A high-pressure double-sided clamping electric contact structure forming mechanism
By using a high-voltage double-sided clamping electrical contact structure forming mechanism, and utilizing a ring conveyor belt and motor-driven components, the problem of rapid connection and disconnection of electrical contact structures in electronic devices is solved, improving processing efficiency and forming quality, and adapting to the processing needs of different specifications of sheet metal.
Patent Information
- Application Number
- CN202411250121.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-06
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2044-09-06
AI Technical Summary
The electrical contact structure in existing electronic devices is not convenient for quick connection and disconnection, and is prone to structural defects, affecting its service life.
The high-voltage double-sided clamping electric contact structure forming mechanism includes components such as an assembly frame, transport wheels, forming plates, grinding rollers, and cutting blades. The workpiece is transported by a ring conveyor belt, the grinding wheels are used to clean and grind the cutting blades, the forming template cuts plates of different specifications, and the various components work together through motor drive.
It enables compact processing of workpieces, reduces equipment space occupation, improves processing efficiency, ensures neat cuts, reduces the probability of defective products, and adapts to the assembly needs of components of different specifications.
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Figure CN119319446B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to an electronic component forming device, in particular to a high-voltage double-sided clamping electric contact structure forming mechanism. BACKGROUND
[0002] In some electronic devices, data transmission and current transmission between electronic devices need to be connected through electric contact structures. Since the transmission function needs to be frequently used, the electric contact structure needs to be simple to connect, ensure quick connection and disconnection, and avoid defects in the structure to ensure the service life of the structure. SUMMARY
[0003] To solve the above technical problems, the present application provides a high-voltage double-sided clamping electric contact structure forming mechanism, which comprises an assembly frame, the assembly frame comprises an assembly support plate, the top of the assembly support plate is fixedly provided with an annular support, the bottom of the left and right ends of the assembly support plate is respectively fixedly provided with a second assembly groove and a first assembly groove, the outer side of the second assembly groove and the first assembly groove is provided with a feeding port, the second assembly groove is movably provided with a second forming structure, and the first assembly groove is movably provided with a first forming mechanism, a pair of conveying wheels is transversely rotatably installed in the annular support, an annular conveying belt is rotatably installed between the conveying wheels, a plurality of support grooves are fixedly installed on the annular conveying belt, a sliding support plate is longitudinally slidably installed in the support groove, a protruding rod is fixedly installed on the top of the sliding support plate, a compression spring is fixedly installed between the sliding support plate and the support groove, and a forming plate is rotatably installed at the bottom of the sliding support plate, the first forming mechanism comprises an assembly pressing plate, the assembly pressing plate is fixedly installed at the top of the first assembly groove through an electric push rod, a pressing block is longitudinally slidably installed in the assembly pressing plate, a grinding roller is transversely rotatably installed at the bottom of the pressing block, a first extrusion plate and a second extrusion plate are transversely slidably installed in the first assembly groove, the second forming structure comprises a bottom plate support, the bottom plate support is fixedly installed at the bottom of the assembly support plate through an electric push rod, a template support is transversely slidably installed in the second assembly groove, and the template support is fixedly installed outside the second assembly groove through an electric push rod.
[0004] Furthermore, the assembly pressure plate and the top of the sliding support plate are in contact with the protruding rod. A cutting blade is longitudinally slidably installed on the outer side of the assembly pressure plate. A compression spring is fixedly installed between the top of the cutting blade and the assembly pressure plate. The top of the first extrusion plate is provided with a cutting groove, which cooperates with the cutting blade. A sliding groove is provided inside the first extrusion plate. The sliding groove inside the first extrusion plate is located at the bottom of the cutting groove. A grinding screw is rotatably installed in the sliding groove of the first extrusion plate. A grinding slider is mounted on the lead screw of the grinding screw. A grinding wheel is rotatably installed on the grinding slider. A gear is fixedly installed at the other end of the grinding wheel. A rack is fixedly installed in the sliding groove of the first extrusion plate. The gear on the grinding wheel meshes with the rack. A pulley is fixedly installed at one end of the grinding screw. An eighth motor is fixedly installed on the outer side of the first extrusion plate. A pulley is fixedly installed on the eighth motor. The eighth motor and the grinding screw are connected by a belt.
[0005] Furthermore, a cutting base plate is fixedly installed on the top of the base plate support, a forming welding head is longitudinally slidably installed on the bottom of the cutting base plate, a fourth motor is fixedly installed on the bottom of the cutting base plate, a lead screw is fixedly installed on the fourth motor, and the lead screw on the fourth motor cooperates with the lead screw of the forming welding head.
[0006] Furthermore, a forming template is fixedly installed at the front end of the template support. The front end of the forming template is provided with a through groove. A pair of adjusting templates are slidably installed in the through groove at the front end of the forming template. A compression spring is fixedly installed between the adjusting template and the forming template. A cutting edge is fixedly installed at the bottom of the forming template. A shaping rod is rotatably installed in the forming template. The shaping rod is connected to the adjusting template through a pull rope. A gear is fixedly installed at one end of the shaping rod. A third motor is fixedly installed on the template support. A gear is fixedly installed on the third motor. The gear on the third motor meshes with the gear at one end of the shaping rod.
[0007] Furthermore, the second forming structure includes an assembly pressure rod, which is fixedly installed on the top of the second assembly groove by an electric push rod, and the bottom of the assembly pressure rod contacts and engages with a protrusion on the sliding support plate.
[0008] Furthermore, a first motor is fixedly installed on the top of the sliding support plate, a pulley is fixedly installed on the first motor, a pulley is fixedly installed on the forming plate, and the first motor and the forming plate are connected by a belt.
[0009] Furthermore, a pressing screw is rotatably mounted laterally at the bottom of the first assembly slot. The pressing screw cooperates with the lead screws of the first and second pressing plates. A gear is fixedly mounted on the pressing screw. A seventh motor is fixedly mounted at the bottom of the first assembly slot. A gear is fixedly mounted on the seventh motor. The gear on the seventh motor meshes with the gear on the pressing screw.
[0010] Further, the pressing block is fixedly installed with a sixth motor, a belt pulley is fixedly installed on the sixth motor, a belt pulley is fixedly installed on the polishing roller, and the sixth motor and the polishing roller are connected through a belt.
[0011] Further, a pair of transmission screws are longitudinally rotatably installed on the top of the assembly pressing plate, the transmission screws are matched with the pressing block lead screws, belt pulleys are fixedly installed on the top of the transmission screws, the transmission screws are connected through a belt, a fifth motor is fixedly installed on the top of the assembly pressing plate, a belt pulley is fixedly installed on the fifth motor, and the fifth motor and the transmission screws are connected through a belt.
[0012] Further, a demolding base is fixedly installed on the top of the annular support, a demolding push plate is fixedly installed at the front end of the demolding base through an electric push rod, a demolding brush is fixedly installed at the rear end of the demolding push plate, the demolding brush is connected with an external liquid storage tank through a pipeline, a second motor is fixedly installed at the rear end of the annular support, and the second motor is fixedly connected with the conveying wheel.
[0013] Compared with the prior art, the present application has the following beneficial effects: (1) the workpiece is transported by the annular conveying belt, the occupied space of the equipment is reduced, the machining steps are more compact, and the machining efficiency is improved; (2) the cutting knife is cleaned and polished by the polishing wheel during the machining process, the cutting part can be ensured to be neat, and the probability of defective products is reduced; and (3) different specifications of plate materials can be cut by the forming template, and different specifications of components can be assembled. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is a front structure schematic diagram of the present application.
[0015] Figure 2 It is a top structure schematic diagram of the present application.
[0016] Figure 3 It is a whole structure schematic diagram of the present application.
[0017] Figure 4 It is a whole structure schematic diagram of the present application.
[0018] Figure 5 It is a whole structure schematic diagram of the present application.
[0019] Figure 6 It is a bottom structure schematic diagram of the assembly support plate of the present application.
[0020] Figure 7 It is a top structure schematic diagram of the assembly support plate of the present application.
[0021] Figure 8 It is a local structure schematic diagram of the template support of the present application.
[0022] Figure 9It is a local cut structure schematic view of the first extrusion plate of the present application.
[0023] Figure 10 It is a local cut structure schematic view of the first extrusion plate of the present application. Figure 4 It is a local cut structure schematic view of the first extrusion plate of the present application.
[0024] Figure 11 It is a local cut structure schematic view of the first extrusion plate of the present application. Figure 5 It is a local cut structure schematic view of the first extrusion plate of the present application.
[0025] Fig. 1 is an assembly frame; Fig. 2 is a second forming structure; Fig. 3 is a first forming mechanism; Fig. 101 is a ring-shaped support; Fig. 102 is a ring-shaped conveying belt; Fig. 103 is a conveying wheel; Fig. 104 is a supporting groove; Fig. 105 is a forming plate; Fig. 106 is a sliding support plate; Fig. 107 is a first motor; Fig. 108 is a demolding base; Fig. 109 is a demolding push plate; Fig. 110 is a second motor; Fig. 111 is a second assembly groove; Fig. 112 is a first assembly groove; Fig. 113 is an assembly support plate; Fig. 114 is a demolding brush; Fig. 201 is an assembly pressing rod; Fig. 202 is a shape-adjusting rotating rod; Fig. 203 is a third motor; Fig. 204 is a template support; Fig. 205 is an adjusting template; Fig. 206 is a bottom plate support; Fig. 207 is a forming welding head; Fig. 208 is a cutting bottom plate; Fig. 209 is a fourth motor; Fig. 210 is a forming template; Fig. 211 is a cutting blade; Fig. 301 is an assembly pressing plate; Fig. 302 is a cutting knife; Fig. 303 is a pressing block; Fig. 304 is a first extrusion plate; Fig. 305 is a transmission screw rod; Fig. 306 is a fifth motor; Fig. 307 is a sixth motor; Fig. 308 is a polishing roller; Fig. 309 is an extrusion screw rod; Fig. 310 is a seventh motor; Fig. 311 is a second extrusion plate; Fig. 312 is an eighth motor; Fig. 313 is a polishing screw rod; Fig. 314 is a polishing sliding block; Fig. 315 is a polishing wheel; Fig. 316 is a rack; Fig. 317 is a cutting groove. DETAILED DESCRIPTION
[0026] The technical solutions provided by the present application are further illustrated in the following with reference to the drawings and in accordance with the specific embodiments.
[0027] As Figures 1-11As shown, a high-pressure double-sided clamping electric contact structure forming mechanism, including assembly frame 1, the assembly frame 1 includes assembly support plate 113, the top of the assembly support plate 113 is fixedly installed with annular support 101, the bottom of the left and right ends of the assembly support plate 113 is respectively fixedly installed with second assembly groove 111 and first assembly groove 112, the outer side of the second assembly groove 111 and the first assembly groove 112 is provided with a feeding port, the second assembly groove 111 is movably installed with second forming structure 2, the first assembly groove 112 is movably installed with first forming mechanism 3, a pair of transport wheels 103 is transversely rotatably installed in the annular support 101, a second motor 110 is fixedly installed at the rear end of the annular support 101, the second motor 110 is fixedly connected with the transport wheel 103, and a ring-shaped conveying belt 102 is rotatably installed between the transport wheel 103, a plurality of support grooves 104 are fixedly installed on the ring-shaped conveying belt 102, a sliding support plate 106 is longitudinally slidably installed in the support groove 104, a protruding rod is fixedly installed at the top of the sliding support plate 106, a compression spring is fixedly installed between the sliding support plate 106 and the support groove 104, a forming plate 105 is rotatably installed at the bottom of the sliding support plate 106, a first motor 107 is fixedly installed at the top of the sliding support plate 106, a belt wheel is fixedly installed on the first motor 107, a belt wheel is fixedly installed on the forming plate 105, the first motor 107 is connected with the forming plate 105 through a belt, the forming plate 105 is used for supporting during plate processing, the first motor 107 is started to drive the forming plate 105 to rotate at the bottom of the sliding support plate 106, the workpiece blank is turned over, and it is convenient to check and subsequent assembly.
[0028] As Figures 1-11As shown, the first forming mechanism 3 comprises an assembly pressing plate 301 fixedly installed at the top of the first assembly groove 112 by an electric push rod, the assembly pressing plate 301 is in contact with the protruding rod at the top of the sliding support plate 106, the first extrusion plate 304 and the second extrusion plate 311 are slidably installed in the first assembly groove 112, and are used for bending and forming the plate, so that the plate is wound on the surface of the forming plate 105, the extrusion screw 309 is rotatably installed at the bottom of the first assembly groove 112, the extrusion screw 309 is in screw thread cooperation with the first extrusion plate 304 and the second extrusion plate 311, the extrusion screw 309 is fixedly installed with a gear, the seventh motor 310 is fixedly installed at the bottom of the first assembly groove 112, the seventh motor 310 is fixedly installed with a gear, the gear on the seventh motor 310 is in meshing cooperation with the gear on the extrusion screw 309, after the plate is sent into the first assembly groove 112 through the feeding port on the first assembly groove 112 by the external conveying equipment, the electric push rod at the bottom of the assembly pressing plate 301 is started to drive the assembly pressing plate 301 to descend, the sliding support plate 106 is driven to descend by the cooperation of the assembly pressing plate 301 and the protruding rod on the sliding support plate 106, and the forming plate 105 is synchronously driven to descend, the plate is gradually formed on the surface of the forming plate 105 by the extrusion of the forming plate 105, then the seventh motor 310 is started to drive the extrusion screw 309 to rotate, the first extrusion plate 304 and the second extrusion plate 311 are slidably driven in the first assembly groove 112 by the rotation of the extrusion screw 309, the opening at the top of the plate is bent to be attached to the surface of the forming plate 105 to form a closed ring, and the preliminary forming step is completed.
[0029] As Figures 1-11As shown, the assembly pressure plate 301 is longitudinally slidingly installed with a pressing block 303, the bottom of the pressing block 303 is transversely rotatably installed with a polishing roller 308, the polishing roller 308 is used for polishing the interface of the shaped plate, removing the burrs at the interface, facilitating the subsequent installation and use, the pressing block 303 is fixedly installed with a sixth motor 307, the sixth motor 307 is fixedly installed with a belt pulley, the polishing roller 308 is fixedly installed with a belt pulley, the sixth motor 307 and the polishing roller 308 are connected through a belt, a pair of transmission screws 305 are longitudinally rotatably installed on the top of the assembly pressure plate 301, the transmission screws 305 are matched with the screws of the pressing block 303, the top of the transmission screws 305 is fixedly installed with a belt pulley, the transmission screws 305 are connected through a belt, a fifth motor 306 is fixedly installed on the top of the assembly pressure plate 301, the fifth motor 306 is fixedly installed with a belt pulley, the fifth motor 306 and the transmission screws 305 are connected through a belt, the transmission screws 305 are driven to rotate by starting the fifth motor 306, the pressing block 303 is driven to descend in the assembly pressure plate 301 by the rotation of the transmission screws 305, so that the polishing roller 308 is attached to the interface of the plate, then the polishing roller 308 is driven to rotate by starting the sixth motor 307, the interface is polished to ensure the flatness and smoothness of the interface, facilitating the subsequent installation work.
[0030] As shown, Figures 1-11 The cutting knife 302 is longitudinally slidingly installed on the outside of the assembly pressure plate 301, the cutting knife 302 is fixedly installed with a compression spring between the top and the assembly pressure plate 301, the first extrusion plate 304 is provided with a cutting groove 317 at the top, the cutting groove 317 is matched with the cutting knife 302, and is used for cutting the plate, the first extrusion plate 304 is provided with a sliding groove, the sliding groove in the first extrusion plate 304 is located at the bottom of the cutting groove 317, a polishing screw 313 is transversely rotatably installed in the sliding groove of the first extrusion plate 304, a polishing sliding block 314 is screwedly installed on the polishing screw 313, a polishing wheel 315 is rotatably installed on the polishing sliding block 314, a gear is fixedly installed at the other end of the polishing wheel 315, a rack 316 is fixedly installed in the sliding groove of the first extrusion plate 304, the gear on the polishing wheel 315 is engaged with the rack 316, when the assembly pressure plate 301 is driven to descend by the electric push rod at the bottom of the assembly pressure plate 301, the cutting knife 302 is synchronously driven to descend and contacts with the plate on the surface of the first extrusion plate 304, at the same time, the polishing screw 313 is further driven to descend, the cutting knife 302 is driven to descend and is matched with the cutting groove 317 to cut the plate, while cutting the plate, the polishing screw 313 is driven to rotate by starting the eighth motor 312, the polishing screw 313 is driven to transversely slide in the sliding groove of the first extrusion plate 304 by the rotation of the polishing screw 313, and the polishing wheel 315 is driven to move in the sliding groove, at the same time, the polishing wheel 315 is driven to rotate by the gear at the front end of the polishing wheel 315 and the rack 316, the bottom of the cutting knife 302 is cleaned and polished, the sharpness of the bottom of the cutting knife 302 is maintained, the cut is more neat, and the generation of defective products is reduced.
[0031] As Figures 1-11As shown, including the assembly pressure rod 201, the assembly pressure rod 201 is fixedly installed in the second assembly groove 111 top by electric push rod, the bottom of the assembly pressure rod 201 and the convex rod on the sliding support plate 106 contact fit, the second forming structure 2 includes the bottom plate support 206, the bottom plate support 206 is fixedly installed at the bottom of the assembly support plate 113 by electric push rod, the top of the bottom plate support 206 is fixedly installed with cutting bottom plate 208, the bottom of the cutting bottom plate 208 is longitudinally slidingly installed with the forming welding head 207, the forming welding head 207 is used for bending the plate and welding the joint of the plate, the bottom of the cutting bottom plate 208 is fixedly installed with the fourth motor 209, the fourth motor 209 is fixedly installed with the lead screw, the lead screw on the fourth motor 209 cooperates with the forming welding head 207, the second assembly groove 111 is horizontally slidingly installed with the template support 204, the template support 204 is fixedly installed outside the second assembly groove 111 by electric push rod, the front end of the template support 204 is fixedly installed with the forming template 210, the front end of the forming template 210 is provided with a through slot, a pair of adjusting templates 205 is horizontally slidingly installed in the through slot of the front end of the forming template 210, the adjusting templates 205 and the forming template 210 are fixedly installed with compression springs, the bottom of the forming template 210 is fixedly installed with the cutting edge 211, the forming template 210 is horizontally rotatably installed with the shape adjusting rotating rod 202, the shape adjusting rotating rod 202 is connected with the adjusting template 205 through a pull rope, one end of the shape adjusting rotating rod 202 is fixedly installed with a gear, the third motor 203 is fixedly installed with a gear on the template support 204, the gear on the third motor 203 meshes with the gear at one end of the shape adjusting rotating rod 202, the cutting edge 211 and the adjusting template 205 cooperate with the cutting bottom plate 208 to cut the plate, the plate preliminarily processed by the first forming mechanism 3 is transported to the top of the second assembly groove 111 by the ring-shaped conveying belt 102, then the electric push rod at the bottom of the assembly pressure rod 201 is started to drive the assembly pressure rod 201 to descend, the assembly pressure rod 201 cooperates with the convex rod on the sliding support plate 106 to press the forming plate 105 into the second assembly groove 111, during which the plate is transported between the cutting bottom plate 208 and the forming template 210 through the feeding port of the second assembly groove 111 by the external conveying structure, then the third motor 203 is started to drive the shape adjusting rotating rod 202 to rotate, the angle of rotation of the shape adjusting rotating rod 202 is controlled according to requirements, so as to control the extension distance of the adjusting template 205, adjust the shape of the cut plate, after adjusting to the required shape, the electric push rod at the top of the sliding support plate 106 is started to drive the sliding support plate 106 to slide upwards in the second assembly groove 111, and drive the demolding base 108 to contact the plate, the plate is cut by the cooperation of the demolding base 108 and the cutting edge 211, then the third motor 203 is started to rotate in reverse to recover the adjusting template 205 into the forming template 210, then the fourth motor 209 is started to drive the forming welding head 207 to slide upwards at the bottom of the cutting bottom plate 208 to bend the protruding part of the plate,And through the forming welding head 207 with the annular plate material on the forming plate 105 welding, welding is completed after the start of the template bracket 204 and the second assembly groove 111 between the electric push rod, drive forming template 210 in the second assembly groove 111 outside sliding, make forming template 210 no longer with the plate contact, after starting the assembly pressure rod 201 bottom of the electric push rod rises, drive assembly pressure rod 201 rises, make the sliding support plate 106 reset, at the same time control the second forming structure 2 of all structure reset, after starting the first motor 107 drive forming plate 105 rotation, the other side of the annular plate material processing repeated steps.
[0032] As shown in Figures 1-11 The top of the annular support 101 is fixedly installed with a demolding base 108, the front end of the demolding base 108 is fixedly installed with a demolding push plate 109 through an electric push rod, the rear end of the demolding push plate 109 is fixedly installed with a demolding brush 114, the top of the demolding brush 114 is connected with an external liquid storage tank through a pipeline, the structural components are transported to the bottom of the demolding push plate 109 through the annular conveyor belt 102 after processing is completed, the demolding push plate 109 is moved by starting the electric push rod at the front end of the demolding base 108, the structural components processed are pushed out from the forming plate 105, at the same time, the surface of the forming plate 105 is coated with a demolding liquid through the demolding brush 114, so as to facilitate the demolding of the structural components.
Claims
1. A high-pressure double-sided clamping electrical contact structure forming mechanism, comprising an assembly frame (1), the assembly frame (1) comprising an assembly support plate (113), a ring-shaped support (101) being fixedly installed on the top of the assembly support plate (113), characterized in that, The bottom of the assembly support plate (113) is respectively fixedly provided with a second assembly groove (111) and a first assembly groove (112) at both ends, a feeding port is arranged outside the second assembly groove (111) and the first assembly groove (112), a second forming structure (2) is movably arranged in the second assembly groove (111), and a first forming mechanism (3) is movably arranged in the first assembly groove (112). A pair of transport wheels (103) are horizontally rotatably arranged in the annular support (101), a ring-shaped transport belt (102) is rotatably arranged between the transport wheels (103), a plurality of support grooves (104) are fixedly arranged on the ring-shaped transport belt (102), a sliding support plate (106) is longitudinally slidably arranged in the support groove (104), a protruding rod is fixedly arranged on the top of the sliding support plate (106), a compression spring is fixedly arranged between the sliding support plate (106) and the support groove (104), and a forming plate (105) is rotatably arranged at the bottom of the sliding support plate (106). The first forming mechanism (3) comprises an assembly pressing plate (301), the assembly pressing plate (301) is fixedly arranged at the top of the first assembly groove (112) through an electric push rod, a pressing block (303) is longitudinally slidably arranged in the assembly pressing plate (301), a grinding roller (308) is horizontally rotatably arranged at the bottom of the pressing block (303), a first extrusion plate (304) and a second extrusion plate (311) are horizontally slidably arranged in the first assembly groove (112), the second forming structure (2) comprises a bottom plate support (206), the bottom plate support (206) is fixedly arranged at the bottom of the assembly support plate (113) through an electric push rod, a template support (204) is horizontally slidably arranged in the second assembly groove (111), and the template support (204) is fixedly arranged outside the second assembly groove (111) through an electric push rod. The assembly pressing plate (301) is in contact with the protruding rod on the top of the sliding support plate (106), a cutting knife (302) is longitudinally slidably arranged outside the assembly pressing plate (301), a compression spring is fixedly arranged between the top of the cutting knife (302) and the assembly pressing plate (301), a cutting groove (317) is arranged at the top of the first extrusion plate (304), the cutting groove (317) is matched with the cutting knife (302), a sliding groove is arranged in the first extrusion plate (304), the sliding groove in the first extrusion plate (304) is located at the bottom of the cutting groove (317), a grinding screw (313) is horizontally rotatably arranged in the sliding groove of the first extrusion plate (304), a grinding sliding block (314) is assembled on the grinding screw (313), a grinding wheel (315) is rotatably arranged on the grinding sliding block (314), a gear is fixedly arranged at the other end of the grinding wheel (315), a rack (316) is fixedly arranged in the sliding groove of the first extrusion plate (304), the gear on the grinding wheel (315) is engaged with the rack (316), a belt wheel is fixedly arranged at one end of the grinding screw (313), an eighth motor (312) is fixedly arranged outside the first extrusion plate (304), a belt wheel is fixedly arranged on the eighth motor (312), and the eighth motor (312) and the grinding screw (313) are connected through a belt. The bottom plate support (206) top fixedly installed with cutting bottom plate (208), cutting bottom plate (208) bottom longitudinal slidingly installed with forming welding head (207), cutting bottom plate (208) bottom fixedly installed with fourth motor (209), fourth motor (209) upper fixedly installed with screw rod, fourth motor (209) upper screw rod and forming welding head (207) screw rod cooperate.
2. A high pressure double-sided clamped electrical contact structure forming mechanism according to claim 1, characterized in that, The front end of the template support (204) is fixedly installed with a forming template (210), the front end of the forming template (210) is provided with a through slot, a pair of adjusting templates (205) are transversely slidably installed in the through slot at the front end of the forming template (210), compression springs are fixedly installed between the adjusting templates (205) and the forming template (210), a cutting edge (211) is fixedly installed at the bottom of the forming template (210), a profile adjusting rotating rod (202) is transversely rotatably installed in the forming template (210), the profile adjusting rotating rod (202) is connected with the adjusting templates (205) through a pull rope, a gear is fixedly installed at one end of the profile adjusting rotating rod (202), a third motor (203) is fixedly installed on the template support (204), a gear is fixedly installed on the third motor (203), and the gear on the third motor (203) is engaged with the gear at one end of the profile adjusting rotating rod (202).
3. A high pressure double side clamping electrical contact structure forming mechanism according to claim 1, wherein The second forming structure (2) further comprises an assembly pressing rod (201), which is fixedly installed at the top of the second assembly groove (111) through an electric push rod, and the bottom of the assembly pressing rod (201) is in contact with the protruding rod on the sliding support plate (106).
4. The high pressure double side clamping electrical contact structure forming mechanism according to claim 1, wherein, A first motor (107) is fixedly installed at the top of the sliding support plate (106), a belt wheel is fixedly installed on the first motor (107), a belt wheel is fixedly installed on the forming plate (105), and the first motor (107) and the forming plate (105) are connected through a belt.
5. The high pressure double side clamping electrical contact structure forming mechanism according to claim 1, wherein, A extrusion screw (309) is transversely rotatably installed at the bottom of the first assembly groove (112), the extrusion screw (309) cooperates with the screw rods of the first extrusion plate (304) and the second extrusion plate (311), a gear is fixedly installed on the extrusion screw (309), a seventh motor (310) is fixedly installed at the bottom of the first assembly groove (112), a gear is fixedly installed on the seventh motor (310), and the gear on the seventh motor (310) is engaged with the gear on the extrusion screw (309).
6. A high pressure double side clamping electrical contact structure forming mechanism according to claim 1, wherein A sixth motor (307) is fixedly installed in the pressing block (303), a belt wheel is fixedly installed on the sixth motor (307), and a belt wheel is fixedly installed on the polishing roller (308); the sixth motor (307) and the polishing roller (308) are connected through a belt.
7. A high pressure double side clamping electrical contact structure forming mechanism according to claim 1, wherein A pair of transmission screws (305) are longitudinally rotatably installed at the top of the assembly pressing plate (301), the transmission screws (305) cooperate with the screw rods of the pressing block (303), belt wheels are fixedly installed at the top of the transmission screws (305), the transmission screws (305) are connected through a belt, a fifth motor (306) is fixedly installed at the top of the assembly pressing plate (301), a belt wheel is fixedly installed on the fifth motor (306), and the fifth motor (306) and the transmission screws (305) are connected through a belt.
8. A high pressure double side clamping electrical contact structure forming mechanism according to claim 1, wherein The annular support (101) top fixed mounting has the demoulding base (108), and the demoulding base (108) front end is fixedly installed with the demoulding push plate (109) through the electric push rod, and the demoulding push plate (109) rear end is fixedly installed with the demoulding brush (114), and the demoulding brush (114) top is connected with external liquid storage groove through pipeline, and the annular support (101) rear end is fixedly installed with the second motor (110), and the second motor (110) is fixedly connected with the transport wheel (103).
Citation Information
Patent Citations
Metal sheet machining device
CN112756979A
Forming mechanism of electronic element
CN210188320U