An ultra-thin inductive laser paint stripping connection device

By designing ultra-thin inductive laser paint stripping wiring equipment, the automated production of inductive paint stripping is realized, solving the problem of low automation of existing equipment, improving efficiency and reducing costs, and ensuring the conductive performance of the inductor.

CN111834863BActive Publication Date: 2025-08-29KUNSHAN GANYI INTELLIGENT TECHNOLOGY CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202010817851.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-08-14
Publication Date
2025-08-29
Estimated Expiration
2040-08-14

AI Technical Summary

Technical Problem

The existing inductive paint stripping equipment has low degree of automation, long time and low efficiency, unclear or excessive paint stripping, affects the conductive performance, and the equipment structure is complex and costly.

Method used

An ultra-thin inductive laser paint stripping wiring device is designed, including vibrating disk components, filler mechanisms, transfer mechanisms, feed push mechanisms, lasers and feeding mechanisms to realize automated production, and reduce manual operations through laser paint stripping and automated processes.

Benefits of technology

It improves the degree of automation and production efficiency of inductor paint stripping, shortens processing time, reduces production costs, and ensures the conductive performance of the inductor, and has a simple equipment structure.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN111834863B_ABST
    Figure CN111834863B_ABST
Patent Text Reader

Abstract

The present invention provides an ultra-thin inductor laser paint stripping and connection equipment, comprising a first worktable, a second worktable, and a basket-lifting and transferring mechanism. The first worktable is provided with a vibrating disk assembly, a filling mechanism, and a transfer mechanism, while the second worktable is provided with a pushing mechanism, a laser, and a blanking mechanism. The vibrating disk assembly, the filling mechanism, and the transfer mechanism are sequentially connected, and the filling mechanism can load products thereon into a product jig. A loading belt is provided between the side of the transfer mechanism away from the filling mechanism and the pushing mechanism. The pushing mechanism, the laser, and the blanking mechanism are sequentially arranged from front to back, and the pushing mechanism can sequentially move the product jig below the laser and onto the blanking mechanism. The basket-lifting and transferring mechanism is provided on one side of the blanking mechanism, and the blanking mechanism can move the product jig onto the basket-lifting and transferring mechanism. The ultra-thin inductor laser paint stripping and connection equipment of the present invention improves work efficiency and reduces production costs. The paint stripping is precise, and the conductive performance of the inductor can be effectively guaranteed.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The invention relates to the technical field of inductive paint stripping equipment, in particular to an ultra-thin inductive laser paint stripping connection device. Background Art

[0002] Inductors are generally prepared by winding enameled wire around a magnetic core to form coils and pins. The inductor is electrically connected to the external circuit through the pins. Therefore, the enameled layer on the two lead ends of the inductor needs to be removed before use to meet its conductivity requirements.

[0003] The degree of automation of inductor paint stripping equipment in the existing technology is not high, and many processes still require manual operation, resulting in a long time consumption, low work efficiency, unclean or excessive stripping, which affects the conductive performance of the inductor; and the structure is complex and the equipment cost is high. Summary of the Invention

[0004] In order to solve the problems existing in the above-mentioned prior art, the present invention provides an ultra-thin inductive laser paint stripping and connection equipment with high degree of automation, high production efficiency, good processing effect and low equipment cost.

[0005] In order to achieve the above object, the present invention adopts the following technical solutions:

[0006] An ultra-thin inductive laser paint stripping and connecting device comprises a first workbench, a second workbench and a basket transplanting mechanism, which are arranged in sequence;

[0007] The first workbench is provided with a vibration plate assembly, a filling mechanism and a transfer mechanism, and the second workbench is provided with a pushing mechanism, a laser and a blanking mechanism;

[0008] The vibration plate assembly, the filling mechanism and the transfer mechanism are connected in sequence, the vibration plate assembly can move the products to the filling mechanism in an orderly manner, and the filling mechanism can load the products thereon into the product jig;

[0009] A feeding belt is provided between the side of the transfer mechanism away from the filling mechanism and the pushing mechanism. The transfer mechanism can move the product jig from the filling mechanism to the feeding belt and provide the filling mechanism with empty product jigs. The feeding belt moves the product jig to the pushing mechanism.

[0010] The pushing mechanism, the laser and the blanking mechanism are arranged in sequence from front to back, and the pushing mechanism can move the product fixture to the bottom of the laser and onto the blanking mechanism in sequence;

[0011] The basket carrying and transplanting mechanism is arranged on one side of the blanking mechanism, and the blanking mechanism can move the product fixture onto the basket carrying and transplanting mechanism.

[0012] Furthermore, the filling mechanism comprises a horizontally arranged trough, a horizontal feeding rod, a filling rod and a jig moving module;

[0013] The trough is provided below the outlet of the vibrating plate assembly, and the horizontal feed rod is provided in the trough and can move along the trough under the drive of a horizontal moving cylinder;

[0014] The filling rod is arranged above the material trough, and its top is connected to the filling moving module; the filling moving module can drive the filling rod to move up and down and horizontally between the material trough and the jig moving module to move the product from the material trough to the product jig on the jig moving module.

[0015] Furthermore, the transfer mechanism comprises a mounting frame, a transition plate, a transplanting pin and a transplanting claw;

[0016] The transition plate is provided on the mounting frame, and a moving cylinder is provided on the lower side of the transition plate. The moving cylinder is connected to a lifting cylinder. The lifting cylinder is provided below a side of the transition plate close to the filling mechanism, and the transplanting pin is vertically provided on the lifting cylinder. The moving cylinder and the lifting cylinder work together to move the product jig from the filling mechanism to the transition plate.

[0017] The transplanting claw is arranged above the transition plate, and its top is connected to the claw cylinder, and the claw cylinder is connected to the transfer module. The claw cylinder can drive the transplanting claw to move up and down, and the transfer module can drive the claw cylinder to drive the transplanting claw to move horizontally along the transition plate to move the product jig to the feeding belt.

[0018] Furthermore, the transfer mechanism also includes a jig silo and a jig loading module. The jig silo is provided with a plurality of empty product jigs, and a horizontal discharge port is provided at the bottom thereof. The jig loading module is provided below the jig silo and can move the product jig located at the discharge port to the filling mechanism.

[0019] Furthermore, the pushing mechanism comprises a pushing screw, a pushing cylinder and a pushing plate perpendicular to the feeding belt, and the three are connected in sequence; the pushing screw is arranged on one side of the laser and is located above the feeding belt;

[0020] The push cylinder can drive the push plate to move up and down, and the push screw can drive the push cylinder to drive the push plate to move horizontally perpendicular to the loading belt, so as to move the product fixture to the bottom of the laser and onto the unloading mechanism in sequence.

[0021] Furthermore, the unloading mechanism includes an unloading belt, a rubber knocking head, a barrier cylinder, an unloading cylinder, an unloading plate and a barrier strip; one end of the unloading belt is located at the rear side of the laser, and the other end is located at the rear side of the basket transplanting mechanism and is parallel to the loading belt;

[0022] The striking head, the barrier cylinder and the blanking plate are sequentially arranged along the blanking belt, the striking head is tilted above the blanking belt and is driven up and down by the striking cylinder; there are two barrier cylinders, which are arranged side by side front and back above the blanking belt and on the right side of the striking head;

[0023] The blanking cylinder is arranged at the rear side of one end of the blanking belt away from the laser, and the blanking plate is arranged vertically and connected to the blanking cylinder;

[0024] A mounting hole is provided in the middle of the lower side of the blanking plate, and the baffle strip is located in the mounting hole and perpendicular to the blanking plate; one end of the baffle strip is located on the blanking belt, and the other end is connected to the first lifting cylinder, which is located on the lower side of the blanking cylinder.

[0025] Furthermore, the unloading mechanism also includes a cylindrical cleaning brush arranged above the unloading belt, the cleaning brush is arranged on a side of the knocking head close to the laser, and the cleaning brush is driven by a cleaning motor.

[0026] Furthermore, the basket carrying and transplanting mechanism comprises a square third workbench, a basket carrying, a transplanting mechanism and a second lifting cylinder, and the basket carrying is arranged on the third workbench;

[0027] The front end of the third workbench is provided with a loading position and a unloading position in parallel, and the rear end of the third workbench is provided with a loading position and a transfer position in parallel, and the loading position and the transfer position correspond to the loading position and the unloading position in a one-to-one manner;

[0028] The transplanting mechanism is provided on the third workbench and is capable of moving the basket from the loading position to the loading position, the transfer position and the unloading position in sequence;

[0029] When the lifting basket is located at the loading position, it corresponds to the front and back of the blanking plate. A lifting plate is provided on the loading position. The second lifting cylinder is provided below the lifting plate and connected thereto.

[0030] Furthermore, the transplanting mechanism includes a first transplanting module and a first transplanting plate vertically connected thereto, a second transplanting module and a second transplanting plate vertically connected thereto, and a third transplanting module and a third transplanting plate vertically connected thereto;

[0031] The first transfer module can drive the first transfer plate to move the basket from the loading position to the transfer position, the second transfer module can drive the second transfer plate to move the basket from the upper position to the loading position, and the third transfer module can drive the third transfer plate to move the basket from the transfer position to the unloading position.

[0032] Furthermore, the lifting cylinder is connected to the middle part of the lifting plate, and guide rods are respectively provided at both ends of the lifting plate, the upper ends of the guide rods are connected to the lifting plate, and the lower ends of the guide rods pass through the top of the third workbench and are located inside the third workbench; the lower ends of the two guide rods are fixedly connected by a limit plate;

[0033] A vertical connecting frame is provided on one side of the guide rod, the top of the connecting frame is connected to the top of the third workbench, and limit switches are respectively provided at the middle and lower ends; a limit plate is provided at one end of the limit plate, and the limit plate can move between the two limit switches, and the two limit switches are respectively connected to the second lifting cylinder.

[0034] Compared with the prior art, the beneficial technical effects of the present invention are as follows: the ultra-thin inductor laser paint stripping and wiring equipment of the present invention enables the paint stripping process of the inductor to proceed from product loading, filling into the jig, transfer, paint stripping, to the final unloading, collection and sorting. The entire process does not require human participation, which greatly improves work efficiency, shortens processing time, and reduces production costs; and the paint stripping is precise, which can effectively ensure that the conductive performance of the inductor is not affected; in addition, the wiring equipment of the present application has a simple structure and a low equipment cost. BRIEF DESCRIPTION OF THE DRAWINGS

[0035] Figure 1 Schematic diagram of the structure of an embodiment of the present invention;

[0036] Figure 2 is another structural schematic diagram of an embodiment of the present invention;

[0037] Figure 3 for Figure 2 Enlarged view of part A in the middle;

[0038] Figure 4 Schematic diagram of the structure of the vibration plate assembly and the packing mechanism in an embodiment of the present invention;

[0039] Figure 5 for Figure 4 Enlarged view of middle part B;

[0040] Figure 6 Schematic diagram of the structure of the transfer mechanism in an embodiment of the present invention;

[0041] Figure 7This is a structural diagram of a blanking mechanism in an embodiment of the present invention;

[0042] Figure 8 Schematic diagram of the internal structure of the basket transplanting mechanism in an embodiment of the present invention;

[0043] Figure 9 This is a rear view of the internal structure of the basket transplanting mechanism in an embodiment of the present invention.

[0044] In the figure: 10 - vibration plate assembly, 11 - vibration plate, 12 - straight vibration flow channel, 20 - transfer mechanism, 21 - first moving module, 22 - mounting frame, 23 - lifting cylinder, 24 - transplanting pin, 25 - fixture loading module, 26 - discharge port, 27 - fixture silo, 28 - transfer module, 29 - claw cylinder, 210 - transplanting claw, 211 - transition plate, 212 - moving cylinder, 30 - filling mechanism, 31 - fixture moving module, 32 - horizontal moving cylinder, 33 - filling moving module, 34 - horizontal material rod, 35 - material trough, 36 - filling rod, 40 - pushing mechanism, 41 - pushing screw, 42 - pushing cylinder, 43 - pushing plate, 50 - basket transplanting mechanism, 51 - third workbench, 52—basket, 53—second transplanting plate, 54—second transplanting module, 55—first transplanting plate, 56—first transplanting module, 57—third transplanting module, 58—third transplanting plate, 59—second lifting cylinder, 510—guide rod, 511—limit plate, 512—connecting frame, 513—limit switch, 60—laser, 70—unloading mechanism, 71—protective shell, 72—unloading plate, 73—mounting hole, 74—blocking bar, 75—blocking cylinder, 76—knocking head, 77—knocking cylinder, 78—cleaning brush, 79—cleaning cylinder, 710—first lifting cylinder, 711—unloading cylinder, 712—unloading belt, 80—first workbench, 81—second workbench, 82—loading belt. DETAILED DESCRIPTION

[0045] To make the objectives, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the described embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field are within the scope of protection of the present invention.

[0046] The technical solution of the present invention is further described in detail below with reference to the accompanying drawings.

[0047] like Figure 1-9 As shown, an ultra-thin inductive laser paint stripping and connecting device comprises a first workbench 80, a second workbench 81 and a basket transplanting mechanism 50, which are arranged in sequence along the horizontal direction;

[0048] Specifically, the first workbench 80 is provided with a vibration plate assembly 10, a filling mechanism 30 and a transfer mechanism 20, and the second workbench 81 is provided with a pushing mechanism 40, a laser 60 and a blanking mechanism 70;

[0049] The vibration plate assembly 10, the filling mechanism 30 and the transfer mechanism 20 are connected in sequence. The vibration plate assembly 10 includes a vibration plate 11 and a straight vibration flow channel 12. The vibration plate 11 is used to store products and move the products in an orderly manner to the straight vibration flow channel 12 until the flow channel 12 is used to move the products in sequence to the filling mechanism 30. The filling mechanism 30 is used to load the products thereon into the product jig thereon.

[0050] A feeding belt 82 is provided between the side of the transfer mechanism 20 away from the filling mechanism 30 and the pushing mechanism 40. The transfer mechanism 20 is used to move the product jig from the filling mechanism 30 to the feeding belt 82 and provide the filling mechanism 30 with an empty product jig for the filling mechanism 30 to load the product. The feeding belt 82 is arranged horizontally and is used to move the product jig to the pushing mechanism 40.

[0051] The pushing mechanism 40, the laser 60, and the unloading mechanism 70 are arranged in sequence from front to back. The pushing mechanism 40 is used to move the product jig to the bottom of the laser 60 in sequence. After the laser 60 laser strips the paint on the product, the pushing mechanism 40 moves the product jig carrying the product to the unloading mechanism 70.

[0052] The basket-lifting and transplanting mechanism 50 is provided on one side of the unloading mechanism 70 . The unloading mechanism 70 is used to move the product jigs onto the basket-lifting and transplanting mechanism 50 . The basket-lifting and transplanting mechanism 50 is used to arrange the product jigs for transfer.

[0053] Preferably, the filling mechanism 30 comprises a horizontally arranged material trough 35, a horizontal material rod 34, a filling rod 36 and a jig moving module 31, and the jig moving module 31 is horizontally arranged;

[0054] The trough 35 is located below the outlet of the vertical vibration channel 12. The product in the vertical vibration channel 12 falls into the middle of the trough 35 in an orderly manner due to vibration. The horizontal feed rod 34 is located in the trough 35, and its rear end is connected to the horizontal moving cylinder 32. The horizontal moving cylinder 32 is used to drive the horizontal feed rod 34 to move along the trough 35 and move the product in the trough 35 to the front end of the trough 35.

[0055] The filling rod 36 is located above the front end of the trough 35, and its top is connected to the filling moving module 33. The filling moving module 33 includes a horizontal moving module and a filling cylinder. The filling cylinder is used to drive the filling rod 36 to move up and down, so that the filling rod 36 can move away from the trough 35 or extend into the trough 35. The horizontal moving module is used to drive the filling rod 36 to move horizontally between the trough 35 and the fixture moving module 31, so as to move the product from the front end of the trough 35 to the product fixture on the fixture moving module 31.

[0056] The jig moving module 31 is used to move the empty product jig provided by the transfer mechanism 20 to the material trough 35, and move the product jig as the product is filled, so that the empty product trough on the product jig corresponds to the material trough 35 to ensure smooth filling; and move the product jig filled with products to the transfer mechanism 20 so that the transfer mechanism 20 can move it to the loading belt 82.

[0057] Optionally, the transfer mechanism 20 includes a mounting frame 22, a transition plate 211, a transplanting pin 24, and a transplanting claw 210; a first movable module 21 is provided at the bottom of the mounting frame 22, and the first movable module 21 is arranged parallel to the jig movable module 31 and is located in front of the jig movable module 31; the first movable module 21 is used to drive the mounting frame 22 to move horizontally;

[0058] The transition plate 211 is mounted on the mounting frame 22 and is perpendicular to the first movable module 21. A movable cylinder 212 is provided on the lower side of the transition plate 211. The movable cylinder 212 is connected to a lifting cylinder 23. The lifting cylinder 23 is located below the side of the transition plate 211 near the filling mechanism 30. A transplanting pin 24 is vertically mounted on the lifting cylinder 23. A notch is provided in the middle of one end of the transition plate 211 near the filling mechanism 30, and the transplanting pin 24 is located in the notch.

[0059] The moving cylinder 212 and the lifting cylinder 23 work together to move the product jig from the filling mechanism 30 to the transition plate 211. First, the lifting cylinder 23 drives the transfer pin 24 to move downward. The moving cylinder 212 drives the lifting cylinder 23 and the transfer pin 24 to move below the product jig. The lifting cylinder 23 drives the transfer pin 24 to move upward to hook the product jig. The moving cylinder 212 drives the lifting cylinder 23 to drive the transfer pin 24 back to the initial position and move the product jig to the transition plate 211.

[0060] The transplanting claw 210 is arranged above the transition plate 211, and its top is connected to the claw cylinder 29, and the claw cylinder 29 is connected to the transfer module 28. One end of the transfer module 28 is located above the feeding belt 82, and the other end thereof is located in the same vertical plane as the end of the transition plate 211 near the filling mechanism 30;

[0061] The claw cylinder 29 can drive the transfer claw 210 to move up and down, and the transfer module 28 can drive the claw cylinder 29 to drive the transfer claw 210 to move horizontally along the transition plate 211 to move the product jig onto the feeding belt 82;

[0062] After the product jig is moved onto the transition plate 211, the claw cylinder 29 drives the transfer claw 210 to move upward, the transfer module 28 drives the claw cylinder 29 to drive the transfer claw 210 to move above the product jig, and the claw cylinder 29 drives the transfer claw 210 to move downward to clamp the product jig; then the transfer module 28 works to drive the claw cylinder 29 to drive the transfer claw 210 to move toward the upper material belt 82, until the product jig is moved onto the loading belt 82.

[0063] In some embodiments of the present invention, the transfer mechanism 20 further includes a jig silo 27 and a jig loading module 25. The jig silo 27 is used to store empty product jigs and has a horizontal discharge port 26 at its bottom. The discharge port 26 has an interference fit with the product jigs. The jig loading module 25 is located below the jig silo 27 and is capable of moving the product jigs located at the discharge port 26 to the jig moving module 31.

[0064] After multiple product jigs are placed in the jig silo 27, the product jig at the bottom is in the discharge port 26; when the product jig filled with products on the jig moving module 31 is removed, the jig loading module 25 works to move the empty product jig in the discharge port 26 to the jig moving module 31, and the jig moving module 31 moves it to the outlet of the trough 35 for filling.

[0065] In other embodiments of the present invention, the pushing mechanism 40 includes a pushing screw 41 perpendicular to the feeding belt, a pushing cylinder 42, and a pushing plate 43, which are connected in sequence; the pushing screw 41 is provided on one side of the laser 60 and is located above the feeding belt 82;

[0066] The push cylinder 41 can drive the push plate 43 to move up and down, and the push screw 41 can drive the push cylinder 42 to drive the push plate 43 to move horizontally along the vertical feeding belt 82, so as to move the product jig to the bottom of the laser 60 and onto the unloading mechanism 70 in sequence;

[0067] When pushing the material, the pushing cylinder 42 drives the pushing plate 43 to move to the same height as the product fixture, and the pushing screw 41 drives the pushing cylinder 42 to drive the pushing plate 43 to move the product fixture from the loading belt 82 to the bottom of the laser 60 or from the bottom of the laser 60 to the unloading mechanism 70;

[0068] When the push plate 43 moves from the rear side of the feeding belt 82 to the front side thereof, the push cylinder 42 drives the push plate 43 to rise, so that it is driven by the push screw 41 to move over the feeding belt 82 and the product jig to the front side of the feeding belt 82, so as to push the product jig thereon backward to the bottom of the laser 60 for paint stripping.

[0069] Preferably, the unloading mechanism 70 includes an unloading belt 712, a rubber knocking head 76, a barrier cylinder 75, an unloading cylinder 711, an unloading plate 72, and a barrier bar 74. One end of the unloading belt 712 is located behind the laser 60, and the other end is located behind the basket transfer mechanism 50 and is parallel to the loading belt 82. After the laser 60 laser strips the paint from the product below it, the pushing mechanism 40 moves the product jig carrying the stripped product onto the unloading belt 712.

[0070] The knocking head 76, the barrier cylinder 75 and the blanking plate 72 are arranged in sequence along the blanking belt 712. The knocking head 76 is tilted above the blanking belt 712 and is driven up and down by the knocking cylinder 77. Since the product is magnetic, two adjacent product jigs will be attracted and connected together. The knocking cylinder 77 is used to drive the knocking head 76 to move up and down to knock the two connected product jigs apart. The knocking head 76 is made of rubber to effectively avoid damage to the product during the knocking process.

[0071] Two blocking cylinders 75 are provided. The two blocking cylinders 75 are arranged side by side above the unloading belt 712 through the mounting plate and are located to the right of the striking head 76. The lower end of the telescopic rod in the blocking cylinder 75 passes through the mounting plate and is located above the unloading belt 712. When the telescopic rod is extended, the blocking cylinder 75 can separate the two product jigs separated by the striking head 76 to facilitate unloading. When the telescopic rod is retracted, the product jig located on the side of the blocking cylinder 75 close to the laser 60 can continue to move with the unloading belt 712.

[0072] The unloading cylinder 711 is arranged at the rear side of the unloading belt away from the laser 60, and the unloading plate 72 is arranged vertically and connected to the unloading cylinder 711; a protective shell 71 is provided on the outside of the unloading cylinder 711, and the protective shell 71 is used to protect the unloading cylinder 711;

[0073] A mounting hole 73 is provided in the middle of the lower side of the blanking plate 72. A baffle 74 is located in the mounting hole 73 and is perpendicular to the blanking plate 72. One end of the baffle 74 is located on the blanking belt 712, and the other end is connected to the first lifting cylinder 710. The first lifting cylinder 710 is located on the lower side of the blanking cylinder 711.

[0074] Two temporary storage areas are provided side by side on the unloading belt 712 at the positions corresponding to the unloading plate 72 along its moving direction, and the two temporary storage areas are separated by a barrier bar 74; the first lifting cylinder 710 can drive the barrier bar 74 to move upward, so that the product fixture moves with the unloading belt 712 to the first temporary storage area at the end, and then the first lifting cylinder 710 drives the barrier bar 74 down to the unloading belt 712; then the telescopic rod of the barrier cylinder 75 is retracted, and the unloading belt 712 drives the second product fixture to move to the second temporary storage area; at the same time, the telescopic rod is extended again to block the third product fixture outside the temporary storage area;

[0075] Subsequently, the blanking cylinder 711 drives the blanking plate 72 to move forward, pushing the two product jigs into the basket transfer mechanism 50 at the same time, thereby greatly improving work efficiency and reducing production costs.

[0076] Repeat the above process, the knocking head 76 continues to separate the two connected product jigs passing below it, the blocking cylinder 75 repeatedly releases and blocks the separated product jigs to ensure that the product jigs moved to the temporary storage area are separate, the unloading belt 712 continues to move the separate product jigs to the temporary storage area, and the unloading cylinder 711 continues to push the product jigs in the temporary storage area into the basket transfer mechanism 50.

[0077] Furthermore, the unloading mechanism 70 further includes a cylindrical cleaning brush 78 disposed above the unloading belt 712. The cleaning brush 78 is disposed on a side of the striking head 76 close to the laser 60. The cleaning brush 78 is driven by a cleaning motor 79.

[0078] The cleaning brush 78 is used to clean the product after paint stripping before the product fixture moves under the striking head 76 to remove impurities and debris left by the paint stripping to ensure product performance.

[0079] Optionally, the basket transfer mechanism 50 includes a square third workbench 51, a basket 52, a transfer mechanism, and a second lifting cylinder 59. The basket 52 is disposed on the third workbench 51. The basket 52 is provided with two rows of fixture storage slots, with a baffle plate provided between the two rows of storage slots and correspondingly provided in the two temporary storage areas.

[0080] The third workbench 51 has a loading position and a unloading position arranged side by side on the front end thereof, and a loading position and a transfer position arranged side by side on the rear end thereof, and the loading position and the transfer position correspond to the loading position and the unloading position one by one;

[0081] The transplanting mechanism is provided on the third workbench 51 and is capable of moving the basket 52 from the loading position to the loading position, the transfer position and the unloading position in sequence;

[0082] When the basket 52 is located at the loading position, it corresponds to the front and rear of the blanking plate 72. A lifting plate is provided on the loading position. The second lifting cylinder 59 is provided below and connected to the lifting plate. The second lifting cylinder 59 is used to drive the lifting plate to move the basket 52 thereon up and down so that the empty storage slot in the basket 52 is always level with the temporary storage area.

[0083] The transfer mechanism moves the empty basket 52 from the loading position to the lifting plate above the loading position. The second lifting cylinder 59 drives the basket 52 to move so that its storage slot is level with the temporary storage area. The unloading cylinder 711 drives the unloading plate 72 to simultaneously push the two product fixtures into the two storage slots. Then, the second lifting cylinder 59 drives the basket 52 to move again so that the empty storage slot of the basket 52 is always level with the temporary storage area.

[0084] After the basket 52 is filled with product jigs, the transfer mechanism drives the product jigs to move through the transfer area to the unloading area to wait for transfer; at the same time, the empty basket 52 is driven by the transfer mechanism to move to the loading area, and this cycle is repeated to achieve continuous unloading.

[0085] Furthermore, the transplanting mechanism includes a first transplanting module 56 and a first transplanting plate 55 vertically connected thereto, a second transplanting module 54 and a second transplanting plate 53 vertically connected thereto, and a third transplanting module 57 and a third transplanting plate 58 vertically connected thereto;

[0086] The first transplanting module 56 and the second transplanting module 54 are both located on the third workbench 51, the third transplanting module 57 is located on the side of the workbench, and the first transplanting plate 55, the second transplanting plate 53 and the third transplanting plate 58 are all located above the third workbench 51;

[0087] The first transfer module 56 can drive the first transfer plate 55 to move the basket 52 from the loading position to the transfer position. The second transfer module 54 can drive the second transfer plate 53 to move the basket 52 from the loading position to the loading position. The third transfer module 57 can drive the third transfer plate 58 to move the basket 52 from the transfer position to the unloading position.

[0088] The first transplanting module 56 , the second transplanting module 54 and the third transplanting module 57 all work independently without interfering with each other and can work simultaneously to move the multiple baskets 52 to corresponding positions, thereby improving the efficiency of replacing and transferring the baskets 52 .

[0089] Furthermore, the second lifting cylinder 59 is connected to the middle part of the lifting plate to balance the force on the lifting plate and improve its movement stability; guide rods 510 are respectively provided at both ends of the lifting plate, the upper ends of the guide rods 510 are connected to the lifting plate, and the lower ends of the guide rods 510 pass through the top of the third workbench 51 and are located inside the third workbench 51. The guide rods 510 are used to guide the lifting plate to move up and down, ensuring its horizontal lifting and stable lifting.

[0090] The lower ends of the two guide rods 510 are fixedly connected by a limit plate 511. A vertical connecting frame 512 is provided on one side of one guide rod 510. The top of the connecting frame 512 is connected to the top of the third workbench 51. The middle and lower ends of the connecting frame 512 are respectively provided with limit switches 513. The connecting frame 512 is used to install the two limit switches 513.

[0091] A limit plate is provided at one end of the limit plate 511, which can move between two limit switches 513. The two limit switches 513 are respectively connected to the second lifting cylinder 59; when the second lifting cylinder 59 drives the lifting plate to drive the guide rod 510 and the limit plate 511 to move up and down, when the limit plate triggers the limit switch 513, the limit switch 513 sends a signal to the second lifting cylinder 59, and the second lifting cylinder 59 stops working. At this time, the top storage slot or the bottom storage slot of the basket 52 is level with the temporary storage area.

[0092] The ultra-thin inductor laser paint stripping and wiring equipment of the present invention enables the paint stripping process of the inductor to be completed from product loading, filling into the fixture, transfer, paint stripping, to the final unloading, collection and sorting without human intervention, which greatly improves work efficiency, shortens processing time, and reduces production costs; and the paint stripping is precise, which can effectively ensure that the conductive performance of the inductor is not affected; in addition, the wiring equipment of the present application has a simple structure and low equipment cost.

[0093] The above is a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles of the present invention. These improvements and modifications should also be regarded as within the scope of protection of the present invention.

Claims

1. An ultra-thin inductive laser paint stripping connection device, characterized in that: It includes a first workbench, a second workbench and a basket transplanting mechanism, which are arranged in sequence; The first workbench is provided with a vibration plate assembly, a filling mechanism and a transfer mechanism, and the second workbench is provided with a pushing mechanism, a laser and a blanking mechanism; The vibration plate assembly, the filling mechanism and the transfer mechanism are connected in sequence, the vibration plate assembly can move the products to the filling mechanism in an orderly manner, and the filling mechanism can load the products thereon into the product jig; A feeding belt is provided between the side of the transfer mechanism away from the filling mechanism and the pushing mechanism. The transfer mechanism can move the product jig from the filling mechanism to the feeding belt and provide the filling mechanism with empty product jigs. The feeding belt moves the product jig to the pushing mechanism. The pushing mechanism, the laser and the blanking mechanism are arranged in sequence from front to back, and the pushing mechanism can move the product fixture to the bottom of the laser and onto the blanking mechanism in sequence; The basket-lifting and transplanting mechanism is provided on one side of the unloading mechanism, and the unloading mechanism is capable of moving the product jig onto the basket-lifting and transplanting mechanism; The filling mechanism includes a horizontally arranged material trough, a horizontal material rod, a filling rod and a jig moving module; the transfer mechanism includes a mounting frame, a transition plate, a transplanting pin and a transplanting claw; the pushing mechanism includes a pushing screw, a pushing cylinder and a pushing plate perpendicular to the feeding belt, and the three are connected in sequence; the unloading mechanism includes a unloading belt, a rubber knocking head, a barrier cylinder, a unloading cylinder, a unloading plate and a barrier bar; the basket lifting and transplanting mechanism includes a square third workbench, a basket lifting, a transplanting mechanism and a second lifting cylinder.

2. The ultra-thin inductive laser paint stripping connection equipment according to claim 1, characterized in that: The trough is provided below the outlet of the vibrating plate assembly, and the horizontal feed rod is provided in the trough and can move along the trough under the drive of a horizontal moving cylinder; The filling rod is arranged above the material trough, and the top of the filling rod is connected to the filling moving module; The filler moving module can drive the filler rod to move up and down and horizontally between the material trough and the fixture moving module, so as to move the product from the material trough to the product fixture on the fixture moving module.

3. The ultra-thin inductive laser paint stripping connection equipment according to claim 1, characterized in that: The transition plate is provided on the mounting frame, and a moving cylinder is provided on the lower side of the transition plate. The moving cylinder is connected to a lifting cylinder. The lifting cylinder is provided below a side of the transition plate close to the filling mechanism, and the transplanting pin is vertically provided on the lifting cylinder. The moving cylinder and the lifting cylinder work together to move the product jig from the filling mechanism to the transition plate. The transplanting claw is arranged above the transition plate, and its top is connected to the claw cylinder, and the claw cylinder is connected to the transfer module. The claw cylinder can drive the transplanting claw to move up and down, and the transfer module can drive the claw cylinder to drive the transplanting claw to move horizontally along the transition plate to move the product jig to the feeding belt.

4. The ultra-thin inductive laser paint stripping connection equipment according to claim 3, characterized in that: The transfer mechanism also includes a jig silo and a jig loading module. The jig silo is provided with a plurality of empty product jigs, and a horizontal discharge port is provided at the bottom thereof. The jig loading module is provided below the jig silo and can move the product jig located at the discharge port to the filling mechanism.

5. The ultra-thin inductive laser paint stripping connection equipment according to claim 1, characterized in that: The push screw is arranged on one side of the laser and is located above the feeding belt; The push cylinder can drive the push plate to move up and down, and the push screw can drive the push cylinder to drive the push plate to move horizontally perpendicular to the loading belt, so as to move the product fixture to the bottom of the laser and onto the unloading mechanism in sequence.

6. The ultra-thin inductive laser paint stripping connection equipment according to claim 1, characterized in that: One end of the unloading belt is located at the rear side of the laser, and the other end is located at the rear side of the basket transplanting mechanism and is parallel to the loading belt; The striking head, the barrier cylinder and the blanking plate are sequentially arranged along the blanking belt, the striking head is tilted above the blanking belt and is driven up and down by the striking cylinder; there are two barrier cylinders, which are arranged side by side front and back above the blanking belt and on the right side of the striking head; The blanking cylinder is arranged at the rear side of one end of the blanking belt away from the laser, and the blanking plate is arranged vertically and connected to the blanking cylinder; A mounting hole is provided in the middle of the lower side of the blanking plate, and the baffle strip is located in the mounting hole and perpendicular to the blanking plate; one end of the baffle strip is located on the blanking belt, and the other end is connected to the first lifting cylinder, which is located on the lower side of the blanking cylinder.

7. The ultra-thin inductive laser paint stripping connection equipment according to claim 6, characterized in that: The unloading mechanism further comprises a cylindrical cleaning brush arranged above the unloading belt. The cleaning brush is arranged on a side of the striking head close to the laser, and the cleaning brush is driven by a cleaning motor.

8. The ultra-thin inductive laser paint stripping connection equipment according to claim 1, characterized in that: The basket is arranged on the third workbench; The front end of the third workbench is provided with a loading position and a unloading position in parallel, and the rear end of the third workbench is provided with a loading position and a transfer position in parallel, and the loading position and the transfer position correspond to the loading position and the unloading position in a one-to-one manner; The transplanting mechanism is provided on the third workbench and is capable of moving the basket from the loading position to the loading position, the transfer position and the unloading position in sequence; When the lifting basket is located at the loading position, it corresponds to the front and back of the blanking plate. A lifting plate is provided on the loading position. The second lifting cylinder is provided below the lifting plate and connected thereto.

9. The ultra-thin inductive laser paint stripping connection equipment according to claim 8, characterized in that: The transplanting mechanism includes a first transplanting module and a first transplanting plate vertically connected thereto, a second transplanting module and a second transplanting plate vertically connected thereto, and a third transplanting module and a third transplanting plate vertically connected thereto; The first transfer module can drive the first transfer plate to move the basket from the loading position to the transfer position, the second transfer module can drive the second transfer plate to move the basket from the upper position to the loading position, and the third transfer module can drive the third transfer plate to move the basket from the transfer position to the unloading position.

10. The ultra-thin inductive laser paint stripping and connection equipment according to claim 8, characterized in that: The lifting cylinder is connected to the middle part of the lifting plate, and guide rods are respectively provided at both ends of the lifting plate. The upper ends of the guide rods are connected to the lifting plate, and the lower ends of the guide rods pass through the top of the third workbench and are located inside the third workbench; the lower ends of the two guide rods are fixedly connected by a limit plate; A vertical connecting frame is provided on one side of the guide rod, the top of the connecting frame is connected to the top of the third workbench, and limit switches are respectively provided at the middle and lower ends; a limit plate is provided at one end of the limit plate, and the limit plate can move between the two limit switches, and the two limit switches are respectively connected to the second lifting cylinder.

Citation Information

Patent Citations

  • Ultrathin inductive light paint stripping and wiring equipment

    CN212849282U