An automatically flipped ultra-thin metal frame welding assembly

By combining the frame clamping component and the internal support component, the problems of swaying and impact of the ultra-thin metal frame during welding and flipping are solved, realizing multi-directional flexible support and automated collection of welding slag, thus improving welding quality and efficiency.

CN120901596BActive Publication Date: 2025-12-09南通诚业德精密组件有限公司
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Patent Information

Application Number
CN202511432654.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-10-09
Publication Date
2025-12-09
Estimated Expiration
2045-10-09

AI Technical Summary

Technical Problem

Existing welding flipping fixtures are prone to causing the ultra-thin metal frame to wobble and be subjected to mechanical impacts during the flipping process, which affects welding quality and efficiency, and it is difficult to achieve multi-directional flexible support.

Method used

The design combines frame clamping components and frame internal support components with a flipping fixture design. Through the cooperation of stop liner and buffer stop components, multi-directional flexible support is achieved, and buffer stop is provided during the flipping process. At the same time, air jet knife is used to collect welding slag.

Benefits of technology

It avoids deformation and displacement during the welding process, improves welding quality and efficiency, reduces mechanical impact damage, simplifies cleaning work, and reduces the labor intensity of operators.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to welding equipment manufacturing technical field, specifically to a kind of automatic overturning ultra-thin metal frame welding assembly, including welding base, the upper end of the welding base is slidably installed with mobile welding frame, the upper end of the welding machine set is movably connected with welding machine set, the upper surface of the welding base is fixedly installed with fixed limiting seat, the center inner side bottom surface of the fixed limiting seat is provided with welding slag collection groove. By adopting the structure optimization design of frame clamping assembly and frame inner support assembly cooperation with overturning tool, multidirectional flexible resistance is carried out on ultra-thin metal frame, and deformation during welding is avoided;By cooperating with buffer stop component, the buffer stop of overturning frame after overturning is carried out, mechanical impact of overturning frame when overturning in place can be avoided, so that the overturning frame is buffered when stopping, the service life is prolonged, the metal frame is avoided to be offset, and automatic jet collection of welding slag can be assisted.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of welding equipment manufacturing, in particular to an automatic overturning ultra-thin metal frame welding assembly. BACKGROUND

[0002] The ultra-thin metal is cut, bent and the like to become the shape of the required part, and then the point welding is assembled manually, and finally the metal frame is formed by overall welding. During the welding process, the four sides of the workpiece frame and the bent corners need to be welded, so the workpiece frame needs to be overturned by using a welding tool during the welding process. In the above case, manual welding is limited by the space of the workpiece shell, and the welding efficiency is low and the welding difficulty is great. At the same time, the existing tool is difficult to overturn the workpiece frame, and the workpiece frame is easy to be damaged during overturning.

[0003] In the prior art, a kind of overturning welding tool with publication number CN112589359B belongs to the technical field of self-rotating rotorcraft frame assembly, including frame body, workbench, fixed assembly, first positioning assembly, second positioning assembly and third positioning assembly, which improves the welding quality by overturning welding tool.

[0004] In order to solve the problem that the existing tool is easy to deform during welding and affect the product quality, multiple positioning assemblies are used to realize the stability of positioning welding.

[0005] The workbench between the frame bodies is overturned by the driving mechanism, but in the actual overturning process, the frame is easy to swing or deviate after overturning due to the effect of suspension and its own gravity, and the mechanical impact when overturning in place is easy to damage the frame, resulting in error during multi-surface welding and affecting the welding effect. The traditional welding overturning tool has a single structure and is difficult to realize the multi-directional flexible support of the frame.

[0006] Therefore, the present application provides an automatic overturning ultra-thin metal frame welding assembly to solve the problem that the existing welding overturning tool lacks overturning stability structure, which causes the workpiece to deviate and affects the welding effect and product welding quality. SUMMARY

[0007] In view of the deficiencies in the prior art, the present application aims to provide an automatic overturning ultra-thin metal frame welding assembly to solve the problems raised in the background art.

[0008] In order to achieve the above object, the present application provides the following technical scheme: an automatic overturning ultrathin metal frame welding assembly, comprising a welding base, a movable welding frame is slidably installed at the upper end of the welding base, a welding machine group is movably connected to the upper end of the welding machine group, a fixed limiting seat is fixedly installed on the upper surface of the welding base, a welding slag collecting groove is formed in the center of the inner side of the fixed limiting seat, an overturning tool is rotatably installed on the inner side of the fixed limiting seat, the overturning tool comprises an overturning frame, a buffer stop assembly is arranged on the upper surface of the fixed limiting seat and is distributed on both sides of the overturning frame, a stop lining plate is fixedly installed on one side of the overturning frame, and the outer surface of the stop lining plate is movably abutted with the buffer stop assembly; a frame clamping assembly and a frame inner support assembly are arranged on the inner side of the overturning frame, the frame clamping assembly comprises a frame clamping seat and a driving box, and the frame inner support assembly comprises a limiting truss, a movable piece and a limiting piece; the buffer stop assembly comprises a buffer limiting frame, an outer limiting rod and an inner jacking piece are arranged on the inner side of the buffer limiting frame, the inner jacking piece is movably installed on the inner side of the outer limiting rod, one end of the outer side of the inner jacking piece movably abuts with the outer surface of the stop lining plate, a pressing plate is fixedly connected to the end of the inner jacking piece away from the stop lining plate, an elastic capsule is movably abutted at the other end of the pressing plate, the elastic capsule is fixedly installed on the upper side surface of the fixed limiting seat, and a jet air knife is arranged on the side of the elastic capsule close to the welding slag collecting groove.

[0009] Preferably, the frame clamping seat is in the shape of a "Fang" character-shaped plate structure, a receiving groove is formed in the outer side inner wall of the frame clamping seat, the driving box is fixedly installed on the inner side of the receiving groove, a reserved groove is formed in the inner wall of the side of the frame clamping seat away from the receiving groove, a compensation moving groove is formed in one side of the reserved groove, a sliding groove is formed in the inner wall of the compensation moving groove, and the sliding groove and the receiving groove are mutually penetrated.

[0010] Preferably, a horizontal frame is movably installed on the inner side of the driving box, a tooth block is fixedly connected to the inner side of the horizontal frame, a driving gear is rotatably engaged with the inner side surface of the tooth block, the driving gear comprises a motor and a rotating rod, the motor is fixedly installed on the upper side surface of the frame clamping seat, the rotating rod is fixedly installed on the output shaft of the motor, and the central inner surface of the driving gear is fixedly connected with the outer surface of the rotating rod.

[0011] Preferably, a pin column is fixedly connected to each end of the horizontal frame, a connecting rubber head is threadedly connected to the outer surface of each pin column, and the outer surfaces of the two groups of connecting rubber heads are slidably connected with the inner walls of the driving box.

[0012] Preferably, a horizontal sliding slot is arranged on the inner wall of one side of the driving box, a connecting block is slidably connected to the inner surface of the horizontal sliding slot, one end of the connecting block is fixedly connected to the outer surface of the horizontal frame, and the other end of the connecting block is fixedly connected with a L-shaped frame, an array connecting rod is fixedly installed on the inner side of the L-shaped frame, the other end of the array connecting rod is fixedly connected with an array clamping frame, and an elastic strip is additionally fixed on the inner side of the array clamping frame.

[0013] Preferably, the two ends of the limiting truss are fixedly connected to the outer surfaces of the array clamping frames, respectively, a driving member is arranged on the inner side of the limiting truss, the driving member comprises a double-head motor fixedly installed on the inner side of the center of the limiting truss, bidirectional screws are connected to the output shafts of the double-head motor, respectively, the two ends of each bidirectional screw are rotatably connected to the inner walls of the two ends of the limiting truss, and screw blocks are threadedly connected to the outer surfaces of the two sides of each bidirectional screw, respectively, and the outer surfaces of the screw blocks are slidably connected to the inner walls of the limiting truss.

[0014] Preferably, the movable member comprises an oscillating arm, one end of the oscillating arm is movably connected to the outer surface of the bidirectional screw, and the other end of the oscillating arm is movably connected with a supporting frame plate.

[0015] Preferably, the limiting member comprises a limiting sleeve and a lifting rod, the limiting sleeve is fixedly installed on the outer side surface of the center of the limiting truss, the lifting rod is slidably installed on the inner side of the limiting sleeve, the other end of the lifting rod is connected to the inner side surface of the supporting frame plate, a spring member is fixedly connected to the end of the lifting rod away from the supporting frame plate, and the other end of the spring member is fixedly connected to the inner cavity of the limiting sleeve.

[0016] Preferably, the outer limiting rod is slidably connected to the upper end inner wall of the buffer limiting frame, a circular contact ball is fixedly connected to the upper end of the outer limiting rod, the outer limiting rod and the circular contact ball are formed in an integral structure, a sleeving spring is fixedly connected to the lower end of the circular contact ball, the other end of the sleeving spring is fixedly connected to the upper surface of the buffer limiting frame, a central groove is formed in the center of the outer limiting rod and the circular contact ball, and the inner jacking member is movably installed on the inner side of the central groove.

[0017] Preferably, the inner jacking member is composed of a jacking rod body, a top contact plate body and a sleeving cylinder body and is formed in an integral structure, the outer surface of the jacking rod body is slidably connected to the inner wall of the central groove, the top end outer surface of the top contact plate body is movably abutted against the outer surface of the stop lining plate, the inner side surface of the sleeving cylinder body is slidably connected to the lower outer surface of the outer limiting rod, a contact spring wire is fixedly connected to the inner cavity bottom surface of the sleeving cylinder body, and the other end of the contact spring wire is fixedly connected to the bottom end of the inner jacking member.

[0018] Compared with the prior art, the present application has the following advantages:

[0019] The automatic overturning ultra-thin metal frame welding assembly provided by the application realizes multi-directional flexible support on the ultra-thin metal frame by adopting the frame clamping assembly and the frame inner support assembly in cooperation with the structure optimization design of the overturning tool, avoids deformation during welding; the stop lining plate is matched with the buffer stop assembly to buffer and stop the overturned frame after overturning, which can avoid mechanical impact of the overturned frame when it is overturned in place, so that the overturned frame is buffered when it is stopped, prolongs the service life, avoids the deviation of the metal frame, and can assist in automatic jet collection of welding slag, increases the cleaning of the table top, and reduces the subsequent labor burden of the operator. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 It is a three-dimensional structure schematic diagram of the application;

[0021] Figure 2 It is a fixed limiting seat and overturning tool connection structure schematic diagram of the application;

[0022] Figure 3 It is a Figure 2 A-A section structure schematic diagram of the application;

[0023] Figure 4 It is a Figure 3 A enlarged structure schematic diagram of the application;

[0024] Figure 5 It is a Figure 2 B-B section structure schematic diagram of the application;

[0025] Figure 6 It is a Figure 5 B enlarged structure schematic diagram of the application;

[0026] Figure 7 It is an internal structure schematic diagram of the overturned frame of the application;

[0027] Figure 8 It is a frame inner support assembly clamping state structure schematic diagram of the metal frame of the application;

[0028] Figure 9 It is a frame inner support assembly and frame inner support assembly connection structure schematic diagram of the application;

[0029] Figure 10 It is a Figure 9 C-C section structure schematic diagram of the application;

[0030] Figure 11 It is an ultra-thin metal frame un-welded state structure schematic diagram of the application;

[0031] Figure 12 It is an overturned frame and buffer stop assembly connection structure schematic diagram of the application;

[0032] Figure 13 The frame card seat of the application Figure 12 The cross-sectional structure schematic diagram of D-D of the application

[0033] Figure 14 The frame card seat of the application Figure 13 The enlarged structure schematic diagram of C of the application

[0034] Figure 15 The frame card seat of the application The frame card seat of the application

[0035] The frame card seat of the application Figure 16 The frame card seat of the application The frame card seat of the application

[0036] In the figure: 1, welding base; 11, moving welding frame; 12, welding machine group; 2, fixed limiting seat; 20, welding slag collecting groove; 21, driving motor; 211, shaft rod; 3, overturning frame; 31, stop lining plate; 32, frame card seat; 320, accommodating groove; 3200, reserved groove; 3201, compensation moving groove; 3202, sliding groove; 33, driving box; 331, driving assembly; 332, driving gear; 333, horizontal frame; 3331, tooth block; 3332, pin column; 3333, connecting rubber head; 330, horizontal sliding groove; 334, connecting block; 335, U-shaped frame; 3351, array connecting rod; 336, array card frame; 3361, elastic strip; 34, limiting truss; 341, double-head motor; 342, bidirectional screw rod; 343, screwing block; 344, swinging arm rod; 345, supporting frame plate; 35, limiting sleeve; 351, lifting rod; 352, spring piece; 4, buffer limiting frame; 41, outer limiting rod; 411, circular contact ball; 412, sleeving spring; 42, inner jacking piece; 421, jacking rod body; 422, top contact plate body; 423, sleeving cylinder body; 424, abutting elastic wire; 43, pressing plate; 5, elastic capsule; 51, air jet air knife. DETAILED DESCRIPTION

[0037] In order to make the purpose, technical scheme of the application clear, complete description, and the advantages are more clear and obvious, the following will be further described in detail by combining with the drawings. It should be understood that the specific embodiments described here are part of the embodiments of the application, not all embodiments, only to explain the embodiments of the application, and not to limit the embodiments of the application, all other embodiments obtained by the ordinary skill in the art without creative labor belong to the scope of protection of the application.

[0038] Embodiment one, please refer to Figures 1-16The application provides a technical scheme: an automatic overturning ultrathin metal frame welding assembly, which comprises a welding base 1, a movable welding frame 11 slidably installed at the upper end of the welding base 1, a welding machine set 12 movably connected to the upper end of the welding machine set 12, a fixed limiting seat 2 fixedly installed on the upper surface of the welding base 1, a welding slag collecting groove 20 formed in the center inner bottom surface of the fixed limiting seat 2, a driving motor 21 fixedly installed at one end of the inner side of the fixed limiting seat 2, a shaft rod 211 fixedly connected to the output shaft of the driving motor 21, the outer surface of the shaft rod 211 fixedly connected with the inner wall of a turnover frame 3, a turnover tool rotatably installed on the inner side of the fixed limiting seat 2, the turnover tool comprising the turnover frame 3, a buffer stop assembly arranged on the upper surface of the fixed limiting seat 2 and distributed on both sides of the turnover frame 3; a stop lining plate 31 fixedly installed on one side of the turnover frame 3, the outer surface of the stop lining plate 31 movably abutting against the buffer stop assembly; a frame clamping assembly and a frame inner supporting assembly arranged on the inner side of the turnover frame 3, the frame clamping assembly comprising a frame clamping seat 32 and a driving box 33; the frame inner supporting assembly comprising a limiting truss 34, a movable piece and a limiting piece; the buffer stop assembly comprising a buffer limiting frame 4, the inner side of the buffer limiting frame 4 being provided with an outer limiting rod 41 and an inner jacking piece 42, the inner jacking piece 42 movably installed on the inner side of the outer limiting rod 41, and the outer side of one end of the inner jacking piece 42 movably abutting against the outer surface of the stop lining plate 31; the outer surface of the outer limiting rod 41 slidably connected with the upper end inner wall of the buffer limiting frame 4, the upper end of the outer limiting rod 41 fixedly connected with a circular contact ball 411, the outer limiting rod 41 and the circular contact ball 411 being an integral molding structure, the lower end of the circular contact ball 411 fixedly connected with a sleeving spring 412, the other end of the sleeving spring 412 fixedly connected with the upper surface of the buffer limiting frame 4, and the center of the outer limiting rod 41 and the circular contact ball 411 penetratingly provided with a center groove, the inner jacking piece 42 movably installed on the inner side of the center groove; the inner jacking piece 42 consisting of a jacking rod body 421, a top contact plate body 422 and a sleeving cylinder body 423 and being an integral molding structure, the outer surface of the jacking rod body 421 slidably connected with the inner wall of the center groove;

[0039] A plurality of ultra-thin metal frame bending frame parts are placed on the inner side of the turnover frame 3, and the frame bending corner needs to be welded by the welding machine set 12, so that a complete frame is formed between the plurality of bending frame parts and the sheet. Specifically, first, the frame clamping assembly and the frame inner support assembly cooperate with each other, and the structure of the turnover tooling is optimized, so that the ultra-thin metal frame is subjected to multi-directional flexible resistance, thereby avoiding deformation during welding. Through the turnover of the turnover tooling and the inner positioning metal frame, precise welding of different points is realized. When the welding on one side of the turnover frame 3 is completed, the control driving motor 21 is started, and the shaft rod 211 drives the turnover frame 3 to turn counterclockwise by 180°. At this time, the turnover frame 3 is completely turned to the position, the stop lining plate 31 is in contact with the outer limiting rod 41 and the inner jacking part 42, which weakens the mechanical impact when the turnover is in place. This further avoids displacement of the positioned metal frame, which affects the subsequent welding effect.

[0040] Embodiment two, refer to the attached Figures 1-16 On the basis of embodiment one, in order to realize clamping on the inner side of the width direction of the bending part of the ultra-thin metal frame: the frame clamping seat 32 is in the shape of a "H" plate structure, a receiving groove 320 is formed on the inner wall of the outer side of the frame clamping seat 32, a driving box 33 is fixedly installed on the inner side of the receiving groove 320, a reserved slot 3200 is formed on the inner wall of the side of the frame clamping seat 32 away from the receiving groove 320, a compensation moving slot 3201 is formed on one side of the reserved slot 3200, a sliding slot 3202 is formed on the inner wall of the compensation moving slot 3201, and the sliding slot 3202 and the receiving groove 320 are interconnected; a horizontal frame 333 is movably installed on the inner side of the driving box 33, a tooth block 3331 is fixedly connected to the inner side of the horizontal frame 333, a driving gear 332 is rotatably engaged with the inner surface of the tooth block 3331, a driving assembly 331 is arranged at the center of the driving gear 332, the driving assembly 331 is composed of a motor and a rotating rod, the motor is fixedly installed on the upper surface of the frame clamping seat 32, the rotating rod is fixedly installed on the output shaft of the motor, and the outer surface of the rotating rod is fixedly connected to the inner surface of the center of the driving gear 332; a pin column 3332 is fixedly connected to the two ends of the horizontal frame 333, a connecting rubber head 3333 is threadedly connected to the outer surface of the pin column 3332, and the outer surfaces of the two groups of connecting rubber heads 3333 are slidably connected to the inner walls of the driving box 33; a horizontal sliding slot 330 is formed on the inner wall of one side of the driving box 33, a connecting block 334 is slidably connected to the inner surface of the horizontal sliding slot 330, one end of the connecting block 334 is fixedly connected to the outer surface of the horizontal frame 333, the other end of the connecting block 334 is fixedly connected to a "H" shaped frame 335, the "H" shaped frame 335 is fixedly installed with an array of connecting rods 3351 on the inner side, the other end of the array of connecting rods 3351 is fixedly connected with an array of clamping frames 336, and the inner side of the array of clamping frames 336 is additionally provided with elastic strips 3361; the cross section of the array of clamping frames 336 is in the shape of "H", and the inner side of the width direction of the bending part of the ultra-thin metal frame is clamped;

[0041] Before welding, the lateral bends in the width direction of the multiple sets of metal frames to be welded are limited and fixed. Specifically, refer to the attached document. Figure 3 , Figure 4 , Figure 5 and Figure 6 As shown, the control motor starts, its output shaft rotates, and drives the rotating rod and the drive gear 332 to rotate synchronously. Here, the toothed block 3331 connected to the inner side of the horizontal frame 333 meshes with the outer surface of the drive gear 332. When the horizontal frame 333 moves left and right in the horizontal direction in the drive box 33, it synchronously drives the connecting block 334 and the C-shaped frame 335 to move as a whole. In the initial state, the array card holder 336 is inside the compensation slot 3201, which achieves the compensation of the gap in the compensation slot 3201, and the frame is clamped. When the component is running, the array card holder 336 disengages from the compensation shift groove 3201 and enters the reserved groove 3200. At this time, the array connecting rod 3351 slides against the inner wall of the slide groove 3202. The array card holder 336 then performs lateral clamping on the bent part of the metal frame in the width direction. It is worth noting that the elastic strip 3361 installed on the inner side of the array card holder 336 can rely on its elastic force to closely abut against the bent part of the metal frame, achieving flexible clamping and avoiding deformation and displacement.

[0042] Example 3, refer to Appendix Figures 1-16 Based on Embodiment 2, in order to achieve movable contact with the inner surface of the bent portion of the ultra-thin metal frame along its length: both ends of the limiting truss 34 are fixedly connected to the outer surface of the array card holder 336, and a driving component is provided on the inner side of the limiting truss 34. The driving component includes a double-headed motor 341 fixedly installed on the inner side of the center of the limiting truss 344. The output shaft of the double-headed motor 341 is connected to a bidirectional screw 342, and both ends of the bidirectional screw 342 are rotatably connected to the inner walls of both ends of the limiting truss 344. The outer surfaces of both sides of the bidirectional screw 342 are threadedly connected to screw blocks 343, and the outer surfaces of the screw blocks 343 are slidably connected to the inner wall of the limiting truss 344. The movable component includes a swing arm 344, one end of which... The outer surface of the bidirectional screw 342 is movably connected, and the other end of the swing arm 344 is movably connected to the support frame plate 345. The outer side of the support frame plate 345 is fixedly provided with the tentacles of the released lizard. The outer surface of the support frame plate 345 is in contact with the inner surface of the bending part of the ultra-thin metal frame in the length direction. The limiting component includes a limiting sleeve 35 and a lifting rod 351. The limiting sleeve 35 is fixedly installed on the outer surface of the center of the limiting truss 34. The lifting rod 351 is slidably installed on the inner side of the limiting sleeve 35. The other end of the lifting rod 351 is connected to the inner surface of the support frame plate 345. The end of the lifting rod 351 away from the support frame plate 345 is fixedly connected to a spring member 352. The other end of the spring member 352 is fixedly connected to the inner cavity of the limiting sleeve 35.

[0043] When multiple array brackets 336 are laterally clamped to the bent portion of the metal frame in the width direction, a limiting truss 34 is connected between two array brackets 336. At this time, the limiting truss 34 and the frame internal support components move synchronously, moving closer to one side of the metal frame. Then, according to the support requirements of the inner width of the metal frame, refer to the attached... Figures 9-10 As shown, the dual-head motor 341 drives the output shaft to rotate, which in turn drives the bidirectional screw 342 to rotate. Under the action of the bidirectional screw, the two sets of screw blocks 343 move towards the center. At this time, the angle between the swing arm 344 and the limiting truss 34 increases, thus driving the support frame plate 345 to move outward. Based on the inner width of the metal frame, the bending part in the length direction is supported. It should be noted that during the movement of the support frame plate 345, the lifting rod 351 moves inside the limiting sleeve 35, and the spring 352 stretches and contracts accordingly. The two form a limiting element for the longitudinal movement of the support frame plate 345, keeping the support frame plate 345 supported stably. In this way, by combining the frame clamping assembly and the frame inner support assembly, the metal frame is supported in multiple directions with flexibility, avoiding deformation of the bending part, and further improving welding efficiency and product quality.

[0044] Example 4, see attached document Figures 1-16 Based on Embodiment 3, in order to achieve auxiliary cleaning of welding slag: a pressure plate 43 is fixedly connected to one end of the inner lifting member 42 away from the stop liner 31, and an elastic bladder 5 is movably contacted at the other end of the pressure plate 43. The elastic bladder 5 is fixedly installed on the upper surface of the fixed limiting seat 2, and an air jet knife 51 is provided on the side of the elastic bladder 5 near the welding slag collection tank 20; the outer surface of the top of the top contact plate 422 is movably contacted with the outer surface of the stop liner 31, the inner surface of the sleeve 423 is slidably connected with the lower outer surface of the outer limiting rod 41, and an abutting spring wire 424 is fixedly connected to the bottom surface of the inner cavity of the sleeve 423. The other end of the abutting spring wire 424 is fixedly connected to the bottom end of the inner lifting member 42.

[0045] After the welding points on one side of the metal frame are completed, the tilting frame 3 and the inner metal frame are tilted. As the tilting frame 3 continues to tilt, the stop plate 31 contacts the buffer stop components installed on both sides of the tilting frame 3, at which point the buffer stop is triggered. Refer to the attached document. Figure 13 and Figure 14As shown, the stop lining plate 31 first contacts the top position of the top touch plate body 422, and in the continuous overturning process, the top touch plate body 422 is continuously pressed downward under the action of the pressure from above. As the pressing process proceeds, the top touch plate body 422 contacts the circular touch ball 411 on the outer limiting rod 41. At this time, the inner jacking piece 42 and the outer limiting rod 41 form an integral structure, which jointly bears the pressure in the overturning process. In the continuous overturning process, the inner jacking piece 42 and the outer limiting rod 41 integral structure remain stable under the extrusion action of the stop lining plate 31, and wait for the overturning frame 3 to be completely overturned into place. When the overturning frame 3 is completely overturned into place, the stop lining plate 31 is horizontal to the horizontal plane of the fixed limiting seat 2. At this time, the outer limiting rod 41 and the inner jacking piece 42 integrally drive the pressing plate 43 to extrude the elastic capsule body 5 on the bottom side. After the elastic capsule body 5 is extruded, the compressed gas inside the elastic capsule body 5 is sprayed out through the air jet knife 51. In this process, not only is the multiple buffering effect achieved, reducing the impact force in the overturning process, but also the sprayed gas is used to blow off the welding slag that falls on the surface of the fixed limiting seat 2 in the overturning process. The gas sprayed out by the air jet knife 51 blows the welding slag into the welding slag collecting groove 20 for centralized collection. This design not only improves the cleanliness of the welding process, but also reduces the time and cost of manual cleaning of the welding slag, thereby significantly improving the overall welding efficiency.

[0046] The working principle and use process of the present application: in actual use, first, a plurality of ultra-thin metal frames with completed frame bending are placed on the inner side of the turnover frame 3, the frame bending corner is welded by the welding machine group 12, the lateral bending part of the metal frame in the width direction is limited and fixed, the frame clamping assembly is operated, so that the array clamping frame 336 is separated from the compensation moving groove 3201, enters the reserved groove 3200 inside, and the array connecting rod 3351 and the inner wall of the sliding groove 3202 limit sliding at this time, the array clamping frame 336 at this time realizes lateral clamping of the metal frame width direction bending part, the elastic strip 3361 tightly touches the metal frame bending part, realizing flexible clamping; in addition, when a plurality of array clamping frames 336 are laterally clamped on the metal frame width direction bending part, a set of limiting truss 34 is connected between the two array clamping frames 336, at this time, the limiting truss 34 and the frame inner support assembly move synchronously, and move close to one side of the metal frame, at this time, according to the width resistance requirement of the inner side of the metal frame, the support frame plate 345 is driven to move outward, realizing resistance to the length direction bending part; in addition, when the welding point on one side of the metal frame is welded, the turnover frame 3 and the metal frame on the inner side are turned over, when the turnover frame 3 continues to turn over, the stop lining plate 31 contacts the buffer stop assembly installed on both sides of the turnover frame 3, at this time, the buffer stop is triggered, the stop lining plate 31 first contacts the top position of the top touch plate body 422, in the continuous turning process, the top touch plate body 422 is continuously pressed down under the action of the upper pressure, with the progress of the pressing process, the top touch plate body 422 contacts the circular touch ball 411 on the outer limiting rod 41, at this time, the inner lifting piece 42 and the outer limiting rod 41 form an integral structure, which jointly bears the pressure in the turning process, in the continuous turning process, under the extrusion action of the stop lining plate 31, the integral structure of the inner lifting piece 42 and the outer limiting rod 41 remains stable, and waits for the turnover frame 3 to be completely turned over; when the turnover frame 3 is completely turned over, the stop lining plate 31 is horizontal to the horizontal plane of the fixed limiting seat 2, at this time, the outer limiting rod 41 and the inner lifting piece 42 integrally drive the pressing plate 43 to extrude the elastic capsule 5 on the bottom side, after being extruded, the compressed gas in the elastic capsule 5 is sprayed out through the air knife 51.

[0047] Although embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to the embodiments without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An automatic overturning ultra-thin metal frame welding assembly, comprising a welding base (1), a mobile welding frame (11) is slidingly installed at the upper end of the welding base (1), and a welding machine set (12) is movably connected to the upper end of the mobile welding frame (11), characterized in that: The upper surface of the welding base (1) is fixedly provided with a fixed limiting seat (2), the center inner bottom surface of the fixed limiting seat (2) is provided with a welding slag collecting groove (20), the inner side of the fixed limiting seat (2) is rotatably provided with a turnover tool, the turnover tool comprises a turnover frame (3), the upper surface of the fixed limiting seat (2) is provided with a buffer stop component and is distributed on both sides of the turnover frame (3), one side of the turnover frame (3) is fixedly provided with a stop lining plate (31), and the outer surface of the stop lining plate (31) movably abuts against the buffer stop component; the inner side of the turnover frame (3) is provided with a frame clamping component and a frame inner supporting component, the frame clamping component comprises a frame clamping seat (32) and a driving box (33), the frame inner supporting component comprises a limiting truss (34), a movable element and a limiting element; the buffer stop component comprises a buffer limiting frame (4), the inner side of the buffer limiting frame (4) is provided with an outer limiting rod (41) and an inner jacking element (42), the inner jacking element (42) is movably arranged on the inner side of the outer limiting rod (41), the outer side of the inner jacking element (42) movably abuts against the outer surface of the stop lining plate (31), one end of the outer side of the inner jacking element (42) away from the stop lining plate (31) is fixedly connected with a pressing plate (43), the other end of the pressing plate (43) movably abuts against an elastic capsule (5), the elastic capsule (5) is fixedly arranged on the upper side surface of the fixed limiting seat (2), and one side of the elastic capsule (5) close to the welding slag collecting groove (20) is provided with a jet air knife (51); The frame clamping seat (32) is in a " " character-shaped plate structure, the outer side inner wall of the frame clamping seat (32) is provided with a containing groove (320), the driving box (33) is fixedly arranged on the inner side of the containing groove (320), the inner wall of the side of the frame clamping seat (32) away from the containing groove (320) is provided with a reserved groove (3200), the side of the reserved groove (3200) is provided with a compensation moving groove (3201), the inner wall of the compensation moving groove (3201) is provided with a sliding groove (3202), and the sliding groove (3202) and the containing groove (320) are mutually penetrated; The inner side of the driving box (33) is movably provided with a horizontal frame (333), the inner side of the horizontal frame (333) is fixedly connected with a tooth block (3331), the inner side surface of the tooth block (3331) is rotatably provided with a driving gear (332), the center of the driving gear (332) is provided with a driving assembly (331), the driving assembly (331) is composed of a motor and a rotating rod, the motor is fixedly arranged on the upper side surface of the frame clamping seat (32), the rotating rod is fixedly arranged on the output shaft of the motor, and the center inner surface of the driving gear (332) is fixedly connected with the outer surface of the rotating rod. Two ends of the horizontal frame (333) are fixedly connected with pin columns (3332), outer surfaces of the pin columns (3332) are threadedly connected with connecting rubber heads (3333), and outer surfaces of the two groups of connecting rubber heads (3333) are slidably connected with inner walls of the driving box (33). A horizontal sliding groove (330) is formed in one side inner wall of the driving box (33), an inner surface of the horizontal sliding groove (330) is slidably connected with a connecting block (334), one end of the connecting block (334) is fixedly connected with an outer surface of the horizontal frame (333), the other end of the connecting block (334) is fixedly connected with a N-shaped frame (335), an inner side of the N-shaped frame (335) is fixedly installed with an array connecting rod (3351), the other end of the array connecting rod (3351) is fixedly connected with an array clamping frame (336), and an inner side of the array clamping frame (336) is additionally provided with elastic strips (3361). Two ends of the limiting truss (34) are fixedly connected with outer surfaces of the array clamping frame (336), an inner side of the limiting truss (34) is provided with a driving member, the driving member comprises a double-head motor (341) fixedly installed in the center inner side of the limiting truss (34), output shafts of the double-head motor (341) are respectively connected with bidirectional screw rods (342), two ends of the bidirectional screw rods (342) are rotatably connected with two end inner walls of the limiting truss (34), outer surfaces of two sides of the bidirectional screw rods (342) are threadedly connected with screw connecting blocks (343), and outer surfaces of the screw connecting blocks (343) are slidably connected with inner walls of the limiting truss (34). The movable member comprises a swing arm rod (344), one end of the swing arm rod (344) is movably connected with an outer surface of the bidirectional screw rod (342), and the other end of the swing arm rod (344) is movably connected with a supporting frame plate (345). The limiting member comprises a limiting sleeve (35) and a lifting rod (351), the limiting sleeve (35) is fixedly installed on the center outer side surface of the limiting truss (34), the lifting rod (351) is slidably installed on the inner side of the limiting sleeve (35), the other end of the lifting rod (351) is connected with the inner side surface of the supporting frame plate (345), one end of the lifting rod (351) away from the supporting frame plate (345) is fixedly connected with a spring member (352), and the other end of the spring member (352) is fixedly connected with an inner cavity of the limiting sleeve (35).

2. The self-inverting, ultra-thin metal frame weldment assembly of claim 1, wherein: An outer surface of the outer limiting rod (41) is slidably connected with an upper end inner wall of the buffer limiting frame (4), an upper end of the outer limiting rod (41) is fixedly connected with a circular contact ball (411), the outer limiting rod (41) and the circular contact ball (411) are an integral molding structure, a lower end of the circular contact ball (411) is fixedly connected with a sleeving spring (412), the other end of the sleeving spring (412) is fixedly connected with an upper surface of the buffer limiting frame (4), a center groove is formed in the center of the outer limiting rod (41) and the circular contact ball (411), and the inner top lifting member (42) is movably installed on the inner side of the center groove.

3. The self-inverting, ultra-thin metal frame weldment assembly of claim 2, wherein: The inner jacking part (42) is composed of a jacking rod body (421), a top touch plate body (422) and a sleeve cylinder body (423) and is integrally formed, the outer surface of the jacking rod body (421) is in sliding connection with the inner wall of the central groove, the outer surface of the top end of the top touch plate body (422) is in active abutment with the outer surface of the stop lining plate (31), the inner side surface of the sleeve cylinder body (423) is in sliding connection with the lower outer surface of the outer limiting rod (41), the bottom surface of the inner cavity of the sleeve cylinder body (423) is fixedly connected with an abutting elastic wire (424), and the other end of the abutting elastic wire (424) is fixedly connected with the bottom end of the inner jacking part (42).

Citation Information

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