CN219944330U - Processing die for wardrobe hinge buffering hydraulic oil rod - Google Patents
Processing die for wardrobe hinge buffering hydraulic oil rod Download PDFInfo
- Publication number
- CN219944330U CN219944330U CN202321624965.9U CN202321624965U CN219944330U CN 219944330 U CN219944330 U CN 219944330U CN 202321624965 U CN202321624965 U CN 202321624965U CN 219944330 U CN219944330 U CN 219944330U
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- die
- feeding
- lower die
- punching
- die holder
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- 230000003139 buffering effect Effects 0.000 title claims abstract description 16
- 239000010720 hydraulic oil Substances 0.000 title claims abstract description 16
- 238000004080 punching Methods 0.000 claims abstract description 48
- 238000007599 discharging Methods 0.000 claims abstract description 27
- 238000004891 communication Methods 0.000 claims description 2
- 238000000465 moulding Methods 0.000 abstract 1
- 238000009434 installation Methods 0.000 description 2
- 230000009286 beneficial effect Effects 0.000 description 1
- 238000003754 machining Methods 0.000 description 1
- 238000000034 method Methods 0.000 description 1
- 230000001360 synchronised effect Effects 0.000 description 1
Abstract
The utility model relates to a processing die for a wardrobe hinge buffering hydraulic oil rod, which comprises a lower die holder and an upper die holder capable of moving up and down, wherein a die is arranged on one side end face of the upper die holder, a fixed die is arranged on one side end face of the lower die holder, a feeding device is arranged on the fixed die, at least one discharging groove is arranged on the feeding device, the fixed die comprises an upper die and a lower die which are combined to form at least one feeding channel, the feeding device is arranged on the lower die and is arranged on one side of the upper die, the lower die is fixedly connected with the lower die holder, one feeding channel is communicated with one discharging groove, the feeding channel is sequentially provided with a punching station, a corner cutting station and a discharging station, the punching device and the corner cutting device are arranged on the die corresponding to the punching station and the corner cutting station, the discharging channel is arranged on the lower die corresponding to the discharging station, a feeding device for feeding a machined part in the discharging groove into the feeding channel is arranged between the upper die holder and the lower die, the processing of a through hole and the corner cutting is completed, the labor is saved, one-step molding is performed, and the processing efficiency is improved.
Description
Technical Field
The utility model relates to the field of wardrobe finishing buffering hydraulic oil rod processing equipment, in particular to a processing die for a wardrobe hinge buffering hydraulic oil rod.
Background
The wardrobe hinge buffering hydraulic oil pole has offered through-hole a as shown in fig. 7 in one end, and is equipped with through-hole a one end and is equipped with chamfer b relatively, and current processing chamfer b's mode is that the manual work is shifted to lathe through the rethread after punching machine processing out through-hole a and is gone out chamfer b, need process through two equipment, and need the manual work to replace after transferring the machined part to the lathe by the punching machine and fix a position, and manual work is adult height, and machining efficiency is lower.
Disclosure of Invention
The technical problem to be solved by the present utility model is to address the above-mentioned shortcomings of the prior art,
the processing die for the wardrobe hinge buffering hydraulic oil rod is provided, one die is used for processing the through hole and the chamfer, labor is saved, one-step forming is realized, and processing efficiency is improved.
In order to achieve the above purpose, the present utility model provides the following technical solutions: processing die of wardrobe hinge buffering hydraulic oil pole, characterized by: the automatic feeding device comprises a lower die holder and an upper die holder capable of vertically displacing, wherein a die is arranged on the upper die holder towards one side end face of the lower die holder, a fixed die is arranged on the lower die holder towards one side end face of the die, a feeding device is arranged on the fixed die, at least one discharging groove is arranged on the feeding device, the fixed die comprises an upper die and a lower die which are combined to form at least one feeding channel, the feeding device is arranged on the lower die and is arranged on one side of the upper die, the lower die is fixedly connected with the lower die holder, one feeding channel is communicated with one discharging groove, the feeding channel is sequentially provided with a punching station, a corner cutting station and a discharging station, the punching device and the corner cutting device are respectively arranged on the die corresponding to the punching station and the corner cutting station, the lower die is provided with a discharging channel corresponding to the discharging station, and a feeding device for feeding a machined part in the discharging groove into the feeding channel is arranged between the upper die holder and the lower die holder.
The utility model is further provided with the following steps: the punching device comprises punching heads, the punching heads are fixedly connected with the stamping dies, the punching heads are arranged above the punching stations, the number of the punching heads is the same as that of the feeding channels, and the upper dies are communicated with the feeding channels to form punching channels through which the punching heads can pass.
The utility model is further provided with the following steps: the corner cutting device comprises a corner cutting tool bit and a positioning rod arranged on one side of the corner cutting tool bit, the positioning rod is matched with a through hole of a workpiece, and a cutter channel through which the corner cutting tool bit can pass and a positioning channel through which the positioning rod can pass are respectively formed in the upper die communication feeding channel.
The utility model is further provided with the following steps: the feeding device comprises a movable seat and a driving device for driving the movable seat to reciprocate, wherein the movable seat comprises a middle plate and side plates vertically arranged at two ends of the middle plate respectively, the side plates are arranged at two opposite sides of the lower die, ejector rods are orderly arranged on one side of the middle plate, which faces the feeding device, of the middle plate, and any one of the ejector rods is coaxially arranged with a feeding channel.
The utility model is further provided with the following steps: the driving device comprises pulley seats, pulleys and sliding tables, wherein the pulley seats are respectively arranged on two opposite sides of a stamping die by an upper die base, the pulleys are arranged on the pulley seats, the sliding tables are arranged on the upper sides of the side plates, the sliding tables are arranged below the side plates, the sliding seats are correspondingly provided with sliding rails, the sliding rails are arranged in parallel with the side plates, sliding grooves matched with the sliding rails are formed in the sliding seats, any sliding seat is in sliding fit with one sliding rail through the sliding grooves, inclined surfaces are respectively arranged on the sliding tables, limiting seats are respectively arranged on the top ends of the inclined surfaces, limiting grooves matched with the pulleys are formed in one side of the bottom of each inclined surface on the side plates, the pulleys are displaced along the inclined surfaces, and when the pulleys are displaced into the limiting grooves, the punching heads and the corner cutting heads pass through feeding channels, and guide devices are arranged between the upper die base and the lower die base.
The utility model is further provided with the following steps: the guide device comprises a guide rod which is vertically arranged on the end face of one side of the lower die holder, which faces to the upper die holder, a guide hole is coaxially formed in the upper die holder, a guide sleeve which is matched with the guide rod is arranged in the guide hole, and the guide rod is movably spliced and matched with the guide sleeve.
The present utility model having the above-described features: the upper die holder is connected with a driving device of the equipment, workpieces are placed in the placing groove, the upper die holder descending pulley slides along the inclined plane towards the limiting groove to drive the movable seat to move, the movable seat is moved to drive the ejector rod to move away from the placing groove, a workpiece falls to be aligned with the feeding channel, the upper die holder ascends, the movable seat is reset to drive the ejector rod to move towards the feeding channel to push the workpiece to enter the feeding channel, the workpieces enter the feeding channel one by one, the next workpiece pushes the previous workpiece to move until the first workpiece reaches the punching station, at the moment, the punching head moves along with the upper die plate and enters the feeding channel to punch the first workpiece through the punching channel, the first workpiece is continuously pushed to move to the corner cutting station by the rear workpiece after punching, the positioning hole is spliced with a through hole formed by punching to realize positioning of the workpieces, the corner cutting tool bit is subjected to corner cutting processing, the first workpiece after finishing corner cutting continues to move into the discharging station and then is led out of the die from the discharging channel, and the first workpiece is repeatedly processed.
The beneficial effects of the utility model are as follows: and one die is used for finishing the processing of the through hole and the chamfer, so that the labor is saved, the one-step forming is realized, and the processing efficiency is improved.
The utility model is described in further detail below with reference to the drawings and examples.
Drawings
Fig. 1 is a schematic perspective view of an embodiment of the present utility model.
Fig. 2 is a schematic perspective view of a second embodiment of the present utility model.
Fig. 3 is a schematic perspective view of a third embodiment of the present utility model.
Fig. 4 is a schematic perspective view of an upper die holder and a die according to an embodiment of the utility model.
Fig. 5 is a schematic perspective view of a lower die holder, a fixed die and a driving device according to an embodiment of the utility model.
FIG. 6 is an exploded view of a stent according to an embodiment of the present utility model.
Fig. 7 is a schematic perspective view of a workpiece (a wardrobe hinge buffering hydraulic oil lever) according to an embodiment of the utility model.
Description of the embodiments
The processing die for a wardrobe hinge buffering hydraulic oil rod shown in fig. 1-6 comprises a lower die holder 1 and an upper die holder 2 capable of moving up and down, wherein a die 3 is arranged on one side end face of the upper die holder 2 facing the lower die holder 1, a fixed die 4 is arranged on one side end face of the lower die holder 1 facing the die 3, a feeding device 5 is arranged on the fixed die 4, the feeding device 5 is provided with at least one discharging groove 501, the fixed die 4 comprises an upper die 401 and a lower die 402 which are combined to form at least one feeding channel 6, in the embodiment, the discharging groove 501 and the feeding channel 6 are respectively provided with two, the upper die 401 and the lower die 402 are connected through a fastener 7, the feeding device 5 is arranged on the lower die 402 and is arranged on one side of the upper die 401, the lower die 402 is fixedly connected with the lower die holder 1, one feeding channel 6 is communicated with one discharging groove 501, the feeding channel 6 is sequentially provided with a punching station 601, a corner cutting station 602 and a discharging station 603, the punching die 3 is provided with a punching device and a corner cutting device corresponding to the punching station 601 and the corner cutting station 402 respectively, the lower die holder 1 is provided with a discharging channel 101 corresponding to the discharging station 603, a feeding device for feeding workpieces in the discharging groove 501 into the feeding channel 6 is arranged between the upper die holder 2 and the lower die holder 1, the punching device comprises punching heads 8, the punching heads 8 are fixedly connected with the punching die 3, the punching heads 8 are arranged above the punching station 601, the number of the punching heads 8 is the same as that of the feeding channel 101, the upper die 401 is communicated with the feeding channel 6 to form punching channels 40101 for the punching heads 8 to pass through, the corner cutting device comprises a corner cutting bit 9 and a positioning rod 10 arranged on one side of the corner cutting bit 9, the positioning rod 10 is matched with a through hole of the workpieces, the upper die 401 is communicated with the feeding channel 6 to form a cutter channel 40102 for the corner cutting bit 9 to pass through and a positioning channel 40103 for the positioning rod 10 to pass through, the feeding device comprises a movable seat 11 and a driving device 12 for driving the movable seat 11 to reciprocate, the movable seat 11 comprises a middle plate 1101 and side plates 1102 vertically arranged at two ends of the middle plate 1101, the side plates 1102 are arranged at two opposite sides of a lower die 402, the middle plate 1101 is orderly provided with ejector rods 12 towards one side of a feeding device 5, any ejector rod 13 is coaxially arranged with a feeding channel 6, the driving device 12 comprises pulley seats 1201 arranged at two opposite sides of a die 3 of an upper die holder 2, pulleys 1202 arranged at each pulley seat 1201 and sliding tables 1203 arranged at corresponding pulleys 1202 above each side plate 1102, a sliding seat 1204 is arranged below each side plate 1102, a sliding rail 14 is oppositely arranged at the corresponding sliding seat 1204 of a lower die holder 1, each sliding rail 14 is arranged in parallel with the side plate 1102, each sliding seat 1204 is provided with a sliding groove 120401 matched with the sliding rail 14, any sliding seat is in sliding fit with one sliding rail 14 through a sliding groove 1203 120401, each sliding table is provided with a slant 120301, the top end of each inclined plane 120301 is provided with a limit seat 15, one side of the bottom of each inclined plane 120301 is provided with a limit groove 16 matched with a pulley 1202 on a side plate 1102, the pulley 1202 moves along the inclined plane 120301, when the pulley 120301 moves into the limit groove 16, the punching head 8 and the corner cutting tool bit 9 pass through the feeding channel 6, a guide device is arranged between the upper die holder 2 and the lower die holder 1, the driving device 12 can also adopt a driving air cylinder connected with the movable seat 11, but one driving air cylinder is additionally provided, the driving air cylinder is required to be provided with a driving air cylinder installation space, the lifting synchronous rate of the driving air cylinder and the upper die holder is required to be adjusted, preferably, the pulley 1202 and the sliding table 1203 are adopted, the guide device comprises a guide rod 17 which is relatively and vertically arranged on one side end surface of the lower die holder 1 facing the upper die holder 2, the guide hole 18 is coaxially arranged on the corresponding to the guide rod 17, a guide sleeve 19 matched with the guide rod 17 is arranged in the guide hole 18, the guide rod 17 is movably inserted and matched with the guide sleeve 19, the guide rod 17 can also be arranged on the upper die holder 2, correspondingly, the guide hole 18 and the guide sleeve 19 are arranged on the lower die holder 1, and in consideration of the limit of the installation space, the guide rod 17 is preferably arranged on the lower die holder 1.
Claims (6)
1. Processing die of wardrobe hinge buffering hydraulic oil pole, characterized by: the automatic feeding device comprises a lower die holder and an upper die holder capable of vertically displacing, wherein a die is arranged on the upper die holder towards one side end face of the lower die holder, a fixed die is arranged on the lower die holder towards one side end face of the die, a feeding device is arranged on the fixed die, at least one discharging groove is arranged on the feeding device, the fixed die comprises an upper die and a lower die which are combined to form at least one feeding channel, the feeding device is arranged on the lower die and is arranged on one side of the upper die, the lower die is fixedly connected with the lower die holder, one feeding channel is communicated with one discharging groove, the feeding channel is sequentially provided with a punching station, a corner cutting station and a discharging station, the punching device and the corner cutting device are respectively arranged on the die corresponding to the punching station and the corner cutting station, the lower die is provided with a discharging channel corresponding to the discharging station, and a feeding device for feeding a machined part in the discharging groove into the feeding channel is arranged between the upper die holder and the lower die holder.
2. The processing die for a wardrobe hinge buffering hydraulic oil lever according to claim 1, wherein: the punching device comprises punching heads, the punching heads are fixedly connected with the stamping dies, the punching heads are arranged above the punching stations, the number of the punching heads is the same as that of the feeding channels, and the upper dies are communicated with the feeding channels to form punching channels through which the punching heads can pass.
3. The processing die for the wardrobe hinge buffering hydraulic oil lever according to claim 2, wherein: the corner cutting device comprises a corner cutting tool bit and a positioning rod arranged on one side of the corner cutting tool bit, the positioning rod is matched with a through hole of a workpiece, and a cutter channel through which the corner cutting tool bit can pass and a positioning channel through which the positioning rod can pass are respectively formed in the upper die communication feeding channel.
4. A die for processing a wardrobe hinge buffering hydraulic oil lever according to claim 3, characterized in that: the feeding device comprises a movable seat and a driving device for driving the movable seat to reciprocate, wherein the movable seat comprises a middle plate and side plates vertically arranged at two ends of the middle plate respectively, the side plates are arranged at two opposite sides of the lower die, ejector rods are orderly arranged on one side of the middle plate, which faces the feeding device, of the middle plate, and any one of the ejector rods is coaxially arranged with a feeding channel.
5. The processing die for the wardrobe hinge buffering hydraulic oil lever according to claim 4, wherein: the driving device comprises pulley seats, pulleys and sliding tables, wherein the pulley seats are respectively arranged on two opposite sides of a stamping die by an upper die base, the pulleys are arranged on the pulley seats, the sliding tables are arranged on the upper sides of the side plates, the sliding tables are arranged below the side plates, the sliding seats are correspondingly provided with sliding rails, the sliding rails are arranged in parallel with the side plates, sliding grooves matched with the sliding rails are formed in the sliding seats, any sliding seat is in sliding fit with one sliding rail through the sliding grooves, inclined surfaces are respectively arranged on the sliding tables, limiting seats are respectively arranged on the top ends of the inclined surfaces, limiting grooves matched with the pulleys are formed in one side of the bottom of each inclined surface on the side plates, the pulleys are displaced along the inclined surfaces, and when the pulleys are displaced into the limiting grooves, the punching heads and the corner cutting heads pass through feeding channels, and guide devices are arranged between the upper die base and the lower die base.
6. The processing die for the wardrobe hinge buffering hydraulic oil lever according to claim 5, wherein: the guide device comprises a guide rod which is vertically arranged on the end face of one side of the lower die holder, which faces to the upper die holder, a guide hole is coaxially formed in the upper die holder, a guide sleeve which is matched with the guide rod is arranged in the guide hole, and the guide rod is movably spliced and matched with the guide sleeve.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202321624965.9U CN219944330U (en) | 2023-06-25 | 2023-06-25 | Processing die for wardrobe hinge buffering hydraulic oil rod |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202321624965.9U CN219944330U (en) | 2023-06-25 | 2023-06-25 | Processing die for wardrobe hinge buffering hydraulic oil rod |
Publications (1)
Publication Number | Publication Date |
---|---|
CN219944330U true CN219944330U (en) | 2023-11-03 |
Family
ID=88552100
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN202321624965.9U Active CN219944330U (en) | 2023-06-25 | 2023-06-25 | Processing die for wardrobe hinge buffering hydraulic oil rod |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN219944330U (en) |
-
2023
- 2023-06-25 CN CN202321624965.9U patent/CN219944330U/en active Active
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