CN222470787U - Multi-station electrode machining equipment - Google Patents
Multi-station electrode machining equipment Download PDFInfo
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- CN222470787U CN222470787U CN202420454174.4U CN202420454174U CN222470787U CN 222470787 U CN222470787 U CN 222470787U CN 202420454174 U CN202420454174 U CN 202420454174U CN 222470787 U CN222470787 U CN 222470787U
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Abstract
The utility model relates to the technical field of machine tool machining equipment, and particularly discloses multi-station electrode machining equipment which comprises a machine table, wherein a machining table is arranged on the machine table, a group of clamping jaw chucks are arranged on the top surface of the machining table, a supporting plate is arranged on the top surface of the machine table in a sliding mode, a machining mechanism capable of machining workpieces is arranged on the supporting plate in a sliding mode, a first pushing component capable of pushing the supporting plate to move along the width direction of the machine table is arranged on the machine table, a second pushing component capable of pushing the machining mechanism to move along the length direction of the machine table is arranged on the supporting plate, after the machining mechanism finishes machining of the workpieces on one station, the machining mechanism is driven to move to the other station to machine the other workpiece through the cooperation of the first pushing component and the second pushing component, so that the machining work of the workpieces on a plurality of stations is sequentially achieved, and the machining efficiency of the workpieces is improved.
Description
Technical Field
The utility model relates to the technical field of machine tool machining equipment, in particular to multi-station electrode machining equipment.
Background
The machining of the machine tool refers to the process of ensuring the relative motion relation between a cutter and a fixture by the machine tool and machining a workpiece arranged on the fixture by the cutter, and in the production and machining process of the electrode, the electrode is often required to be drilled by the machine tool.
In the prior art, the traditional machine tool can only finish one process at a time, the workpiece is required to be clamped and disassembled repeatedly on a single station, and the machining efficiency of the electrode is low.
Disclosure of utility model
The application provides multi-station electrode machining equipment which is provided with a plurality of stations for sequentially machining workpieces, so that the machining efficiency of the workpieces is improved.
The application provides multi-station electrode processing equipment, which adopts the following technical scheme:
The multi-station electrode machining equipment comprises a machine table, a machining table is arranged on the machine table, a group of clamping jaw chucks are arranged on the top surface of the machining table, the clamping jaw chucks can clamp a workpiece, a supporting plate is arranged on the top surface of the machine table in a sliding mode, a machining mechanism capable of machining the workpiece is arranged on the supporting plate in a sliding mode at a position corresponding to the machining table, a first pushing assembly capable of pushing the supporting plate to move along the width direction of the machine table is arranged on the machine table, and a second pushing assembly capable of pushing the machining mechanism to move along the length direction of the machine table is arranged on the supporting plate.
Through adopting above-mentioned technical scheme, when processing the work piece, carry out the centre gripping fixedly through a set of clamping jaw chuck respectively with a set of work piece, the work piece on the work station is processed through the processing agency that sets up in the backup pad, promotes the processing agency through the cooperation work of first promotion subassembly and second promotion subassembly to move to another work station and process another work piece after the processing is accomplished to the realization is to the processing work of work piece on a plurality of work stations in proper order, promotes the machining efficiency of work piece.
Preferably, the processing mechanism comprises a first electric push rod and a motor, wherein the first electric push rod is arranged on the supporting plate in a sliding mode at a position corresponding to the processing table, a base plate is fixedly connected with the output end of the first electric push rod, the motor is arranged on the bottom surface of the base plate, and a drill bit capable of drilling a workpiece is coaxially fixedly connected with the output end of the motor.
Through adopting above-mentioned technical scheme, when the drill bit position moved to appointed position, the starter motor drove the drill bit and rotates to drive the backing plate through first electric putter and move down gradually, make drill bit and work piece contact and carry out drilling work to the work piece, first electric putter drives the drill bit after the drilling work is accomplished and moves to initial position, thereby conveniently realizes the drilling work of work piece on the station.
The first pushing assembly comprises a fixed block and a second electric push rod, wherein the fixed block is fixedly connected to the top surface of the machine table, a sliding groove which is arranged along the width direction of the machine table is formed in the top surface of the fixed block, a first sliding block is connected to the inner side wall of the sliding groove in a sliding mode, the bottom end of the supporting plate is fixedly connected with the top surface of the first sliding block, the second electric push rod is arranged on the outer side wall of one end of the fixed block, the output end of the second electric push rod extends into the sliding groove and is fixedly connected with the side wall of the first sliding block, and the second electric push rod can push the first sliding block to move along the width direction of the machine table.
Through adopting above-mentioned technical scheme, start the second electricity push rod and drive first slider and remove along spout inside wall, first slider slip in-process drive backup pad and drill bit and remove, change the position of drill bit to the convenient removal that realizes the drill bit in the position along board width direction.
The second pushing assembly comprises a second sliding block and a third electric push rod, the second sliding block is connected to the inner side wall of the through hole in a sliding mode, the first electric push rod is arranged on the second sliding block, the third electric push rod is arranged on the supporting plate, the output end of the third electric push rod is fixedly connected with the side wall of the second sliding block, and the third electric push rod can push the second sliding block to move along the length direction of the machine.
Through adopting above-mentioned technical scheme, start the third electricity push rod and drive the second slider and slide along the opening inside wall, the second slider slides the in-process and drives the drill bit and remove, changes the position of drill bit, conveniently realizes the drill bit and follows the removal of board length direction upper position.
Preferably, the outer peripheral surface of the backing plate is fixedly connected with an oil delivery pipe, the outer side wall of the oil delivery pipe is fixedly connected with a spray head communicated with the inside of the oil delivery pipe, the outlet end of the spray head faces the drill bit, the bottom surface of the machine table is fixedly connected with an oil tank containing cooling oil, and the machine table is also provided with a conveying assembly capable of conveying the cooling oil in the oil tank into the oil delivery pipe.
Through adopting above-mentioned technical scheme, when the drill bit carries out the course of working to the work piece, in conveying assembly carries the oil delivery pipe with the cooling oil in the oil tank, cooling oil rethread shower nozzle sprays on the drill bit, cools down the lubrication to the drill bit, reduces the overheated possibility that takes place the damage of drill bit.
Preferably, the conveying assembly comprises a pump body, the pump body is mounted on the machine table, an oil inlet pipe communicated with the oil tank is fixedly connected to the input end of the pump body, and an oil outlet pipe communicated with the inside of the oil delivery pipe is fixedly connected to the output end of the pump body.
Through adopting above-mentioned technical scheme, start the pump body and take out the cooling oil in the oil tank and carry in the oil delivery pipe through inlet pipe and discharging pipe to the shower nozzle spouts the cooling oil to the drill bit on carrying out cooling lubrication to the drill bit.
Preferably, the top surface of the machine is provided with a plurality of liquid discharge tanks, a pair of oil receiving boxes are fixedly connected to the outer side wall of the machine, and the pair of oil receiving boxes are respectively positioned at the bottoms of the two ends of the liquid discharge tanks.
Through adopting above-mentioned technical scheme, shower nozzle spun cooling oil can flow to the board top surface after carrying out cooling lubrication to the drill bit, carries the cooling oil direction through the drain groove that sets up on the board, makes the cooling oil flow to collect in the oil receiving box, avoids causing the waste of cooling oil.
Preferably, a filter screen is fixedly connected on the inner side wall of the oil receiving box.
Through adopting above-mentioned technical scheme, the filter screen that sets up in the oil receiving box can filter the cooling oil that flows into in the oil receiving box, gets rid of the impurity in the cooling oil to realize the recycling of cooling oil.
In summary, the application has the following beneficial effects:
1. After the workpiece is clamped and fixed by the clamping jaw chuck, a processing mechanism arranged on the supporting plate processes the workpiece on one station, after the processing is finished, the processing mechanism is driven to move to another station to process the other workpiece by the cooperation of the first pushing component and the second pushing component, so that the processing work of the workpieces on a plurality of stations is realized in sequence, and the processing efficiency of the workpieces is improved;
2. When a workpiece is processed, the pump body is started to pump cooling oil in the oil tank and convey the cooling oil to the oil conveying pipe, the spray head sprays the cooling oil to the drill bit to cool and lubricate the drill bit, the possibility of damage caused by overheating of the drill bit is reduced, and the service life of the drill bit is prolonged;
3. cooling oil after cooling and lubricating the drill bit flows down to the drain tank, the drain tank guides the cooling oil, the cooling oil is caused to flow down to the oil receiving box, the filter screen filters the cooling oil flowing in, impurities in the cooling oil are removed, and recovery of the cooling oil is realized so as to recycle the cooling oil.
Drawings
FIG. 1 is a schematic view of a multi-station electrode processing apparatus;
FIG. 2 is a schematic view of the construction of the processing mechanism of the present application;
FIG. 3 is a schematic illustration of the cooperation of the support plate, the first pushing assembly and the second pushing assembly of the present application;
FIG. 4 is a schematic diagram of the matching structure of the backing plate, the oil delivery pipe and the motor in the application;
fig. 5 is a schematic view of the internal structure of the oil receiving box in the application.
The reference numerals are 1, a machine table, 11, a liquid discharge groove, 12, an oil receiving box, 121, a filter screen, 2, a processing table, 21, a clamping jaw chuck, 3, a supporting plate, 31, a through hole, 4, a processing mechanism, 41, a first electric push rod, 411, a base plate, 42, a motor, 421, a drill bit, 5, a first pushing component, 51, a fixed block, 511, a sliding groove, 512, a first sliding block, 52, a second electric push rod, 6, a second pushing component, 61, a second sliding block, 62, a third electric push rod, 7, an oil conveying pipe, 71, a spray head, 72, an oil tank, 73, a conveying component, 731, a pump body, 732, an oil inlet pipe, 733 and an oil outlet pipe.
Detailed Description
The present utility model will be described in further detail with reference to the accompanying drawings. Wherein like parts are designated by like reference numerals. It should be noted that the words "front", "back", "left", "right", "upper", "lower", "bottom" and "top" used in the following description refer to directions in the drawings, and the words "inner" and "outer" refer to directions toward or away from, respectively, the geometric center of a particular component.
The utility model discloses multi-station electrode machining equipment, which is shown in figure 1 and comprises a machine table 1, a machining table 2, a supporting plate 3, a machining mechanism 4, a first pushing component 5 and a second pushing component 6, wherein the machining table 2 is fixedly connected to the top surface of the machine table 1, a plurality of clamping jaw chucks 21 capable of clamping and fixing workpieces are fixedly connected to the top surface of the machining table 2, the supporting plate 3 is connected to the top surface of the machine table 1 in a sliding manner, the supporting plate 3 is in an inverted L shape, the top end of the supporting plate 3 extends to the top of the machining table 2, the machining mechanism 4 is arranged on the supporting plate 3 at a position corresponding to the machining table 2, the first pushing component 5 is arranged on the top surface of the machine table 1, the first pushing component 5 can push the supporting plate 3 to drive the machining mechanism 4 to move along the width direction of the machine table 1, the second pushing component 6 is arranged on the top surface of the supporting plate 3, and the second pushing component 6 can push the machining mechanism 4 to move along the length direction of the machine table 1.
After the clamping jaw chuck 21 clamps and fixes the workpiece, the workpiece on one station is machined through the machining mechanism 4, after machining is finished, the machining mechanism 4 is driven to move to the other station through the cooperation of the first pushing component 5 and the second pushing component 6, and the other workpiece is machined, so that the machining work of the workpiece on a plurality of stations is sequentially realized.
As shown in fig. 1 and 2, the processing mechanism 4 comprises a first electric push rod 41 and a motor 42, wherein the first electric push rod 41 is slidably arranged on the top surface of the supporting plate 3 at a position corresponding to the processing table 2, the extending and contracting direction of the first electric push rod 41 is arranged along the vertical direction, the output end of the first electric push rod 41 is fixedly connected with a base plate 411 positioned at the bottom of the top end of the supporting plate 3, the motor 42 is arranged on the bottom surface of the base plate 411, the output end of the motor 42 is coaxially and fixedly connected with a drill 421 which is vertically arranged, and the drill 421 can drill a workpiece.
When the position of the drill bit 421 moves to the top of the station, the starting motor 42 drives the drill bit 421 to rotate and drives the base plate 411 to move downwards through the first electric push rod 41, so that the drill bit 421 is caused to contact with a workpiece to drill the workpiece, and after the drilling work is completed, the first electric push rod 41 drives the drill bit 421 to move upwards to the initial position, so that the drilling work of the workpiece on one station is realized.
As shown in fig. 1 and 3, the first pushing component 5 includes a fixed block 51 and a second electric push rod 52, the fixed block 51 is fixedly connected to the top surface of the machine table 1 located at one side of the machining table 2, a sliding groove 511 arranged along the width direction of the machine table 1 is formed in the top surface of the fixed block 51, the sliding groove 511 is dovetail-shaped, a first sliding block 512 is slidably connected to the inner side wall of the sliding groove 511, the first sliding block 512 is dovetail-shaped and matched with the inner wall of the sliding groove 511, the bottom surface of the supporting plate 3 is fixedly connected with the top surface of the first sliding block 512, the second electric push rod 52 is horizontally installed on the outer side wall of one end of the fixed block 51, the output end of the second electric push rod 52 extends into the sliding groove 511 and is fixedly connected with the side wall of the first sliding block 512, and the second electric push rod 52 is arranged along the width direction of the machine table 1 in a telescopic direction;
The through hole 31 that arranges along board 1 length direction is offered to backup pad 3 top surface, second pushing component 6 includes second slider 61 and third electric putter 62, second slider 61 sliding connection is on the through-hole inside wall, second slider 61 is "worker" style of calligraphy, first electric putter 41 is installed on second slider 61 top surface, first electric putter 41 output stretches to second slider 61 bottom, first electric putter 41 output and second slider 61 sliding fit, third electric putter 62 horizontal installation is on backup pad 3 top surface, third electric putter 62 telescopic direction is arranged along board 1 length direction.
After the workpiece is machined on one station, the second electric push rod 52 is started to drive the first slide block 512 to slide, the first slide block 512 drives the support plate 3 to move in the sliding process, the position of the drill bit 421 along the length direction of the machine table 1 is changed, the third electric push rod 62 is started to drive the second slide block 61 to slide, the position of the drill bit 421 along the width direction of the machine table 1 is changed, and the drill bit 421 can be sequentially moved to different stations through the cooperation of the first electric push rod 41 and the second electric push rod 52 so as to sequentially machine the workpiece on a plurality of stations.
As shown in fig. 1 and 4, the backing plate 411 is circular, an oil delivery pipe 7 surrounding the outside of the backing plate 411 is fixedly connected to the outer peripheral surface of the backing plate 411, a plurality of spray heads 71 communicated with the inside of the oil delivery pipe 7 are fixedly connected to the outer side wall of the oil delivery pipe 7, the spray heads 71 are uniformly distributed at intervals along the outer periphery of the axis of the backing plate 411, the outlet ends of the spray heads 71 are obliquely arranged towards the drill bit 421, an oil tank 72 for containing cooling oil is fixedly connected to the bottom surface of the machine 1, a conveying assembly 73 capable of conveying the cooling oil in the oil tank 72 into the oil delivery pipe 7 is arranged on the top surface of the machine 1, the conveying assembly 73 comprises a pump body 731, an oil inlet pipe 732 and an oil outlet pipe 733, the pump body 731 is mounted on the top surface of the machine 1, one end of the oil inlet pipe 732 is fixedly connected to the input end of the pump body 731, the other end is fixedly connected to the side wall of the oil tank 72 and communicated with the inside of the oil tank 72, one end of the oil outlet pipe 733 is fixedly connected to the side wall of the pump body 731 and communicated with the inside of the oil delivery pipe 7.
When the drill bit 421 processes a workpiece, the pump body 731 is started to pump out cooling oil in the oil tank 72 and convey the cooling oil into the oil conveying pipe 7, the spray head 71 sprays cooling liquid in the oil conveying pipe 7 on the surface of the drill bit 421 to cool and lubricate the drill bit 421, the possibility of damage caused by overheating of the drill bit 421 when the workpiece is processed is reduced, and the service life of the drill bit 421 is prolonged.
As shown in fig. 1 and 5, the top surface of the machine 1 is provided with a plurality of liquid discharge tanks 11, the liquid discharge tanks 11 are arranged in parallel at intervals, a pair of oil receiving boxes 12 respectively positioned at the bottoms of two ends of the liquid discharge tank 11 are fixedly connected to the outer side wall of the machine 1, and a filter screen 121 is fixedly connected to the inner side walls of the pair of oil receiving boxes 12.
Cooling oil flows into the liquid discharge groove 11 of the machine table 1 after cooling and lubricating the drill bit 421, and flows into the oil receiving box 12 under the guiding action of the liquid discharge groove 11, and the filter screen 121 filters the cooling oil to collect and recycle the cooling oil so as to recycle the cooling oil.
When the work piece is processed, a plurality of work pieces are clamped and fixed through a plurality of clamping jaw chucks 21 respectively, a starting motor 42 drives a drill bit 421 to rotate, a first electric push rod 41 is started to drive a base plate 411 to move downwards, the drill bit 421 is gradually close to the work piece and performs drilling work on the work piece, after the drilling is completed, the first electric push rod 41 drives the base plate 411 to move upwards, the drill bit 421 is driven to move upwards to an initial position, and thus the processing work of the work piece on one station is completed, after the processing of the work piece on one station is completed, a second electric push rod 52 is started to drive a first slide block 512 to slide, the first slide block 512 drives a supporting plate 3 and the drill bit 421 to move in the sliding process, so that the change of the position of the drill bit 421 along the length direction of a machine table 1 is realized, a third electric push rod 62 is started to drive the second slide block 61 to move, so that the change of the position of the drill bit 421 along the width direction of the machine table 1 is realized, and the drill bit 421 can be driven to sequentially move to different stations through the cooperation work of the first electric push rod 41 and the second electric push rod 52, so that the processing work pieces on a plurality of stations can be sequentially processed, and the processing efficiency is improved;
When the drill 421 is used for processing a workpiece, the pump body 731 is started to pump the cooling oil in the oil tank 72 out and convey the cooling oil to the oil conveying pipe 7, the cooling oil is sprayed onto the drill 421 through the spray head 71 to cool and lubricate the drill 421, the possibility of damage caused by overheating of the drill 421 is reduced, the cooling oil flows into the liquid discharge groove 11 of the machine 1 after cooling and lubricating the drill 421, the liquid discharge groove 11 guides and conveys the cooling oil, the cooling oil is caused to flow into the oil receiving box 12, the filter screen 121 filters the flowing cooling oil, impurities in the cooling oil are removed, and further the recovery of the cooling oil is realized.
The above embodiments are not intended to limit the scope of the application, so that the equivalent changes of the structure, shape and principle of the application are covered by the scope of the application.
Claims (8)
1. A multi-station electrode machining device is characterized by comprising a machine table (1), wherein a machining table (2) is arranged on the machine table (1), a group of clamping jaw chucks (21) are arranged on the top surface of the machining table (2), the clamping jaw chucks (21) can clamp a workpiece, a supporting plate (3) is arranged on the top surface of the machine table (1) in a sliding mode, a machining mechanism (4) capable of machining the workpiece is arranged on the supporting plate (3) in a sliding mode at a position corresponding to the machining table (2), a first pushing assembly (5) capable of pushing the supporting plate (3) to move along the width direction of the machine table (1) is arranged on the machine table (1), and a second pushing assembly (6) capable of pushing the machining mechanism (4) to move along the length direction of the machine table (1) is arranged on the supporting plate (3).
2. The multi-station electrode machining device according to claim 1, wherein the machining mechanism (4) comprises a first electric push rod (41) and a motor (42), the first electric push rod (41) is slidably arranged on the supporting plate (3) at a position corresponding to the machining table (2), a base plate (411) is fixedly connected to the output end of the first electric push rod (41), the motor (42) is arranged on the bottom surface of the base plate (411), and a drill bit (421) capable of drilling a workpiece is coaxially fixedly connected to the output end of the motor (42).
3. The multi-station electrode machining equipment is characterized in that the first pushing assembly (5) comprises a fixed block (51) and a second electric pushing rod (52), the fixed block (51) is fixedly connected to the top surface of the machine table (1), a sliding groove (511) which is arranged along the width direction of the machine table (1) is formed in the top surface of the fixed block (51), a first sliding block (512) is connected to the inner side wall of the sliding groove (511) in a sliding mode, the bottom end of the supporting plate (3) is fixedly connected with the top surface of the first sliding block (512), the second electric pushing rod (52) is arranged on the outer side wall of one end of the fixed block (51), the output end of the second electric pushing rod (52) extends into the sliding groove (511) to be fixedly connected with the side wall of the first sliding block (512), and the second electric pushing rod (52) can push the first sliding block (512) to move along the width direction of the machine table (1).
4. The multi-station electrode machining equipment according to claim 2 is characterized in that a through hole (31) which is arranged along the length direction of a machine table (1) is formed in the position, corresponding to the machining table (2), of the supporting plate (3), the second pushing assembly (6) comprises a second sliding block (61) and a third electric pushing rod (62), the second sliding block (61) is connected onto the inner side wall of the through hole (31) in a sliding mode, the first electric pushing rod (41) is arranged on the second sliding block (61), the third electric pushing rod (62) is arranged on the supporting plate (3), the output end of the third electric pushing rod (62) is fixedly connected with the side wall of the second sliding block (61), and the third electric pushing rod (62) can push the second sliding block (61) to move along the length direction of the machine table (1).
5. The multi-station electrode machining equipment is characterized in that an oil delivery pipe (7) is fixedly connected to the outer peripheral surface of the base plate (411), a spray head (71) communicated with the inside of the oil delivery pipe (7) is fixedly connected to the outer side wall of the oil delivery pipe (7), the outlet end of the spray head (71) faces a drill bit (421), an oil tank (72) containing cooling oil is fixedly connected to the bottom surface of the machine table (1), and a conveying assembly (73) capable of conveying the cooling oil in the oil tank (72) into the oil delivery pipe (7) is further arranged on the machine table (1).
6. The multi-station electrode machining device according to claim 5, wherein the conveying assembly (73) comprises a pump body (731), the pump body (731) is installed on the machine table (1), an oil inlet pipe (732) communicated with the oil tank (72) is fixedly connected to the input end of the pump body (731), and an oil outlet pipe (733) communicated with the interior of the oil delivery pipe (7) is fixedly connected to the output end of the pump body (731).
7. The multi-station electrode machining equipment according to claim 1 is characterized in that a plurality of liquid discharge grooves (11) are formed in the top surface of the machine table (1), a pair of oil receiving boxes (12) are fixedly connected to the outer side wall of the machine table (1), and the oil receiving boxes (12) are respectively located at bottoms of two ends of the liquid discharge grooves (11).
8. The multi-station electrode machining device of claim 7, wherein the filter screen (121) is fixedly connected to the inner side wall of the oil receiving box (12).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202420454174.4U CN222470787U (en) | 2024-03-09 | 2024-03-09 | Multi-station electrode machining equipment |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202420454174.4U CN222470787U (en) | 2024-03-09 | 2024-03-09 | Multi-station electrode machining equipment |
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| Publication Number | Publication Date |
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| CN222470787U true CN222470787U (en) | 2025-02-14 |
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ID=94496709
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202420454174.4U Active CN222470787U (en) | 2024-03-09 | 2024-03-09 | Multi-station electrode machining equipment |
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| Country | Link |
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| CN (1) | CN222470787U (en) |
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