A pallet disc processing system
By designing an automated pallet processing system, which utilizes motors, cylinders, and clamping components to achieve automatic pallet handling, conveying, stamping, welding, and pressing, the system solves the problem of low efficiency caused by traditional manual handling and improves processing efficiency.
Patent Information
- Application Number
- CN202311588212.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-25
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2043-11-25
AI Technical Summary
Traditional flatbed pallet processing requires manual handling, resulting in high labor costs and reduced processing efficiency.
Design a flatbed truck pallet processing system, including a handling mechanism, a conveying mechanism, a stamping mechanism, a spot welding mechanism, an edge trimming mechanism, and a pressing mechanism on the machine base. The system uses motors, cylinders, and clamping components to automatically complete operations such as pallet handling, conveying, stamping, welding, and pressing.
Automated operation saves manpower and improves the processing efficiency and production efficiency of the lathe.
Smart Images

Figure CN117602364B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of vehicle disc processing, in particular to a flat plate vehicle disc processing system. BACKGROUND
[0002] In the process of processing the flat plate vehicle disc, the upper disc and the lower disc need to be punched, first spot welded, trimmed, second spot welded, and turned over, and then the upper disc and the lower disc are moved to the punching workbench, the upper disc is placed on the upper surface of the lower disc, the upper disc and the lower disc are overlapped, and then the punching device is used to punch the upper disc and the lower disc, so that the upper disc and the lower disc are tightly attached, and finally a formed disc is formed.
[0003] In the process of traditional production and processing of the disc, the disc needs to be manually carried by manpower, which consumes manpower and reduces the processing efficiency of the disc. SUMMARY
[0004] In order to save manpower and improve the processing efficiency of the disc, the present application provides a flat plate vehicle disc processing system.
[0005] The flat plate vehicle disc processing system provided by the present application adopts the following technical scheme:
[0006] A flat plate vehicle disc processing system, comprising a machine table and a disc placed on the machine table, a carrying mechanism is arranged on the machine table, the carrying mechanism comprises a horizontal carrying assembly arranged in the machine table, a vertical carrying assembly slidingly arranged in the machine table, and a clamping assembly arranged in the machine table, the horizontal carrying assembly comprises a mounting strip one arranged in the machine table, a motor one arranged beside the mounting strip one, a screw rod one fixed on the output shaft of the motor one, and a sliding block one threaded on the screw rod one, a sliding groove one is formed on the side surface of the mounting strip one, the screw rod one is rotationally arranged in the sliding groove one, and the sliding block one is slidingly arranged in the sliding groove one, the vertical carrying assembly comprises a mounting strip two arranged on the sliding block one, a motor two arranged on the mounting strip two, a screw rod two fixed on the output shaft of the motor two, and a sliding block two threaded on the screw rod two, a sliding groove two is formed on the side surface of the mounting strip two, the screw rod two is rotationally arranged in the sliding groove two, and the sliding block two is slidingly arranged in the sliding groove two, the clamping assembly comprises a mounting strip three rotationally arranged on the sliding block two, a lower clamping plate arranged on the mounting strip three, a motor three arranged on the mounting strip three, a rotating rod one fixed on the output shaft of the motor three, and an upper clamping plate arranged on the rotating rod one, the upper clamping plate is located directly above the lower clamping plate.
[0007] The installation strip one is arranged in the machine table, a sliding groove one is arranged on the side of the installation strip one, the motor one is arranged beside the installation strip one, the screw one is fixed on the output shaft of the motor one, the screw one is rotatably arranged in the sliding groove one, the sliding block one is threadedly sleeved on the screw one, the sliding block one is slidably arranged in the sliding groove one, the installation strip two is arranged on the sliding block one, a sliding groove two is arranged on the side of the installation strip two, the motor two is arranged on the installation strip two, the screw two is fixed on the output shaft of the motor two, the screw two is rotatably arranged in the sliding groove two, the sliding block two is threadedly sleeved on the screw two, the sliding block two is slidably arranged in the sliding groove two, the installation strip three is rotatably arranged on the sliding block two, the lower clamping plate is arranged on the installation strip three, the motor three is arranged on the installation strip three, the rotating rod one is fixed on the output shaft of the motor three, the upper clamping plate is arranged on the rotating rod one, the upper clamping plate is located directly above the lower clamping plate, when the trolley disc needs to be carried, the motor three is driven to rotate the rotating rod one, the rotating rod one drives the upper clamping plate to rotate, the trolley disc is clamped by the upper clamping plate and the lower clamping plate, the motor two is driven to rotate the screw two in the forward direction or the reverse direction, the screw two drives the sliding block two to slide upward or downward, the sliding block two drives the installation strip three to slide upward or downward, thereby driving the trolley disc to move upward or downward, the motor one is driven to rotate the screw one in the forward direction or the reverse direction, the screw one drives the sliding block one to slide left or right, the sliding block one drives the installation strip two to slide left or right, thereby driving the trolley disc to move left or right, so that the trolley disc is conveniently carried, manpower is saved, and the processing efficiency of the trolley disc is improved.
[0008] Preferably, the machine table is provided with a conveying mechanism for conveying the trolley disc, the conveying mechanism comprises a sliding rail one arranged in the machine table, a motor four for driving the sliding rail one to slide, and a feeding assembly arranged on the sliding rail one, the feeding assembly comprises a connecting horizontal rod arranged on the sliding rail one, a connecting vertical rod arranged on the connecting horizontal rod, a driving cylinder arranged on the connecting vertical rod, a mounting plate one arranged on the output shaft of the driving cylinder, and a suction disc one for sucking the trolley disc, the machine table is provided with an installation strip four, the sliding rail one is slidably arranged on the installation strip four, the motor four is arranged on the installation strip four, and the suction disc one is arranged on the mounting plate one.
[0009] By adopting the above technical scheme, the sliding rail one is slidably arranged on the installation strip four, the motor four is arranged on the installation strip four, the connecting horizontal rod is arranged on the sliding rail one, the connecting vertical rod is arranged on the connecting horizontal rod, the driving cylinder is arranged on the connecting vertical rod, the mounting plate one is arranged on the output shaft of the driving cylinder, and the suction disc one is arranged on the mounting plate one, when the trolley disc needs to be carried, the trolley disc is sucked by the suction disc one, the motor four is driven to slide the sliding rail one forward or backward, the sliding rail one drives the connecting horizontal rod to slide forward or backward, the connecting horizontal rod drives the connecting vertical rod to slide forward or backward, the connecting vertical rod drives the mounting plate one to slide forward or backward, thereby driving the trolley disc to move forward or backward, so that the trolley disc is conveniently carried.
[0010] Preferably, the machine table is provided with a punching mechanism, the punching mechanism comprises a cylinder one provided in the machine table, a punching block one provided on the output shaft of the cylinder one and a punching table one provided in the machine table, and the punching table one is located directly below the punching block one.
[0011] By adopting the above technical scheme, the cylinder one is provided in the machine table, the punching block one is provided on the output shaft of the cylinder one, the punching table one is provided in the machine table, and the punching table one is located directly below the punching block one. When the disc needs to be punched, the fourth motor is driven, the slide rail one is driven by the fourth motor to slide towards the punching table, the mounting plate one is moved to the upper side of the punching table, the disc is placed on the punching table, the cylinder one is driven, and the cylinder one drives the punching block to move towards the disc, so that the disc is punched.
[0012] Preferably, the machine table is provided with a first spot welding mechanism, the first spot welding mechanism comprises a cylinder two provided in the machine table, a mounting plate two provided on the output shaft of the cylinder two, a support frame provided in the machine table, an electrode provided on the support frame, a first welding head for welding the electrode on the disc, and a first conveying assembly for conveying the electrode, the first welding head is provided on the mounting plate two, and the support frame is located directly below the mounting plate two.
[0013] By adopting the above technical scheme, the cylinder two is provided in the machine table, the mounting plate two is provided on the output shaft of the cylinder two, the support frame is provided in the machine table, the electrode is placed on the support frame, the first welding head is provided on the mounting plate two, and the support frame is located directly below the mounting plate two. When the electrode needs to be welded with the disc, the fourth motor is driven, the slide rail one is driven by the fourth motor to slide towards the support frame, the mounting plate one is moved to the upper side of the support frame, the disc is placed above the electrode, the cylinder two is driven, the cylinder two drives the mounting plate two to slide towards the disc, the mounting plate two drives the first welding head to slide towards the disc, and the first welding head welds the electrode with the disc, so that the electrode is welded with the disc.
[0014] Preferably, the first conveying assembly comprises a mounting table one provided beside the machine table, a fifth motor provided in the mounting table one, a screw three fixed on the output shaft of the fifth motor, a sliding strip sleeved on the screw three, a cylinder three provided on the sliding strip, a support strip provided on the output shaft of the cylinder three and a support plate provided on the support strip, a sliding groove is formed in the machine table, the screw three is rotationally arranged in the sliding groove, the sliding strip is slidingly arranged in the sliding groove, and the electrode is placed on the support plate.
[0015] By adopting the technical scheme, the mounting table one is arranged beside the machine table, the motor five is arranged in the mounting table one, the screw three is fixed on the output shaft of the motor five, the sliding strip is sleeved on the screw three, the sliding strip is slidingly arranged in the sliding groove, the air cylinder three is arranged on the sliding strip, the supporting strip is arranged on the output shaft of the air cylinder three, the supporting plate is arranged on the supporting strip, and the welding strip is placed on the supporting plate. When the welding strip needs to be conveyed, the motor five is driven, the motor five drives the screw three to rotate, the screw three drives the sliding strip to move towards the supporting frame, the sliding strip drives the air cylinder three to move towards the supporting frame, the air cylinder three drives the supporting strip to move towards the supporting frame, the supporting strip drives the supporting plate to move towards the supporting frame, and the supporting plate drives the welding strip to move towards the supporting frame. When the welding strip reaches above the supporting frame, the air cylinder three is driven to drive the supporting strip to move downwards, the supporting strip drives the supporting plate to move downwards, so that the welding strip is placed on the supporting frame. Then, the motor five is driven to drive the screw three to rotate reversely, the screw three drives the sliding strip to move away from the supporting frame, so that the conveying of the welding strip is completed, and the welding strip is conveniently conveyed.
[0016] Preferably, the machine table is provided with an edge cutting mechanism, the edge cutting mechanism comprising an air cylinder four arranged in the machine table, an edge cutter arranged on the output shaft of the air cylinder four, and an edge cutting table arranged in the machine table, the edge cutting table being located directly below the edge cutter.
[0017] By adopting the technical scheme, the air cylinder four is arranged in the machine table, the edge cutter is arranged on the output shaft of the air cylinder four, and the edge cutting table is arranged in the machine table, the edge cutting table being located directly below the edge cutter. When the disc needs to be edge cut, the motor four is driven to drive the sliding rail one to slide towards the edge cutting table, the mounting plate one is moved to above the edge cutting table, and the disc is placed on the edge cutting table. The air cylinder four is driven to drive the edge cutter to move towards the disc, so that the disc is edge cut by the edge cutter, and the disc is conveniently edge cut.
[0018] Preferably, the machine table is provided with a second spot welding mechanism, the second spot welding mechanism comprising an air cylinder five arranged in the machine table, a mounting plate three arranged on the output shaft of the air cylinder five, a welding table arranged in the machine table, a welding block placed above the welding table, a second conveying assembly for conveying the welding block, and a second welding head for welding the welding block and the disc, the second welding head being arranged on the mounting plate three, and the welding table being located directly below the mounting plate three.
[0019] By adopting the technical scheme, the air cylinder five is arranged in the machine table, the mounting plate three is arranged on the output shaft of the air cylinder five, the welding table is arranged in the machine table, the second welding head is arranged on the mounting plate three, the welding table is located directly below the mounting plate three, and the welding block is placed above the welding table. When the welding block needs to be welded with the disc, the driving motor four is driven to drive the sliding rail one to slide towards the welding table, the mounting plate one is moved above the welding table, the disc is placed on the welding table, the second conveying assembly places the second welding head on the disc, the air cylinder five is driven to drive the mounting plate three to move towards the disc, the mounting plate three drives the second welding head to move towards the disc, and the second welding head welds the welding block with the disc, so that the disc and the welding block are conveniently welded.
[0020] Preferably, the second conveying assembly comprises a mounting table two arranged beside the machine table, a motor six arranged in the mounting table two, a screw four fixed on the output shaft of the motor six, a conveying frame sleeved on the screw four, a suction disc two for sucking the welding block, and a guide rod arranged in the mounting table two. The suction disc two is arranged on the conveying frame, and the conveying frame is slidably sleeved on the guide rod.
[0021] By adopting the technical scheme, the mounting table two is arranged beside the machine table, the motor six is arranged in the mounting table two, the screw four is fixed on the output shaft of the motor six, the conveying frame is sleeved on the screw four, the conveying frame is slidably sleeved on the guide rod, and the suction disc two is arranged on the conveying frame. When the welding head needs to be conveyed, the motor six is driven to drive the screw four to rotate, the screw four drives the conveying frame to move towards the welding table, the conveying frame drives the suction disc two to move towards the welding table, and the suction disc two drives the welding head to move towards the welding table. When the welding head reaches above the disc on the welding table, the welding head is released and placed on the upper surface of the disc. Then, the motor six is driven to drive the screw four to rotate in the opposite direction, the screw four drives the conveying frame to move away from the welding table, so that the conveying of the welding head is completed, and the welding head is conveniently conveyed.
[0022] Preferably, the conveying mechanism comprises a turnover assembly arranged on the sliding block two, the turnover assembly comprises a motor seven arranged on the sliding block two and a rotating rod fixed on the output shaft of the motor seven, and the rotating rod is welded and fixed with the mounting strip three.
[0023] By adopting the technical scheme, the motor seven is arranged on the sliding block two, the rotating rod is fixed on the output shaft of the motor seven, and the rotating rod is welded and fixed with the mounting strip three. When the disc needs to be turned over, the motor seven is driven to drive the rotating rod to rotate, the rotating rod drives the mounting strip three to rotate, and the mounting strip three drives the disc to rotate, so that the disc is conveniently turned over.
[0024] Preferably, the machine table is provided with a pressing mechanism, the pressing mechanism comprises a cylinder six provided in the machine table, a stamping block two provided on the output shaft of the cylinder six and a stamping table two provided in the machine table, and the stamping table two is located directly below the stamping block two.
[0025] By adopting the above technical scheme, the cylinder six is provided in the machine table, the stamping block two is provided on the output shaft of the cylinder six, and the stamping table two is provided in the machine table, and the stamping table two is located directly below the stamping block two. When different disc plates need to be pressed, the motor four is driven to drive the sliding rail one to slide, the sliding rail one drives the connecting horizontal rod to slide, the connecting horizontal rod drives the connecting vertical rod to slide, the connecting vertical rod drives the mounting plate one to slide, and the mounting plate one drives the disc plate to move. The first disc plate is placed on the stamping table two, the second disc plate is placed on the upper surface of the first disc plate by another same disc plate processing system, so that the two disc plates overlap, the cylinder six is driven to move the stamping block two to the direction of approaching the stamping table two, so that the stamping block two presses the overlapping different disc plates, and the different disc plates are conveniently pressed.
[0026] In summary, the present application has at least one of the following beneficial technical effects:
[0027] 1. The mounting strip one is provided in the machine table, a sliding groove one is formed on the side surface of the mounting strip one, a motor one is provided beside the mounting strip one, a screw rod one is fixed on the output shaft of the motor one, the screw rod one is rotationally arranged in the sliding groove one, a sliding block one is threadedly sleeved on the screw rod one, the sliding block one is slidingly arranged in the sliding groove one, a mounting strip two is arranged on the sliding block one, a sliding groove two is formed on the side surface of the mounting strip two, a motor two is arranged on the mounting strip two, a screw rod two is fixed on the output shaft of the motor two, the screw rod two is rotationally arranged in the sliding groove two, a sliding block two is threadedly sleeved on the screw rod two, the sliding block two is slidingly arranged in the sliding groove two, a mounting strip three is rotationally arranged on the sliding block two, a lower clamping plate is arranged on the mounting strip three, a motor three is arranged on the mounting strip three, a rotating rod one is fixed on the output shaft of the motor three, an upper clamping plate is arranged on the rotating rod one, and the upper clamping plate is located directly above the lower clamping plate. When the disc plate needs to be carried, the motor three is driven to rotate the rotating rod one, the rotating rod one drives the upper clamping plate to rotate, the disc plate is clamped by the upper clamping plate and the lower clamping plate, the motor two is driven to rotate the screw rod two in the forward or reverse direction, the screw rod two drives the sliding block two to slide upward or downward, the sliding block two drives the mounting strip three to slide upward or downward, thereby driving the disc plate to move upward or downward, the motor one is driven to rotate the screw rod one in the forward or reverse direction, the screw rod one drives the sliding block one to slide left or right, the sliding block one drives the mounting strip two to slide left or right, thereby driving the disc plate to move left or right, the disc plate is conveniently carried, manpower is saved, and the processing efficiency of the disc plate is improved;
[0028] 2. The slide rail one is arranged on the mounting strip four, the motor four is arranged on the mounting strip four, the connecting cross rod is arranged on the slide rail one, the connecting vertical rod is arranged on the connecting cross rod, the drive cylinder is arranged on the connecting vertical rod, the mounting plate one is arranged on the drive cylinder output shaft, the suction cup one is arranged on the mounting plate one, when the carrier plate needs to be carried, the carrier plate is sucked by the suction cup one, the drive motor four is driven, the motor four drives the slide rail one to slide forward or backward, the slide rail one drives the connecting cross rod to slide forward or backward, the connecting cross rod drives the connecting vertical rod to slide forward or backward, the connecting vertical rod drives the mounting plate one to slide forward or backward, so as to drive the carrier plate to move forward or backward, which is convenient for carrying the carrier plate;
[0029] 3. The cylinder six is arranged in the machine table, the stamping block two is arranged on the cylinder six output shaft, the stamping table two is arranged in the machine table, and the stamping table two is located directly below the stamping block two. When different carrier plates need to be pressed together, the drive motor four is driven, the motor four drives the slide rail one to slide, the slide rail one drives the connecting cross rod to slide, the connecting cross rod drives the connecting vertical rod to slide, the connecting vertical rod drives the mounting plate one to slide, and the mounting plate one drives the carrier plate to move. The first carrier plate is placed on the stamping table two, the second carrier plate is placed on the upper surface of the first carrier plate by another same carrier plate processing system, so that the two carrier plates overlap, the cylinder six is driven, the cylinder six drives the stamping block two to move towards the stamping table two, so that the stamping block two presses the overlapping different carrier plates together, which is convenient for pressing different carrier plates together. BRIEF DESCRIPTION OF DRAWINGS
[0030] Figure 1 It is the overall structure schematic diagram of the carrier plate processing system in the embodiment of the application.
[0031] Figure 2 It is the connecting structure schematic diagram of the placing table two in the embodiment of the application.
[0032] Figure 3 It is the connecting structure schematic diagram of the feeding assembly in the embodiment of the application.
[0033] Figure 4 It is Figure 1 The partial enlarged view of A in FIG. 6.
[0034] Figure 5 It is Figure 1 The partial enlarged view of B in FIG. 6.
[0035] Figure 6 It is the sectional view of the mounting table one in the embodiment of the application.
[0036] Figure 7 It is Figure 1 The partial enlarged view of C in FIG. 6.
[0037] Figure 8 It is Figure 1 The partial enlarged view of D in FIG. 6.
[0038] Figure 9 is the connection structure schematic view of the second conveying group in the embodiment of the application.
[0039] Figure 10 is the connection structure schematic view of the third placing table in the embodiment of the application.
[0040] Legend:
[0041] 1, machine table; 11, first placing table; 111, first support rod; 112, first shutter; 113, connecting rod; 114, fourth mounting strip; 115, placing rack; 1151, fourth support rod; 1152, I-shaped placing plate; 116, sliding groove; 12, second placing table; 121, second support rod; 122, second shutter; 13, third placing table; 131, third support rod; 132, third shutter; 2, carrying mechanism; 21, horizontal carrying assembly; 211, first mounting strip; 2111, first sliding groove; 212, first motor; 213, first screw rod; 214, first sliding block; 22, vertical carrying assembly; 221, second mounting strip; 2211, second sliding groove; 222, second motor; 223, second screw rod; 23, clamping assembly; 231, third mounting strip; 232, lower clamping plate; 233, third motor; 234, upper clamping plate; 24, overturning assembly; 241, seventh motor; 3, conveying mechanism; 31, first sliding rail; 32, fourth motor; 33, feeding assembly; 331, connecting horizontal rod; 332, connecting vertical rod; 333, driving cylinder; 334, first mounting plate; 335, first suction disc; 4, stamping mechanism; 41, first cylinder; 42, first stamping block; 43, first stamping table; 5, first spot welding mechanism; 51, second cylinder; 52, second mounting plate; 53, support rack; 54, welding rod; 55, first welding head; 56, first conveying assembly; 561, first mounting table; 562, fifth motor; 563, third screw rod; 564, sliding strip; 565, third cylinder; 566, support strip; 567, support plate; 6, edge cutting mechanism; 61, fourth cylinder; 62, edge cutter; 63, edge cutting table; 7, second spot welding mechanism; 71, fifth cylinder; 72, third mounting plate; 73, welding table; 74, second conveying assembly; 741, second mounting table; 742, fourth screw rod; 743, conveying rack; 744, second suction disc; 745, guide rod; 75, second welding head; 8, pressing mechanism; 81, sixth cylinder; 82, second stamping block; 83, second stamping table. DETAILED DESCRIPTION
[0042] The following will be described in detail with reference to the accompanying drawings. Figures 1-10 The application will be further described in detail.
[0043] The embodiment of the application discloses a disc processing system of a flatbed truck. Figure 1As shown, the disc machining system comprises a machine table 1, a carrying mechanism 2, a conveying mechanism 3, a punching mechanism 4, a first spot welding mechanism 5, a trimming mechanism 6, a second spot welding mechanism 7 and a pressing mechanism 8. The machine table 1 comprises a placement table one 11, a placement table two 12 and a placement table three 13.
[0044] Referring to Figure 1 As shown, the length direction of the placement table one 11 is parallel to the bottom surface. The placement table three 13 is horizontally welded and fixed on one side of the length direction of the placement table one 11. The top surface of the placement table three 13 is flush with the top surface of the placement table one 11. The side surface of the placement table three 13 is flush with one side of the length direction of the placement table one 11.
[0045] Referring to Figure 1 As shown, the placement table two 12 is horizontally welded and fixed on one side of the width direction of the placement table one 11. The top surface of the placement table two 12 is flush with the top surface of the placement table one 11. The length direction of the placement table two 12 is perpendicular to the length direction of the placement table one 11. One side of the width direction of the placement table two 12 is flush with one side of the length direction of the placement table one 11. The length of the placement table two 12 is longer than the width of the placement table one 11.
[0046] Referring to Figure 1 As shown, the side surface of the placement table two 12 close to the placement table three 13 is welded and fixed with the side surface of the placement table three 13. The side surface of the placement table three 13 away from the placement table one 11 is flush with the other side of the width direction of the placement table two 12.
[0047] Referring to Figure 1 As shown, the top surface of the placement table one 11 is horizontally welded and fixed with three support rods one 111. The three support rods one 111 are respectively located at the three corners of the top surface of the placement table one 11 away from the placement table three 13. The length direction of the support rod one 111 is perpendicular to the top surface of the placement table one 11.
[0048] Referring to Figure 1 As shown, the top surface of the support rod one 111 is horizontally welded and fixed with a shutter one 112. The length direction of the shutter one 112 is the same as the length direction of the placement table one 11. The length of the shutter one 112 is the same as the length of the placement table one 11.
[0049] Referring to Figure 1 As shown, the connection rods 113 are welded and fixed between the placement table one 11 and the shutter one 112. There are nine connection rods 113. The nine connection rods 113 are evenly distributed along the side edge of the top surface of the placement table one 11 away from the placement table three 13. The length direction of the connection rod 113 is the same as the length direction of the support rod one 111. The top surface of the connection rod 113 is welded and fixed with the bottom surface of the shutter one 112. The bottom surface of the connection rod 113 is welded and fixed with the top surface of the placement table one 11.
[0050] Referring to Figure 1 As shown in the figure, the mounting strip four 114 is horizontally welded and fixed on the connecting rod 113, the length direction of the mounting strip four 114 is the same as the length direction of the placing table one 11, the length of the mounting strip four 114 is equal to the length of the placing table, and the two ends of the mounting strip four 114 are respectively welded and fixed on the two support rods one 111 located on the same side of the connecting rod 113.
[0051] Referring to Figure 1 As shown in the figure, the support rod two 121 is horizontally welded and fixed on the top surface of the placing table two 12, there are four support rods two 121, the four support rods two 121 are respectively located at the four corners of the top surface of the placing table two 12, the length direction of the support rod two 121 is perpendicular to the top surface of the placing table two 12, and the length of the support rod two 121 is the same as the length of the support rod one 111.
[0052] Referring to Figure 1 As shown in the figure, the shielding plate two 122 is horizontally welded and fixed on the top surface of the support rod two 121, the length direction of the shielding plate two 122 is the same as the length direction of the placing table two 12, the length of the shielding plate two 122 is the same as the length of the placing table two 12, the top surface of the shielding plate two 122 is flush with the top surface of the shielding plate one 112, and the side of the shielding plate two 122 close to the shielding plate one 112 is welded and fixed with the shielding plate one 112.
[0053] Referring to Figure 1 As shown in the figure, the support rod three 131 is horizontally welded and fixed on the top surface of the placing table three 13, there are two support rods three 131, the two support rods three 131 are respectively located at the two corners of the top surface of the placing table three 13 away from the placing table one 11, the length direction of the support rod three 131 is perpendicular to the top surface of the placing table three 13, and the length of the support rod three 131 is the same as the length of the support rod two 121.
[0054] Referring to Figure 1 As shown in the figure, the shielding plate three 132 is horizontally welded and fixed on the top surface of the support rod three 131, the top surface of the shielding plate three 132 is flush with the top surface of the shielding plate one 112, the side of the shielding plate three 132 close to the shielding plate one 112 is welded and fixed with the shielding plate one 112, and the side of the shielding plate three 132 close to the shielding plate two 122 is welded and fixed with the shielding plate two 122.
[0055] Referring to Figure 1 As shown in the figure, the placing rack 115 is arranged on the top surface of the placing table one 11, the placing rack 115 includes the support rod four 1151 and the I-shaped placing plate 1152, there are four support rods four 1151, the four support rods four 1151 are all horizontally welded and fixed on the top surface of the placing table one 11, the length direction of the support rod four 1151 is perpendicular to the top surface of the placing table one 11, the four support rods four 1151 are respectively located at the four corners of the I-shaped placing plate 1152, and the I-shaped placing plate 1152 is horizontally welded and fixed on the top surface of the support rod.
[0056] Referring to Figure 1 and Figure 2 As shown in the figure, the carrying mechanism 2 includes a horizontal carrying assembly 21, a vertical carrying assembly 22, a clamping assembly 23 and a turnover assembly 24. The horizontal carrying assembly 21 includes a mounting strip one 211, a motor one 212, a screw one 213 and a sliding block one 214. The mounting strip one 211 is horizontally welded and fixed in the placing table two 12. The mounting strip one 211 is located obliquely above the I-shaped placing plate 1152. The length direction of the mounting strip one 211 is the same as the length direction of the placing table two 12. A sliding groove one 2111 is formed on the side of the mounting strip one 211 close to the placing table one 11. The length direction of the sliding groove one 2111 is the same as the length direction of the mounting strip one 211.
[0057] Referring to Figure 2 As shown in the figure, the motor one 212 is horizontally fixed on the side of the placing table two 12. The screw one 213 is horizontally welded and fixed on the output shaft of the motor one 212. The screw one 213 is rotatably inserted into the sliding groove one 2111. The length direction of the screw one 213 is the same as the length direction of the mounting strip one 211. The end of the screw one 213 away from the motor one 212 is rotatably inserted into the mounting strip one 211. The sliding block one 214 is threadedly sleeved on the screw one 213. The sliding block one 214 is horizontally slidably arranged in the sliding groove one 2111.
[0058] Referring to Figure 2 As shown in the figure, the vertical carrying assembly 22 includes a mounting strip two 221, a motor two 222, a screw two 223 and a sliding block two. The mounting strip two 221 is welded and fixed on the side of the sliding block one 214 close to the I-shaped placing plate 1152. The length direction of the mounting strip two 221 is perpendicular to the top surface of the placing table two 12. A sliding groove two 2211 is formed on the side of the mounting strip two 221 away from the sliding block two. The length direction of the sliding groove two 2211 is the same as the length direction of the mounting strip two 221.
[0059] Referring to Figure 2 As shown in the figure, the motor two 222 is horizontally fixed on the top surface of the mounting strip two 221. The screw two 223 is horizontally welded and fixed on the output shaft of the motor two 222. The screw two 223 is rotatably inserted into the sliding groove two 2211. The length direction of the screw two 223 is the same as the length direction of the mounting strip two 221. The end of the screw two 223 away from the motor two 222 is rotatably inserted into the mounting strip two 221. The sliding block two is threadedly sleeved on the screw two 223. The sliding block two is horizontally slidably arranged in the sliding groove two 2211.
[0060] Referring to Figure 2As shown, the overturning assembly 24 comprises a motor seven 241 and a rotating rod, the motor seven 241 is horizontally fixed on the side of the slider two away from the slider one 214, the rotating rod is horizontally welded on the output shaft of the motor seven 241, and the axial line direction of the rotating rod is parallel to the top surface of the placing table two 12.
[0061] Referring to Figure 2 As shown, the clamping assembly 23 comprises a mounting strip three 231, a lower clamping plate 232, a motor three 233, a rotating rod one and an upper clamping plate 234, the mounting strip three 231 is horizontally welded on the side of the rotating rod away from the motor seven 241, the length direction of the mounting strip three 231 is the same as that of the mounting strip one 211, a containing groove is formed on the top surface of the mounting strip three 231, the length direction of the containing groove is the same as that of the mounting strip three 231, and the containing groove is communicated with the side of the mounting strip three 231 away from the mounting strip one 211.
[0062] Referring to Figure 2 As shown, the motor three 233 is fixed on the side of the mounting strip three 231 close to the placing table three 13, the rotating rod one is horizontally welded on the output shaft of the motor three 233, the length direction of the rotating rod one is the same as that of the mounting strip three 231, the rotating rod one is rotatably inserted into the containing groove, and the end of the rotating rod one away from the motor three 233 is rotatably inserted into the mounting strip three 231.
[0063] Referring to Figure 1 And Figure 2 As shown, the lower clamping plate 232 is horizontally welded on the side of the mounting strip three 231 away from the mounting strip one 211, the length direction of the lower clamping plate 232 is the same as that of the placing table one 11, the lower clamping plate 232 is horizontally inserted into the notch of the I-shaped placing plate 1152, the height of the lower clamping plate 232 is lower than that of the I-shaped placing plate 1152, the upper clamping plate 234 is horizontally welded on the rotating rod, the upper clamping plate 234 is located directly above the lower clamping plate 232, and the upper clamping plate 234 is located above the I-shaped placing plate 1152.
[0064] Referring to Figure 1 As shown, the conveying mechanism 3 comprises a sliding rail one 31, a motor four 32 and a feeding assembly 33, the sliding rail one 31 is horizontally slidably arranged on the mounting strip four 114, the length direction of the sliding rail one 31 is the same as that of the mounting strip four 114, the length of the sliding rail one 31 is the same as that of the mounting strip four 114, and the motor four 32 is horizontally fixed on the mounting strip four 114.
[0065] Referring to Figure 1 And Figure 3As shown in the figure, the feeding assembly 33 has five groups, and the five groups of feeding assemblies 33 are evenly distributed on the slide rail one 31. The feeding assembly 33 includes a connecting horizontal rod 331, a connecting vertical rod 332, a driving cylinder 333, a mounting plate one 334, and four suction cups one 335. The connecting horizontal rod 331 is horizontally fixed on the side of the slide rail one 31 close to the placement table three 13, and the length direction of the connecting horizontal rod 331 is the same as the length direction of the mounting strip one 211.
[0066] Referring to Figure 1 and Figure 3 As shown in the figure, the connecting vertical rod 332 is horizontally welded and fixed on the bottom surface of the connecting horizontal plate, the driving cylinder 333 is fixed on the bottom surface of the connecting vertical rod 332, the mounting plate one 334 is horizontally fixed on the output shaft of the driving cylinder 333, and the four suction cups one 335 are horizontally fixed on the bottom surface of the mounting plate one 334. The four suction cups one 335 are respectively located at the four corners of the bottom surface of the mounting plate one 334.
[0067] Referring to Figure 1 As shown in the figure, the feeding assembly 33 is sequentially named as the first feeding assembly, the second feeding assembly, the third feeding assembly, the fourth feeding assembly, and the fifth feeding assembly along the direction close to the placement table two 12, which improves the efficiency of conveying the wheel disc and thus improves the efficiency of manufacturing the wheel disc.
[0068] Referring to Figure 1 and Figure 4 As shown in the figure, the stamping mechanism 4 is located between the first feeding assembly and the second feeding assembly. The stamping mechanism 4 includes a cylinder one 41, a stamping block one 42, and a stamping table one 43. The cylinder one 41 is horizontally fixed on the bottom surface of the shutter one 112. The stamping block one 42 is horizontally welded and fixed on the output shaft of the cylinder one 41. The stamping table one 43 is horizontally placed on the top surface of the placement table one 11. The stamping table one 43 is located directly below the stamping block one 42, and the height of the stamping table one 43 is lower than the height of the slide rail one 31.
[0069] Referring to Figure 1 , Figure 3 and Figure 4 As shown in the figure, when the wheel disc needs to be stamped, the driving motor four 32 is driven to move the slide rail one 31 to the direction close to the stamping table one 43, so as to move the mounting plate one 334 to the upper side of the stamping table one 43. The wheel disc is placed on the stamping table one 43, and the cylinder one 41 is driven to drive the stamping block one 42 to move close to the wheel disc, so as to facilitate the stamping of the wheel disc.
[0070] Referring to Figure 1 and Figure 5 As shown in the figure, the first spot welding mechanism 5 is located between the second feeding assembly and the third feeding assembly, the first spot welding mechanism 5 comprises a cylinder two 51, a mounting plate two 52, a support frame 53, a welding rod 54, a first welding head 55 and a first conveying assembly 56, the cylinder two 51 is horizontally fixed on the bottom surface of the shutter one 112, the mounting plate two 52 is horizontally fixed on the output shaft of the cylinder two 51, and the length direction of the mounting plate two 52 is the same as the length direction of the placing table one 11.
[0071] Referring to Figure 1 and Figure 5 As shown in the figure, the first welding head 55 has four, four first welding heads 55 are horizontally welded and fixed on the bottom surface of the mounting plate two 52, four first welding heads 55 are respectively located at the four corners of the bottom surface of the mounting plate two 52, the support frame 53 has two, two support frames 53 are horizontally welded and fixed on the top surface of the placing table one 11, two support frames 53 are symmetrical about the center line in the length direction of the mounting plate two 52, the support frame 53 is located directly below the mounting plate two 52, and the height of the support frame 53 is lower than the height of the sliding rail one 31.
[0072] Referring to Figure 5 As shown in the figure, the welding rod 54 has two, two welding rods 54 are horizontally placed on the top surface of the support frame 53, two welding rods 54 are symmetrical about the center line in the width direction of the mounting plate two 52, and the welding rod 54 is located directly below the first welding head 55.
[0073] Referring to Figure 1 and Figure 6 As shown in the figure, the first conveying assembly 56 comprises a mounting table one 561, a motor five 562, a screw three 563, a sliding strip 564, a cylinder three 565, a support strip 566 and a support plate 567, the mounting table one 561 is horizontally welded and fixed on the side surface of the placing table one 11 away from the placing table three 13, and the height of the mounting table one 561 is higher than the height of the placing table one 11.
[0074] Referring to Figure 1 , Figure 2 , Figure 5 and Figure 6 As shown in the figure, the motor five 562 is horizontally fixed in the mounting table one 561, the screw three 563 is horizontally welded and fixed on the output shaft of the motor five 562, the length direction of the screw three 563 is the same as the length direction of the mounting strip one 211, the sliding strip 564 is threadedly sleeved on the screw three 563, the length direction of the sliding strip 564 is the same as the length direction of the screw three 563, the top surface of the placing table one 11 is provided with a sliding groove 116, the length direction of the sliding groove 116 is the same as the length direction of the screw three 563, and the sliding strip 564 is horizontally and slidingly arranged in the sliding groove 116.
[0075] Referring to Figure 1 , Figure 5 and Figure 6As shown in the figure, the cylinder three 565 is horizontally fixed on the top surface of the sliding strip 564, the support strip 566 is horizontally welded and fixed on the output shaft of the cylinder three 565, the length direction of the support strip 566 is the same as the length direction of the placing table one 11, the support plate 567 has two pieces, both of which are horizontally welded and fixed on the top surface of the support strip 566, both of which are symmetric about the center line of the length direction of the top surface of the support strip 566, the length direction of the support plate 567 is the same as the length direction of the screw three 563, and the welding rod 54 is placed on the support plate 567.
[0076] Referring to Figure 1 , Figure 3 , Figure 5 and Figure 6 As shown in the figure, when it is necessary to weld the welding rod 54 with the disc, first drive the motor five 562 to rotate the screw three 563, the screw three 563 drives the sliding strip 564 to move towards the support frame 53, so that the welding rod 54 moves towards the support frame 53, when the welding rod 54 reaches above the support frame 53, drive the cylinder three 565 to make the cylinder three 565 drive the support strip 566 to move downwards, the support strip 566 drives the support plate 567 to move downwards, so as to place the welding rod 54 on the support frame 53, then drive the motor five 562 to rotate the screw three 563 in the opposite direction, the screw three 563 drives the sliding strip 564 to move away from the support frame 53, so as to complete the transmission of the welding rod 54, then drive the motor four 32, the motor four 32 drives the sliding rail one 31 to slide towards the support frame 53, moves the mounting plate one 334 above the support frame 53, places the disc above the welding rod 54, drives the cylinder two 51, the cylinder two 51 drives the mounting plate two 52 to slide towards the disc, the mounting plate two 52 drives the first welding head 55 to slide towards the disc, the first welding head 55 welds the welding rod 54 with the disc, so as to facilitate the welding of the welding rod 54 with the disc.
[0077] Referring to Figure 1 and Figure 7 As shown in the figure, the edge cutting mechanism 6 is located between the third feeding assembly and the fourth feeding assembly, the edge cutting mechanism 6 includes a cylinder four 61, an edge cutter 62 and an edge cutting table 63, the cylinder four 61 is horizontally fixed on the bottom surface of the shutter one 112, the edge cutter 62 is horizontally welded and fixed on the output shaft of the cylinder four 61, the edge cutting table 63 is horizontally placed on the top surface of the placing table one 11, the edge cutting table 63 is located directly below the edge cutter 62, and the height of the edge cutting table 63 is lower than the height of the sliding rail one 31.
[0078] Referring to Figure 1 , Figure 3 and Figure 7As shown, when the cutting of the disc is needed, the fourth motor 32 drives the slide rail 31 to slide towards the cutting table 63, the mounting plate 334 is moved above the cutting table 63, the disc is placed on the cutting table 63, the fourth cylinder 61 drives the cutter 62 to move towards the disc, so that the cutter 62 cuts the disc, which is convenient for cutting the disc.
[0079] Referring to Figure 1 and Figure 8 As shown, the second spot welding mechanism 7 is located between the fourth feeding assembly and the fifth feeding assembly, the second spot welding mechanism 7 includes a fifth cylinder 71, a mounting plate three 72, a welding table 73, a welding block, a second conveying assembly 74 and a second welding head 75, the fifth cylinder 71 is horizontally fixed on the bottom surface of the shutter one 112, the mounting plate three 72 is horizontally fixed on the output shaft of the second cylinder 51, and the length direction of the mounting plate three 72 is the same as the length direction of the placing table one 11.
[0080] Referring to Figure 1 and Figure 8 As shown, the second welding head 75 has four, four second welding heads 75 are horizontally welded and fixed on the bottom surface of the mounting plate three 72, four second welding heads 75 are respectively located at four corners of the bottom surface of the mounting plate three 72, and the welding table 73 is horizontally placed on the top surface of the placing table one 11.
[0081] Referring to Figure 1 , Figure 8 and Figure 9 As shown, the second conveying assembly 74 includes a mounting table two 741, a sixth motor, a screw four 742, a conveying frame 743, a suction cup two 744 and a guide rod 745, the mounting table two 741 is horizontally welded and fixed on the side surface of the placing table one 11 away from the placing table three 13, and the height of the mounting table two 741 is higher than the height of the placing table one 11.
[0082] Referring to Figure 1 , Figure 2 , Figure 8 and Figure 9 As shown, the sixth motor is horizontally fixed in the mounting table two 741, the screw four 742 is horizontally welded and fixed on the output shaft of the sixth motor, the length direction of the screw four 742 is the same as the length direction of the mounting strip one 211, the conveying frame 743 is threadedly sleeved on the screw three 563, and the conveying frame 743 is located directly above the welding table 73.
[0083] Referring to Figure 1 , Figure 8 and Figure 9As shown, the guide rods 745 are two, both of which are horizontally welded and fixed in the installation table two 741, and are symmetric about the axis of the screw four 742. The length direction of the guide rods 745 is the same as that of the screw four 742, and the end away from the motor six of the guide rods 745 extends out of the installation table two 741. The conveying frame 743 is slidably sleeved on the guide rods 745.
[0084] Referring to Figure 1 , Figure 8 and Figure 9 As shown, the suction cups two 744 are four, all of which are horizontally fixed on the bottom surface of the conveying frame 743, and are respectively located at the four corners of the bottom surface of the conveying frame 743. When it is necessary to weld the welding block with the disc, the motor six is first driven to rotate the screw four 742, so that the conveying frame 743 drives the suction cups two 744 to move towards the welding table 73, and then the welding head is placed on the upper surface of the disc. Then the motor six is driven in reverse to rotate the screw four 742, so that the screw four 742 drives the conveying frame 743 to move away from the welding table 73, thereby completing the conveying of the welding head,
[0085] Referring to Figure 1 , Figure 3 , Figure 8 and Figure 9 Subsequently, the motor four 32 is driven to move the mounting plate one 334 above the welding table 73, and the disc is placed on the welding table 73. The cylinder 333 five is driven to move the mounting plate three 72 and the second welding head 75 towards the disc, and the second welding head 75 welds the welding block with the disc, thereby facilitating the welding of the disc with the welding block.
[0086] Referring to Figure 1 As shown, the fifth feeding assembly is located between the second spot welding mechanism 7 and the I-shaped placing plate 1152. In the process of processing the disc, the first disc to be processed is first conveyed to the stamping mechanism 4 by the first feeding assembly. When the first disc is completed, the first disc is conveyed to the first spot welding mechanism 5 by the second feeding assembly. At this time, the first feeding assembly continues to convey the second disc to be processed to the stamping mechanism 4. In this way, the third feeding assembly completes the work of conveying the disc on the first spot welding mechanism 5 to the trimming mechanism 6, the fourth feeding assembly completes the work of conveying the disc on the trimming mechanism 6 to the second spot welding mechanism 7, the fifth feeding assembly completes the work of conveying the disc on the second spot welding mechanism 7 to the I-shaped placing plate 1152, and the conveying mechanism 2 completes the work of overturning and conveying the disc on the I-shaped placing plate 1152 to the pressing mechanism 8 to complete the pressing with other discs.
[0087] Referring to Figure 1 and Figure 10As shown in FIG. 1, the pressing mechanism 8 comprises a cylinder six 81, a punch block two 82 and a punch table two 83. The cylinder six 81 is horizontally fixed on the bottom surface of the shutter three 132. The punch block two 82 is horizontally welded on the output shaft of the cylinder six 81. The punch table two 83 is horizontally placed on the top surface of the placement table three 13. The punch table two 83 is located directly below the punch block two 82. The height of the punch table two 83 is lower than the height of the slide rail one 31.
[0088] Referring to Figure 1 , Figure 2 , Figure 3 and Figure 10 As shown in FIG. 1, when different vehicle plates need to be pressed, the motor four 32 is driven to drive the slide rail one 31 to slide. The slide rail one 31 drives the connecting horizontal rod 331 to slide. The connecting horizontal rod 331 drives the connecting vertical rod 332 to slide. The connecting vertical rod 332 drives the mounting plate one 334 to slide. The mounting plate one 334 drives the vehicle plate to move. The first vehicle plate is placed on the punch table two 83. The second vehicle plate is placed on the upper surface of the first vehicle plate by another set of the same vehicle plate processing system. The two vehicle plates are overlapped. The cylinder six 81 is driven to drive the punch block two 82 to move towards the punch table two 83. The punch block two 82 presses the overlapped different vehicle plates, which is convenient for pressing different vehicle plates.
[0089] The implementation principle of the vehicle plate processing system of the flatbed truck according to the embodiment of the present application is as follows:
[0090] When the first block of wheel disc needs to be processed, the first block of wheel disc is sucked by the suction disc 335 on the first feeding assembly, the fourth driving motor 32 drives the sliding rail 1 to slide backward, the sliding rail 1 drives the first feeding assembly to move to the direction close to the stamping table 1, and the first block of wheel disc is placed on the top surface of the stamping table 1. Then the fourth driving motor 32 drives the sliding rail 1 to slide forward, the sliding rail 1 drives the first feeding assembly to move away from the stamping table 1, and the second block of wheel disc is continuously sucked. The driving cylinder 1 drives the stamping block 2 to complete the stamping of the first block of wheel disc. The fourth driving motor 32 drives the sliding rail 1 to slide forward, the sliding rail 1 drives the second feeding assembly to move to the direction close to the stamping table 1, and the first block of wheel disc is sucked. At the same time, the fifth driving motor 562 drives the screw 3 to rotate, so as to drive the welding rod 4 to move to the direction close to the support frame 3. When the welding rod 4 reaches above the support frame 3, the driving cylinder 3 is driven to drive the support rod 6 to move downward, and the support plate 7 is driven to move downward, so as to place the welding rod 4 on the support frame 3. Then the fifth driving motor 562 drives the screw 3 to rotate reversely, drives the support plate 7 to move away from the support frame 3, and the fourth driving motor 32 drives the sliding rail 1 to slide backward. The second feeding assembly 3 drives the first block of wheel disc to be conveyed above the welding rod 4. At the same time, the first feeding assembly 3 sends the second block of wheel disc to the top surface of the stamping table 1. At the same time, the driving cylinder 1 and the driving cylinder 2 are driven, that is, the first time spot welding work of the first block of wheel disc and the stamping work of the second block of wheel disc are completed at the same time. In this way, the third feeding assembly completes the work of sending the wheel disc on the first spot welding mechanism 5 to the edge cutting mechanism 6, the fourth feeding assembly completes the work of sending the wheel disc on the edge cutting mechanism 6 to the second spot welding mechanism 7, the fifth feeding assembly completes the work of sending the wheel disc on the second spot welding mechanism 7 to the I-shaped placing plate 1152, and the conveying mechanism 2 completes the work of overturning the wheel disc on the I-shaped placing plate 1152 and sending it to the pressing mechanism 8 to complete the pressing work with other wheel discs. The wheel disc can continuously undergo a series of processing work, and the processing efficiency of the wheel disc is improved.
[0091] When two different wheel discs need to be pressed, the fourth driving motor 32 drives the sliding rail 1 to slide, the connecting horizontal rod 3 drives the connecting vertical rod 3 to slide, the connecting vertical rod 3 drives the mounting plate 1 to slide, and the mounting plate 1 drives the wheel disc to move. The first block of wheel disc is placed on the stamping table 2, and the second block of wheel disc is placed on the upper surface of the first block of wheel disc by another same wheel disc processing system, so that the two wheel discs overlap. The driving cylinder 6 drives the stamping block 2 to move to the direction close to the stamping table 2, so that the stamping block 2 presses the overlapping different wheel discs, and the different wheel discs are conveniently pressed.
[0092] The above are all preferred embodiments of the present application, and are not intended to limit the protection scope of the present application, and thus: any equivalent changes made according to the structure, shape, principle of the present application should be covered within the protection scope of the present application.
Claims
1. A system for processing a tray of a flatbed vehicle, comprising a machine table (1), a conveying mechanism (3) for conveying the tray, a punching mechanism (4) for punching the tray, a first spot welding mechanism (5), a trimming mechanism (6) for trimming the tray, a second spot welding mechanism (7), a pressing mechanism (8) for pressing different trays, and a tray placed on the machine table (1), characterized in that: The machine table (1) is provided with a conveying mechanism (2), the conveying mechanism (2) includes a transverse conveying assembly (21) arranged in the machine table (1), a vertical conveying assembly (22) slidingly arranged in the machine table (1) and a clamping assembly (23) arranged in the machine table (1), the transverse conveying assembly (21) includes a mounting strip one (211) arranged in the machine table (1), a motor one (212) arranged beside the mounting strip one (211), a screw one (213) fixed on the output shaft of the motor one (212) and a sliding block one (214) threaded on the screw one (213), a sliding groove one (2111) is formed on the side surface of the mounting strip one (211), the screw one (213) is rotationally arranged in the sliding groove one (2111), and the sliding block one (214) is slidingly arranged in the sliding groove one (2111), the vertical conveying assembly (22) includes a mounting strip two (221) arranged on the sliding block one (214), a motor two (222) arranged on the mounting strip two (221), a screw two (223) fixed on the output shaft of the motor two (222) and a sliding block two threaded on the screw two (223), a sliding groove two (2211) is formed on the side surface of the mounting strip two (221), the screw two (223) is rotationally arranged in the sliding groove two (2211), and the sliding block two is slidingly arranged in the sliding groove two (2211), the clamping assembly (23) includes a mounting strip three (231) rotationally arranged on the sliding block two, a lower clamping plate (232) arranged on the mounting strip three (231), a motor three (233) arranged on the mounting strip three (231), a rotating rod one fixed on the output shaft of the motor three (233) and an upper clamping plate (234) arranged on the rotating rod one, and the upper clamping plate (234) is located directly above the lower clamping plate (232); The first spot welding mechanism (5) includes a cylinder two (51) arranged in the machine table (1), a mounting plate two (52) arranged on the output shaft of the cylinder two (51), a support frame (53) arranged in the machine table (1), a welding rod (54) placed on the support frame (53), a first welding head (55) for welding the welding rod (54) on the disc and a first conveying assembly (56) for conveying the welding rod (54), the first welding head (55) is arranged on the mounting plate two (52), and the support frame (53) is located directly below the mounting plate two (52); The edge cutting mechanism (6) includes a cylinder four (61) arranged in the machine table (1), an edge cutter (62) arranged on the output shaft of the cylinder four (61) and an edge cutting table (63) arranged in the machine table (1), and the edge cutting table (63) is located directly below the edge cutter (62).
2. A flatbed vehicle disc processing system according to claim 1 wherein: The conveying mechanism (3) comprises a sliding rail I (31) arranged in the machine table (1), a motor IV (32) for driving the sliding rail I (31) to slide, and a feeding assembly (33) arranged on the sliding rail I (31). The feeding assembly (33) comprises a connecting horizontal rod (331) arranged on the sliding rail I (31), a connecting vertical rod (332) arranged on the connecting horizontal rod (331), a driving cylinder (333) arranged on the connecting vertical rod (332), a mounting plate I (334) arranged on the output shaft of the driving cylinder (333), and a suction disc I (335) for sucking the disc. The machine table (1) is provided with a mounting strip IV (114), the sliding rail I (31) is slidingly arranged on the mounting strip IV (114), the motor IV (32) is arranged on the mounting strip IV (114), and the suction disc I (335) is arranged on the mounting plate I (334).
3. A flatbed vehicle disc processing system according to claim 1 wherein: The punching mechanism (4) comprises a cylinder I (41) arranged in the machine table (1), a punching block I (42) arranged on the output shaft of the cylinder I (41), and a punching table I (43) arranged in the machine table (1). The punching table I (43) is located directly below the punching block I (42).
4. The flatbed vehicle disc processing system of claim 1, wherein: The first conveying assembly (56) comprises a mounting table I (561) arranged beside the machine table (1), a motor V (562) arranged in the mounting table I (561), a screw rod III (563) fixed on the output shaft of the motor V (562), a sliding strip (564) sleeved on the screw rod III (563), a cylinder III (565) arranged on the sliding strip (564), a supporting strip (566) arranged on the output shaft of the cylinder III (565), and a supporting plate (567) arranged on the supporting strip (566). The machine table (1) is provided with a sliding groove (116), the screw rod III (563) is rotationally arranged in the sliding groove (116), the sliding strip (564) is slidingly arranged in the sliding groove (116), and the welding rod (54) is placed on the supporting plate (567).
5. The flatbed vehicle disc processing system of claim 1, wherein: The second spot welding mechanism (7) comprises a cylinder V (71) arranged in the machine table (1), a mounting plate III (72) arranged on the output shaft of the cylinder V (71), a welding table (73) arranged in the machine table (1), a welding block placed above the welding table (73), a second conveying assembly (74) for conveying the welding block, and a second welding head (75) for welding the welding block with the disc. The second welding head (75) is arranged on the mounting plate III (72), and the welding table (73) is located directly below the mounting plate III (72).
6. A flatbed vehicle disc processing system according to claim 5 wherein: The second conveying assembly (74) comprises a mounting table two (741) arranged beside the machine table (1), a motor six arranged in the mounting table two (741), a screw four (742) fixed on an output shaft of the motor six, a conveying frame (743) sleeved on the screw four (742), a suction disc two (744) for sucking solder blocks, and a guide rod (745) arranged in the mounting table two (741), wherein the suction disc two (744) is arranged on the conveying frame (743), and the conveying frame (743) is slidably sleeved on the guide rod (745).
7. A flatbed vehicle disc processing system according to claim 1 wherein: The carrying mechanism (2) comprises a turnover assembly (24) arranged on the sliding block two, wherein the turnover assembly (24) comprises a motor seven (241) arranged on the sliding block two and a rotating rod fixed on an output shaft of the motor seven (241), and the rotating rod is welded and fixed with the mounting strip three (231).
8. The flatbed vehicle disc processing system of claim 1, wherein: The pressing mechanism (8) comprises a pneumatic cylinder six (81) arranged in the machine table (1), a stamping block two (82) arranged on an output shaft of the pneumatic cylinder six (81), and a stamping table two (83) arranged in the machine table (1), wherein the stamping table two (83) is located directly below the stamping block two (82).
Citation Information
Patent Citations
Iron sheet conveying device
CN214651897U
Circuit board transverse transferring and placing mechanism
CN219155823U