Wire buckling equipment for mobile phone line installation
By designing a wire buckle device including support body, loading mechanism, etc., the loading, adjustment and installation of the coaxial line is automatically completed, and the problem of inefficient manual installation is solved and efficient coaxial line installation is achieved.
Patent Information
- Application Number
- CN202510770018.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-10
- Publication Date
- 2025-07-11
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In the prior art, it is inefficient and time-consuming to fix both ends of the coaxial line into the slot in the mobile phone case by manually fixing it in a card slot.
A buckle device including a support body, a loading mechanism, a coaxial conveying mechanism, a mobile phone case conveying mechanism, a coaxial adjustment mechanism, a coaxial fastening mechanism and a transfer mechanism is designed, and the loading, adjustment and installation process of the coaxial line is automatically completed through mechanized methods.
Improve work efficiency, save manpower and time, and achieve efficient coaxial installation.
Smart Images

Figure CN120287038A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of mobile phone assembly equipment, and particularly relates to a wire buckling device for mobile phone circuit installation. Background Art
[0002] When installing the circuit of a mobile phone, it involves clamping a coaxial cable into the cable slot of the mobile phone. Before that, both ends of the coaxial cable need to be buckled and fixed in the cable slot in the mobile phone case. Currently, generally, both ends of the coaxial cable are fixed in the cable slot in the mobile phone case manually. This method is inefficient and time-consuming.
[0003] Therefore, there is an urgent need for a wire buckling device for mobile phone circuit installation to solve the problem of inefficiency, time consumption and labor intensity when manually fixing both ends of the coaxial cable in the card slot of the mobile phone case. Summary of the Invention
[0004] The purpose of the present invention is to overcome the above-mentioned deficiencies in the prior art and provide a wire buckling device for mobile phone circuit installation, which has the functions of high efficiency, time saving and labor saving.
[0005] In order to achieve the above-mentioned invention purpose, the present invention provides the following technical solutions: A wire buckling device for mobile phone circuit installation, comprising: A support main body, on which a connecting bracket is arranged; A feeding mechanism, which is arranged on the support main body and is used to provide the coaxial cable; A coaxial cable handling mechanism, which is arranged on the support main body and is used to send the coaxial cable provided by the feeding mechanism to the next processing step; A mobile phone case conveying mechanism, which is arranged on the support main body and is used to convey the mobile phone case with a cable slot; A coaxial cable adjusting mechanism, which is arranged on the support main body and is used to adjust the shape of the coaxial cable; A coaxial cable buckling mechanism, which comprises a first buckling connection seat, a second buckling connection seat, a first buckling jaw and a second buckling jaw. The first buckling connection seat and the second buckling connection seat are slidably arranged on the connecting bracket. The first buckling jaw is vertically movably arranged on the first buckling connection seat, and the second buckling jaw is vertically movably arranged on the second buckling connection seat and is used to install both ends of the coaxial cable in the cable slot on the mobile phone case and is located above the mobile phone case conveying mechanism; A transfer mechanism, which is vertically and horizontally movably arranged on the connecting bracket and is used to transfer the mobile phone with the coaxial cable installed to the next processing step.
[0006] Further, the first wire clamping jaw includes a first clamping tooth, a second clamping tooth, a connecting seat, and a second driving motor. The second driving motor is arranged on the connecting seat. A gear is arranged on the main shaft of the second driving motor. A limiting block is also arranged on the second driving motor. Two sliding grooves are arranged on the limiting block. Sliders matched with the sliding grooves are arranged on the first clamping tooth and the second clamping tooth. A rack meshed with the gear is arranged on one side of the slider. A first driving motor and a lead screw are arranged on the first wire connecting seat. A driving gear is arranged on the main shaft of the first driving motor. A driven gear is arranged at one end of the lead screw. The driving gear and the driven gear are connected by a transmission belt. The connecting seat is sleeved on the lead screw. The structures of the first wire clamping jaw and the second wire clamping jaw are the same.
[0007] Further, the feeding mechanism includes a belt conveying mechanism, a feeding support, a material clamping jaw, a support seat, and a material hopper. The belt conveying mechanism and the feeding support are arranged on the supporting main body. The support seat is movably arranged on the feeding support. The material hopper is located at the end of the belt conveying mechanism. The material clamping jaw is movably arranged on the support seat.
[0008] Further, the coaxial line handling mechanism includes a handling support, a first connecting seat, a second connecting seat, and a coaxial line handling jaw. The handling support is arranged on the supporting main body. The first connecting seat is movably arranged on the handling support. The second connecting seat is movably arranged on the first connecting seat. The coaxial line handling jaw is movably and rotatably arranged on the second connecting seat.
[0009] Further, the coaxial line adjusting mechanism includes a coaxial line straightening assembly and a coaxial line angle adjusting assembly. The coaxial line straightening assembly includes a first frame body, a second frame body, a connecting guide rail, a first clamping jaw, a second clamping jaw, and a driving assembly. The connecting guide rail is arranged on the supporting main body. The first frame body and the second frame body are slidably arranged on the connecting guide rail. The driving assembly is arranged on the supporting main body and connected to the first frame body for driving the first frame body to move on the connecting guide rail. The first clamping jaw is arranged on the first frame body. The second clamping jaw is arranged on the second frame body.
[0010] Two coaxial line angle adjusting assemblies. An adjusting support seat is arranged in the supporting main body. An adjusting support is slidably arranged on the adjusting support seat. The coaxial line angle adjusting assemblies are mirror-symmetrically arranged and slidably arranged on the adjusting support. The coaxial cable angle adjustment assembly includes a support plate, a first adjustment arm, a second adjustment arm, a left connection seat and a right connection seat. Two parallel slide rails are provided on the support plate. The left connection seat and the right connection seat are respectively arranged on the two slide rails. Cylinders are provided on the left connection seat and the right connection seat. The first adjustment arm is slidably arranged on the left connection seat, and the second adjustment arm is slidably arranged on the right connection seat. The first adjustment arm and the second adjustment arm are respectively connected to the main shafts of the cylinders. The support plate is slidably arranged on the support body, and a drive assembly is further provided on the support plate. The drive assembly is used to drive the left connection seat and the right connection seat to move up and down.
[0011] Further, the mobile phone case conveying mechanism includes a frame body and a driving member, a first conveyor belt and a second conveyor belt provided on the frame body. The driving member is used to drive the first conveyor belt and the second conveyor belt to perform circular motion.
[0012] Further, the transfer mechanism includes a mobile phone case belt conveying mechanism, a transfer seat body, transfer clamping jaws and a driving member. The transfer seat body is movably arranged up, down, left and right on the connection bracket, and the transfer clamping jaws are arranged on the transfer seat body; The mobile phone case belt conveying mechanism is arranged on the support body and is located below the transfer clamping jaws.
[0013] Further, a detection device is further included, and the detection device is arranged on the connection bracket.
[0014] Compared with the prior art, the present invention has the following advantages and beneficial effects: During actual use, the mobile phone case with a card wire groove stops after being conveyed forward by the mobile phone case conveying mechanism to the corresponding position; at the same time, the material clamping jaws clamp the coaxial cable in the material hopper and place it into the belt conveying mechanism, and then the coaxial cable handling clamping jaws clamp the coaxial cable on the belt conveying mechanism and send it into the coaxial cable adjustment mechanism. Then, the coaxial cable wire buckling mechanism clamps both ends of the adjusted coaxial cable and installs it in the mobile phone case with a card wire groove. Finally, the transfer mechanism transfers the mobile phone case with the installed coaxial cable to the next processing step. Compared with manual installation, using the present invention can improve work efficiency and help workers save physical strength and time. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 is a three-dimensional structure diagram of the present invention; Figure 2 is a schematic structural diagram of the first internal embodiment of the present invention; Figure 3 is Figure 2 an enlarged structural diagram of part A in Figure 4 is a schematic structural diagram of the coaxial cable wire buckling mechanism in the present invention; Figure 5 Schematic structural view of a perspective of the first wire buckling jaw in the present invention; Figure 6 Schematic structural view of another perspective of the first wire buckling jaw in the present invention; Figure 7 is Figure 6 enlarged structural view of the position E in Figure 8 Schematic structural view of the second internal embodiment of the present invention; Figure 9 is Figure 8 enlarged structural view of the position B in Figure 10 Schematic structural view of the third internal embodiment of the present invention; Figure 11 is Figure 10 enlarged structural view of the position C in Figure 12 Schematic structural view of a perspective of the coaxial line adjustment mechanism in the present invention; Figure 13 Schematic structural view of another perspective of the coaxial line adjustment mechanism in the present invention; Figure 14 is Figure 13 enlarged structural view of the position D in Figure 15 Schematic structural view of the transfer mechanism in the present invention; Figure 16 Schematic structural view of the coaxial line installed on the mobile phone case.
[0016] Names and reference signs of parts: 1 - support main body, 2 - connecting bracket, 31 - belt conveying mechanism, 32 - loading bracket, 33 - material clamping jaw, 34 - support seat, 35 - material hopper, 41 - handling bracket, 42 - first connecting seat, 43 - second connecting seat, 44 - coaxial line handling clamping jaw, 51 - first frame body, 52 - second frame body, 53 - connecting guide rail, 54 - first clamping jaw, 55 - second clamping jaw, 61 - support plate, 62 - first adjusting arm, 63 - second adjusting arm, 64 - left connecting seat, 65 - right connecting seat, 66 - cylinder, 71 - first wire buckling connecting seat, 72 - second wire buckling connecting seat, 73 - first wire buckling clamping jaw, 74 - second wire buckling clamping jaw, 81 - transfer seat body, 82 - transfer clamping jaw, 83 - mobile phone case belt conveying mechanism, 9 - frame body, 10 - adjusting support seat, 11 - adjusting bracket, 12 - first conveyor belt, 13 - second conveyor belt, 14 - detection device, 15 - first clamping tooth, 16 - second clamping tooth, 17 - connecting seat, 18 - second driving motor, 19 - gear, 20 - limiting block, 21 - chute, 22 - slider, 23 - rack, 24 - first driving motor, 25 - lead screw, 26 - coaxial line terminal. Specific Embodiment
[0017] The present invention will be further described in detail below in conjunction with test examples and specific embodiments. However, it should not be understood that the scope of the above-mentioned subject matter of the present invention is limited to the following embodiments. Any technology implemented based on the content of the present invention belongs to the scope of the present invention.
[0018] In this embodiment, a wire buckling device for mobile phone circuit installation is provided, as Figures 1 - 16 shown, including: A support main body 1, on which a connection bracket 2 is provided; a machine cover is installed on the support main body 1; A feeding mechanism, which is arranged on the support main body 1 and is used to provide coaxial cables; A coaxial cable handling mechanism, which is arranged on the support main body 1 and is used to send the coaxial cables provided by the feeding mechanism to the next processing step; A mobile phone case conveying mechanism, which is arranged on the support main body 1 and is used to convey mobile phone cases with card wire grooves; A coaxial cable adjusting mechanism, which is arranged on the support main body 1 and is used to adjust the shape of the coaxial cable; A coaxial cable buckling mechanism, which includes a first buckling connection seat 71, a second buckling connection seat 72, a first buckling jaw 73 and a second buckling jaw 74. The first buckling connection seat 71 and the second buckling connection seat 72 are slidably arranged on the connection bracket 2. A drag chain is arranged on the connection bracket 2, and the output end of the drag chain is connected to the first buckling connection seat 71 and the second buckling connection seat 72. The first buckling jaw 73 is movably arranged up and down on the first buckling connection seat 71, and the second buckling jaw 74 is movably arranged up and down on the second buckling connection seat 72 and is used to install both ends of the coaxial cable in the card wire grooves on the mobile phone case and is located above the mobile phone case conveying mechanism. Among them, the first buckling jaw 73 and the second buckling jaw 74 move to the coaxial cable adjusting mechanism to clamp the two coaxial cable terminals 26 of the adjusted coaxial cable, and then move above the mobile phone case conveying mechanism and move downward to buckle the coaxial cable terminals 26 of the coaxial cable into the terminal card grooves in the card wire grooves on the mobile phone case on the mobile phone case conveying mechanism.
[0019] A transfer mechanism, which is movably arranged up, down, left and right on the connection bracket 2 and is used to transfer the mobile phone with the coaxial cable installed to the next processing step.
[0020] In actual use, the mobile phone case with a card wire groove stops after being conveyed forward by the mobile phone case conveying mechanism and arriving at the corresponding position; at the same time, the material clamping jaws 33 clamp the coaxial cable in the material hopper and place it into the belt conveying mechanism, then the coaxial cable handling jaws 44 clamp the coaxial cable on the belt conveying mechanism and send it into the coaxial cable adjusting mechanism, then the coaxial cable wire buckling mechanism clamps both ends of the coaxial cable with the adjusted shape and sends it into the mobile phone case with a card wire groove, and finally the transfer mechanism transfers the mobile phone case with the installed coaxial cable to the next processing step. Compared with manual installation, using the present invention can improve work efficiency and help staff save physical strength and time.
[0021] Further optimizing the above embodiment, as Figures 5 - 7 shown, the first wire buckling jaw 73 includes a first clamping tooth 15, a second clamping tooth 16, a connecting seat 17 and a second driving motor 18. The first clamping tooth 15 and the second clamping tooth 16 are provided with coaxial cable clamping grooves. The second driving motor 18 is arranged on the connecting seat 17. A gear 19 is arranged on the main shaft of the second driving motor 18. A limiting block 20 is also arranged on the second driving motor 18. Two sliding grooves 21 are arranged on the limiting block 20. Sliders 22 matching with the sliding grooves 21 are arranged on the first clamping tooth 15 and the second clamping tooth 16. A rack 23 meshing with the gear 19 is arranged on one side of the slider 22. Wherein, when the second driving motor 18 works, it drives the gear 19 to rotate, thereby driving the rack 23 to move, so that the slider 22 moves in the sliding groove 21, and further enabling the first clamping tooth 15 and the second clamping tooth 16 to approach or move away from each other.
[0022] A first driving motor 24 and a lead screw 25 are arranged on the first wire buckling connecting seat 71. A driving gear is arranged on the main shaft of the first driving motor 24. A driven gear is arranged at one end of the lead screw 25. The driving gear and the driven gear are connected by a transmission belt. The connecting seat 17 is sleeved on the lead screw 25. The structures of the first wire buckling jaw 73 and the second wire buckling jaw 74 are the same. Wherein, when the first driving motor 24 works, it drives the lead screw 25 to rotate, and further enables the connecting seat 17 to perform a linear reciprocating motion up and down.
[0023] Further optimizing the above embodiment, as Figures 8 - 9 shown, the feeding mechanism includes a belt conveying mechanism 31, a feeding support 32, material clamping jaws 33, a support seat 34 and a material hopper 35. The belt conveying mechanism 31 and the feeding support 32 are arranged on the support main body 1. The support seat 34 is movably arranged on the feeding support 32. A drag chain is arranged on the feeding support 32. The output end of the drag chain is connected to the support seat 34. The material hopper 35 is located at the end of the belt conveying mechanism 31. The material clamping jaws 33 are movably arranged on the support seat 34. Specifically, the material clamping jaws 33 move to the material hopper 35 to clamp the coaxial cable, and then move above the belt conveying mechanism 31 to place the coaxial cable on it.
[0024] Further optimize the above embodiments, such as Figures 10 - 14 As shown, the coaxial cable handling mechanism includes a handling bracket 41, a first connecting seat 42, a second connecting seat 43 and a coaxial cable handling jaw 44; the handling bracket 41 is arranged on the support body 1, the first connecting seat 42 is movably arranged on the handling bracket 41, the second connecting seat 43 is movably arranged on the first connecting seat 42, and the coaxial cable handling jaw 44 is movably and rotatably arranged on the second connecting seat 43.
[0025] Further optimize the above embodiments, the coaxial cable adjusting mechanism includes a coaxial cable straightening assembly and a coaxial cable angle adjusting assembly; The coaxial cable straightening assembly includes a first frame body 51, a second frame body 52, a connecting guide rail 53, a first jaw 54, a second jaw 55 and a driving assembly. The driving assembly is a motor screw driving mechanism and its output end is connected to the first frame body 51. The connecting guide rail 53 is arranged on the support body 1. The first frame body 51 and the second frame body 52 are slidably arranged on the connecting guide rail 53. The driving assembly is arranged on the support body 1 and connected to the first frame body 51 for driving the first frame body 51 to move on the connecting guide rail 53. The first jaw 54 is arranged on the first frame body 51, and the second jaw 55 is arranged on the second frame body 52. Among them, the first jaw 54 and the second jaw 55 respectively clamp the two ends of the coaxial cable. Under the action of the driving assembly, the first frame body 51 moves along the connecting guide rail 53, so as to straighten the bent coaxial cable.
[0026] Two coaxial cable angle adjusting assemblies. An adjusting support seat 10 is arranged in the support body 1. An adjusting bracket 11 is slidably arranged on the adjusting support seat 10. The coaxial cable angle adjusting assemblies are mirror-symmetric and slidably arranged on the adjusting bracket 11; The coaxial cable angle adjusting assembly includes a support plate 61, a first adjusting arm 62, a second adjusting arm 63, a left connecting seat 64 and a right connecting seat 65. Two parallel slide rails are arranged on the support plate 61. The left connecting seat 64 and the right connecting seat 65 are respectively arranged on the two slide rails. Cylinders 66 are arranged on the left connecting seat 64 and the right connecting seat 65. The first adjusting arm 62 is slidably arranged on the left connecting seat 64, and the second adjusting arm 63 is slidably arranged on the right connecting seat 65. The first adjusting arm 62 and the second adjusting arm 63 are respectively connected to the main shafts of the cylinders 66. The support plate 61 is slidably arranged on the support body 1. A driving assembly is also arranged on the support plate 61, and the driving assembly is used to drive the left connecting seat 64 and the right connecting seat 65 to move up and down. Among them, the first adjusting arm 62 and the second adjusting arm 63 clamp the coaxial cable and move it up and down, so as to adjust the coaxial cable into a shape adapted to the card slot in the mobile phone case.
[0027] Further optimize the above embodiments, such as Figures 2 - 3 The mobile phone case conveying mechanism includes a frame 9, a driving member, a first conveyor belt 12 and a second conveyor belt 13 arranged on the frame 9. The driving member is used to drive the first conveyor belt 12 and the second conveyor belt 13 to perform circular motion. Among them, there are two mobile phone case conveying mechanisms, and the two mobile phone case conveying mechanisms are arranged in parallel.
[0028] Further optimize the above embodiments, such as Figure 2 , Figure 3 , Figure 15 and Figure 16 As shown in and, the transfer mechanism includes a mobile phone case belt conveying mechanism 83, a transfer seat body 81, transfer jaws 82 and a driving member. The transfer seat body 81 is movably arranged on the connecting bracket 2 in the up, down, left and right directions. The transfer jaws 82 are arranged on the transfer seat body 81. The mobile phone case belt conveying mechanism 83 is arranged on the support main body 1 and is located below the transfer jaws 82.
[0029] Specifically, the transfer jaws 82 clamp the mobile phone cases with coaxial lines installed on the first conveyor belt 12 and the second conveyor belt 13, then move to the mobile phone case belt conveying mechanism 83 and place them on it, and enter the next processing step under the action of the mobile phone case belt conveying mechanism 83.
[0030] Further optimize the above embodiments, such as Figure 15 As shown in, it further includes a detection device 14. The detection device 14 is arranged on the connecting bracket 2. A controller is arranged on the support main body 1. The detection device 14 is electrically connected to the controller, and a corresponding recognition algorithm is imported into the controller. Among them, the detection device 14 can detect whether the coaxial line is properly installed in the card slot of the mobile phone case.
[0031] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A wire-clamping device for mobile phone circuit installation, characterized in that Including: A support main body, on which a connection bracket is arranged; A feeding mechanism, which is arranged on the support main body and is used to provide a coaxial cable; A coaxial cable handling mechanism, which is arranged on the support main body and is used to send the coaxial cable provided by the feeding mechanism to the next processing step; A mobile phone case conveying mechanism, which is arranged on the support main body and is used to convey a mobile phone case with a card wire groove; A coaxial cable adjusting mechanism, which is arranged on the support main body and is used to adjust the shape of the coaxial cable; A coaxial cable wire buckling mechanism, which includes a first wire buckling connection seat, a second wire buckling connection seat, a first wire buckling jaw and a second wire buckling jaw. The first wire buckling connection seat and the second wire buckling connection seat are slidably arranged on the connection bracket. The first wire buckling jaw is vertically movably arranged on the first wire buckling connection seat. The second wire buckling jaw is vertically movably arranged on the second wire buckling connection seat and is used to install both ends of the coaxial cable in the card wire groove on the mobile phone case and is located above the mobile phone case conveying mechanism; A transfer mechanism, which is vertically and horizontally movably arranged on the connection bracket and is used to transfer the mobile phone with the coaxial cable installed to the next processing step.
2. The wire buckling device for mobile phone circuit installation according to claim 1, characterized in that, The first wire buckling jaw includes a first clamping tooth, a second clamping tooth, a connection seat and a second driving motor. The second driving motor is arranged on the connection seat. A gear is arranged on the main shaft of the second driving motor. A limiting block is also arranged on the second driving motor. Two sliding grooves are arranged on the limiting block. Sliders matched with the sliding grooves are arranged on the first clamping tooth and the second clamping tooth. A rack meshed with the gear is arranged on one side of the slider; A first driving motor and a lead screw are arranged on the first wire buckling connection seat. A driving gear is arranged on the main shaft of the first driving motor. A driven gear is arranged at one end of the lead screw. The driving gear and the driven gear are connected by a transmission belt. The connection seat is sleeved on the lead screw. The structures of the first wire buckling jaw and the second wire buckling jaw are the same.
3. A wire buckling device for mobile phone circuit installation according to claim 1, characterized in that, The feeding mechanism includes a belt conveying mechanism, a feeding bracket, a material clamping jaw, a support seat and a material hopper. The belt conveying mechanism and the feeding bracket are arranged on the support main body. The support seat is movably arranged on the feeding bracket; the material hopper is located at the end of the belt conveying mechanism. The material clamping jaw is movably arranged on the support seat.
4. A wire buckling device for mobile phone circuit installation according to claim 1, characterized in that, The coaxial cable handling mechanism includes a handling bracket, a first connection seat, a second connection seat and a coaxial cable handling jaw; the handling bracket is arranged on the support main body. The first connection seat is movably arranged on the handling bracket. The second connection seat is movably arranged on the first connection seat. The coaxial cable handling jaw is movably and rotatably arranged on the second connection seat.
5. A wire-clamping device for mobile phone circuit installation according to claim 1, characterized in that, The coaxial cable adjusting mechanism includes a coaxial cable straightening assembly and a coaxial cable angle adjusting assembly; The coaxial cable straightening assembly includes a first frame body, a second frame body, a connecting guide rail, a first jaw, a second jaw and a driving assembly. The connecting guide rail is arranged on the supporting main body. The first frame body and the second frame body are slidably arranged on the connecting guide rail. The driving assembly is arranged on the supporting main body and connected to the first frame body for driving the first frame body to move on the connecting guide rail. The first jaw is arranged on the first frame body, and the second jaw is arranged on the second frame body; Two coaxial cable angle adjusting assemblies. An adjusting support seat is arranged in the supporting main body. An adjusting support frame is slidably arranged on the adjusting support seat. The coaxial cable angle adjusting assemblies are mirror-symmetric and slidably arranged on the adjusting support frame; The coaxial cable angle adjusting assembly includes a support plate, a first adjusting arm, a second adjusting arm, a left connecting seat and a right connecting seat. Two parallel slide rails are arranged on the support plate. The left connecting seat and the right connecting seat are respectively arranged on the two slide rails. Cylinders are arranged on the left connecting seat and the right connecting seat. The first adjusting arm is slidably arranged on the left connecting seat, and the second adjusting arm is slidably arranged on the right connecting seat. The first adjusting arm and the second adjusting arm are respectively connected to the main shafts of the cylinders. The support plate is slidably arranged on the supporting main body. A driving assembly is further arranged on the support plate for driving the left connecting seat and the right connecting seat to move up and down.
6. The wire buckling device for mobile phone circuit installation according to claim 1, characterized in that, The mobile phone case conveying mechanism includes a frame body and a driving member, a first conveyor belt and a second conveyor belt arranged on the frame body. The driving member is used for driving the first conveyor belt and the second conveyor belt to perform circular motion.
7. A wire buckling device for mobile phone circuit installation according to claim 1, characterized in that, The transfer mechanism includes a mobile phone case belt conveying mechanism, a transfer seat body, transfer jaws and a driving member. The transfer seat body is movably arranged up, down, left and right on the connecting bracket. The transfer jaws are arranged on the transfer seat body; The mobile phone case belt conveying mechanism is arranged on the supporting main body and is below the transfer jaws.
8. A wire clamping device for mobile phone circuit installation according to claim 1, characterized in that, It further includes a detection device, and the detection device is arranged on the connecting bracket.
Citation Information
Patent Citations
High-precision mobile phone signal coaxial line automatic buckling assembly machine and assembly process thereof
CN116979330A
Mobile phone coaxial line installation equipment
CN117086590A
Coaxial line buckling equipment and buckling process
CN117655712A
Middle frame coaxial line mounting machine
CN118419531A
Mobile phone coaxial line assembling device
CN119965642A
Cited By
Mobile phone line arrangement device
CN120587880A
A mobile phone cable management device
CN120587880B
Mobile phone coaxial line installation equipment
CN120728454A