Connection point equipment for RFID antenna production
By designing the connection point equipment for RFID antenna production, the circuit board is uniformly crimped by clamping and crimping mechanisms, and the foreign matter is removed through the automatic soot blowing mechanism, the problems of component damage, circuit board deformation and foreign matter mixing during the RFID antenna circuit board compression process are solved, and product quality and stability are improved.
Patent Information
- Application Number
- CN202510330057.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-20
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2045-03-20
AI Technical Summary
When electronic components are pressed on the RFID antenna circuit board, components are damaged, circuit board deformation and foreign matter mixing are prone to problems, affecting the performance and product quality of the circuit board.
A connection point device for RFID antenna production is designed, including an antenna clamping mechanism and component crimping mechanism. By clamping and positioning the circuit board, a uniform pressure is applied by using the crimping mechanism to avoid foreign matter mixing, and an automatic soot blowing mechanism is used to remove dust and debris from the circuit board.
It effectively avoids component damage and circuit board deformation, ensures successful connection between component pins and circuit board interface, provides a clean crimping environment, and improves product quality and service life.
Smart Images

Figure CN120186986A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of RFID antenna production, and particularly relates to a connection point device for RFID antenna production. Background Art
[0002] When pressing electronic components on an RFID antenna circuit board, many problems may occur, and corresponding solutions need to be taken. These problems and solutions are not only related to the performance and stability of the circuit board, but also affect the overall quality and service life of electronic products.
[0003] Possible Problems
[0004] Component damage: During the pressing process, if the pressure is too high, it will cause physical damage to the electronic components. For example, the pins of the chip may be broken, and the internal structure of some precision sensor components may be damaged. In addition, the instantaneous impact force generated during pressing may also cause electrical short circuits or open circuits inside the components. For example, the electrodes of a capacitor may be displaced due to the impact, resulting in abnormal electrical performance.
[0005] Circuit board deformation: Uneven pressure will cause excessive local stress on the circuit board, resulting in deformation such as bending and warping. This will not only affect the installation of the circuit board in the device, but may also cause additional stress on the pins of other components on the board, and pin breakage and other problems are likely to occur after long-term use.
[0006] Foreign matter mixing: If the pressing environment is not clean, dust, impurities in the air or debris generated during the operation may mix between the components and the circuit board. These foreign matters will affect the electrical connection between the components and the circuit board, increase the resistance, cause unstable signal transmission, and may even cause short circuit faults.
[0007] Based on this, we have designed a connection point device for RFID antenna production. Summary of the Invention
[0008] The purpose of the present invention is to provide a connection point device for RFID antenna production in view of the problems of easy damage of components, deformation of the circuit board caused by uneven pressure, and easy mixing of foreign matters into the circuit board when pressing electronic components on the existing RFID antenna circuit board.
[0009] The present invention is achieved through the following technical solutions:
[0010] A connection point device for RFID antenna production, used for pressing components on an RFID antenna circuit board, includes:
[0011] The device body, the outside of the device body is provided with a sealing cover, and the front of the sealing cover is provided with an opening; one side of the front of the sealing cover is provided with a control surface for controlling the operation of the device;
[0012] An antenna clamping mechanism, which is arranged inside the equipment body and is used for clamping and positioning the antenna circuit board to be crimped;
[0013] A component crimping mechanism, which is arranged above the antenna clamping mechanism and is used for applying uniform pressure to the components to be crimped so that their pins are connected to the interfaces on the circuit board.
[0014] Preferably, the antenna clamping mechanism includes a clamping support frame, which is fixedly installed inside the equipment body. The upper end of the clamping support frame is fixedly connected with a support platform. The upper end of the support platform is provided with a clamping platform. The lower end of the clamping platform is connected to the support platform through a longitudinal moving mechanism and a transverse moving mechanism, so that the clamping platform can move longitudinally and transversely to realize the positioning function; clamping cylinder fixing frames are respectively arranged on the front side and the rear side of the clamping platform. Clamping cylinders are installed on the clamping cylinder fixing frames. The movable ends of the clamping cylinders are connected with clamping jigs. The circuit board of the antenna is fixed by the front and rear clamping jigs to prevent the circuit board from sliding during crimping.
[0015] Preferably, the longitudinal moving mechanism includes multiple longitudinal slide rails arranged on the upper end surface of the support platform. A longitudinal slide seat is arranged on the upper end of each longitudinal slide rail. A longitudinal platform is fixedly installed on the upper end of the longitudinal slide seat. A longitudinal motor is installed at the rear side of the support platform. The output end of the longitudinal motor is connected with a longitudinal lead screw. The other end of the longitudinal lead screw is connected to the support platform through a bearing seat; the lower end of the longitudinal platform is in threaded connection with the longitudinal lead screw through a threaded block; during use, the longitudinal motor drives the longitudinal lead screw to rotate, so as to drive the longitudinal platform to move longitudinally;
[0016] Preferably, the transverse moving mechanism includes multiple transverse slide rails arranged on the upper end of the longitudinal platform. A transverse slide seat is arranged on the upper end of each transverse slide rail. A transverse platform is fixedly installed on the upper end of the transverse slide seat. A transverse motor is installed on the left side of the longitudinal platform. The output end of the transverse motor is connected with a transverse lead screw. The other end of the transverse lead screw is connected to the longitudinal platform through a bearing seat; the lower end of the transverse platform is in threaded connection with the transverse lead screw through a threaded block. During operation, the transverse motor drives the transverse lead screw to rotate, so as to drive the transverse platform to move transversely.
[0017] Preferably, the component crimping mechanism includes crimping support frames symmetrically arranged on both sides of the support platform. A cross beam is arranged at the upper ends of the two crimping support frames. A crimping cylinder is fixedly installed in the middle of the front side of the cross beam. A crimping assembly is arranged at the lower end of the crimping cylinder.
[0018] Preferably, the crimping assembly includes a mounting bracket, the mounting bracket is fixedly connected to the movable end of the crimping cylinder, the lower end of the mounting bracket is fixedly connected with a crimping head housing, a crimping head is inserted into the lower end of the crimping head housing, and a U-shaped notch is provided at the upper end of the crimping head. A transverse through groove is provided in the middle of the crimping head housing, and a driving block is provided in the through groove. An inclined groove is provided on the driving block, and the U-shaped end of the crimping head is connected to the inclined groove through a rotating shaft;
[0019] A bottom plate is provided at the rear side of the mounting bracket, a driving cylinder is provided at the upper end of the bottom plate, the movable end of the driving cylinder is connected to the driving block. During use, first, the crimping cylinder drives the crimping assembly to quickly descend. When approaching the circuit board component, the driving cylinder drives the driving block to move forward, and the crimping head moves downward through the inclined groove, so as to perform secondary precise crimping on the component, avoiding large movement amplitude of the crimping cylinder and causing component damage.
[0020] Preferably, an automatic dust blowing mechanism is provided in the middle of the lower end of the cross beam. The automatic dust blowing mechanism includes a connecting frame, the connecting frame is U-shaped, the upper end of the connecting frame is fixedly connected to the lower end of the cross beam, an air bag is fixedly installed at the bottom of the connecting frame, a plurality of springs are provided inside the air bag, and the top and bottom of the air bag are made of hard materials; A nozzle mounting plate is provided on the connecting frame, both ends of the nozzle mounting plate are respectively installed on both sides of the connecting frame through two mounting seats, and the nozzle mounting plate can be rotated to adjust the angle. A plurality of nozzles are provided on the front surface of the nozzle mounting plate; The front surface of the air bag is connected to the plurality of nozzles through an air outlet pipe, and one-way air inlet valves are also provided on both sides of the top of the air bag;
[0021] During use, the crimping cylinder drives the mounting bracket to move downward. During the downward movement, the bottom plate on the mounting bracket will contact the air bag and press it down, so that the gas in the air bag is instantly ejected from the nozzle and blown onto the circuit board on the clamping platform, blowing away the dust and debris on the clamping platform and the circuit board, ensuring the cleanliness of the circuit board, providing a clean crimping environment for crimping, and avoiding foreign objects from mixing in.
[0022] Preferably, the length of the bottom plate on the rear side of the mounting bracket is flush with the rear side surface of the air bag, ensuring that the bottom plate can fully press the air bag during the downward movement.
[0023] The present invention has the following advantages compared with the prior art:
[0024] 1. By providing an antenna clamping mechanism and a component crimping mechanism inside the equipment body, the antenna clamping mechanism clamps and positions the antenna circuit board, and then the component crimping mechanism makes a secondary downward pressing action, which can apply uniform and precise pressure to the component, enabling the component pins to be successfully connected to the interfaces on the circuit board, and can avoid the phenomenon of component damage caused by excessive crimping action amplitude and force.
[0025] 2. By providing a longitudinal movement mechanism and a lateral movement mechanism, the present invention enables the clamping platform to move precisely longitudinally and laterally, so that the crimping head can be accurately positioned with respect to the components on the circuit board, facilitating the crimping operation.
[0026] 3. By providing a sealing cover around the device body, the present invention isolates the interior of the device from the exterior as much as possible, preventing dust from falling onto the circuit board and affecting the crimping of the components on the antenna circuit board.
[0027] 4. By providing an automatic dust blowing mechanism, during the descending process, the bottom plate on the mounting frame contacts the airbag and presses it down, causing the gas in the airbag to be instantaneously ejected from the nozzle and blown towards the circuit board on the clamping platform, blowing away the dust and debris on the clamping platform and the circuit board, ensuring the cleanliness of the circuit board, providing a clean crimping environment for crimping, and preventing foreign objects from mixing in.
[0028] 5. The angle of the nozzle mounting plate in the present invention can be rotationally adjusted, enabling the nozzle to accurately face the circuit board on the clamping platform as needed, enhancing the blowing effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] Figure 1 is a schematic structural diagram of a connection point device for RFID antenna production;
[0030] Figure 2 is a front view of a connection point device for RFID antenna production;
[0031] Figure 3 is a schematic structural diagram of an antenna clamping mechanism and a component crimping mechanism in a connection point device for RFID antenna production;
[0032] Figure 4 is an oblique view of an antenna clamping mechanism and a component crimping mechanism in a connection point device for RFID antenna production;
[0033] Figure 5 is a partial schematic structural diagram of an antenna clamping mechanism in a connection point device for RFID antenna production;
[0034] Figure 6 is a schematic structural diagram of a component crimping mechanism in a connection point device for RFID antenna production;
[0035] Figure 7 is a side view of a component crimping mechanism in a connection point device for RFID antenna production;
[0036] Figure 8 is a front view of a crimping head in a connection point device for RFID antenna production;
[0037] Figure 9It is a schematic structural diagram of an airbag in a connection point device for RFID antenna production.
[0038] Reference numerals in the figure: 1, equipment body; 2, control panel; 3, antenna clamping mechanism; 4, component crimping mechanism;
[0039] 301, clamping support frame; 302, support platform; 303, longitudinal slide rail; 304, longitudinal slide block; 305, longitudinal platform; 306, longitudinal motor; 307, longitudinal lead screw; 308, transverse platform; 309, transverse slide block; 310, transverse motor; 311, transverse slide rail; 312, transverse lead screw; 313, clamping platform; 314, clamping fixture; 315, clamping cylinder; 316, clamping cylinder fixing frame;
[0040] 401, crimping support frame; 402, cross beam; 403, crimping cylinder; 404, crimping head assembly; 405, automatic dust blowing mechanism;
[0041] 4041, mounting frame; 4042, crimping head housing; 4043, crimping head; 4044, drive block; 4045, drive cylinder; 4046, bottom plate; 4047, inclined slot;
[0042] 4051, connecting frame; 4052, airbag; 4053, mounting seat; 4054, nozzle mounting plate; 4055, nozzle; 4056, air outlet pipe; 4057, spring; 4058, intake valve. Detailed implementation mode
[0043] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0044] Embodiment 1
[0045] Please refer to Figures 1-9 , a connection point device for RFID antenna production, used for crimping components on an RFID antenna circuit board, including: an equipment body 1, a sealing cover is provided on the outside of the equipment body 1, and an opening is provided on the front of the sealing cover; a control surface is provided on one side of the front of the sealing cover for controlling the operation of the equipment; an antenna clamping mechanism 3, the antenna clamping mechanism 3 is arranged inside the equipment body 1 for clamping and positioning the antenna circuit board to be crimped; a component crimping mechanism 4, the component crimping mechanism 4 is arranged above the antenna clamping mechanism 3 for applying uniform pressure to the components to be crimped so that their pins are connected to the interfaces on the circuit board.
[0046] In this embodiment, the antenna clamping mechanism 3 includes a clamping support frame 301, which is fixedly installed inside the device body 1. The upper end of the clamping support frame 301 is fixedly connected to a support platform 302. The upper end of the support platform 302 is provided with a clamping platform 313. The lower end of the clamping platform 313 is connected to the support platform 302 through a longitudinal movement mechanism and a transverse movement mechanism, so that the clamping platform 313 can move longitudinally and transversely to achieve the positioning function. Clamping cylinder fixing frames 316 are respectively arranged on the front side and the rear side of the clamping platform 313. A clamping cylinder 315 is installed on the clamping cylinder fixing frame 316. The movable end of the clamping cylinder 315 is connected to a clamping fixture 314. The circuit board of the antenna is fixed by the front and rear clamping fixtures 314 to prevent the circuit board from sliding during crimping.
[0047] In this embodiment, the longitudinal movement mechanism includes a plurality of longitudinal slide rails 303 arranged on the upper end surface of the support platform 302. A longitudinal slide seat 304 is arranged on the upper end of each longitudinal slide rail 303. A longitudinal platform 305 is fixedly installed on the upper end of the longitudinal slide seat 304. A longitudinal motor 306 is installed on the rear side of the support platform 302. The output end of the longitudinal motor 306 is connected to a longitudinal lead screw 307. The other end of the longitudinal lead screw 307 is connected to the support platform 302 through a bearing seat. The lower end of the longitudinal platform 305 is threadedly connected to the longitudinal lead screw 307 through a threaded block. During use, the longitudinal motor 306 drives the longitudinal lead screw 307 to rotate, thereby driving the longitudinal platform 305 to move longitudinally.
[0048] In this embodiment, the transverse movement mechanism includes a plurality of transverse slide rails 311 arranged on the upper end of the longitudinal platform 305. A transverse slide seat 309 is arranged on the upper end of each transverse slide rail 311. A transverse platform 308 is fixedly installed on the upper end of the transverse slide seat 309. A transverse motor 310 is installed on the left side of the longitudinal platform 305. The output end of the transverse motor 310 is connected to a transverse lead screw 312. The other end of the transverse lead screw 312 is connected to the longitudinal platform 305 through a bearing seat. The lower end of the transverse platform 308 is threadedly connected to the transverse lead screw 312 through a threaded block. During operation, the transverse motor 310 drives the transverse lead screw 312 to rotate, thereby driving the transverse platform 308 to move transversely.
[0049] In this embodiment, the component crimping mechanism 4 includes crimping support frames 401 symmetrically arranged on both sides of the support platform 302. A cross beam 402 is arranged at the upper ends of the two crimping support frames 401. A crimping cylinder 403 is fixedly installed in the middle of the front side of the cross beam 402. A crimping assembly is arranged at the lower end of the crimping cylinder 403.
[0050] The crimping assembly includes a mounting bracket 4041, which is fixedly connected to the movable end of the crimping cylinder 403. A crimping head housing 4042 is fixedly connected to the lower end of the mounting bracket 4041. A crimping head 4043 is inserted into the lower end of the crimping head housing 4042, and there is a U-shaped notch at the upper end of the crimping head 4043. A horizontal through groove is provided in the middle of the crimping head housing 4042, and a driving block 4044 is provided in the through groove. An inclined groove 4047 is provided on the driving block 4044, and the U-shaped end of the crimping head 4043 is connected to the inclined groove 4047 through a rotating shaft.
[0051] A bottom plate 4046 is provided at the rear side of the mounting bracket 4041. A driving cylinder 4045 is provided at the upper end of the bottom plate 4046. The movable end of the driving cylinder 4045 is connected to the driving block 4044. During use, first, the crimping cylinder 403 drives the crimping assembly to quickly descend. When approaching the circuit board component, the driving cylinder 4045 drives the driving block 4044 to move forward, and the crimping head 4043 moves downward through the inclined groove 4047, so as to perform secondary precise crimping on the component, avoiding damage to the component caused by the large movement amplitude of the crimping cylinder 403.
[0052] Embodiment 2
[0053] In order to automatically remove dust and debris on the circuit board during each crimping process and ensure the cleanliness of the crimping environment, on the basis of Embodiment 1, the following technical solutions are added in this embodiment:
[0054] Please refer to Figure 3 、 Figure 4 、 Figure 9 , an automatic dust blowing mechanism 405 is provided in the middle of the lower end of the cross beam 402. The automatic dust blowing mechanism 405 includes a connecting frame 4051, which is U-shaped. The upper end of the connecting frame 4051 is fixedly connected to the lower end of the cross beam 402. An airbag 4052 is fixedly installed at the bottom of the connecting frame 4051. A plurality of springs 4057 are provided inside the airbag 4052, and the top and bottom of the airbag 4052 are made of hard materials. The connecting frame 4051 is provided with a nozzle mounting plate 4054. The two ends of the nozzle mounting plate 4054 are respectively installed on both sides of the connecting frame 4051 through two mounting seats 4053, and the nozzle mounting plate 4054 can be rotated to adjust the angle. A plurality of nozzles 4055 are provided on the front surface of the nozzle mounting plate 4054. The front surface of the airbag 4052 is communicated with a plurality of nozzles 4055 through an air outlet pipe 4056. One-way air inlet valves 4058 are also provided on both sides of the top of the airbag 4052.
[0055] During use, the crimping cylinder 403 drives the mounting bracket 4041 to move downward. During the downward movement, the bottom plate 4046 on the mounting bracket 4041 will contact the airbag 4052 and press it down, causing the gas in the airbag 4052 to be instantly ejected from the nozzle 4055 and blown onto the circuit board on the clamping platform 313, so that the dust and debris on the clamping platform 313 and the circuit board are blown away, ensuring the cleanliness of the circuit board, providing a clean crimping environment for crimping, and preventing foreign objects from mixing in.
[0056] The length of the rear bottom plate 4046 of the mounting bracket 4041 should be flush with the rear side of the airbag 4052 to ensure that the bottom plate 4046 can fully press on the airbag 4052 during the downward movement.
[0057] The working principle of the present invention:
[0058] During use, the operator places the circuit board of the RFID antenna on the clamping platform 313, and two clamping cylinders 315 drive two clamping fixtures 314 to clamp and fix the circuit board of the RFID antenna. Then, the pins of the electronic components are inserted into the jacks of the circuit board. The longitudinal movement mechanism and the transverse movement mechanism drive the circuit board on the clamping platform 313 to move directly below the crimping head 4043. Then, the crimping cylinder 403 drives the mounting bracket 4041 to move downward. When approaching the circuit board components, the crimping cylinder 403 stops working, and the driving cylinder 4045 drives the driving block 4044 to move forward, and through the inclined groove 4047, the crimping head 4043 moves downward slowly, so as to perform a secondary precise crimping on the components, avoiding damage to the components caused by the large movement amplitude of the crimping cylinder 403.
[0059] At the same time, during the downward movement of the mounting bracket 4041, the bottom plate 4046 on the mounting bracket 4041 will contact the airbag 4052 and press it down, causing the gas in the airbag 4052 to be instantly ejected from the nozzle 4055 and blown onto the circuit board on the clamping platform 313, so that the dust and debris on the clamping platform 313 and the circuit board are blown away, ensuring the cleanliness of the circuit board, providing a clean crimping environment for crimping, and preventing foreign objects from mixing in.
[0060] When the crimping is completed, the two clamping cylinders 315 retract, driving the two clamping fixtures 314 to release the circuit board of the RFID antenna, and the operator takes out the RFID antenna, and the crimping is completed.
[0061] The present invention is provided with an antenna clamping mechanism 3 and a component crimping mechanism 4 inside the equipment body 1. The antenna clamping mechanism 3 clamps and positions the antenna circuit board, and then the component crimping mechanism 4 makes a secondary downward pressing action, which can apply uniform and precise pressure to the components, enabling the component pins to be successfully connected to the interfaces on the circuit board, and can avoid the phenomenon of component damage caused by excessive crimping action amplitude and force.
[0062] By providing a moving mechanism and a lateral moving mechanism, the present invention enables the clamping platform 313 to move accurately longitudinally and laterally, so that the crimping head 4043 can be accurately positioned with respect to the components on the circuit board, facilitating the crimping operation.
[0063] By providing a sealing cover around the device body 1, the present invention isolates the interior of the device from the exterior as much as possible, preventing dust from falling onto the circuit board and affecting the crimping of the components on the antenna circuit board.
[0064] By providing an automatic dust blowing mechanism 405, during the descending process, the bottom plate 4046 on the mounting bracket 4041 will contact the airbag 4052 and press it down, causing the gas in the airbag 4052 to be instantaneously ejected from the nozzle 4055 and blown towards the circuit board on the clamping platform 313, blowing away the dust and debris on the clamping platform 313 and the circuit board, ensuring the cleanliness of the circuit board, providing a clean crimping environment for crimping, and preventing foreign objects from mixing in.
[0065] The angle of the nozzle mounting plate 4054 in the present invention can be rotationally adjusted, so that the nozzle 4055 can accurately face the circuit board on the clamping platform 313 as needed, enhancing the effect of blowing.
[0066] It should be noted that in this text, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, such that a process, method, article or device comprising a series of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article or device. Without further limitation, an element defined by the statement "comprising an..." does not exclude the existence of additional identical elements in the process, method, article or device comprising the element.
[0067] Although the embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A connection point device for RFID antenna production, used for crimping components on RFID antenna circuit boards, characterized in that: include: An equipment body (1), wherein a sealing cover is provided on the outside of the equipment body (1), and an opening is provided on the front of the sealing cover; a control surface is provided on one side of the front of the sealing cover for controlling the operation of the equipment; An antenna clamping mechanism (3), the antenna clamping mechanism (3) being arranged inside the device body (1) and used for clamping and positioning an antenna circuit board that needs to be crimped; A component crimping mechanism (4) is arranged above the antenna clamping mechanism (3) and is used to apply uniform pressure to the component to be crimped so that its pins are connected to the interface on the circuit board.
2. A connection point device for producing RFID antennas according to claim 1, characterized in that: The antenna clamping mechanism (3) comprises a clamping support frame (301), the clamping support frame (301) is fixedly installed inside the device body (301), the upper end of the clamping support frame (301) is fixedly connected to the support platform (302), the upper end of the support platform (302) is provided with a clamping platform (313), and the lower end of the clamping platform (313) is connected to the support platform (302) through a longitudinal moving mechanism and a transverse moving mechanism, so that the clamping platform (313) can move longitudinally and transversely to achieve a positioning function; The front and rear sides of the clamping platform (313) are respectively provided with a clamping cylinder fixing frame (316), a clamping cylinder (315) is installed on the clamping cylinder fixing frame (316), and a clamping fixture (314) is connected to the movable end of the clamping cylinder (315), and the circuit board of the antenna is fixed by the front and rear clamping fixtures (314).
3. A connection point device for producing RFID antennas according to claim 2, characterized in that: The longitudinal moving mechanism comprises a plurality of longitudinal slide rails (303) arranged on the upper end surface of the supporting platform (302), the upper end of each longitudinal slide rail (303) is provided with a longitudinal slide seat (304), the upper end of the longitudinal slide seat (304) is fixedly mounted with a longitudinal platform (305), a longitudinal motor (306) is mounted on the rear side of the supporting platform (302), the output end of the longitudinal motor (306) is connected with a longitudinal screw rod (307), the other end of the longitudinal screw rod (307) is connected to the supporting platform (302) via a bearing seat; the lower end of the longitudinal platform (305) is threadedly connected to the longitudinal screw rod (307) via a threaded block.
4. A connection point device for producing RFID antennas according to claim 2, characterized in that: The transverse moving mechanism comprises a plurality of transverse slide rails (311) arranged at the upper end of the longitudinal platform (305), each of the transverse slide rails (311) being provided with a transverse slide seat (309) at the upper end, a transverse platform (308) being fixedly mounted on the upper end of the transverse slide seat (309), a transverse motor (310) being mounted on the left side of the longitudinal platform (305), an output end of the transverse motor (310) being connected to a transverse screw rod (312), the other end of the transverse screw rod (312) being connected to the longitudinal platform (305) via a bearing seat; the lower end of the transverse platform (308) being threadedly connected to the transverse screw rod (312) via a threaded block.
5. The connection point device for producing RFID antennas according to claim 2, characterized in that: The component crimping mechanism (4) comprises crimping support frames (401) symmetrically arranged on both sides of the support platform (302), the upper ends of the two crimping support frames (401) are provided with crossbeams (402), a crimping cylinder (403) is fixedly installed in the middle of the front side of the crossbeam (402), and a crimping assembly is provided at the lower end of the crimping cylinder (403).
6. A connection point device for producing RFID antennas according to claim 5, characterized in that: The crimping assembly comprises a mounting frame (4041), the mounting frame (4041) is fixedly connected to the movable end of the crimping cylinder (403), the lower end of the mounting frame (4041) is fixedly connected to a crimping head shell (4042), the lower end of the crimping head shell (4042) is inserted with a crimping head (4043), and the upper end of the crimping head (4043) has a U-shaped notch, a transverse through groove is provided in the middle of the crimping head shell (4042), and a driving block (4044) is provided in the through groove, an inclined groove (4047) is provided on the driving block (4044), and the U-shaped end of the crimping head (4043) is connected to the inclined groove (4047) via a rotating shaft; A bottom plate (4046) is provided on the rear side of the mounting frame (4041), and a driving cylinder (4045) is provided on the upper end of the bottom plate (4046). The movable end of the driving cylinder (4045) is connected to the driving block (4044). When in use, the crimping cylinder (403) first drives the crimping assembly to descend rapidly. When approaching the circuit board component, the driving cylinder (4045) drives the driving block (4044) to move forward, and the crimping head (4043) is directed downward through the inclined groove (4047), thereby performing a second precise crimping of the component to avoid large movement of the crimping cylinder (403) and causing damage to the component.
7. A connection point device for producing RFID antennas according to claim 6, characterized in that: An automatic soot blowing mechanism (405) is provided at the middle of the lower end of the cross beam (402), and the automatic soot blowing mechanism (405) comprises a connecting frame (4051), the connecting frame (4051) is in a U shape, the upper end of the connecting frame (4051) is fixedly connected to the lower end of the cross beam (402), an air bag (4052) is fixedly installed at the bottom of the connecting frame (4051), a plurality of springs (4057) are provided inside the air bag (4052), and the top and bottom of the air bag (4052) are made of hard material; the connecting frame (4051) A nozzle mounting plate (4054) is provided, and the two ends of the nozzle mounting plate (4054) are respectively mounted on the two sides of the connecting frame (4051) through two mounting seats (4053), and the nozzle mounting plate (4054) can be rotated to adjust the angle, and a plurality of nozzles (4055) are provided on the front of the nozzle mounting plate (4054); the front of the airbag (4052) is connected to the plurality of nozzles (4055) through an air outlet pipe (4056), and one-way air inlet valves (4058) are also provided on both sides of the top of the airbag (4052).
8. The connection point device for producing RFID antennas according to claim 7, characterized in that: The length of the rear bottom plate (4046) of the mounting frame (4041) should be flush with the rear side surface of the airbag (4052).
Citation Information
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