-shaped punching pins (7) clamped by the working ends of the upper clamping part and the lower clamping part;
The liquid spraying components are connected to the lower clamping component, and fan-shaped water curtains are sprayed out of gaps of adjacent T-shaped punching pins (7).
2. The surface polishing device for machining die accessories according to claim 1, wherein the conveying component (21) comprises a first horizontal moving part (212), the first horizontal moving part (212) is installed on the installation frame (211), a supporting plate (213) is installed at the output end of the first horizontal moving part (212), the supporting plate (213) is slidably connected to the installation frame (211), the first horizontal moving part (212) is used for driving the supporting plate (213) to reciprocate linearly, a plurality of placing grooves (214) are formed in the supporting plate (213), a part with a smaller diameter of the T-shaped punch pin (7) is in contact fit with the placing grooves (214), the placing grooves (214) are mutually matched with the output end of the guide component (22), and the first horizontal moving part (212) is electrically connected with a controller, and the controller is installed on the machining table (1).
3. The surface polishing device for mold part processing according to claim 2, wherein the guide member (22) comprises a placement block (221), a guide groove (222) and a relief groove (223) are formed in the placement block (221), the guide groove (222) is multi-curved, one side of the guide groove (222) is communicated with the relief groove (223), one end with a larger diameter of the T-shaped punch pin (7) is placed in the relief groove (223), one end with a smaller diameter is placed in the guide groove (222), the depth of the guide groove (222) is smaller than the diameter of one end with a larger diameter of the T-shaped punch pin (7), the utility model is characterized in that a second motor (224) is arranged on the outer side of the placement block (221), the output end of the second motor (224) penetrates through and stretches into the placement block (221), a rotating disc (225) is fixedly connected coaxially, a plurality of placement grooves (226) are formed on the outer periphery side of the rotating disc (225), a first arc plate (227) and a second arc plate (228) are in clearance fit on the outer periphery side of the rotating disc (225), the first arc plate (227) and the second arc plate (228) are fixedly connected at the bottom of the placement block (221), the adjacent ends at the tops of the first arc plate (227) and the second arc plate (228) enclose a discharge gap (2272), the adjacent ends at the bottom enclose a feeding gap (2271), the utility model discloses a motor, including guide slot (222) and electric motor, discharge space (2272) and feed space (2271) are all linked together with corresponding standing groove (226) and are cooperateed with guide slot (222) bottom opening intercommunication, the hole of stepping down that supplies first horizontal migration portion (212) and backup pad (213) to remove is all seted up at standing piece (221) bottom both ends, feed space (2271) bottom and put groove (214) of removing to its below and mutually support, second motor (224) and controller electric connection.
4. A surface polishing device for processing mold parts according to claim 3, wherein the width of the relief groove (223) is the same as the length of the part with the larger diameter of the T-shaped punch pin (7), the width of the guide groove (222) is the same as the length of the part with the smaller diameter of the T-shaped punch pin (7), two ends of the T-shaped punch pin (7) are in one-to-one correspondence and lean against one side of the inner sides of the guide groove (222) and the relief groove (223), the discharging gap (2272) is positioned at the bottommost part of the rotating disc (225), and the angle difference between the feeding gap (2271) and the discharging gap (2272) is sixty degrees by taking the center of the rotating disc (225) as the vertex.
5. A surface grinding device for machining mold parts according to claim 3, wherein the driving part (25) comprises a first motor (251), the first motor (251) is mounted on the L-shaped mounting plate (23), the output end of the first motor (251) penetrates through the L-shaped mounting plate (23) and is fixedly connected with a first screw rod (252) coaxially, the first screw rod (252) is connected with a first thread block (253) in a threaded manner, the top of the first thread block (253) is slidably connected to the L-shaped mounting plate (23), the bottom of the first thread block (253) is connected with the moving part (24), and the first motor (251) is electrically connected with the controller.
6. The surface polishing device for mold part processing according to claim 5, wherein the moving part (24) comprises a third electric telescopic rod (241), the third electric telescopic rod (241) is installed at the bottom of the first threaded block (253), the output end of the third electric telescopic rod (241) is fixedly connected with a U-shaped plate (242), two opposite sides of the two ends of the bottom of the U-shaped plate (242) are fixedly connected with connecting plates (243), two connecting plates (243) are fixedly connected with racks (244), tooth slot positions of the two racks (244) are mutually matched with a plurality of groups of placing grooves (214), and are mutually matched with the working end of the lower clamping part, and the second motor (224) is electrically connected with the controller.
7. The surface polishing device for machining mold parts according to claim 6, wherein the upper clamping component comprises a first electric telescopic rod (43), a second threaded block (254) is connected to the first screw rod (252) in a threaded manner, the top of the second threaded block (254) is slidably connected to the L-shaped mounting plate, the first electric telescopic rod (43) is mounted at the bottom of the second threaded block (254), the output end of the first electric telescopic rod (43) is fixedly connected with an upper clamping block (44), the lower clamping component comprises a lifting frame (41), a lower clamping block (42) is fixedly connected to the top of the lifting frame (41), the lifting frame (41) is used for lifting the lower clamping block (42), the utility model discloses a T-shaped punching needle, including fixed subassembly (4), lower clamp splice (42), upper clamp splice (44), a plurality of clamp grooves of lower clamp splice (42) and the little one end centre gripping complex of diameter of a plurality of T-shaped punching needles (7), tooth's socket position and a plurality of clamp grooves on lower clamp splice (42) of rack (244) are mutually supported one by one, fixed subassembly (4) still includes pushing component, pushing component includes second electric telescopic handle (45), second electric telescopic handle (45) are installed at crane (41) top, and output fixedly connected with push pedal (46), push pedal (46) are supported with the big one end of diameter of a plurality of T-shaped punching needles (7) and are supported and are cooperated, first electric telescopic handle (43), the lifting frame (41) and the second electric telescopic rod (45) are electrically connected with the controller.
8. The surface polishing device for machining of mold parts according to claim 7, characterized in that the polishing assembly comprises an outer box (31), the outer box (31) is fixedly connected to a machining table (1), a second horizontal moving part (32) is installed in the outer box (31), the output end of the second horizontal moving part (32) penetrates through the top of the outer box (31) and is fixedly connected with a protective box (33) with a side opening, a strip-shaped opening for the output end of the second horizontal moving part (32) to move is formed in the top of the outer box (31), a polishing part (34) is installed in the protective box (33), the output end of the polishing part (34) extends out of a side opening of the protective box (33) and is matched with a plurality of T-shaped punching pins (7) clamped by a lower clamping block (42) and an upper clamping block (44), two sides of the side opening of the protective box (33) are fixedly connected with protective plates (36), the strip-shaped opening is close to one side of the lower clamping block (42) and one side of the upper clamping block (44) and is fixedly connected with a baffle plate (35), and the second horizontal moving part (32) and the polishing part (34) are electrically connected with the polishing part.
9. The surface polishing device for machining die accessories according to claim 8, wherein the liquid spraying assembly comprises a connecting pipe (47), a plurality of connecting pipes (47) are fixedly connected to the lower clamping block (42), input ends are connected with an external water supply structure, output ends are communicated with fan-shaped spray heads (48), the fan-shaped spray heads (48) are located at gaps of a plurality of T-shaped punching needles (7) in a one-to-one correspondence mode, the output ends of the fan-shaped spray heads (48) spray cutting liquid which is in a fan-shaped water curtain to the gaps of adjacent T-shaped punching needles (7), and the fan-shaped spray heads (48) are electrically connected with the controller.
10. The surface polishing device for machining die accessories according to claim 1, wherein an overflow preventing frame (5) is fixedly connected to the top edge of the machining table (1), a water outlet pipe (6) is communicated with the bottom of the overflow preventing frame (5), and one end, far away from the overflow preventing frame (5), of the water outlet pipe (6) is connected with an external collecting mechanism.
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| CN202411585141.4A CN119077550B (en) | 2024-11-07 | 2024-11-07 | Surface grinding device for processing mold parts |
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| CN202411585141.4A CN119077550B (en) | 2024-11-07 | 2024-11-07 | Surface grinding device for processing mold parts |
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| CN119077550B CN119077550B (en) | 2025-05-16 |
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| KR20030054838A (en) * | 2001-12-26 | 2003-07-02 | 주식회사 포스코 | Apparatus for interception dust of upper storage bin |
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| CN119077550B (en) | 2025-05-16 |
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Denomination of invention: A surface grinding device for mold accessory processing Granted publication date: 20250516 Pledgee: Bank of Jiangsu Co.,Ltd. Nantong Branch Pledgor: Nantong Ge ranbo Precision Molding Co.,Ltd. Registration number: Y2026980003234 |
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