CN214443857U - Laser welding auxiliary device for automobile shock absorber - Google Patents

Laser welding auxiliary device for automobile shock absorber Download PDF

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Publication number
CN214443857U
CN214443857U CN202120068060.2U CN202120068060U CN214443857U CN 214443857 U CN214443857 U CN 214443857U CN 202120068060 U CN202120068060 U CN 202120068060U CN 214443857 U CN214443857 U CN 214443857U
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China
Prior art keywords
horizontal
support
screw rod
oil storage
storage cylinder
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CN202120068060.2U
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Chinese (zh)
Inventor
徐浩
赵浩翰
张博强
梅文龙
吴心平
李辉
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Xuancheng Xieying Auto Parts Technology Co ltd
Henan University of Technology
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Xuancheng Xieying Auto Parts Technology Co ltd
Henan University of Technology
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Abstract

A laser welding auxiliary device for an automobile shock absorber comprises a horizontal operating platform, wherein a sliding support is arranged on one side of the top surface of the horizontal operating platform, a first stepping motor is horizontally erected on the sliding support, and a power output end of the first stepping motor is fixedly connected with a fixing frame for vertically and fixedly clamping an oil storage cylinder; the opposite side is provided with the fixed pedestal that can overturn on the horizontal operation platform top surface, the vertical second step motor that has erect on the fixed pedestal, the power take off end of second step motor is connected with the steering converter, the power take off end fixedly connected with who turns to the converter is used for the triangle claw dish of the fixed centre gripping solenoid valve cylinder of level, the sliding support passes through the tight mechanism orientation in gyro wheel top that can auto-lock spacing triangle claw dish one side lateral shifting. The utility model effectively increases the clamping force to the workpiece, can achieve the effect of synchronous rotation, and ensures the unification of welding points in welding; the lighting assembly with the semicircular structure has good lighting effect.

Description

Laser welding auxiliary device for automobile shock absorber
Technical Field
The utility model belongs to the technical field of the welding, in particular to laser welding auxiliary device to automobile shock absorber oil storage cylinder assembly.
Background
In laser welding, a laser beam with high energy density is used as a heat source and is used as an efficient and precise welding method, the energy of the laser welding is concentrated, a heated area is small, and a part is not easy to generate thermal deformation, so the laser welding is more and more applied to the welding of automobile parts with higher precision requirements, and the laser welding also becomes an important method for welding automobile shock absorber parts.
Most of the existing laser welding auxiliary devices belong to special devices, and for welding parts, such as an automobile shock absorber oil storage cylinder assembly, which have high requirements on precision, the existing devices can cause the oil storage cylinder assembly to shake due to incapability of clamping, or cause errors in the welding process and even scrapping of parts due to unsynchronized rotating speed of two components, namely the oil storage cylinder and an electromagnetic valve cylinder, which need to be welded in the rotating process; in addition, most of the matched illuminating lamps of the existing device at the welding position adopt single-position irradiation, and the illuminating effect is poor.
SUMMERY OF THE UTILITY MODEL
The utility model discloses not enough to prior art exists, provide one kind and can enough guarantee the tight effect of clamp of both sides work piece, do not produce again at a rotational speed poor, the good laser welding auxiliary device for automobile shock absorber of welding position illuminating effect moreover, concrete technical scheme is as follows:
a laser welding auxiliary device for an automobile shock absorber comprises a horizontal operating platform, wherein a sliding support is arranged on one side of the top surface of the horizontal operating platform, a first stepping motor is horizontally erected on the sliding support, and a power output end of the first stepping motor is fixedly connected with a fixing frame used for vertically and fixedly clamping an oil storage cylinder; the other side of the top surface of the horizontal operation table is provided with a reversible fixed pedestal, a second stepping motor is vertically erected on the fixed pedestal, the power output end of the second stepping motor is connected with a steering converter, the power output end of the steering converter is fixedly connected with a triangular claw disc for horizontally and fixedly clamping a cylinder barrel of an electromagnetic valve, the triangular claw disc and the fixed frame are positioned on the same horizontal line, and the sliding support transversely moves towards one side of the triangular claw disc through a self-locking and limiting roller jacking mechanism;
the horizontal operating platform comprises two supporting legs which are oppositely arranged at intervals, a horizontal panel is fixedly installed on each supporting leg, a fracture is arranged on the top surface of each horizontal panel, a groove-shaped enclosure is connected below the fracture, and the oil storage cylinder is arranged in the enclosure in a hanging mode;
the LED lamp is characterized in that a semicircular lighting assembly is detachably clamped on the bottom surface of the enclosing barrier, the lighting assembly comprises a mounting seat, the mounting seat is of a cuboid structure, two ends of the bottom surface of the mounting seat are respectively and symmetrically connected with a baffle plate in a perpendicular mode, the baffle plate and the bottom surface of the mounting seat are enclosed to form a clamping groove matched with the bottom surface of the enclosing barrier, the middle of the top surface of the mounting seat is inwards provided with a groove along the long edge direction of the mounting seat in a transverse mode, sliding grooves of an arc structure are symmetrically formed in the side wall of the groove respectively, a lamp holder of the semicircular structure with the same radian is inserted into the sliding grooves in a circumferential sliding mode, slots of the arc structure are circumferentially formed in the middle of the inner arc surface of the lamp holder, and LED flexible lamp strips matched with the slots are embedded in the slots.
Further, the roller jacking mechanism comprises a lead screw transmission assembly, the lead screw transmission assembly is arranged on the top surface of the horizontal operation table on one side of the sliding support and comprises a support, a transmission cylinder with an internal thread is horizontally erected on the support, a lead screw is screwed in the transmission cylinder, one end of the lead screw is fixedly connected with a conical tip, and the other end of the lead screw is fixedly connected with a round roller.
Further, the mount includes first backup pad, first backup pad is the L shape structure of handstand, install the backup plate of arc structure perpendicularly on the vertical portion medial surface of first backup pad, the radian of backup plate with the radian of oil storage cylinder is unanimous, skew on the horizontal part of first backup pad backup plate one side is run through and is seted up a through-hole, insert in the through-hole and establish a screw rod, the upper end of screw rod is located through the spiro union nut on the horizontal part of first backup pad keeps vertical hanging, the cover is equipped with the oil storage cylinder on the screw rod, the oil storage cylinder is located first backup pad is inboard, and with the backup plate looks butt, the oil storage cylinder passes through the horizontal part of first backup pad is in with the spiro union nut and the gasket of tip are pressed from both sides tightly fixedly each other under the screw rod.
Further, the pedestal includes that two vertical settings are relative are in support on the horizontal operation bench top surface, the support is fan-shaped structure, and its fan-shaped central angle is 90, every be close to its cambered surface punishment on the support and do not the symmetry run through the slotted hole of seting up arc structure, the radian of slotted hole with the cambered surface radian of support is unanimous, it is equipped with matched with bracing piece with it to slide to insert in the slotted hole, two the support passes through bracing piece horizontal bridging, the support is inboard fixed mounting has the second backup pad on the bracing piece, second backup pad is put on the shelf and is equipped with the second step motor, bracing piece both ends spiro union has the handle respectively, the bracing piece passes through both sides the handle with the support presss from both sides the fastening is fixed.
Furthermore, the second support plate is of an inverted L-shaped structure, the horizontal portion of the second support plate is provided with the second stepping motor in an erected mode, and a power output end of the second stepping motor extends into the inner side of the second support plate and is connected with the steering converter installed on the vertical portion of the second support plate.
Furthermore, handles are respectively arranged on the outer cambered surfaces of the two end parts of the lamp holder, and the radius of the lamp holder is larger than the length of the screw rod.
The utility model has the advantages that:
the utility model discloses a mount and triangle claw dish that lie in same water flat line are vertical fixed centre gripping oil storage cylinder, horizontal fixed centre gripping solenoid valve cylinder respectively, and through gyro wheel tight mechanism of top indirect horizontal top to the mount tightly, the clamp force to the work piece has effectively been increased, the effectual shake phenomenon of avoiding the longer oil storage cylinder of size to produce in rotatory process, the error that produces in the welding process has effectively been reduced, both sides all use the step motor control oil storage cylinder of the same model and the rotation of solenoid valve cylinder two subassemblies, open and close simultaneously, do not produce the difference in rotation speed, can reach synchronous rotatory effect, the unification of welding point position in the welding has been guaranteed; the roller jacking mechanism has a self-locking limiting function and is convenient for welding personnel to operate; in addition, the bottom surface of the surrounding baffle at the welding position is provided with the lighting assembly of the semicircular structure, multidirectional annular irradiation can be formed, the lighting effect is good, the rotation of the oil storage cylinder in the welding process is not hindered, and the disassembly and the assembly are also convenient.
Drawings
Fig. 1 shows a schematic perspective view of a laser welding assistance device according to the present invention;
fig. 2 is a front view of the laser welding assistance device of the present invention;
FIG. 3 is a schematic perspective view of the oil reservoir holder of the present invention;
FIG. 4 is a schematic view showing the welding positions of the oil reservoir and the solenoid valve cylinder in the oil reservoir assembly;
fig. 5 shows a schematic structural diagram of the lighting assembly of the present invention;
fig. 6 shows a schematic perspective view of the mounting base of the present invention;
fig. 7 shows a schematic view of a three-dimensional structure of the combination of the lamp holder and the LED flexible light strip according to the present invention;
fig. 8 is a schematic view of a partial three-dimensional structure of a lamp socket according to the present invention;
fig. 9 shows a schematic view of a partial structure of the lighting assembly of the present invention mounted on the enclosure;
fig. 10 shows the schematic structural diagram of the position of the oil storage cylinder assembly and the lighting assembly when the oil storage cylinder assembly is disassembled and assembled.
Shown in the figure: 1. a round roller; 2. the screw rod transmission assembly; 21. a support; 22. a transmission cylinder; 23. a screw rod; 24. a tip; 3. a first stepper motor; 4. a sliding support; 5. a fixed mount; 51. a first support plate; 52. a backup plate; 53. a through hole; 531. a screw; 532. a gasket; 533. a nut; 6. a triangular claw disk; 7. a second stepping motor; 8. a steering converter; 9. a fixed pedestal; 91. a support; 92. a slot; 93. a support bar; 94. a handle; 95. a second support plate; 10. a horizontal operation table; 101. supporting legs; 102. a horizontal panel; 1021. fencing; 11. an oil storage cylinder assembly; 111. an oil storage cylinder; 112. a cylinder barrel of the electromagnetic valve; 12. a lighting assembly; 121. a mounting seat; 1211. a groove; 1212. a chute; 122. a baffle plate; 1221. a card slot; 123. a lamp socket; 1231. an LED flexible light strip; 1232. a slot; 124. a handle.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is further described in detail with reference to the following embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
As shown in fig. 1 and 4, the laser welding auxiliary device for the automobile shock absorber comprises a horizontal operating platform 10, wherein a sliding support 4 is arranged on one side of the top surface of the horizontal operating platform 10, a first stepping motor 3 is horizontally erected on the sliding support 4, and a fixed frame 5 for vertically and fixedly clamping an oil storage cylinder 111 is fixedly connected to the power output end of the first stepping motor 3; the other side of the top surface of the horizontal operating platform 10 is provided with a reversible fixed pedestal 9, a second stepping motor 7 is vertically erected on the fixed pedestal 9, the power output end of the second stepping motor 7 is connected with a steering converter 8, the power output end of the steering converter 8 is fixedly connected with a triangular claw disc 6 for horizontally and fixedly clamping an electromagnetic valve cylinder 112, the triangular claw disc 6 and the fixed frame 5 are positioned on the same horizontal line, and the sliding support 4 transversely moves towards one side of the triangular claw disc 6 through a self-locking and limiting roller jacking mechanism; through the technical scheme, the oil storage cylinder and the electromagnetic valve cylinder are vertically and fixedly clamped respectively by adopting the fixing frame and the triangular claw disc which are positioned on the same horizontal line, and the fixing frame is indirectly and transversely pressed by the roller pressing mechanism, so that the clamping force on a workpiece is effectively increased, the shaking phenomenon of the oil storage cylinder with a longer size in the rotating process is effectively avoided, the error generated in the welding process is effectively reduced, the stepping motors with the same type are used on two sides to control the rotation of the oil storage cylinder and the electromagnetic valve cylinder, the opening and closing are simultaneously carried out, the rotating speed difference is not generated, the synchronous rotating effect can be achieved, and the unification of welding point positions in the welding is ensured; in addition, the roller jacking mechanism has a self-locking limiting function, so that the operation of welding personnel is facilitated.
As shown in fig. 2, the horizontal operating platform 10 includes two supporting legs 101 disposed at an interval, a horizontal panel 102 is fixedly mounted on the supporting legs 101, a fracture is disposed on a top surface of the horizontal panel 102, a groove-shaped enclosure 1021 is connected below the fracture, and the oil storage cylinder 111 is suspended in the enclosure 1021; through the technical scheme, the horizontal operating platform 10 is used for fixing all operating devices, the height of the horizontal operating platform is matched with that of an external laser welding platform, and the groove-shaped enclosure 1021 can ensure the structural stability of the whole horizontal operating platform 10 and does not prevent the oil storage cylinder 111 from rotating in the welding process.
As shown in fig. 5 to 10, a lighting assembly 12 with a semicircular structure is detachably clamped on the bottom surface of the enclosure 1021, the lighting assembly 12 comprises a mounting seat 121, the mounting seat 121 is of a rectangular parallelepiped structure, the two ends of the bottom surface of the mounting seat 121 are respectively and vertically and symmetrically connected with the baffle plates 122, the two baffle plates 122 and the bottom surface of the mounting seat 121 enclose to form a clamping groove 1221 matched with the bottom surface of the enclosing baffle, a groove 1211 is transversely formed inwards in the middle of the top surface of the mounting seat 121 along the long side direction, the side walls of the groove 1211 are symmetrically provided with sliding grooves 1212 with an arc structure, the two sliding grooves 1212 are inserted with lamp holders 123 with a semicircular structure in a sliding manner along the circumferential direction, an arc-shaped slot 1232 is circumferentially formed in the middle of the inner arc surface of the lamp holder 123, and an LED flexible lamp strip 1231 adapted to the slot 1232 is embedded in the slot 1232; the LED flexible lamp strip 1231 is powered by an external power supply; through the technical scheme, the lighting assembly 12 with the semicircular structure is arranged on the bottom surface of the enclosing barrier 1021 at the welding position, multi-directional annular irradiation can be formed, the lighting effect is good, the rotation of the oil storage cylinder 111 in the welding process is not hindered, and the disassembly and the assembly are also convenient.
As shown in fig. 2, the roller jacking mechanism includes a screw rod transmission assembly 2, the screw rod transmission assembly 2 is arranged on the top surface of the horizontal operating platform 10 on one side of the sliding support 4, the screw rod transmission assembly 2 includes a bracket 21, a transmission cylinder 22 with internal threads is horizontally erected on the bracket 21, a screw rod 23 is screwed in the transmission cylinder 22, one end of the screw rod 23 is fixedly connected with a conical tip 24, and the other end is fixedly connected with the round roller 1; through the technical scheme, the screw rod 23 is spirally displaced forwards in the transmission cylinder 22 through the rotation of the round roller 1, the tip 24 is pushed to tightly push the sliding support 4 at a constant speed, the self-rotation phenomenon is avoided when the tip is tightly pushed, and the operation of welding personnel is facilitated.
As shown in fig. 2 and 3, the fixing frame 5 includes a first support plate 51, the first support plate 51 has an inverted L-shaped structure, a backup plate 52 with an arc structure is vertically arranged on the inner side surface of the vertical part of the first supporting plate 51, the radian of the backup plate 52 is consistent with that of the oil storage cylinder 111, a through hole 53 is arranged on one side of the horizontal part of the first supporting plate 51 deviating from the backup plate 52, a screw 531 is inserted into the through hole 53, the upper end of the screw 531 is vertically suspended by a nut 533 screwed on the horizontal portion of the first support plate 51, the screw 531 is sleeved with an oil storage cylinder 111, the oil storage cylinder 111 is positioned at the inner side of the first supporting plate 51, the oil reservoir 111 is clamped and fixed to a nut 533 and a washer 532 screwed to the lower end of the screw 531 via a horizontal portion of the first support plate 51; through the technical scheme, the screw 531, the nut 533 and the gasket 532 which are arranged on the first supporting plate 51 are combined to cooperate with the backup plate 52 to well clamp and fix the oil storage cylinder 111 vertically, so that the phenomenon of shaking cannot be generated in the rotating process of the oil storage cylinder effectively.
As shown in fig. 2, the fixed pedestal 9 includes two supports 91 vertically arranged on the top surface of the horizontal operating platform 10, the supports 91 are of a fan-shaped structure, a central angle of the fan-shaped circle of the supports 91 is 90 °, each support 91 is provided with a slot 92 symmetrically penetrating through the arc surface and provided with an arc structure, an arc degree of the slot 92 is consistent with an arc degree of the support 91, a support rod 93 matched with the slot 92 is inserted in the slot 92 in a sliding manner, the two supports 91 are horizontally bridged by the support rod 93, a second support plate 95 is fixedly installed on the support rod 93 inside the support 91, the second stepping motor 7 is erected on the second support plate 95, handles 94 are screwed on two ends of the support rod 93, and the support rod 93 is clamped and fixed with the supports 91 by the handles 94 on two sides; through the technical scheme, the supporting rod 93 can be clamped and loosened by rotating the handles 94 on the two sides, the second supporting plate 95 can slide and move in the arc-shaped slotted hole 92 along with the supporting rod 93, and the oil storage cylinder 111 can be turned over up and down, so that the direction of the triangular claw disk 6 is changed, the oil storage cylinder 111 can be conveniently clamped, and the oil storage cylinder can also be used for welding other parts meeting requirements.
As shown in fig. 2, the second support plate 95 has an inverted L-shaped structure, the second stepping motor 7 is erected on the horizontal portion of the second support plate 95, and the power output end of the second stepping motor 7 extends into the inner side of the second support plate 95 and is connected to the steering converter 8 mounted on the vertical portion of the second support plate 95; with this solution, the second support plate 95 of the inverted L-shaped structure facilitates the fixed mounting of the respective components.
As shown in fig. 7 and 9, handles 124 are respectively disposed on the outer arc surfaces of the two end portions of the lamp holder 123, and the radius of the lamp holder 123 is greater than the length of the screw 531; by the technical scheme, the handle 124 is convenient for pulling the lamp holder 123; the radius of the lamp base 123 is larger than the length of the screw 531, which facilitates the disassembly and assembly of the screw 531 and does not prevent the rotation of the oil storage cylinder 111 in the welding process.
The utility model discloses a theory of operation is:
the utility model discloses when using, two sets of components of oil storage cylinder assembly 11 that will carry out the welding are installed and pressed from both sides respectively in corresponding region, oil storage cylinder 111 is installed and pressed from both sides on left mount 5, solenoid valve cylinder 112 is installed and pressed from both sides on the triangle claw dish 6 on right side, because the frock on left and right sides is in on same water flat line, can ensure the fixed position of welding, after oil storage cylinder assembly 11 is installed and pressed from both sides, utilize gyro wheel top tight mechanism top tight left and right parts, open both sides step motor after the top is tight, the step motor of both sides is opened and close simultaneously, ensure to install the rotational speed of left and right sides the same, open laser welding device, weld the welding position between oil storage cylinder 111 and the solenoid valve cylinder 112, after the welding region rotates enough circles, the welding is accomplished, loosen gyro wheel top tight mechanism, lift the work piece off, the work is finished;
in the welding process, only the two end faces of the lamp holder 123 are required to be flush, the LED flexible lamp strip 1231 is opened for irradiation, before and after welding, the oil storage cylinder 111 is required to be rotated to the horizontal position, the handle 124 is held, and the lamp holder 123 is pulled to slide in the circumferential direction, so that the end part of the lamp holder 123 on one side of the oil storage cylinder 111 is moved to the position below the oil storage cylinder 111, and the oil storage cylinder 111 is not required to be dismounted on the fixing frame 5.
The above description is only exemplary of the present invention and should not be taken as limiting the scope of the present invention, as any modifications, equivalents, improvements and the like made within the spirit and principles of the present invention are intended to be included within the scope of the present invention.

Claims (6)

1. The utility model provides a laser welding auxiliary device for automobile shock absorber which characterized in that: the oil storage device comprises a horizontal operating platform (10), wherein a sliding support (4) is arranged on one side of the top surface of the horizontal operating platform (10), a first stepping motor (3) is horizontally erected on the sliding support (4), and a fixing frame (5) for vertically and fixedly clamping an oil storage cylinder (111) is fixedly connected with the power output end of the first stepping motor (3); the other side of the top surface of the horizontal operating platform (10) is provided with a reversible fixed pedestal (9), a second stepping motor (7) is vertically erected on the fixed pedestal (9), the power output end of the second stepping motor (7) is connected with a steering converter (8), the power output end of the steering converter (8) is fixedly connected with a triangular claw disc (6) for horizontally and fixedly clamping an electromagnetic valve cylinder (112), the triangular claw disc (6) and the fixed frame (5) are positioned on the same horizontal line, and the sliding support (4) transversely moves towards one side of the triangular claw disc (6) through a self-locking limiting roller jacking mechanism;
the horizontal operating platform (10) comprises two supporting legs (101) which are oppositely arranged at intervals, a horizontal panel (102) is fixedly mounted on each supporting leg (101), a fracture is arranged on the top surface of each horizontal panel (102), a groove-shaped enclosure (1021) is connected below each fracture, and the oil storage cylinder (111) is arranged in the enclosure (1021) in a hanging mode;
the lighting assembly (12) with a semicircular structure is detachably clamped on the bottom surface of the enclosure (1021), the lighting assembly (12) comprises a mounting seat (121), the mounting seat (121) is of a cuboid structure, two ends of the bottom surface of the mounting seat (121) are respectively and symmetrically connected with baffles (122) in a vertical mode, the two baffles (122) and the bottom surface of the mounting seat (121) are enclosed to form a clamping groove (1221) matched with the bottom surface of the enclosure, a groove (1211) is transversely formed in the middle of the top surface of the mounting seat (121) inwards along the long side direction of the mounting seat in a transverse mode, sliding grooves (1212) with an arc structure are respectively and symmetrically formed in the side walls of the groove (1211), lamp holders (123) with semicircular structures and radian consistent with the sliding grooves are inserted in the sliding grooves (1212) in an inner circumferential direction, and slots (1232) with arc structures are formed in the middle of the inner arc surfaces of the lamp holders (123) in a circumferential direction, and the LED flexible lamp strip (1231) matched with the slot (1232) is embedded in the slot (1232).
2. The laser welding assistance device for an automobile shock absorber according to claim 1, characterized in that: the roller jacking mechanism comprises a screw rod transmission assembly (2), the screw rod transmission assembly (2) is arranged on the top surface of a horizontal operation table (10) on one side of the sliding support (4), the screw rod transmission assembly (2) comprises a support (21), a transmission cylinder (22) with an internal thread is horizontally erected on the support (21), a screw rod (23) is screwed in the transmission cylinder (22), one end of the screw rod (23) is fixedly connected with a conical tip (24), and the other end of the screw rod (23) is fixedly connected with a round roller (1).
3. The laser welding assistance device for an automobile shock absorber according to claim 1, characterized in that: mount (5) are including first backup pad (51), L shape structure that first backup pad (51) are handstand, install backup plate (52) of arc structure on the vertical portion medial surface of first backup pad (51) perpendicularly, the radian of backup plate (52) with the radian of oil storage cylinder (111) is unanimous, skew on the horizontal part of first backup pad (51) backup plate (52) one side is run through and is seted up a through-hole (53), insert in through-hole (53) and establish a screw rod (531), the upper end of screw rod (531) is located through the spiro union nut (533) on the horizontal part of first backup pad (51) keep vertical hanging, the cover is equipped with oil storage cylinder (111) on screw rod (531), oil storage cylinder (111) are located first backup pad (51) inboard, and with backup plate (52) draw close to meet mutually, oil storage cylinder (111) pass through the horizontal part of first backup pad (51) is in with the lower tip the spiro union of screw rod (531) is in the horizontal part of screw rod (531) The nut (533) and the washer (532) are clamped and fixed to each other.
4. The laser welding assistance device for an automobile shock absorber according to claim 1, characterized in that: fixed pedestal (9) include two relative vertical settings and are in support (91) on horizontal operation platform (10) top surface, support (91) are fan-shaped structure, and its fan-shaped central angle is 90, every be close to slotted hole (92) that arc structure was seted up in its cambered surface punishment symmetry respectively on support (91), the radian of slotted hole (92) with the cambered surface radian of support (91) is unanimous, it is equipped with matched with bracing piece (93) with it to slide in slotted hole (92), two support (91) pass through bracing piece (93) horizontal bridging, support (91) are inboard fixed mounting has second backup pad (95) on bracing piece (93), second backup pad (95) are put on the shelf the second step motor (7), bracing piece (93) both ends spiro union have handle (94) respectively, bracing piece (93) pass through both sides handle (94) with support (91) clamp is fixed.
5. The laser welding assistance device for an automobile shock absorber according to claim 4, characterized in that: the second supporting plate (95) is of an inverted L-shaped structure, the second stepping motor (7) is erected on the horizontal portion of the second supporting plate (95), and the power output end of the second stepping motor (7) extends into the inner side of the second supporting plate (95) and is connected with the steering converter (8) installed on the vertical portion of the second supporting plate (95).
6. The laser welding assistance device for an automobile shock absorber according to claim 3, characterized in that: handles (124) are respectively arranged on the outer arc surfaces of the two end parts of the lamp holder (123), and the radius of the lamp holder (123) is larger than the length of the screw rod (531).
CN202120068060.2U 2021-01-12 2021-01-12 Laser welding auxiliary device for automobile shock absorber Active CN214443857U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120068060.2U CN214443857U (en) 2021-01-12 2021-01-12 Laser welding auxiliary device for automobile shock absorber

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120068060.2U CN214443857U (en) 2021-01-12 2021-01-12 Laser welding auxiliary device for automobile shock absorber

Publications (1)

Publication Number Publication Date
CN214443857U true CN214443857U (en) 2021-10-22

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Application Number Title Priority Date Filing Date
CN202120068060.2U Active CN214443857U (en) 2021-01-12 2021-01-12 Laser welding auxiliary device for automobile shock absorber

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114227109A (en) * 2021-12-28 2022-03-25 张家港保税区亚鑫精密制管有限公司 Manipulator for fixing shock absorber during welding

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114227109A (en) * 2021-12-28 2022-03-25 张家港保税区亚鑫精密制管有限公司 Manipulator for fixing shock absorber during welding
CN114227109B (en) * 2021-12-28 2023-11-10 张家港保税区亚鑫精密制管有限公司 Manipulator for fixing shock absorber for welding

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