CN221312848U - Automobile safety airbag shell welding line - Google Patents

Automobile safety airbag shell welding line Download PDF

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Publication number
CN221312848U
CN221312848U CN202323247274.4U CN202323247274U CN221312848U CN 221312848 U CN221312848 U CN 221312848U CN 202323247274 U CN202323247274 U CN 202323247274U CN 221312848 U CN221312848 U CN 221312848U
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China
Prior art keywords
welding
hook
corner
station
bracket
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CN202323247274.4U
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Chinese (zh)
Inventor
房朋朋
邓高生
曾庆宏
彭瑞锋
莫丽敏
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Guangdong Pudian Automation Technology Co ltd
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Guangdong Pudian Automation Technology Co ltd
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Abstract

The utility model provides an automobile safety airbag shell welding line, which comprises a corner welding station, a hook welding station, a bracket welding station, an integral reinforcement welding station and a conveyor belt; the corner welding station comprises a corner welding projection welder; the hook welding station comprises a hook welding projection welder; the bracket welding station comprises a bracket welding projection welder; the integral reinforcement welding station comprises a processing table, a finished product table and an argon welding robot arranged between the processing table and the finished product table, wherein the argon welding robot comprises a six-axis robot and an argon welding gun arranged on the output end of the six-axis robot; the conveyer belt can be with the material transmission between corner welding projection welder, couple welding projection welder, support welding projection welder, processing platform, can simplify production process effectively, improves production efficiency, reduction in production cost, convenient management reduces workshop space and occupies.

Description

Automobile safety airbag shell welding line
Technical Field
The utility model relates to the technical field of welding of safety airbags, in particular to a welding line of an automobile safety airbag shell.
Background
In order to improve the safety of the passengers of the driver in the automobile, an airbag is generally installed on the automobile. The airbag housing 50 as shown in fig. 8 is required to be used in the manufacture of the airbag, and comprises a body 51, a hook piece 53 and a bracket 54, wherein the body 51 is a metal piece formed by bending, corners 52 are arranged on four sides, bumps are arranged on the hook piece 53 and the bracket 54 in order to adapt to the welding operation of a projection welding machine, corresponding hole sites are arranged on the body 51, and the hook piece 53 and the bracket 54 are positioned on the body 51 by aligning the bumps with the hole sites, so that projection welding processing is realized. At present, the processing procedure of the airbag housing 50 is performed separately by corner welding, hook welding, bracket welding and integral argon welding, namely materials are collected after the processing is finished by one step, and the materials are uniformly transferred to the next processing machine for the next processing, so that the operation procedure is complicated, the production efficiency is reduced, the production cost is increased, and the space occupation of equipment to a workshop is increased.
Disclosure of Invention
The utility model aims to solve the problems of providing an automobile safety airbag shell welding line, which simplifies the production process and improves the production efficiency.
The welding line for the automobile safety airbag shell comprises a corner welding station, a hook welding station, a bracket welding station, an integral reinforcement welding station and a conveyor belt; the corner welding station comprises a corner welding projection welder; the hook welding station comprises a hook welding projection welder; the bracket welding station comprises a bracket welding projection welder; the integral reinforcement welding station comprises a processing table, a finished product table and an argon welding robot arranged between the processing table and the finished product table, wherein the argon welding robot comprises a six-axis robot and an argon welding gun arranged on the output end of the six-axis robot; the conveyor belt can transfer materials between the corner welding projection welder, the hook welding projection welder, the bracket welding projection welder and the processing table.
Preferably, the corner welding projection welding machine comprises a first upper welding end and a first lower welding end, wherein a pressing block is detachably connected to the first upper welding end, a first positioning platform is arranged on the first lower welding end, first welding backing plates are detachably connected to two sides of the top of the first positioning platform, positioning components are arranged on two sides of the first positioning platform, and each positioning component comprises a mounting plate fixedly connected to the side wall of the first positioning platform, a clamping cylinder arranged on the mounting plate and a clamping block in driving connection with the clamping cylinder.
Preferably, the couple welding projection welder contains second upper weld end, second lower weld end, and the last detachable clamp plate that is connected with of second upper weld end is provided with the second location platform on the second lower weld end, and the second location platform top can be dismantled and is connected with the second welding backing plate, and second location platform bottom is provided with the layer board, and layer board top symmetry is provided with two splint.
Preferably, the bracket welding projection welding machine comprises a third upper welding end and a third lower welding end, wherein pressing columns are detachably connected to four sides of the bottom of the third upper welding end, a third positioning platform is arranged on the third lower welding end, and third welding backing plates are detachably connected to two sides of the top of the third positioning platform.
Preferably, the processing bench is fixedly connected with bottom plate, and the bottom plate top both sides all can be dismantled and are connected with fourth welding backing plate, and fourth welding backing plate top symmetry is provided with two welding supporting tables.
The beneficial effects of the utility model are as follows: the utility model provides an automobile safety airbag shell welding line, which integrates a corner welding station, a hook welding station, a bracket welding station and an integral reinforcement welding station, and uses a conveyor belt to convey materials among different stations, wherein one worker can be respectively distributed on the corner welding station, the hook welding station, the bracket welding station and the integral reinforcement welding station to carry out feeding and discharging operations of corresponding stations, the first worker is responsible for carrying out welding operations on corners by using a corner welding projection welder, the materials are conveyed to the position of the hook welding station after the corner welding is finished, the second worker uses the hook welding projection welder to weld hook pieces on a body by using a body after the corner welding, the materials are conveyed to the position of the bracket welding station after the hook pieces are welded, the third worker uses the bracket welding projection welder to weld the body by using the body, the material is conveyed to the position of a processing station after the bracket welding is finished, the fourth worker puts the materials on the processing station from the conveyor belt, and the six-axis robot controls the movement to carry out repair welding on each welding point on the safety airbag shell, so that the whole welding is ensured to be complete, the hook welding is put on the processing station after the processing is finished, the hook welding projection welder is put on the body, the production cost is effectively reduced, the production cost is reduced, and the production cost is effectively occupied.
Drawings
Fig. 1 illustrates an outline structure of the present utility model.
Fig. 2 illustrates a partially enlarged structural view of the portion a in fig. 1 according to the present utility model.
Fig. 3 illustrates a partially enlarged structural view of the portion B of fig. 1 according to the present utility model.
Fig. 4 illustrates a partially enlarged structural view of the C part of fig. 1 according to the present utility model.
Fig. 5 illustrates a partially enlarged structural view of the D portion of fig. 1 according to the present utility model.
Fig. 6 illustrates a corner welding state diagram of the present utility model.
Fig. 7 illustrates a welded state diagram of the hook member of the present utility model.
Fig. 8 illustrates a bracket welding state diagram of the present utility model.
Fig. 9 illustrates an exploded structural view of the airbag housing of the present utility model.
Reference numerals illustrate: the corner welding station 10, the corner welding projection welder 11, the first upper welding end 12, the press block 120, the first lower welding end 13, the first positioning platform 130, the first welding backing plate 131, the mounting plate 132, the clamping cylinder 133, the clamping block 134, the hook welding station 20, the hook welding projection welder 21, the second upper welding end 22, the press plate 220, the second lower welding end 23, the second positioning platform 230, the second welding backing plate 231, the pallet 232, the clamp plate 233, the bracket welding station 30, the bracket welding projection welder 31, the third upper welding end 32, the press column 320, the third lower welding end 33, the third positioning platform 330, the third welding backing plate 331, the integral reinforcement welding station 40, the processing table 41, the base plate 410, the fourth welding backing plate 411, the welding support table 412, the finished product table 42, the argon welding robot 43, the six-axis robot 430, the argon welding gun 431, the airbag housing 50, the body 51, the corner 52, the hook 53, and the bracket 54.
Detailed Description
For the purpose of making the objects, technical solutions and advantages of the embodiments of the present disclosure more apparent, the technical solutions of the embodiments of the present disclosure will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present disclosure. It will be apparent that the described embodiments are some, but not all, of the embodiments of the present disclosure.
All other embodiments, which can be made by one of ordinary skill in the art without the need for inventive faculty, are intended to be within the scope of the present disclosure, based on the described embodiments of the present disclosure.
Reference is made to fig. 1-9.
The utility model provides an automobile safety airbag shell welding line, which comprises a corner welding station 10, a hook welding station 20, a bracket welding station 30, an integral reinforcement welding station 40 and a conveyor belt; the corner welding station 10 comprises a corner welding projection welder 11; the hook welding station 20 comprises a hook welding projection welder 21; the bracket welding station 30 comprises a bracket welding projection welder 31; the integral reinforcement welding station 40 comprises a processing table 41, a finished product table 42 and an argon welding robot 43 arranged between the processing table 41 and the finished product table 42, wherein the argon welding robot 43 comprises a six-axis robot 430 and an argon welding gun 431 arranged on the output end of the six-axis robot 430; the conveyor belt may transport material between the corner welding projection welder 10, the hook welding projection welder 20, the bracket welding projection welder 30, and the processing station 41.
The welding machine has the working principle that the corner welding station 10, the hook welding station 20, the bracket welding station 30 and the whole reinforcement welding station 40 are integrated, materials are conveyed among different stations by using a conveyor belt, one worker can be respectively distributed on the corner welding station 10, the hook welding station 20, the bracket welding station 30 and the whole reinforcement welding station 40 to carry out loading and unloading operations of the corresponding stations, the first worker is responsible for carrying out welding operations on the corner 52 by using the corner welding projection welder 11, the materials are conveyed to the position of the hook welding station 20 after the corner 52 is welded, the second worker uses the hook welding projection welder 21 to weld the hook piece 53 on the body 51 by using the body 51 after the corner 52 is welded, the body 51 after the hook piece 53 is welded is conveyed to the position of the bracket welding station 30 by using the bracket welding projection welder 31, the bracket 54 is welded on the body 51, the material is conveyed to the position of the processing table 41 by using the bracket 54, the fourth worker is responsible for carrying out welding operations on the corner 52 by using the conveyor belt, the welding station 50 can be carried out repair welding on the shell 50 by using the six-axis robot 430 after the welding is completed, the welding efficiency of the welding station is reduced, the production welding machine can be effectively reduced, the production and the production cost can be effectively reduced, and the production and the welding efficiency can be effectively reduced.
Based on the above embodiment, the corner welding projection welder 11 comprises a first upper welding end 12 and a first lower welding end 13, wherein a pressing block 120 is detachably connected to the first upper welding end 12, a first positioning platform 130 is arranged on the first lower welding end 13, first welding backing plates 131 are detachably connected to two sides of the top of the first positioning platform 130, positioning components are arranged on two sides of the first positioning platform 130, and each positioning component comprises a mounting plate 132 fixedly connected to the side wall of the first positioning platform 130, a clamping cylinder 133 arranged on the mounting plate 132, and a clamping block 134 in driving connection with the clamping cylinder 133. Specifically, the outer end of the first positioning platform 130 is matched with the inner width of the body 51, the body 51 is sleeved on the first positioning platform 130, the top of the first welding backing plate 131 is connected with the inner sides of two corners 52 at one end side of the body 51, the clamping block 134 is driven by the clamping cylinders 133 at two sides to clamp the body 51, so that the body 51 is positioned, the first upper welding end 12 drives the pressing block 120 to descend and contact the corners 52, and simultaneous welding of the two corners 52 can be realized.
Based on the above embodiment, the hook welding projection welding machine 21 comprises a second upper welding end 22 and a second lower welding end 23, wherein the second upper welding end 22 is detachably connected with a pressing plate 220, the second lower welding end 23 is provided with a second positioning platform 230, the top of the second positioning platform 230 is detachably connected with a second welding backing plate 231, the bottom of the second positioning platform 230 is provided with a supporting plate 232, and the top of the supporting plate 232 is symmetrically provided with two clamping plates 233. Specifically, the width of the second positioning platform 230 is matched with the inner length of the body 51, the body 51 is sleeved on the second positioning platform 230, the inner wall of one side of the body 51, where the hook piece 53 is to be welded, is contacted with the second welding backing plate 231, the body 51 is clamped between the two clamping plates 233, the hook piece 53 is placed on the body 51, and the second upper welding end 22 drives the pressing plate 220 to descend and contact with the hook piece 53, so that the whole hook piece 53 can be welded on the body 51.
Based on the above embodiment, the bracket welding projection welder 31 includes a third upper welding end 32 and a third lower welding end 33, the four sides of the bottom of the third upper welding end 32 are all detachably connected with a pressing post 320, a third positioning platform 330 is disposed on the third lower welding end 33, and both sides of the top of the third positioning platform 330 are all detachably connected with a third welding backing plate 331. Specifically, the third positioning platform 330 is matched with the inside of the body 51, after the body 51 is sleeved on the third positioning platform 330, the third welding backing plates 331 on two sides are respectively connected with two sides of the top wall of the body 51, the support 54 is placed on the top of the body 51, the third upper welding end 32 drives the four pressing columns 320 to descend and contact with the support 54, and the support 54 can be welded on the body 51.
Based on the above embodiment, the processing table 41 is fixedly connected with the bottom plate 410, both sides of the top of the bottom plate 410 are detachably connected with the fourth welding backing plate 411, and two welding support tables 412 are symmetrically arranged on the top of the fourth welding backing plate 411. The body 51 after three welding processes is sleeved between the four welding support tables 412, so that the airbag housing 50 can be supported and positioned, and the argon welder robot 43 can perform repair welding operation conveniently.
The above embodiments are merely illustrative of the preferred embodiments of the present utility model and are not intended to limit the scope of the present utility model, and various modifications and improvements made by those skilled in the art to the technical solution of the present utility model should fall within the scope of protection defined by the claims of the present utility model without departing from the spirit of the design of the present utility model.

Claims (5)

1. The welding line for the shell of the automobile safety airbag is characterized by comprising a corner welding station, a hook welding station, a bracket welding station, an integral reinforcement welding station and a conveyor belt; the corner welding station comprises a corner welding projection welder; the hook welding station comprises a hook welding projection welder; the bracket welding station comprises a bracket welding projection welder; the integral reinforcement welding station comprises a processing table, a finished product table and an argon welding robot arranged between the processing table and the finished product table, wherein the argon welding robot comprises a six-axis robot and an argon welding gun arranged at the output end of the six-axis robot; the conveyor belt can transfer materials among the corner welding projection welder, the hook welding projection welder, the bracket welding projection welder and the processing table.
2. The automobile safety airbag shell welding line according to claim 1, wherein the corner welding projection welding machine comprises a first upper welding end and a first lower welding end, wherein a pressing block is detachably connected to the first upper welding end, a first positioning platform is arranged on the first lower welding end, first welding backing plates are detachably connected to two sides of the top of the first positioning platform, positioning components are arranged on two sides of the first positioning platform, and each positioning component comprises a mounting plate fixedly connected to the side wall of the first positioning platform, a clamping cylinder arranged on the mounting plate and a clamping block in driving connection with the clamping cylinder.
3. The automobile safety airbag shell welding line according to claim 2, wherein the hook welding projection welding machine comprises a second upper welding end and a second lower welding end, a pressing plate is detachably connected to the second upper welding end, a second positioning platform is arranged on the second lower welding end, a second welding backing plate is detachably connected to the top of the second positioning platform, a supporting plate is arranged at the bottom of the second positioning platform, and two clamping plates are symmetrically arranged at the top of the supporting plate.
4. The welding line for the shell of the automobile safety airbag according to claim 3, wherein the bracket welding projection welding machine comprises a third upper welding end and a third lower welding end, press columns are detachably connected to four sides of the bottom of the third upper welding end, a third positioning platform is arranged on the third lower welding end, and third welding backing plates are detachably connected to two sides of the top of the third positioning platform.
5. The welding line for an automobile safety airbag shell according to claim 4, wherein a bottom plate is fixedly connected to the processing table, fourth welding backing plates are detachably connected to two sides of the top of the bottom plate, and two welding support tables are symmetrically arranged on the top of the fourth welding backing plates.
CN202323247274.4U 2023-11-30 2023-11-30 Automobile safety airbag shell welding line Active CN221312848U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202323247274.4U CN221312848U (en) 2023-11-30 2023-11-30 Automobile safety airbag shell welding line

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202323247274.4U CN221312848U (en) 2023-11-30 2023-11-30 Automobile safety airbag shell welding line

Publications (1)

Publication Number Publication Date
CN221312848U true CN221312848U (en) 2024-07-12

Family

ID=91793673

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202323247274.4U Active CN221312848U (en) 2023-11-30 2023-11-30 Automobile safety airbag shell welding line

Country Status (1)

Country Link
CN (1) CN221312848U (en)

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