A data line automatic production equipment
By designing automated data cable production equipment, which utilizes components such as frames, conveyor belts, and slide rails to automate the processing of data cables, the problems of low precision and poor practicality caused by manual operation are solved, thereby improving the processing quality and efficiency of data cables.
Patent Information
- Application Number
- CN202111059696.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-09-09
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2041-09-09
AI Technical Summary
The existing data cable manufacturing process relies on manual operation, resulting in low precision, poor practicality, and high labor intensity.
An automated data cable production equipment was designed, including a frame, conveyor belt, slide rail, conveying device, drive device, laser peeling machine, waste peeling component, cutting component, soldering component, pressing device, spot welding device, and inspection and unloading device. The automated processing of data cables is achieved through the coordinated action of robotic arms and cylinders.
It has enabled automated production of data cables, improved processing accuracy and practicality, and reduced the labor intensity of workers.
Smart Images

Figure CN113964608B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of data line production equipment, in particular to a data line automatic production equipment. BACKGROUND
[0002] Data line, its function is to connect mobile devices and computer, to achieve data transmission or communication purposes, in popular terms, is to connect the computer and mobile devices to transmit video, ring, picture and other file passage tools, now, with the rapid development of electronic industry, data line has become an indispensable part of our life, but, the existing data line processing and manufacturing process, generally need manual data line for multi-process processing, with the passage of time, the precision of manual operation gradually low, and the labor intensity, reduces the processing precision and practicability of data line. SUMMARY
[0003] To solve the above technical problems, the present application provides a kind of data line automatic production equipment, solve the multi-process of data line by manual operation processing, cause the processing precision of data line to be low and the problem of poor practicability.
[0004] To achieve the above purpose, the technical scheme of the present application is as follows:
[0005] A kind of data line automatic production equipment, comprising:
[0006] Frame, first conveying belt is arranged on the frame and carries data line mounting seat;
[0007] Sliding rail seat is arranged on the frame and is connected to the first conveying belt, conveying device is arranged on one end of the sliding rail seat to transfer the data line mounting seat on the first conveying belt to the sliding rail seat, driving device is arranged at the corresponding position below the sliding rail seat and drives the data line mounting seat to move along the sliding rail seat;
[0008] Data line pre-processing device is arranged on the frame, the data line pre-processing device includes: laser stripping machine is arranged on the frame, waste skin pulling assembly is located on one side of the laser stripping machine, cutting assembly is located on one side of the waste skin pulling assembly, and soldering tin assembly is located on one side of the cutting assembly;
[0009] Circuit board shell seat is connected to the data line pre-processing device and automatically loaded by mechanical hand and corresponds to the data line mounting seat, pressing device is arranged on the frame to match the data line mounting seat and the circuit board shell seat, spot welding device is arranged on one side of the pressing device, and detection and discharge device is arranged on one side of spot welding device.
[0010] The technical scheme is realized as follows: in production, the data line mounting seat is placed on the first conveying belt, and is fed to one end of the slide rail seat through the first conveying belt; the data line mounting seat on the first conveying belt is transferred to the slide rail seat by the conveying device; meanwhile, the data line mounting seat is moved on the slide rail seat by the driving device, so that the data line is subjected to laser peeling, waste skin pulling, cutting and soldering, to prepare for the next process; then, the circuit board shell seat is placed at the wire head of the data line mounting seat by the mechanical hand; the data line head is pressed tightly to the data line mounting seat by the pressing device, and the data line is welded more firmly to the data line mounting seat by the spot welding device; finally, the welded data line is subjected to voltage and current detection by the detection and discharging device, to ensure the processing quality, and then the processing is completed and discharging is finished.
[0011] As a preferred scheme of the present application, the conveying device comprises a first stroke seat vertically arranged at one end of the slide rail seat, a sliding seat slidingly arranged on the first stroke seat, a first cylinder arranged on the rack and driving the sliding seat to move up and down along the first stroke seat, and a bearing bracket arranged on the sliding seat.
[0012] The technical scheme is realized as follows: in conveying the data line mounting seat, the first cylinder is started, the sliding seat is moved downward along the first stroke seat, the data line mounting seat conveyed on the first conveying belt is moved to the bearing bracket, and then the sliding seat is moved upward along the first stroke seat, so that the data line mounting seat is placed at the corresponding position of the slide rail seat.
[0013] As a preferred scheme of the present application, the driving device comprises a second conveying belt arranged at the corresponding position below the slide rail seat, and a limiting block arranged on the second conveying belt and matched with the data line mounting seat.
[0014] The technical scheme is realized as follows: the limiting block is moved by the second conveying belt, so that the data line mounting seat is moved along the slide rail seat by the pushing of the limiting block.
[0015] As a preferred scheme of the present application, the waste skin pulling assembly comprises a moving plate arranged on the rack, a second cylinder arranged on the moving plate, an upper clamping plate connected to the second cylinder, a third cylinder arranged on the moving plate, a lower clamping plate connected to the third cylinder and arranged in a vertically corresponding manner with the upper clamping plate, and a fourth cylinder connected to the moving plate.
[0016] The technical scheme is realized as follows: after the data line mounting seat is stripped, the second cylinder and the third cylinder are started to make the upper material clamping plate and the lower material clamping plate cooperate, and the wire end on the data line mounting seat is located between the upper material clamping plate and the lower material clamping plate; after the upper material clamping plate and the lower material clamping plate cooperate, the fourth cylinder is started to drive the upper material clamping plate and the lower material clamping plate on the moving plate to move away from the data line mounting seat, so that the waste skin is separated from the data line.
[0017] As a preferred scheme of the present application, the cutting assembly comprises a fifth cylinder arranged on the rack, an upper cutting plate connected to the fifth cylinder, upper cutting grooves arranged in an array on the upper cutting plate, a sixth cylinder arranged on the rack, a lower cutting plate connected to the sixth cylinder and corresponding to the upper cutting plate, a groove arranged on the lower cutting plate and cooperating with the upper cutting plate, a lower cutting groove arranged on the lower cutting plate and corresponding to the upper cutting groove, a seventh cylinder arranged on the rack, and a pressing plate connected to the seventh cylinder and pressing on the data line mounting seat.
[0018] The technical scheme is realized as follows: in order to improve the welding processing precision, the fifth cylinder and the sixth cylinder are started to make one end of the upper cutting plate extend into the groove and cooperate with the lower cutting plate to cut the uneven data line end; in order to ensure the stability of the data line during cutting, the seventh cylinder is started to make the pressing plate press against the data line mounting seat.
[0019] As a preferred scheme of the present application, the tin dipping assembly comprises an eighth cylinder arranged on the rack, a lifting seat connected to the eighth cylinder, a connecting plate arranged on the lifting seat, a ninth cylinder arranged on one side of the connecting plate, and a tin brushing seat slidingly arranged on the connecting plate and connected to the ninth cylinder.
[0020] The technical scheme is realized as follows: in order to remove impurities on the surface of the data line end and increase the welding area, the eighth cylinder is started to make the tin brushing seat be positioned at the data line end, and then the ninth cylinder is started to make the tin brushing seat move along the connecting plate to brush tin on the data line end.
[0021] As a preferred scheme of the present application, the pressing device comprises a tenth cylinder arranged on the rack, and a pressing plate connected to the tenth cylinder and located at a corresponding position above the circuit board shell seat.
[0022] The technical scheme is realized as follows: in order to facilitate the welding of the circuit board shell seat and the data line end, the tenth cylinder is started to make the pressing plate downwardly abut against the data line end to press the data line end against the circuit board shell seat.
[0023] As a preferred scheme of the present application, the spot welding device comprises a fixed seat arranged on the frame, a stepper motor arranged in the fixed seat, a lead screw connected to the stepper motor, a guide sleeve sleeved on the lead screw, a clamping cylinder arranged on the guide sleeve and matched with the tin bar, and a welding gun arranged on the clamping cylinder and matched with the tin bar.
[0024] The above technical scheme is implemented, and when welding, the tin bar is placed into the clamping cylinder, the stepper motor is started to drive the lead screw to rotate, the guide sleeve, the clamping cylinder and the tin bar are driven to move downward, and are moved to the welding position of the data line head, the welding gun is matched to enable the tin bar to weld the data line head and the circuit board shell seat together.
[0025] As a preferred scheme of the present application, the detection unloading device comprises an eleventh air cylinder arranged on the frame, a probe seat connected to the eleventh air cylinder, a display screen arranged on the frame and electrically connected to the probe seat, an unloading conveying belt carried on the slide rail seat, a waste collecting box located on one side of the unloading conveying belt, and a transfer assembly arranged on the frame.
[0026] The above technical scheme is implemented, and in order to ensure the quality of the data line after welding, the eleventh air cylinder is started to drive the probe seat to move downward, the probe head is contacted with the welding position of the data line head and the circuit board shell seat, and whether it is qualified is displayed on the display screen, the unqualified is carried into the waste collecting box by the transfer assembly, and the qualified is transferred to the unloading conveying belt.
[0027] As a preferred scheme of the present application, the transfer assembly comprises a second stroke seat arranged on the frame, a movable seat slidingly assembled on the second stroke seat, a driving motor arranged on the second stroke seat, a belt pulley transmission connected to the driving motor and matched with the movable seat, a connecting seat slidingly assembled on the movable seat, a twelfth air cylinder arranged on the movable seat and connected to the connecting seat, a bidirectional air cylinder arranged on the connecting seat, and clamping blocks connected to both ends of the bidirectional air cylinder.
[0028] The above technical scheme is implemented, and when the data line mounting seat is transferred, the driving motor is started to drive the belt pulley transmission to move the movable seat along the second stroke seat, the movable seat is moved to the position above the welded data line mounting seat, the twelfth air cylinder is started to drive the connecting seat, the bidirectional air cylinder and the clamping blocks to move downward, and the bidirectional air cylinder is started to drive the clamping blocks to clamp the data line mounting seat for transferring.
[0029] In summary, the application has the following beneficial effects: in production, the data line mounting seat is placed on the first conveying belt, and is fed to one end of the slide rail seat by the first conveying belt, the data line mounting seat on the first conveying belt is transferred to the slide rail seat by the conveying device, meanwhile, the data line mounting seat is moved on the slide rail seat by the driving device, the data line is subjected to the laser peeling machine, the waste skin pulling assembly, the cutting assembly and the soldering assembly to prepare for the next process, then the circuit board shell seat is placed at the wire head of the data line mounting seat by the mechanical hand, the data line head is pressed to the data line mounting seat by the pressing device, the data line and the data line mounting seat are welded more firmly by the spot welding device, finally, the welded data line is subjected to voltage and current detection by the detection discharging device to ensure the processing quality, and then the processing is completed and discharged. Through the above setting, automatic processing and production of the data line are realized, manual operation precision is avoided, labor intensity of workers is reduced, and processing precision and practicability of the data line are improved. BRIEF DESCRIPTION OF DRAWINGS
[0030] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description only constitute some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.
[0031] Figure 1 It is a schematic diagram of the overall front structure of the present application.
[0032] Figure 2 It is a schematic diagram of the top view structure of the data line mounting seat of the present application.
[0033] Figure 3 It is a schematic diagram of the enlarged structure of the conveying device of the present application.
[0034] Figure 4 It is a schematic diagram of the side view structure of the waste skin pulling assembly of the present application.
[0035] Figure 5 It is a schematic diagram of the enlarged structure of the cutting assembly of the present application.
[0036] Figure 6 It is a schematic diagram of the front view structure of the lower cutting plate of the present application.
[0037] Figure 7 It is a schematic diagram of the top view structure of the lower cutting plate of the present application.
[0038] Figure 8 It is a schematic diagram of the enlarged structure of the soldering assembly of the present application.
[0039] Figure 9It is a schematic view of the back structure of the soldering assembly of the application.
[0040] Figure 10 It is a schematic view of the top structure of the circuit board shell seat of the application.
[0041] Figure 11 It is a schematic view of the enlarged structure of the spot welding device of the application.
[0042] Figure 12 It is a schematic view of the enlarged structure of the detection blanking device of the application.
[0043] Figure 13 It is a schematic view of the enlarged structure of the transfer assembly of the application.
[0044] Figure 14 It is a schematic view of the back structure of the transfer assembly of the application.
[0045] The corresponding component names represented by the numbers and letters in the figure:
[0046] 1, first conveying belt; 2, data line mounting seat; 3, conveying device; 4, rack; 5, sliding rail seat; 6, limiting block; 7, third air cylinder; 8, second conveying belt; 9, laser stripping machine; 10, second air cylinder; 11, upper clamping plate; 12, cutting assembly; 13, soldering assembly; 14, mechanical hand; 15, pressing plate; 16, tenth air cylinder; 17, spot welding device; 18, detection blanking device; 19, transfer assembly; 20, waste collection box; 21, blanking conveying belt; 22, bearing support; 23, first stroke seat; 24, first air cylinder; 25, sliding seat; 26, moving plate; 27, lower clamping plate; 28, fourth air cylinder; 29, seventh air cylinder; 30, pressing plate; 31, fifth air cylinder; 32, upper cutting plate; 33, upper cutting groove; 34, sixth air cylinder; 35, lower cutting plate; 36, lower cutting groove; 37, groove; 38, eighth air cylinder; 39, lifting seat; 40, connecting plate; 41, soldering seat; 42, ninth air cylinder; 43, circuit board shell seat; 44, fixing seat; 45, stepping motor; 46, lead screw; 47, clamping cylinder; 48, welding gun; 49, probe seat; 50, eleventh air cylinder; 51, display screen; 52, clamping block; 53, two-way air cylinder; 54, connecting seat; 55, twelfth air cylinder; 56, movable seat; 57, second stroke seat; 58, pulley transmission; 59, driving motor; 60, guide sleeve. DETAILED DESCRIPTION
[0047] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0048] Example
[0049] like Figures 1 to 14 As shown, the present invention is an automatic data cable production equipment, comprising: a frame 4, a first conveyor belt 1 mounted on the frame 4 and supporting a data cable mounting base 2, a slide rail seat 5 mounted on the frame 4 and connected to the first conveyor belt 1, a conveying device 3 located at one end of the slide rail seat 5 to transfer the data cable mounting base 2 on the first conveyor belt 1 to the slide rail seat 5, and a driving device located at a corresponding position below the slide rail seat 5 to drive the data cable mounting base 2 to move along the slide rail seat 5.
[0050] The conveying device 3 includes: a first stroke seat 23 vertically disposed at one end of the slide rail seat 5; a sliding seat 25 slidably mounted on the first stroke seat 23; a first cylinder 24 disposed on the frame 4 and driving the sliding seat 25 to move up and down along the first stroke seat 23; and a support bracket 22 disposed on the sliding seat 25. When the data cable mounting seat 2 is conveyed, the first cylinder 24 is activated, causing the sliding seat 25 to move downward along the first stroke seat 23, so that the data cable mounting seat 2 transported on the first conveyor belt 1 moves to the support bracket 22. Then, the sliding seat 25 moves upward along the first stroke seat 23, so that the data cable mounting seat 2 is placed in the corresponding position on the slide rail seat 5.
[0051] The driving device includes a second conveyor belt 8 located at a corresponding position below the slide rail 5, and a limiting block 6 spaced along the second conveyor belt 8 and cooperating with the data cable mounting base 2. The limiting block 6 is moved by the second conveyor belt 8, causing the data cable mounting base 2 to move along the slide rail 5 by the push of the limiting block 6.
[0052] Furthermore, the data cable pre-processing device is provided on the rack 4. The data cable pre-processing device includes: a laser stripper 9 provided on the rack 4, a waste stripping assembly located on one side of the laser stripper 9, a cutting assembly 12 located on one side of the waste stripping assembly, and a soldering assembly 13 located on one side of the cutting assembly 12.
[0053] The waste skin removing assembly comprises a moving plate 26 arranged on the frame 4, a second cylinder 10 arranged on the moving plate 26, an upper clamping plate 11 connected to the second cylinder 10, a third cylinder 7 arranged on the moving plate 26, a lower clamping plate 27 arranged in a vertically corresponding manner with the upper clamping plate 11 and connected to the third cylinder 7, and a fourth cylinder 28 connected to the moving plate 26. After the data line mounting seat 2 is stripped as described above, the second cylinder 10 and the third cylinder 7 are started to make the upper clamping plate 11 and the lower clamping plate 27 cooperate, and the wire end on the data line mounting seat 2 is located between the upper clamping plate 11 and the lower clamping plate 27. After the upper clamping plate 11 and the lower clamping plate 27 cooperate, the fourth cylinder 28 is started to drive the upper clamping plate 11 and the lower clamping plate 27 on the moving plate 26 to move away from the data line mounting seat 2, so that the waste skin is separated from the data line.
[0054] The cutting assembly 12 comprises a fifth cylinder 31 arranged on the frame 4, an upper cutting plate 32 connected to the fifth cylinder 31, upper cutting grooves 33 arranged in an array on the upper cutting plate 32, a sixth cylinder 34 arranged on the frame 4, a lower cutting plate 35 arranged in a corresponding manner with the upper cutting plate 32 and connected to the sixth cylinder 34, a groove 37 arranged on the lower cutting plate 35 and cooperating with the upper cutting plate 32, lower cutting grooves 36 arranged on the lower cutting plate 35 and corresponding to the upper cutting grooves 33, a seventh cylinder 29 arranged on the frame 4, and a pressing plate 30 connected to the seventh cylinder 29 and pressing on the data line mounting seat 2. In order to ensure high welding precision, the fifth cylinder 31 and the sixth cylinder 34 are started to make one end of the upper cutting plate 32 extend into the groove 37 and cooperate with the lower cutting plate 35 to cut the uneven data line end. At the same time, in order to ensure the stability of the data line during cutting, the seventh cylinder 29 is started to make the pressing plate 30 press towards the data line mounting seat 2.
[0055] The soldering tin assembly 13 comprises an eighth cylinder 38 arranged on the frame 4, a lifting seat 39 connected to the eighth cylinder 38, a connecting plate 40 arranged on the lifting seat 39, a ninth cylinder 42 arranged on one side of the connecting plate 40, and a brush tin seat 41 slidably arranged on the connecting plate 40 and connected to the ninth cylinder 42. In order to remove impurities on the surface of the data line end and increase the welding area thereof, the eighth cylinder 38 is started to make the brush tin seat 41 be positioned at the data line end, and then the ninth cylinder 42 is started to make the brush tin seat 41 move along the connecting plate 40 to brush tin on the data line end.
[0056] Further, the circuit board shell seat 43 is arranged corresponding to the data line mounting seat 2 and is automatically fed by the mechanical arm 14. The pressing device arranged on the frame 4 cooperates the data line mounting seat 2 with the circuit board shell seat 43. The spot welding device 17 is arranged on one side of the pressing device, and the detection and discharging device 18 is arranged on one side of the spot welding device 17.
[0057] The pressing device comprises a tenth cylinder 16 arranged on the frame 4, and a pressing plate 15 connected to the tenth cylinder 16 and located at a corresponding position above the circuit board shell seat 43. In order to facilitate the welding of the circuit board shell seat 43 and the data line head, the tenth cylinder 16 is started to make the pressing plate 15 abut against the data line head downward, so that the data line head is pressed to the circuit board shell seat 43.
[0058] The spot welding device 17 comprises a fixed seat 44 arranged on the frame 4, a stepping motor 45 arranged in the fixed seat 44, a lead screw 46 connected to the stepping motor 45, a guide sleeve 60 sleeved on the lead screw 46, a clamping cylinder 47 arranged on the guide sleeve 60 and matched with the tin bar, and a welding gun 48 arranged on the clamping cylinder 47 and matched with the tin bar. During welding, the tin bar is placed into the clamping cylinder 47, the lead screw 46 is rotated by starting the stepping motor 45, the guide sleeve 60, the clamping cylinder 47 and the tin bar are moved downward, and are moved to the welding position of the data line head, the tin bar is matched with the welding gun 48, and the data line head and the circuit board shell seat 43 are welded together.
[0059] The detection unloading device 18 comprises an eleventh cylinder 50 arranged on the frame 4, a probe seat 49 connected to the eleventh cylinder 50, a display screen 51 electrically connected to the probe seat 49 and arranged on the frame 4, an unloading conveying belt 21 carried on the slide rail seat 5, a waste collecting box 20 located on one side of the unloading conveying belt 21, and a transfer assembly 19 arranged on the frame 4. In order to ensure the quality of the welded data line, the eleventh cylinder 50 is started to make the probe seat 49 move downward, the probe contacts the welding position of the data line head and the circuit board shell seat 43, and whether it is qualified is displayed on the display screen 51, the unqualified is carried into the waste collecting box 20 by the transfer assembly 19, and the qualified is transferred to the unloading conveying belt 21.
[0060] The transfer assembly 19 comprises a second stroke seat 57 arranged on the frame 4, a movable seat 56 slidably arranged on the second stroke seat 57, a driving motor 59 arranged on the second stroke seat 57, a belt pulley transmission 58 connected to the driving motor 59 and matched with the movable seat 56, a connecting seat 54 slidably arranged on the movable seat 56, a twelfth cylinder 55 arranged on the movable seat 56 and connected to the connecting seat 54, a bidirectional cylinder 53 arranged on the connecting seat 54, and a clamping block 52 connected to both ends of the bidirectional cylinder 53. During the transfer of the data line mounting seat 2, the driving motor 59 is started to make the belt pulley transmission 58 run, the movable seat 56 moves along the second stroke seat 57, moves to a corresponding position above the welded data line mounting seat 2, the twelfth cylinder 55 is started to make the connecting seat 54, the bidirectional cylinder 53 and the clamping block 52 move downward, and the bidirectional cylinder 53 is started to make the clamping block 52 clamp the data line mounting seat 2 for transfer.
[0061] In summary, the application has the following beneficial effects: in production, the data line mounting seat 2 is placed on the first conveying belt 1, and is fed to one end of the slide rail seat 5 through the first conveying belt 1, the data line mounting seat 2 on the first conveying belt 1 is transferred to the slide rail seat 5 through the conveying device 3, meanwhile, the data line mounting seat 2 is moved on the slide rail seat 5 through the driving device, the data line is subjected to the laser peeling machine 9, the waste skin pulling assembly, the cutting assembly 12 and the soldering assembly 13, so as to prepare for the next process, then the circuit board shell seat 43 is placed at the wire head of the data line mounting seat 2 through the mechanical hand 14, the data line head is pressed to the data line mounting seat 2 through the pressing device, the data line is welded to the data line mounting seat 2 more firmly through the spot welding device 17, finally, the data line after welding is subjected to voltage and current detection through the detection discharging device 18, so as to ensure the processing quality, then the processing is finished and discharging is completed. Through the above setting, the automatic processing production of the data line is realized, manual operation with low precision is avoided, the labor intensity of workers is reduced, and the processing precision and practicability of the data line are improved.
[0062] The above description of disclosed embodiments enables one skilled in the art to make or use the application. Numerous modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be applied to other embodiments without departing from the spirit or scope of the application. Thus, the present application is not to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A data line automatic production apparatus characterized by comprising: The application relates to a data line manufacturing device, which comprises the following parts: a rack, a first conveying belt arranged on the rack and carrying data line mounting seats; a slide rail seat arranged on the rack and connected to the first conveying belt, a conveying device arranged at one end of the slide rail seat to transfer the data line mounting seats on the first conveying belt to the slide rail seat, a driving device arranged below the slide rail seat and driving the data line mounting seats to move along the slide rail seat; a data line preprocessing device arranged on the rack, which comprises a laser stripping machine arranged on the rack, a waste skin pulling assembly arranged on one side of the laser stripping machine, a cutting assembly arranged on one side of the waste skin pulling assembly, and a soldering tin assembly arranged on one side of the cutting assembly; a circuit board shell seat arranged on the data line preprocessing device and automatically fed by a mechanical arm and corresponding to the data line mounting seats, a pressing device arranged on the rack to match the data line mounting seats with the circuit board shell seat, a spot welding device arranged on one side of the pressing device, and a detection and discharging device arranged on one side of the spot welding device; wherein the pressing device comprises a tenth cylinder arranged on the rack and a pressing plate connected to the tenth cylinder and arranged above the circuit board shell seat; the spot welding device comprises a fixed seat arranged on the rack, a stepping motor arranged in the fixed seat, a lead screw connected to the stepping motor, a guide sleeve sleeved on the lead screw, a clamping cylinder arranged on the guide sleeve and matched with a tin bar, and a welding gun arranged on the clamping cylinder and matched with the tin bar.
2. The data line automatic production apparatus according to claim 1, characterized by, the conveying device comprises a first stroke seat vertically arranged at one end of the slide rail seat, a sliding seat slidingly arranged on the first stroke seat, a first cylinder arranged on the rack and driving the sliding seat to move up and down along the first stroke seat, and a carrying support arranged on the sliding seat.
3. The data line automatic production apparatus according to claim 1, characterized by the driving device comprises a second conveying belt arranged below the corresponding position of the slide rail seat, and a limiting block arranged on the second conveying belt and matched with the data line mounting seats.
4. The data line automatic production apparatus according to claim 1, characterized by the waste skin pulling assembly comprises a moving plate arranged on the rack, a second cylinder arranged on the moving plate, an upper clamping plate connected to the second cylinder, a third cylinder arranged on the moving plate, a lower clamping plate connected to the third cylinder and arranged in a corresponding position above the upper clamping plate, and a fourth cylinder connected to the moving plate.
5. The data line automatic production apparatus according to claim 1, wherein the cutting assembly comprises a fifth cylinder arranged on the rack, an upper cutting plate connected to the fifth cylinder, an upper cutting groove arranged in an array on the upper cutting plate, a sixth cylinder arranged on the rack, a lower cutting plate connected to the sixth cylinder and corresponding to the upper cutting plate, a groove arranged on the lower cutting plate and matched with the upper cutting plate, a lower cutting groove arranged on the lower cutting plate and corresponding to the upper cutting groove, a seventh cylinder arranged on the rack, and a pressing plate connected to the seventh cylinder and pressing on the data line mounting seat.
6. The data line automatic production apparatus according to claim 1, wherein The soldering assembly comprises an eighth cylinder arranged on the frame, a lifting seat connected to the eighth cylinder, a connecting plate arranged on the lifting seat, a ninth cylinder arranged on one side of the connecting plate, and a soldering seat slidingly arranged on the connecting plate and connected to the ninth cylinder.
7. The data line automatic production apparatus according to claim 1, wherein The detection blanking device comprises an eleventh cylinder arranged on the frame, a probe seat connected to the eleventh cylinder, a display screen electrically connected to the probe seat and arranged on the frame, a blanking conveying belt carried on the slide rail seat, a waste collecting box located on one side of the blanking conveying belt, and a transfer assembly arranged on the frame.
8. The data line automatic production apparatus according to claim 7, wherein The transfer assembly comprises a second stroke seat arranged on the frame, a movable seat slidingly arranged on the second stroke seat, a driving motor arranged on the second stroke seat, a belt wheel transmission connected to the driving motor and matched with the movable seat, a connecting seat slidingly arranged on the movable seat, a twelfth cylinder arranged on the movable seat and connected to the connecting seat, a bidirectional cylinder arranged on the connecting seat, and clamping blocks connected to two ends of the bidirectional cylinder.
Citation Information
Patent Citations
Data line fully-automatic double head welding machine
CN109038158A
Tin welding machine equipment
CN110449685A
Automatic soldering tin equipment of data line
CN207386757U
Automatic peeling and tin soldering machine for data line
CN213033838U