A continuous crimping cable terminal crimping apparatus
By designing a continuous cable terminal crimping device, and utilizing equidistant drive components and push components, the automated continuous crimping of cables and terminals is achieved. This solves the problem of continuous crimping in the automated continuous production process of traditional equipment, and realizes the continuous crimping of cable terminals in an automated continuous crimping process.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- CHANGZHOU INST OF TECH
- Filing Date
- 2023-04-21
- Publication Date
- 2026-04-21
AI Technical Summary
Traditional cable terminal crimping equipment is difficult to automate the feeding and crimping process, and each cable terminal needs to be disassembled before the next cable terminal can be crimped, which cannot meet the requirements of automated continuous production.
Design a continuous cable terminal crimping device, which uses an equal-spacing drive component to move the carrier, pushes the cable and terminal to be inserted, and the crimping component realizes automatic crimping. The carrier clamps and fixes the cable and terminal, and the terminal is automatically fed by direct vibration, realizing the automated continuous crimping and unloading of cable and terminal.
It realizes the automated feeding, crimping and unloading process of cable terminals, eliminating the need for immediate disassembly after crimping individual cables and terminals, thus meeting the needs of automated continuous production.
Smart Images

Figure CN116247484B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of cable terminal crimping equipment technology, and more specifically to a continuous crimping cable terminal crimping equipment. Background Technology
[0002] During cable manufacturing, a crimping machine is needed to crimp and fix the cable terminals to the ends of the cable. The traditional process is as follows: after inserting the cable end and the terminal, the cable is placed in the crimping machine, and the machine is activated to crimp and fix the terminal to the end of the cable.
[0003] However, the above structure has the following problems: the crimping process is difficult to automate, both in terms of feeding and crimping; and after a single cable terminal is crimped, it needs to be removed from the crimping equipment before the next cable terminal can be crimped, making it difficult to meet the current requirements for automated continuous production. Therefore, this invention designs a continuous crimping cable terminal crimping device to solve the above problems. Summary of the Invention
[0004] In view of the above-mentioned shortcomings of the existing technology, the present invention provides a continuous crimping cable terminal crimping device.
[0005] To achieve the above objectives, the present invention provides the following technical solution:
[0006] A continuous cable terminal crimping device includes a chassis, on which are installed a plurality of carriers that move sequentially at equal intervals to one side of the crimping assembly, and an equally spaced drive assembly that moves the cable and terminal to the unloading station after the cable and terminal are crimped and fixed.
[0007] The equally spaced drive assembly is equipped with several sets of carriers for clamping cables and for automatically clamping and fixing cables and terminals after the crimping assembly has crimped and fixed the cables and terminals.
[0008] The chassis is equipped with a push assembly for moving the cable on the carrier to be inserted into the terminal in the crimping assembly; the push assembly is located in front of the crimping assembly;
[0009] The chassis is equipped with a crimping assembly for crimping and fixing the cables on the carrier to the terminals inside the crimping assembly.
[0010] One side of the crimping assembly is equipped with a linear vibrator for terminal feeding.
[0011] Furthermore, the equidistant drive assembly includes an annular guide rail, support seats, a third limiting slider, a straight shaft, a synchronous pulley, a synchronous belt, and a geared motor; a straight shaft is rotatably mounted on the upper left and right ends of the housing, and a synchronous pulley is fixedly mounted on the straight shaft. The two sets of synchronous pulleys are connected by a synchronous belt drive. The bottom of one set of straight shafts is fixedly connected to the output end of the geared motor, and the geared motor is fixedly mounted on the inner bottom of the housing; an annular guide rail is fixedly mounted on the upper end of the housing, and several sets of support seats are evenly fixedly connected to the outer wall of the synchronous belt. A third limiting slider is fixedly connected to the bottom of each support seat, and the lower end of the third limiting slider is slidably mounted on the annular guide rail.
[0012] Furthermore, the pushing assembly includes a fixed frame, a first cylinder, and a push block; the fixed frame is fixedly installed on the upper end of the chassis, the first cylinder is fixedly installed on the fixed frame, and the output end of the first cylinder is fixedly connected to the push block.
[0013] Furthermore, the carrier includes a clamping assembly, an adjusting assembly, and a moving assembly. The moving assembly is mounted on the equally spaced drive assembly, the clamping assembly is connected to the moving assembly, and the adjusting assembly is mounted on the clamping assembly.
[0014] Furthermore, the clamping assembly includes a push plate connecting plate, a carrier plate, a fixed clamp, a mounting base, and a movable clamp; the mounting base and the push plate connecting plate are fixedly installed at both ends of the carrier plate, respectively. When the carrier moves to one side of the pressing assembly, the mounting base is located on the side closer to the pressing assembly, and the push plate connecting plate is located on the side closer to the push block. The fixed clamp is fixedly installed on the upper left side of the mounting base, and the movable clamp is movably installed on the upper right side of the mounting base. An adjustment component for adjusting the distance between the fixed clamp and the movable clamp is installed on the mounting base.
[0015] Furthermore, the adjustment assembly includes an adjustment nut, an adjustment screw, a limiting groove, and a second limiting slider; the mounting base has a limiting groove inside, the bottom of the movable clamp is fixedly connected to the second limiting slider, the second limiting slider is slidably connected inside the limiting groove, the second limiting slider is threadedly connected to the adjustment screw, the adjustment screw is rotatably mounted on the mounting base, and one end of the adjustment screw is fixedly connected to an adjustment nut.
[0016] Furthermore, the moving component includes a spring, a first limiting slider, and a limiting guide rail; the bottom of the carrier plate is fixedly connected to the first limiting slider, the first limiting slider is slidably connected to the limiting guide rail, the limiting guide rail is fixedly installed on the upper end of the support base, and a spring is installed between the first limiting slider and the inner wall of the support base, one end of the spring is fixedly connected to the first limiting slider, and the other end of the spring is fixedly connected to the inner side wall of the support base.
[0017] Furthermore, the pressing assembly includes an upper mold, a second cylinder, a first support frame, a second support frame, a third cylinder, a movable baffle, a fixed baffle, a lower forming mold, and a hanging ear movable groove; the bottom of the second support frame is fixedly connected to the machine housing, the upper end of the second support frame is fixedly installed with the first support frame, the second cylinder is fixedly installed on the top of the first support frame, the output end of the second cylinder is fixedly connected to the upper mold, the left inner wall of the first support frame is fixedly installed with the third cylinder, the output end of the third cylinder is fixedly connected to the lower forming mold, the right rear end of the lower forming mold is fixedly connected with the movable baffle, the rear wall of the movable baffle is slidably connected to the discharge port end of the direct vibration, the inner bottom of the first support frame is also fixedly connected with the fixed baffle, the rear wall of the fixed baffle is slidably connected to the front end surface of the lower forming mold, and the fixed baffle is located in front of the direct vibration.
[0018] Furthermore, a side U-shaped slide rail is fixedly connected to the left side wall of the vertical vibrator, and a movable groove for the ear of the terminal is opened on the side wall of the vertical vibrator to facilitate the movement of the ear. The movable groove for the ear is connected to the inner cavity of the side U-shaped slide rail.
[0019] Beneficial effects
[0020] This invention uses direct vibration to automatically feed terminals into the crimping assembly. The carrier clamps the cable, and the equal-spacing drive component drives several carriers to move sequentially to one side of the crimping assembly at equal intervals. The push component pushes the cable on the carrier to move and insert it into the terminal in the crimping assembly. Then, the crimping assembly crimps and fixes the cable on the carrier to the terminal fed into the crimping assembly. After that, the carrier automatically clamps and fixes the cable and terminal, and the equal-spacing drive component drives the cable and terminal to move out of the crimping assembly and then unloads them to the set unloading station.
[0021] This invention enables automated feeding and crimping processes, eliminating the need for immediate disassembly after crimping individual cables and terminals. Cables and terminals can be unloaded as they move to the unloading station, better meeting the requirements of current automated continuous production. Attached Figure Description
[0022] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0023] Figure 1 The main structure of the continuous crimping cable terminal crimping device of the present invention is three-dimensional. Figure 1 ;
[0024] Figure 2 This is a front view of the structure of a continuous crimping cable terminal crimping device according to the present invention;
[0025] Figure 3 This is a left view of the structure of a continuous crimping cable terminal crimping device according to the present invention;
[0026] Figure 4 The main structure of the continuous crimping cable terminal crimping device of the present invention is three-dimensional. Figure 2 ;
[0027] Figure 5 This is a perspective view of the main structure of a continuous crimping cable terminal crimping device according to the present invention;
[0028] Figure 6 For along Figure 2 A sectional view along the AA direction;
[0029] Figure 7 For along Figure 3 BB direction sectional view;
[0030] Figure 8 for Figure 4 Enlarged view of point C in the middle;
[0031] Figure 9 for Figure 6 Enlarged view at point D;
[0032] Figure 10 for Figure 7 Enlarged view of point E in the middle.
[0033] The labels in the diagram represent:
[0034] 1. Chassis 2. Carrier 21. Spring 22. First limiting slider 23. Push plate connecting plate 24. Carrier plate 25. Fixed clamp 26. Mounting base 27. Movable clamp 28. Adjusting nut 29. Limiting guide rail 210. Adjusting screw 211. Limiting slide groove 212. Second limiting slider 3. Equal spacing drive assembly 31. Circular guide rail 32. Support base 33. Third limiting slider 34. Straight shaft 35. Synchronous pulley 36. Synchronous belt 37. Gear motor 4. Push assembly 41. Fixed frame 42. First cylinder 43. Push block 5. Straight vibration 6. Pressing assembly 61. Upper mold 62. Second cylinder 63. First support frame 64. Second support frame 65. Third cylinder 66. Side U-shaped slide rail 67. Movable baffle 68. Fixed baffle 69. Lower forming mold 610. Hanging ear movable groove. Detailed Implementation
[0035] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.
[0036] The present invention will be further described below with reference to embodiments.
[0037] Example 1
[0038] Please refer to the instruction manual appendix. Figure 1 A continuous cable terminal crimping device includes a housing 1, on which are installed a plurality of carriers 2 that move sequentially at equal intervals to one side of a crimping assembly 6, and an equally spaced drive assembly 3 that moves the cable and terminal to the unloading station after the cable and terminal are crimped and fixed.
[0039] The equal-spacing drive assembly 3 is equipped with several sets of carriers 2 that are used to clamp cables and automatically clamp and fix cables and terminals after the crimping assembly 6 crimps and fixes the cables and terminals.
[0040] The chassis 1 is equipped with a push assembly 4 for moving the cable on the carrier 2 to be inserted into the terminal in the crimping assembly 6; the push assembly 4 is located in front of the crimping assembly 6;
[0041] The housing 1 is equipped with a crimping assembly 6 for crimping and fixing the cable on the carrier 2 to the terminal inside the crimping assembly 6.
[0042] A linear vibrator 5 for terminal feeding is installed on one side of the crimping assembly 6;
[0043] This invention uses a direct vibration 5 to automatically feed terminals into the crimping assembly 6. The carrier 2 clamps the cable, and the equal-spacing drive assembly 3 drives several carriers 2 to move sequentially to one side of the crimping assembly 6 at equal intervals. The push assembly 4 pushes the cable on the carrier 2 to be inserted into the terminal in the crimping assembly 6. Then, the crimping assembly 6 crimps and fixes the cable on the carrier 2 and the terminal fed into the crimping assembly 6. After that, the carrier 2 automatically clamps and fixes the cable and the terminal, and the equal-spacing drive assembly 3 drives the cable and the terminal to move out of the crimping assembly 6 and then unloads them to the set unloading station.
[0044] This invention enables automated feeding and crimping processes, eliminating the need for immediate disassembly after crimping individual cables and terminals. Cables and terminals can be unloaded as they move to the unloading station, better meeting the requirements of current automated continuous production.
[0045] Example 2
[0046] Based on Example 1, please refer to the appendix of the instruction manual. Figure 1-9 The equidistant drive assembly 3 includes an annular guide rail 31, support bases 32, third limiting sliders 33, straight shafts 34, synchronous pulleys 35, synchronous belts 36, and a geared motor 37. Straight shafts 34 are rotatably mounted on the upper left and right ends of the housing 1, and synchronous pulleys 35 are fixedly mounted on the straight shafts 34. The two sets of synchronous pulleys 35 are connected by a synchronous belt 36. The bottom of one set of straight shafts 34 is fixedly connected to the output end of the geared motor 37, and the geared motor 37 is fixedly mounted on the inner bottom of the housing 1. An annular guide rail 31 is fixedly mounted on the upper end of the housing 1. Several sets of support bases 32 are evenly fixedly connected to the outer wall of the synchronous belt 36. The bottom of each support base 32 is fixedly connected to a third limiting slider 33, and the lower ends of the third limiting sliders 33 are slidably mounted on the annular guide rail 31.
[0047] A set of straight shafts 34 are driven to rotate by a geared motor 37. The straight shafts 34 drive the synchronous pulleys 35 to rotate. The synchronous pulleys 35 drive another set of synchronous pulleys 35 to rotate via a synchronous belt 36. The synchronous belt 36 drives several sets of support seats 32 to rotate. The support seats 32 drive the third limiting slider 33 to slide along the annular guide rail 31. The movement of the support seats 32 is limited by the third limiting slider 33 and the annular guide rail 31.
[0048] The pushing component 4 includes a fixed frame 41, a first cylinder 42 and a push block 43; the fixed frame 41 is fixedly installed on the upper end of the chassis 1, the first cylinder 42 is fixedly installed on the fixed frame 41, and the output end of the first cylinder 42 is fixedly connected to the push block 43;
[0049] By activating the first cylinder 42, the first cylinder 42 drives the push block 43 to move toward the crimping assembly 6, and the push block 43 moves the cable on the carrier 2 to be plugged into the terminal in the crimping assembly 6.
[0050] The carrier 2 includes a clamping assembly, an adjusting assembly, and a moving assembly. The moving assembly is mounted on the equally spaced drive assembly 3. The clamping assembly is connected to the moving assembly, and the adjusting assembly is mounted on the clamping assembly.
[0051] The clamping assembly includes a push plate connecting plate 23, a carrier plate 24, a fixed clamp 25, a mounting base 26, and a movable clamp 27. The mounting base 26 and the push plate connecting plate 23 are fixedly installed at both ends of the carrier plate 24, respectively. When the carrier 2 moves to one side of the pressing assembly 6, the mounting base 26 is located on the side closer to the pressing assembly 6, and the push plate connecting plate 23 is located on the side closer to the push block 43. The fixed clamp 25 is fixedly installed on the upper left side of the mounting base 26, and the movable clamp 27 is movably installed on the upper right side of the mounting base 26. An adjustment component for adjusting the distance between the fixed clamp 25 and the movable clamp 27 is installed on the mounting base 26.
[0052] The distance between the fixed clamp 25 and the movable clamp 27 can be adjusted by adjusting the components to accommodate the installation of cables of different sizes. The cable is installed between the fixed clamp 25 and the movable clamp 27, and is limited by the push plate connecting plate 23 to facilitate quick installation. After the push block 43 contacts the push plate connecting plate 23, it pushes the push plate connecting plate 23 to move. The push plate connecting plate 23 drives the carrier plate 24 and the mounting base 26 to move, thereby moving the cable into the crimping assembly 6.
[0053] The adjustment assembly includes an adjustment nut 28, an adjustment screw 210, a limiting groove 211, and a second limiting slider 212. The mounting base 26 has a limiting groove 211 inside. The bottom of the movable clamp 27 is fixedly connected to the second limiting slider 212. The second limiting slider 212 is slidably connected inside the limiting groove 211. The second limiting slider 212 is threadedly connected to the adjustment screw 210. The adjustment screw 210 is rotatably mounted on the mounting base 26, and one end of the adjustment screw 210 is fixedly connected to the adjustment nut 28.
[0054] By rotating the adjusting nut 28, the adjusting nut 28 drives the adjusting screw 210 to rotate, and the adjusting screw 210 drives the second limiting slider 212 to slide along the limiting groove 211. The second limiting slider 212 drives the movable clamp 27 to move closer to or further away from the fixed clamp 25, thereby realizing the adjustment of the distance between the fixed clamp 25 and the movable clamp 27.
[0055] The moving component includes a spring 21, a first limiting slider 22, and a limiting guide rail 29; the bottom of the carrier plate 24 is fixedly connected to the first limiting slider 22, the first limiting slider 22 is slidably connected to the limiting guide rail 29, the limiting guide rail 29 is fixedly installed on the upper end of the support base 32, and a spring 21 is installed between the first limiting slider 22 and the inner wall of the support base 32, one end of the spring 21 is fixedly connected to the first limiting slider 22, and the other end of the spring 21 is fixedly connected to the inner side wall of the support base 32;
[0056] Pushing the push plate connecting plate 23 is pushed by the push block 43, which in turn moves the carrier plate 24 and the mounting base 26. The carrier plate 24 moves the first limiting slider 22 along the limiting guide rail 29, thereby moving the cable into the crimping assembly 6. At this time, the spring 21 is stretched. When the push block 43 is reset after the cable and the terminal are crimped by the crimping assembly 6, the spring 21 moves the first limiting slider 22 away from the crimping assembly 6 under the action of the elastic restoring force of the spring 21 to achieve reset. The first limiting slider 22 moves the carrier plate 24, the push plate connecting plate 23, the mounting base 26 and the cable and terminal clamped on them away from the crimping assembly 6.
[0057] Example 3
[0058] Based on Example 2, please refer to the appendix of the instruction manual. Figure 1-10 The pressing assembly 6 includes an upper mold 61, a second cylinder 62, a first support frame 63, a second support frame 64, a third cylinder 65, a side U-shaped slide rail 66, a movable baffle 67, a fixed baffle 68, a lower forming mold 69, and a hanging ear movable groove 610. The bottom of the second support frame 64 is fixedly connected to the housing 1, and the upper end of the second support frame 64 is fixedly installed with the first support frame 63. The second cylinder 62 is fixedly installed on the top of the first support frame 63, one end of the direct vibrator 5 is fixedly installed on the inner bottom of the first support frame 63, the output end of the second cylinder 62 is fixedly connected to the upper mold 61, and the third cylinder 65 is fixedly installed on the left inner wall of the first support frame 63. The output end of the third cylinder 65 is fixedly connected to the lower forming mold 69. The rear right end of the lower forming mold 69 is fixedly connected to the movable baffle 67. The rear wall of the movable baffle 67 is slidably connected to the discharge port end of the vertical vibrator 5. The bottom inner part of the first support frame 63 is also fixedly connected to the fixed baffle 68. The rear wall of the fixed baffle 68 is slidably connected to the front end surface of the lower forming mold 69. The fixed baffle 68 is located in front of the vertical vibrator 5. The left side wall of the front end of the vertical vibrator 5 is fixedly connected to the side U-shaped slide rail 66. The left side wall of the front end of the vertical vibrator 5 is provided with a movable ear groove 610 to facilitate the movement of the terminal ear. The movable ear groove 610 is connected to the inner cavity of the side U-shaped slide rail 66.
[0059] Preferably, the geared motor 37, the first cylinder 42, the second cylinder 62 and the third cylinder 65 can be connected to mature external control equipment to control the automated process of the above electrical components.
[0060] By activating the third cylinder 65, the lower forming mold 69 is moved to the right to the front of the vertical vibrator 5. The lower forming mold 69 moves the movable baffle 67 to the right, opening the discharge port of the vertical vibrator 5. The vertical vibrator 5 automatically feeds the material onto the lower forming mold 69, and the fixed baffle 68 limits the front end of the terminal. Then, the third cylinder 65 is activated, moving the lower forming mold 69 to the left, directly below the upper mold 61. The lower forming mold 69 moves the terminal's lug through the lug movable groove 610 into the side U-shaped slide rail 66, and slides along the side U-shaped slide rail 66. The side U-shaped slide rail 66 also limits the rear end of the terminal. At the same time, the lower forming mold 69 moves the movable baffle 67 to the left, blocking the discharge port of the vertical vibrator 5 to prevent terminal leakage. Then, the pushing component 4 is activated, moving the cable on the carrier 2 to connect with the terminal on the lower forming mold 69. The second cylinder 62 is activated to move the upper mold 61 downward for pressing. Then, the push assembly 4 is activated to reset. Under the elastic restoring force of the spring 21, the spring 21 drives the first limit slider 22 to move away from the pressing assembly 6 to achieve reset. The first limit slider 22 drives the carrier plate 24, the push plate connecting plate 23, the mounting base 26, and the cable and terminal clamped on them to move away from the pressing assembly 6. At this time, the cable and terminal are located in front of the pressing assembly 6. The cable and terminal are moved to the unloading station by the equal-spaced drive assembly 3 to achieve unloading. This invention can realize the automated feeding and pressing process. At the same time, it does not require disassembly after the individual cable and terminal are pressed. The unloading of the cable and terminal can be carried out when the cable and terminal move to the unloading station, which can better meet the current requirements of automated continuous production.
[0061] The above embodiments are only used to illustrate the technical solutions of the present invention, and are not intended to limit it. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions will not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A continuous crimping cable terminal crimping equipment, comprising a cabinet (1), characterized in that: an equal-interval driving assembly (3) is installed on the cabinet (1) for driving a plurality of carriers (2) to move to one side of a crimping assembly (6) in sequence at equal intervals, and for driving the cable and the terminal to move to a discharging station after the cable and the terminal are crimped and fixed; a plurality of sets of carriers (2) for clamping the cable and automatically clamping and fixing the cable and the terminal after the crimping assembly (6) crimps and fixes the cable and the terminal are installed on the equal-interval driving assembly (3) at equal intervals; a pushing assembly (4) is installed on the cabinet (1) for pushing the cable on the carrier (2) to be inserted into the terminal in the crimping assembly (6); the pushing assembly (4) is located in front of the crimping assembly (6); a crimping assembly (6) is installed on the cabinet (1) for crimping and fixing the cable on the carrier (2) and the terminal fed into the crimping assembly (6); a straight shock (5) for feeding the terminal is installed on one side of the crimping assembly (6); the carrier (2) comprises a clamping assembly, an adjusting assembly and a moving assembly, the moving assembly is installed on the equal-interval driving assembly (3), the clamping assembly is connected with the moving assembly, and the adjusting assembly is installed on the clamping assembly; the clamping assembly comprises a push plate connecting plate (23), a carrier plate (24), a fixed clamp seat (25), a mounting seat (26) and a movable clamp seat (27); the two ends of the carrier plate (24) are respectively fixedly installed with the mounting seat (26) and the push plate connecting plate (23), when the carrier (2) moves to one side of the crimping assembly (6), the mounting seat (26) is located on the side close to the crimping assembly (6), the push plate connecting plate (23) is located on the side close to the push block (43), the fixed clamp seat (25) is fixedly installed on the upper left side of the mounting seat (26), the movable clamp seat (27) is movably installed on the upper right side of the mounting seat (26), and the adjusting assembly for adjusting the interval between the fixed clamp seat (25) and the movable clamp seat (27) is installed on the mounting seat (26); the moving assembly comprises a spring (21), a first limiting sliding block (22) and a limiting guide rail (29); the bottom of the carrier plate (24) is fixedly connected with the first limiting sliding block (22), the first limiting sliding block (22) is slidingly connected on the limiting guide rail (29), the limiting guide rail (29) is fixedly installed on the upper end of the support seat (32), and the spring (21) is installed between the first limiting sliding block (22) and the inner wall of the support seat (32), one end of the spring (21) is fixedly connected with the first limiting sliding block (22), and the other end of the spring (21) is fixedly connected with the inner wall of the support seat (32). The crimping assembly (6) comprises an upper die (61), a second cylinder (62), a first support frame (63), a second support frame (64), a third cylinder (65), a movable baffle (67), a fixed baffle (68), a lower forming die (69) and a hanging ear movable slot (610); the bottom of the second support frame (64) is fixedly connected to the cabinet (1), the upper end of the second support frame (64) is fixedly installed with the first support frame (63), the second cylinder (62) is fixedly installed at the top of the first support frame (63), the output end of the second cylinder (62) is fixedly connected with the upper die (61), the left side inner wall of the first support frame (63) is fixedly installed with the third cylinder (65), the output end of the third cylinder (65) is fixedly connected with the lower forming die (69), the rear part of the right end of the lower forming die (69) is fixedly connected with the movable baffle (67), the rear wall of the movable baffle (67) is slidingly connected with the outlet end of the straight shock (5), and the inner bottom of the first support frame (63) is also fixedly connected with the fixed baffle (68); the rear wall of the fixed baffle (68) is slidingly connected with the front end surface of the lower forming die (69), and the fixed baffle (68) is located in front of the straight shock (5); The left side wall of the straight shock (5) is fixedly connected with a side U-shaped slide rail (66), and the side wall of the straight shock (5) is provided with a hanging ear movable slot (610) for facilitating the movement of the terminal hanging ear, and the hanging ear movable slot (610) is in communication with the inner cavity of the side U-shaped slide rail (66).
2. A continuous crimped cable terminal crimping apparatus according to claim 1, characterized by The equal-interval driving assembly (3) comprises an annular guide rail (31), a support seat (32), a third limiting sliding block (33), a straight shaft (34), a synchronous wheel (35), a synchronous belt (36) and a speed reduction motor (37); the upper part of the cabinet (1) is rotatably provided with straight shafts (34) at both ends, the straight shafts (34) are fixedly provided with synchronous wheels (35), the two groups of synchronous wheels (35) are drivingly connected through a synchronous belt (36), the bottom of one group of straight shafts (34) is fixedly connected with the output end of a speed reduction motor (37), and the speed reduction motor (37) is fixedly installed on the inner bottom of the cabinet (1); the upper end of the cabinet (1) is fixedly provided with an annular guide rail (31), the outer wall of the synchronous belt (36) is uniformly fixedly connected with a plurality of groups of support seats (32), the bottoms of the support seats (32) are fixedly connected with third limiting sliding blocks (33), and the lower ends of the third limiting sliding blocks (33) are slidingly installed on the annular guide rail (31).
3. A continuous crimped cable terminal crimping apparatus according to claim 1, wherein The pushing assembly (4) comprises a fixed frame (41), a first cylinder (42) and a push block (43); the fixed frame (41) is fixedly installed on the upper end of the cabinet (1), the first cylinder (42) is fixedly installed on the fixed frame (41), and the output end of the first cylinder (42) is fixedly connected with the push block (43).
4. A continuous crimped electrical cable terminal crimping apparatus according to claim 1, wherein, The adjusting assembly comprises an adjusting nut (28), an adjusting screw (210), a limiting sliding groove (211) and a second limiting sliding block (212); the inside of the mounting seat (26) is provided with the limiting sliding groove (211), the bottom of the movable clamp seat (27) is fixedly connected with the second limiting sliding block (212), the second limiting sliding block (212) is slidingly connected in the inside of the limiting sliding groove (211), the second limiting sliding block (212) is threadedly connected with the adjusting screw (210), the adjusting screw (210) is rotatably installed on the mounting seat (26), and one end of the adjusting screw (210) is fixedly connected with the adjusting nut (28).
Citation Information
Patent Citations
European plug automatic terminal machine
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