CN210789611U - Condenser pin wire rod welding machine - Google Patents

Condenser pin wire rod welding machine Download PDF

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Publication number
CN210789611U
CN210789611U CN201921375037.7U CN201921375037U CN210789611U CN 210789611 U CN210789611 U CN 210789611U CN 201921375037 U CN201921375037 U CN 201921375037U CN 210789611 U CN210789611 U CN 210789611U
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China
Prior art keywords
cylinder
feeding
frame
welding
pin wire
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Active
Application number
CN201921375037.7U
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Chinese (zh)
Inventor
李祖建
陶志勇
周小媛
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Dongguan Shige Electronics Group Co ltd
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Dongguan Shige Electronics Group Co ltd
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Priority to CN201921375037.7U priority Critical patent/CN210789611U/en
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Abstract

The utility model relates to a condenser production technical field especially relates to a condenser pin wire rod welding machine, which comprises a frame, the frame is provided with feeding mechanism, the feeding mechanism side is provided with welding mechanism, feeding mechanism includes the material dish, the material dish outside is provided with material flattening portion, be provided with the pressure material wheel between material dish and the material flattening portion, material flattening portion side is provided with feeding portion, the frame below is provided with the ejection cylinder, ejection cylinder drive is connected with ejector pin, ejector pin is connected with the blade holder, the blade holder is provided with the blank sword, the fixed uide bushing who is provided with and ejector pin sliding connection of frame, welding mechanism includes translation cylinder, translation cylinder drive is connected with the installation grudging post, installation grudging post bottom is provided with the rotating electrical machines, the rotating electrical machines drive is connected with the dwang, the dwang is provided with double-layered material portion. The automatic feeding and welding work is carried out on the pin wire of the capacitor, the production requirement of high efficiency and high quality is met, and the production cost is reduced.

Description

Condenser pin wire rod welding machine
Technical Field
The utility model relates to a condenser production technical field especially relates to a condenser pin wire rod welding machine.
Background
Electric welding refers to a welding operation that is performed by melting metal parts to be joined by an electric arc using a welding rod at a high temperature. At present, in the industry of capacitors, due to the limitation of the conditions of the prior art, most of capacitors are welded by pins and wires in a manual mode, but in actual work and application, due to the fact that operating personnel have different operation experiences and high working strength, manual welding efficiency is low, welding precision and production quality are difficult to guarantee, and meanwhile production cost is increased.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to prior art not enough, provide a condenser pin wire rod welding machine, realize carrying out automatic pay-off and weldment work to the pin wire rod of condenser, improve the welding precision, satisfy the high-quality production requirement of high efficiency, effective reduction in production cost.
In order to achieve the purpose, the utility model discloses a capacitor pin wire welding machine, which comprises a frame, the frame is provided with a feeding mechanism, a welding mechanism is arranged beside the feeding mechanism, the feeding mechanism comprises a material disc, a material flattening part is arranged outside the material disc, a material pressing wheel is arranged between the material disc and the material flattening part, a feeding part is arranged beside the material flattening part, a pushing cylinder is arranged below the frame, the output end of the pushing cylinder is in driving connection with a pushing rod, the end part of the pushing rod is connected with a knife holder, the knife holder is provided with a material cutting knife, the frame is fixedly provided with a guide sleeve which is in sliding connection with the pushing rod, the welding mechanism comprises a translation cylinder, the output end of the translation cylinder is in driving connection with an installation vertical frame, the bottom of the installation vertical frame is provided with a rotating motor, the output end of the rotating motor is in driving connection with a rotating rod, the rotating rod is provided with a material clamping portion, and the side of the installation stand is provided with a welding portion.
Preferably, the feeding part comprises a feeding through groove, a rodless cylinder is transversely arranged below the feeding through groove, the output end of the rodless cylinder is connected with the feeding cylinder in a driving mode, and the output end of the feeding cylinder is connected with the feeding clamping jaw in a driving mode.
Preferably, the material flattening portion comprises a lifting cylinder, the output end of the lifting cylinder is in driving connection with a flattening convex plate, and the rack is fixedly provided with a groove plate matched with the flattening convex plate for working.
Preferably, the middle of the tool apron is provided with an inserting hole, the top of the tool apron is provided with an adjusting through hole, the material cutting tool is provided with a connecting through hole matched with the adjusting through hole, the bottom of the tool apron is provided with a positioning through hole, and a pressing gap matched with the positioning through hole is formed in the tool apron.
Preferably, a sliding seat is arranged between the installation vertical frame and the rack, the material clamping portion comprises an installation seat, the installation seat is provided with a pushing cylinder, and a first material clamping claw and a second material clamping claw which are oppositely arranged up and down, the output end of the pushing cylinder is connected with a horizontal pushing inclined block, connecting columns are connected between the first material clamping claw and the installation seat, an action column is arranged between the first material clamping claw and the second material clamping claw, and pulleys matched with the horizontal pushing inclined block to work are arranged at the end portions of the first material clamping claw and the second material clamping claw.
Preferably, the welding part includes the installation framework, the outside of installation framework is provided with the extrusion cylinder, the output drive of extrusion cylinder is connected with upper rotating plate and lower rotating plate, be connected with first articulated shaft between upper rotating plate and the lower rotating plate, the top of installation framework is provided with articulated main shaft, articulated main shaft is articulated with upper rotating plate, lower rotating plate is provided with the welding machine, be connected with the second articulated shaft between lower rotating plate and the welding machine, the bottom of installation framework is provided with welded platform.
The utility model has the advantages that: the utility model discloses a condenser pin wire rod welding machine, which comprises a frame, the frame is provided with a feeding mechanism, the side of the feeding mechanism is provided with a welding mechanism, the feeding mechanism comprises a material disc, the outer side of the material disc is provided with a material flattening part, a material pressing wheel is arranged between the material disc and the material flattening part, the side of the material flattening part is provided with a feeding part, a pushing cylinder is arranged below the frame, the output end of the pushing cylinder is in driving connection with a pushing rod, the end part of the pushing rod is connected with a knife holder, the knife holder is provided with a material cutting knife, the frame is fixedly provided with a guide sleeve which is in sliding connection with the pushing rod, the welding mechanism comprises a translation cylinder, the output end of the translation cylinder is in driving connection with an installation vertical frame, the bottom of the installation vertical frame is provided with a rotating motor, the output end of the rotating motor is, the dwang is provided with presss from both sides material portion, the side of installation grudging post is provided with the weld part.
When the material disc is in operation, rolled pin wire rods are stored in the material disc, the pin wire rods are subjected to primary pressing operation of the material pressing wheel and secondary pressing and shaping operation of the material pressing portion, the material feeding portion clamps the positions of the pin wire rods, the pin wire rods are pulled to move to the material cutting knife, the translation air cylinder drives the installation vertical frame to move towards the direction of the material feeding portion, the pin wire rods are clamped from the material feeding portion through the material clamping portion, the ejector air cylinder drives the ejector rod to move upwards, the pin wire rods with preset lengths are cut off through the material cutting knife of the tool apron, the rotating rod is driven to rotate by the rotating motor, the material clamping portion is driven to rotate 90 degrees towards the direction of the welding portion, the pin wire rods and the capacitor are subjected to welding operation through the welding portion, and the. The utility model discloses the realization carries out automatic pay-off and weldment work to the pin wire rod of condenser, improves welding precision, satisfies the high-quality production requirement of high efficiency, effective reduction in production cost.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural diagram of the feeding mechanism of the present invention.
Fig. 3 is a schematic structural view of the material flattening portion of the present invention.
Fig. 4 is a schematic structural view of the knife holder of the present invention.
Fig. 5 is a schematic structural view of the material clamping portion of the present invention.
Fig. 6 is a schematic structural view of the welding portion of the present invention.
The reference numerals are respectively:
a frame-1, a feeding mechanism-2, a material tray-20, a material flattening part-21, a lifting cylinder-211, a flattening convex plate-212, a groove plate-213, a material pressing wheel-22, a feeding part-23, a feeding through groove-231, a rodless cylinder-232, a feeding cylinder-233, a feeding clamping jaw-234, a pushing cylinder-24, a pushing rod-25, a tool apron-26, an inserting hole-261, an adjusting through hole-262, a positioning through hole-263, a pressing gap-264, a material cutting knife-27, a connecting through hole-271, a guide sleeve-28, a welding mechanism-3, a translation cylinder-30, an installation stand-31, a rotating motor-32, a rotating rod-33, a material clamping part-34, an installation seat-341, a pushing cylinder-342, a first material clamping claw-343, a second material clamping claw-344, a flat pushing inclined block-345, a connecting column-346, an action column-347, a pulley-348, a welding part-35, a mounting frame-351, an extrusion cylinder-352, an upper rotating plate-353, a lower rotating plate-354, a first articulated shaft-355, an articulated spindle-356, a welding machine-357, a second articulated shaft-358, a welding platform-359 and a sliding seat-36.
Detailed Description
The present invention will be described in detail with reference to the accompanying drawings.
As shown in fig. 1 to 6, the utility model relates to a capacitor pin wire welding machine, which comprises a frame 1, wherein the frame 1 is provided with a feeding mechanism 2, a welding mechanism 3 is arranged beside the feeding mechanism 2, the feeding mechanism 2 comprises a material tray 20, a material flattening portion 21 is arranged outside the material tray 20, a material pressing wheel 22 is arranged between the material tray 20 and the material flattening portion 21, a feeding portion 23 is arranged beside the material flattening portion 21, a pushing cylinder 24 is arranged below the frame 1, an output end of the pushing cylinder 24 is in driving connection with a pushing rod 25, an end of the pushing rod 25 is connected with a cutter holder 26, the cutter holder 26 is provided with a material cutting knife 27, the frame 1 is fixedly provided with a guide sleeve 28 in sliding connection with the pushing rod 25, the welding mechanism 3 comprises a translation cylinder 30, an output end of the translation cylinder 30 is in driving connection with an installation stand 31, the bottom of installation grudging post 31 is provided with rotating electrical machines 32, rotating electrical machines 32's output drive is connected with dwang 33, dwang 33 is provided with presss from both sides material portion 34, the side of installation grudging post 31 is provided with weld part 35.
When the material tray is in operation, rolled pin wires are stored in the material tray 20, the pin wires are subjected to primary pressing operation of the material pressing wheel 22 and secondary flattening and shaping operation of the material flattening portion 21, the feeding portion 23 clamps and pulls the pin wires to move to the position of the material cutting knife 27, then the translation cylinder 30 drives the installation vertical frame 31 to move towards the direction of the feeding portion 23, the pin wires are clamped from the feeding portion 23 through the material clamping portion 34, the ejector cylinder 24 drives the ejector rod 25 to move upwards, the pin wires with preset length are cut through the material cutting knife 27 of the knife holder 26, finally the rotating rod 33 is driven to rotate by the rotating motor 32, the material clamping portion 34 is further driven to rotate 90 degrees towards the direction of the welding portion 35, the pin wires and the capacitor are welded through the welding portion 35, and the pin wires and the capacitor are welded on a film of a pin wire capacitor. The utility model discloses the realization carries out automatic pay-off and weldment work to the pin wire rod of condenser, improves welding precision, satisfies the high-quality production requirement of high efficiency, effective reduction in production cost.
As shown in fig. 1 and fig. 2, the feeding portion 23 of the present embodiment includes a feeding through groove 231, a rodless cylinder 232 is transversely disposed below the feeding through groove 231, an output end of the rodless cylinder 232 is connected to a feeding cylinder 233, and an output end of the feeding cylinder 233 is connected to a feeding clamping jaw 234. Specifically, the feeding cylinder 233 clamps the pulling pin wire through the feeding clamping jaw 234, the rodless cylinder 232 drives the feeding cylinder 233 to move transversely, and the feeding clamping jaw 234 clamps the pulling pin wire to move directionally along the feeding through groove 231, so that linear and stable feeding is ensured, feeding efficiency is improved, and position deviation in the feeding process is avoided.
As shown in fig. 1, fig. 2 and fig. 3, the material flattening portion 21 of the present embodiment includes a lifting cylinder 211, an output end of the lifting cylinder 211 is connected to a flattening convex plate 212 in a driving manner, and the frame 1 is fixedly provided with a groove plate 213 working in cooperation with the flattening convex plate 212. Specifically, the lead wires move along the groove plate 213, and the lifting cylinder 211 drives the flattening convex plate 212 to move downwards into the groove plate 213 to press and flatten the lead wires, so that the lead wires are straighter and flatter in appearance, simple and compact in structure, and stable and reliable in operation.
As shown in fig. 1, fig. 2 and fig. 4, the middle of the tool holder 26 of the present embodiment is provided with an insertion hole 261, the top of the tool holder 26 is provided with an adjusting through hole 262, the blanking blade 27 is provided with a connecting through hole 271 matching with the adjusting through hole 262, the bottom of the tool holder 26 is provided with a positioning through hole 263, and the tool holder 26 is provided with a pressing gap 264 matching with the positioning through hole 263. Specifically, the ejector rod 25 is connected with the cutter holder 26 through the insertion hole 261, the fixing bolt is inserted into the cutter holder 26 through the positioning through hole 263, the cutter holder 26 is clamped and fixed on the ejector rod 25 by tightening the fixing bolt through reducing the pressing gap 264, the inclination angle of the cutting blade 27 is adjusted according to actual working requirements, and the connecting screw penetrates through the connecting through hole 271 of the cutting blade 27 and the adjusting through hole 262 of the cutter holder 26 to connect and fix the working position of the cutting blade 27, so that the operation is simple and convenient.
As shown in fig. 1 and 5, a sliding seat 36 is disposed between the mounting stand 31 and the frame 1, the material clamping portion 34 includes a mounting seat 341, the mounting seat 341 is provided with a pushing cylinder 342 and a first material clamping claw 343 and a second material clamping claw 344 which are disposed opposite to each other up and down, an output end of the pushing cylinder 342 is connected with a horizontal pushing inclined block 345, connecting columns 346 are connected between the first material clamping claw 343, the second material clamping claw 344 and the mounting seat 341, an action column 347 is disposed between the first material clamping claw 343 and the second material clamping claw 344, and end portions of the first material clamping claw 343 and the second material clamping claw 344 are provided with pulleys 348 which are matched with the horizontal pushing inclined block 345. Specifically, the translation cylinder 30 drives the installation stand 31 to move towards the feeding portion 23, the installation stand 31 moves along the machine frame 1 through the sliding seat 36, the friction resistance is effectively reduced, the movement is stable and rapid, the pushing cylinder 342 drives the horizontal pushing inclined block 345 to move forward, the pulleys 348 of the first clamping claw 343 and the second clamping claw 344 respectively roll along the inclined surface of the horizontal pushing inclined block 345, and then the first material clamping claw 343 and the second material clamping claw 344 are continuously close to each other and apply force to be pressed on the action column 347, the first material clamping claw 343 and the second material clamping claw 344 rotate along the respective connecting columns 346 respectively to realize the opening action between the first material clamping claw 343 and the second material clamping claw 344, the pushing cylinder 342 drives the horizontal pushing inclined block 345 to move backwards, the acting force applied to the first material clamping claw 343 and the second material clamping claw 344 disappears, and the first material clamping claw 343 and the second material clamping claw 344 reset to the initial positions to realize the closing action between the first material clamping claw 343 and the second material clamping claw 344.
As shown in fig. 1 and 6, the welding part 35 of the present embodiment includes a mounting frame body 351, a pressing cylinder 352 is disposed at an outer side of the mounting frame body 351, an upper rotation plate 353 and a lower rotation plate 354 are drivingly connected to an output end of the pressing cylinder 352, a first hinge shaft 355 is connected between the upper rotation plate 353 and the lower rotation plate 354, a hinge main shaft 356 is disposed at a top of the mounting frame body 351, the hinge main shaft 356 is hinged to the upper rotation plate 353, a welding machine 357 is disposed at the lower rotation plate 354, a second hinge shaft 358 is connected between the lower rotation plate 354 and the welding machine 357, and a welding platform 359 is disposed at a bottom of the mounting frame body 351. Specifically, the output shaft of the extrusion cylinder 352 pushes the upper rotation plate 353 and the lower rotation plate 354 to move forward, one end of the upper rotation plate 353 swings downward around the hinge main shaft 356, the other end of the upper rotation plate 353 drives the lower rotation plate 354 to move downward through the first hinge shaft 355, so that the welding machine 357 moves downward together, and the pin wire clamped by the material clamping part 34 and placed on the welding platform 359 is welded together with the capacitor through the welding machine 357.
The above description is only for the preferred embodiment of the present invention, and for those skilled in the art, there are variations on the detailed description and the application scope according to the idea of the present invention, and the content of the description should not be construed as a limitation to the present invention.

Claims (6)

1. The utility model provides a condenser pin wire rod welding machine, includes the frame, its characterized in that: the frame is provided with a feeding mechanism, a welding mechanism is arranged beside the feeding mechanism, the feeding mechanism comprises a material disc, a material flattening part is arranged on the outer side of the material disc, a material pressing wheel is arranged between the material disc and the material flattening part, a feeding part is arranged beside the material flattening part, a pushing cylinder is arranged below the frame, the output end of the pushing cylinder is in driving connection with a pushing rod, the end part of the pushing rod is connected with a tool apron, the tool apron is provided with a material cutting knife, the frame is fixedly provided with a guide sleeve in sliding connection with the pushing rod, the welding mechanism comprises a translation cylinder, the output end of the translation cylinder is in driving connection with an installation vertical frame, the bottom of the installation vertical frame is provided with a rotating motor, the output end of the rotating motor is in driving connection with a rotating rod, and the rotating rod is provided with a material clamping, the side of installation grudging post is provided with the welding part.
2. The capacitor pin wire bonding machine of claim 1, wherein: the feeding portion comprises a feeding through groove, a rodless cylinder is transversely arranged below the feeding through groove, the output end of the rodless cylinder is connected with the feeding cylinder in a driving mode, and the output end of the feeding cylinder is connected with the feeding clamping jaw in a driving mode.
3. The capacitor pin wire bonding machine of claim 1, wherein: the material flattening portion comprises a lifting cylinder, the output end of the lifting cylinder is connected with a flattening convex plate in a driving mode, and a groove plate matched with the flattening convex plate to work is fixedly arranged on the machine frame.
4. The capacitor pin wire bonding machine of claim 1, wherein: the middle part of the cutter holder is provided with an inserting hole, the top of the cutter holder is provided with an adjusting through hole, the blanking cutter is provided with a connecting through hole matched with the adjusting through hole, the bottom of the cutter holder is provided with a positioning through hole, and a pressing gap matched with the positioning through hole is formed in the cutter holder.
5. The capacitor pin wire bonding machine of claim 1, wherein: be provided with the slide between installation grudging post and the frame, press from both sides material portion including the mount pad, the mount pad is provided with first double-layered material claw, the second that promote the cylinder and set up relatively from top to bottom and presss from both sides the material claw, the output that promotes the cylinder is connected with the horizontal migration sloping block, all be connected with the spliced pole between first double-layered material claw, the second presss from both sides the material claw and the mount pad, be provided with the effect post between first double-layered material claw and the second presss from both sides the material claw, the tip that first double-layered material claw and second pressed from both sides the material claw all is provided with the pulley with horizontal migration sloping block matching work.
6. The capacitor pin wire bonding machine of claim 1, wherein: the welding part includes the installation framework, the outside of installation framework is provided with the extrusion cylinder, the output drive of extrusion cylinder is connected with last pivot and lower pivot, be connected with first articulated shaft between last pivot and the lower pivot, the top of installation framework is provided with articulated main shaft, articulated main shaft is articulated with last pivot, lower pivot is provided with the welding machine, be connected with the second articulated shaft between lower pivot and the welding machine, the bottom of installation framework is provided with welded platform.
CN201921375037.7U 2019-08-22 2019-08-22 Condenser pin wire rod welding machine Active CN210789611U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921375037.7U CN210789611U (en) 2019-08-22 2019-08-22 Condenser pin wire rod welding machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921375037.7U CN210789611U (en) 2019-08-22 2019-08-22 Condenser pin wire rod welding machine

Publications (1)

Publication Number Publication Date
CN210789611U true CN210789611U (en) 2020-06-19

Family

ID=71237858

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921375037.7U Active CN210789611U (en) 2019-08-22 2019-08-22 Condenser pin wire rod welding machine

Country Status (1)

Country Link
CN (1) CN210789611U (en)

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