Multi-functional wire pressing device for wire production
The design of an integrated wire stripping and cleaning mechanism and a guide conveying component solves the problems of waste accumulation and damage in wire production, and achieves stable fixation of the wires and improved conductive performance.
Patent Information
- Application Number
- CN202411497349.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-25
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2044-10-25
AI Technical Summary
Existing wire crimping devices have problems with outer sheath waste accumulation and wire damage during wire production, affecting production continuity and conductive performance.
It adopts an integrated wire stripping and cleaning mechanism and a guide conveying component. It realizes automatic recovery of wire waste through the cutting and stripping component and the reciprocating pushing component. It also uses a DC motor to drive the wire pressing arm and the lower pressing wheel for stable fixation to reduce wire damage.
It realizes the automatic recycling of wire waste and the stable fixation of wires, ensures production continuity and stability of conductive performance, and reduces wire damage.
Smart Images

Figure CN119108870B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of wire crimping devices, in particular to a multifunctional wire crimping device for production. Background Art
[0002] Wires are conductors that transmit electrical energy, including both multifunctional and single-function wires. During the production and processing of multifunctional wires, the cores of the wires need to be connected to equipment or connectors. A crimping device is required to ensure safety and conductivity during the electrical connection, minimizing the risk of poor connections or even short circuits.
[0003] The existing Chinese patent application with application number CN113839290A discloses a multifunctional wire crimping device for wire production, including a base base, the bottom of the base base is connected to an anti-sliding block, both ends of the horizontal symmetry axis of the top of the base base are connected to handles, both ends of the vertical symmetry axis of the top of the base base are connected to support blocks, both ends of the top of the support block are connected to shock-absorbing spring columns, the outer wall of the shock-absorbing spring column is connected to a movable groove, the outer wall of the movable groove is connected to a load-bearing base, the top of the load-bearing base is connected to a workbench, and the inner wall of one end of the vertical symmetry axis of the bottom of the workbench is connected to a A motor; this invention, by providing a guide ring, can quickly guide the electric wire into the limiting groove, and at the same time, the setting of the limiting groove also plays the role of preliminarily fixing the electric wire. By providing a limiting block, it can play the role of limiting and fixing, avoiding the occurrence of adverse conditions such as core wire breakage caused by extrusion. By providing a clamping ring, the top protective layer of the electric wire can be quickly fixed. By providing an anti-sliding block, it is helpful to improve the stability of the entire device, thereby preventing the wire pressing device from sliding during operation. By providing a shock-absorbing spring column, it is helpful to improve the shock-absorbing effect of the entire device, thereby improving the safety of the internal components of the device.
[0004] However, the wire pressing device has the following defects when used:
[0005] 1. When crimping wires, existing crimping devices require peeling off the outer sheath of the wire end to expose the internal core, then connecting the core of the wire to the connector to achieve electrical connection. However, in actual operation, when the outer sheath of the wire is cut, some waste (the outer sheath) will fall off and accumulate inside the device, affecting the continuous production and processing of crimping and connecting the wires.
[0006] 2. Existing wire crimping devices require the wires to be secured during crimping and conductive connection to ensure safety and conductivity. Traditional methods typically use a squeezing method to secure the wires. This method can damage the outer sheath and internal core, affecting the wire's conductivity during subsequent stripping and connection. Summary of the Invention
[0007] The object of the present invention is to provide a multifunctional wire crimping device for wire production to solve the problems raised in the above background technology.
[0008] In order to achieve the above-mentioned object of the invention, the present invention adopts the following technical solutions:
[0009] The present invention provides a multifunctional wire crimping device for wire production, comprising a device base, a waste recycling box, a processing seat, a guide conveying assembly, a roller wire crimping assembly, an integrated wire stripping and cleaning mechanism, and a wire body. A waste recycling box is slidably connected to one side of the top of the device base. A processing seat is provided on the top of the waste recycling box and the device base. A guide conveying assembly is installed on one side of the top of the processing seat.
[0010] A roller wire pressing assembly is provided on the side of the guide conveying assembly, and an integrated wire stripping and cleaning mechanism is provided on the side of the roller wire pressing assembly. The integrated wire stripping and cleaning mechanism is located above the waste recycling box. An electric wire body is provided inside the guide conveying assembly, the roller wire pressing assembly and the integrated wire stripping and cleaning mechanism.
[0011] The integrated wire stripping and cleaning mechanism includes:
[0012] A cutting and stripping assembly is installed on the other side of the top of the processing seat, a roller wire pressing assembly is provided on the side of the cutting and stripping assembly, and a wire body is provided through the interior of the cutting and stripping assembly, and the cutting and stripping assembly performs cutting and stripping operations on the wire body;
[0013] A reciprocating pushing assembly is installed on the side of the cutting and stripping assembly, the reciprocating pushing assembly is driven by the cutting and stripping assembly, the bottom of the reciprocating pushing assembly extends to the interior of the processing seat, the reciprocating pushing assembly is located directly above the waste recycling box, and the reciprocating pushing assembly pushes the waste cut by the cutting and stripping assembly to the interior of the waste recycling box.
[0014] As a preferred embodiment of the present invention, the guide conveying assembly includes:
[0015] Horizontal guide rails, the horizontal guide rails are installed on both sides of the top of the equipment base, and two groups of horizontal guide rails are provided, and the outer sides of the two groups of horizontal guide rails are slidably connected to horizontal sliders;
[0016] An upper support plate is mounted on the top of the two sets of horizontal sliders by screws. The top of the upper support plate supports a guide frame, and a plurality of spring positioning components are installed inside the guide frame.
[0017] Among them, the interior of the guide frame is penetrated by an electric wire body located inside a plurality of spring positioning components, and an arc frame is installed on the left and right sides of the guide frame. The interior of the arc frame is movably connected with a plurality of guide rollers, and the top of the guide roller is in contact with the electric wire body.
[0018] As a preferred embodiment of the present invention, the spring positioning component includes:
[0019] An assembly block is installed at the edge of the guide frame. A positioning rod extending into the guide frame is provided inside the assembly block. An arc-shaped positioning block is installed at the bottom of the positioning rod.
[0020] Wherein, the bottom of the arc-shaped positioning block contacts the wire body;
[0021] Guide rods, which are installed on both sides of the top of the arc-shaped positioning block and are located on the left and right sides of the positioning rod, and the guide rods pass through the assembly block;
[0022] A compression spring is installed between the assembly block and the arc-shaped positioning block, and the compression spring is located outside the positioning rod.
[0023] As a preferred embodiment of the present invention, the roller crimping assembly includes:
[0024] A wire pressing frame, the wire pressing frame is installed at the center of the top of the processing seat by screws, the left and right sides of the wire pressing frame are movably connected to a movable frame extending to the outside, and the side of the movable frame is installed with a side frame;
[0025] The mounting block is rotatably connected to one side of the top of the wire pressing frame, a DC motor is installed on the side of the mounting block, and the output end of the DC motor is connected to a one-way screw rod.
[0026] The outer side of the one-way screw rod is connected to a one-way slider via a ball bearing, the one-way slider is installed on the side of the movable frame, and the inner side of the side frame is provided with an eccentric wire pressing component installed on the side of the movable frame.
[0027] As a preferred embodiment of the present invention, a gap is left at the connection portion between the side frame and the movable frame, and the gap is used for the movement of the eccentric wire pressing component, and the bottom of the eccentric wire pressing component is pressed down and fixed with the wire body.
[0028] There are multiple eccentric wire pressing components, and wire bodies are provided through the wire pressing frame, the movable frame and the side frame.
[0029] As a preferred embodiment of the present invention, the eccentric wire pressing component includes:
[0030] The wire pressing arm, the bottom of the wire pressing arm is rotatably connected to the side of the wire pressing frame and extends to the inside of the side frame and the movable frame. A rotating shaft is provided inside the wire pressing arm.
[0031] Wherein, the rotating shaft and the movable frame are rotatably connected;
[0032] A lower pressing wheel is rotatably connected to the inner top of the wire pressing arm, and the side surface of the lower pressing wheel is pressed down and fixed with the wire body.
[0033] As a preferred embodiment of the present invention, the cutting and stripping assembly includes:
[0034] Side brackets, each of which is mounted on both sides of the processing base by screws, and a DC motor is mounted on the side of one group of side brackets, the output end of the DC motor is connected to a spindle, and the spindle is rotatably connected to the inside of the side bracket and extends to the outside of the side bracket;
[0035] The first gear is provided with two groups, and both groups of the first gears are installed on the outside of the main shaft, and the side of the first gear is meshed with the second gear.
[0036] Wherein, the top of the second gear is connected with a driving shaft;
[0037] A first transmission belt is connected to the outside of the main shaft through a synchronous wheel arranged on the inner side, and is movably connected to the side faces of a group of side brackets. The inner side of the first transmission belt is also connected to a rotating shaft through a synchronous wheel, and the rotating shaft is movably connected to the inside of the two groups of side brackets.
[0038] As a preferred embodiment of the present invention, a group of cutting wheels is installed on the central portion of the outer side of the main shaft and located between the two groups of the first gears, a group of cutting wheels is installed on the top of the driving shaft, and a group of cutting wheels is installed on the central portion of the outer side of the rotating shaft.
[0039] The side of the cutting wheel is in contact with the electric wire body, the main shaft and the driving shaft are rotatably connected to the side of the triangular support, and the triangular support is installed on the top of the processing seat.
[0040] Wherein, a reciprocating pushing assembly is installed on the outer side of the main shaft.
[0041] As a preferred embodiment of the present invention, the reciprocating pusher assembly includes:
[0042] The second transmission belt is connected to the outside of the main shaft through a synchronous wheel arranged on the inside, and is movably connected to the inside of a group of side brackets. The inside of the second transmission belt is connected to the shaft end of the third gear through the synchronous wheel, and the third gear is rotatably connected to the side of the side block.
[0043] Wherein, the side stopper is installed on the side of the processing seat;
[0044] a fourth gear, the fourth gear being meshedly connected to a side surface of the third gear and being rotatably connected to a side surface of the side block, and a movable shaft being connected to a bottom of the fourth gear;
[0045] The third transmission belt is connected to the outer side of the movable shaft through a synchronous wheel arranged on the inner side. The inner side of the third transmission belt is also connected to a reciprocating screw through the synchronous wheel. The reciprocating screw is rotatably connected to the central part on the other side of the processing seat.
[0046] As a preferred solution of the present invention, the outer side of the reciprocating screw is connected to a sliding push plate through a ball bearing, and the sliding push plate is slidably connected to the inside of the pouring trough, and the pouring trough is opened on the other side of the processing seat.
[0047] Wherein, a waste recycling box is provided below the sliding push plate.
[0048] Compared with the existing technology, one or more of the above technical solutions have the following beneficial effects:
[0049] 1. In a multifunctional wire production crimping device, when crimping and stripping the wire, the DC motor is activated, and multiple sets of gears and drive belts drive multiple sets of cutting wheels in different directions to rotate, cutting and stripping the wires on the top and bottom, as well as the left and right sides, respectively, improving the effectiveness and efficiency of wire cutting and stripping. At the same time, the rotational force of the wire cutting and stripping (the DC motor drives the main shaft to rotate) also synchronously drives the sliding push plate to reciprocate, automatically driving the waste material (the outer covering of the wire) that falls to the side of the sliding push plate to reciprocate, pushing and storing the waste material into the waste recycling box, realizing the automatic recycling of wire waste, thereby facilitating the continuous production and processing of wires;
[0050] 2. In a multifunctional wire crimping device for production, the wires to be processed need to be squeezed and fixed during production and processing to ensure safety and stability during subsequent cutting, stripping, and conductive connection of the wires. At this time, through the operation of a set of DC motors, multiple sets of crimping arms and lower crimping wheels can be driven to rotate, pressing down and fixing the wires that are abutted by the bottom of the lower crimping wheel. On the one hand, this prevents the wires from moving during subsequent cutting and stripping, making the cutting and stripping process more stable. On the other hand, the operation of the lower crimping wheel to crimp the wires can minimize the degree of damage to the wires, effectively ensuring the conductivity of the wires when conductive connections are made after cutting and stripping.
[0051] 3. In the multifunctional wire crimping device for wire production, the wires can pass through the guide frame when crimping, stripping, and connecting the wires. The multiple sets of arc-shaped positioning blocks installed inside the guide frame are designed to guide and position the wires inside the arc-shaped positioning blocks. At the same time, the multiple sets of guide rollers can effectively improve the smoothness of the wires during transmission and movement, and prevent the wires from bending or shifting during transmission and movement. At the same time, the subsequent crimping and stripping operations will not cause misalignment or deviation.
[0052] 4. In the multifunctional wire crimping device for production, when guiding and supporting the wires, the design of the extrusion spring can automatically support and position wires of different thicknesses and sizes. On the other hand, the extrusion spring can cooperate with the buffering operation of the damping block to effectively reduce the vibration force of the wires during transmission and movement, making the wires more stable during transmission, crimping and stripping operations. BRIEF DESCRIPTION OF THE DRAWINGS
[0053] The accompanying drawings, which constitute a part of the present invention, are used to provide a further understanding of the present invention. The exemplary embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute improper limitations on the present invention.
[0054] Furthermore, the terms "installed," "disposed," "provided with," "connected," "connected," and "socketed" should be interpreted broadly. For example, they can refer to fixed connections, removable connections, or integral structures; mechanical connections or electrical connections; direct connections, indirect connections through an intermediary, or internal communication between two devices, elements, or components. Those skilled in the art will understand the specific meanings of these terms in this application based on the specific circumstances.
[0055] Figure 1 It is a schematic structural diagram of the present invention as a whole;
[0056] Figure 2 It is a schematic structural diagram of the overall main view of the present invention;
[0057] Figure 3 It is a schematic structural diagram of the present invention as a whole viewed from above;
[0058] Figure 4 This is a schematic diagram of the structure of the equipment base, waste recovery box and processing base connected to each other in the present invention;
[0059] Figure 5 It is a structural schematic diagram of the guide conveying assembly of the present invention;
[0060] Figure 6 This is a schematic structural diagram of the connection between the guide frame and the spring positioning component of the present invention;
[0061] Figure 7 It is a structural schematic diagram of the roller crimping assembly of the present invention;
[0062] Figure 8 This is a schematic diagram of the structure of the roller crimping assembly of the present invention from a top view;
[0063] Figure 9 This is a schematic structural diagram of the connection between the processing seat and the integrated wire stripping and cleaning mechanism of the present invention;
[0064] Figure 10 It is a structural schematic diagram of the integrated wire stripping and cleaning mechanism of the present invention;
[0065] Figure 11 It is a structural schematic diagram of the cutting and stripping assembly of the present invention;
[0066] Figure 12 This is a schematic structural diagram of the connection between the processing seat and the reciprocating pusher assembly of the present invention;
[0067] In the picture:
[0068] 10. Equipment base; 20. Waste recycling box; 30. Processing base;
[0069] 40. Guide conveyor assembly; 401. Horizontal guide rail; 402. Horizontal slider; 403. Upper support plate; 404. Guide frame; 405. Spring positioning component; 4051. Assembly block; 4052. Positioning rod; 4053. Arc-shaped positioning block; 4054. Guide rod; 4055. Extrusion spring; 406. Arc-shaped frame; 407. Guide roller;
[0070] 50. Roller crimping assembly; 501. Crimping frame; 502. Movable frame; 503. Side frame; 504. Mounting block; 505. DC motor; 506. One-way screw rod; 507. One-way slider; 508. Eccentric crimping component; 5081. Crimping arm; 5082. Rotating shaft; 5083. Lower crimping roller;
[0071] 60. Integrated wire stripping and cleaning mechanism; 70. Wire body;
[0072] 80. Cutting and stripping assembly; 801. Side bracket; 802. DC motor; 803. Main shaft; 8030. Triangular support; 804. First gear; 805. Second gear; 806. Drive shaft; 807. First transmission belt; 808. Rotating shaft; 809. Cutting wheel;
[0073] 90. Reciprocating pusher assembly; 901. Second transmission belt; 902. Third gear; 903. Side block; 904. Fourth gear; 905. Movable shaft; 906. Third transmission belt; 907. Reciprocating screw; 908. Sliding pusher plate; 9081. Discharging chute. DETAILED DESCRIPTION
[0074] In order to enable those skilled in the art to better understand the present invention, the following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments in the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts should fall within the scope of protection of this application.
[0075] See also Figures 1-12 The multifunctional wire crimping device for wire production includes an equipment base 10, a waste recycling box 20, a processing seat 30, a guide conveying assembly 40, a roller crimping assembly 50, an integrated wire stripping and cleaning mechanism 60 and a wire body 70. The waste recycling box 20 is slidably connected to one side of the top of the equipment base 10. The waste recycling box 20 and the top of the equipment base 10 are provided with a processing seat 30. The guide conveying assembly 40 is installed on one side of the top of the processing seat 30. The roller crimping assembly 50 is provided on the side of the guide conveying assembly 40. The integrated wire stripping and cleaning mechanism 60 is provided on the side of the roller crimping assembly 50. The integrated wire stripping and cleaning mechanism 60 is located above the waste recycling box 20. The guide conveying assembly 40, the roller crimping assembly 50 and the integrated wire stripping and cleaning mechanism 60 are penetrated by the interior of the guide conveying assembly 40, the roller crimping assembly 50 and the integrated wire stripping and cleaning mechanism 60. The wire body 70, wherein the integrated wire stripping and cleaning mechanism 60 includes a cutting and stripping assembly 80, which is installed on the other side of the top of the processing seat 30, and a roller pressing assembly 50 is provided on the side of the cutting and stripping assembly 80. The wire body 70 is penetrated inside the cutting and stripping assembly 80, and the cutting and stripping assembly 80 performs cutting and stripping operations on the wire body 70; a reciprocating pushing assembly 90, which is installed on the side of the cutting and stripping assembly 80, and is driven by the cutting and stripping assembly 80. The bottom of the reciprocating pushing assembly 90 extends to the inside of the processing seat 30, and the reciprocating pushing assembly 90 is located directly above the waste recovery box 20. The reciprocating pushing assembly 90 pushes the waste after cutting by the cutting and stripping assembly 80 to the inside of the waste recovery box 20.
[0076] The above working principle: When the wire is produced and processed (crimping and stripping), the wire body 70 is first passed through the guide conveying assembly 40, and the wire body 70 is moved horizontally by the guide conveying assembly 40, and then moved and passed through the roller crimping assembly 50. At this time, the roller crimping assembly 50 can crimp the wire body 70 to ensure that when the wire body 70 is subsequently stripped by the cutting and stripping assembly 80, the wire body 70 will not move, and the cutting and stripping operation of the wire body 70 will not damage the internal core part of the wire, and the conductive performance of the wire body 70 passing through the core and connector or other electrical equipment is guaranteed. The crimping operation of the wire body 70 by the roller crimping assembly 50 will not damage the outer sheath of the wire body 70 and the internal core. Moreover, when the wire body 70 is cut and stripped, the driving force that drives the cutting and stripping assembly 80 to operate will simultaneously drive the reciprocating pushing assembly 90 to operate, and automatically push the waste (outer wrapping layer) generated by cutting the wire body 70 into the interior of the waste recycling box 20, realizing the automatic recycling and storage operation of the waste, and the production and processing operations of the wire body 70 can be carried out continuously.
[0077] Specific reference Figure 5 and Figure 6 The guide conveying assembly 40 includes a horizontal guide rail 401, which is installed on both sides of the top of the equipment base 10, and there are two groups of horizontal guide rails 401. The outer sides of the two groups of horizontal guide rails 401 are slidably connected with horizontal sliders 402; an upper support plate 403, which is installed on the top of the two groups of horizontal sliders 402 by screws. The top of the upper support plate 403 supports a guide frame 404, and a plurality of spring positioning components 405 are installed inside the guide frame 404. Among them, the interior of the guide frame 404 is penetrated by an electric wire body 70 located inside the plurality of spring positioning components 405, and an arc frame 406 is installed on the left and right sides of the guide frame 404. The interior of the arc frame 406 is movably connected with a plurality of guide rollers 407, and the top of the guide roller 407 is in contact with the electric wire body 70.
[0078] In this embodiment, the spring positioning component 405 includes an assembly block 4051, which is installed at the edge of the guide frame 404. The interior of the assembly block 4051 is penetrated by a positioning rod 4052 extending to the interior of the guide frame 404. The bottom of the positioning rod 4052 is installed with an arc-shaped positioning block 4053, wherein the bottom of the arc-shaped positioning block 4053 abuts against the wire body 70; a guide rod 4054, which is installed on both sides of the top of the arc-shaped positioning block 4053 and is located on the left and right sides of the positioning rod 4052. The guide rod 4054 is set through the assembly block 4051; an extrusion spring 4055, which is installed between the assembly block 4051 and the arc-shaped positioning block 4053. The extrusion spring 4055 is located on the outside of the positioning rod 4052.
[0079] In the above embodiment, when the electric wire 70 is being transported, the positioning rod 4052 can use the design of the outer compression spring 4055 to drive the arc-shaped positioning block 4053 installed at the bottom of the positioning rod 4052 to contact the outer side of the electric wire 70, thereby guiding and positioning the electric wire 70 through multiple sets of arc-shaped positioning blocks 4053. The design of two sets of guide rods 4054 on the top of the arc-shaped positioning block 4053 can ensure that the positioning rod 4052 and the arc-shaped positioning block 4053 are more stable during movement.
[0080] In the multifunctional wire crimping device for wire production of the present invention, when guiding and transporting the wire 70, the wire 70 passes through the guide frame 404 and contacts the multiple sets of guide rollers 407 at the bottom of the wire 70, ensuring smoother transport and movement of the wire 70. The guide frame 404, which guides and transports the wire 70, can move horizontally outside the two sets of horizontal guide rails 401 via an upper support plate 403 and horizontal sliders 402 mounted at its bottom, allowing the distance between the wire 70 transport and crimping operations to be adjusted according to actual conditions.
[0081] Specific reference Figure 7 and Figure 8 The roller pressing assembly 50 includes a pressing frame 501, which is installed at the center of the top of the processing seat 30 by screws. The left and right sides of the pressing frame 501 are movably connected with a movable frame 502 extending to the outside, and a side frame 503 is installed on the side of the movable frame 502; a mounting block 504, the mounting block 504 is rotatably connected to one side of the top of the pressing frame 501, a DC motor 505 is installed on the side of the mounting block 504, and the output end of the DC motor 505 is connected to a one-way screw rod 506, wherein the outer side of the one-way screw rod 506 is connected to a one-way slider 507 through a ball bearing, and the one-way slider 507 is installed on the side of the movable frame 502, and the inner side of the side frame 503 is provided with an eccentric pressing component 508 installed on the side of the movable frame 502.
[0082] In this embodiment, a gap is left at the connection part of the side frame 503 and the movable frame 502, and the gap is used for the movement of the eccentric wire pressing component 508. The bottom of the eccentric wire pressing component 508 is pressed down and fixed with an electric wire body 70, wherein a plurality of eccentric wire pressing components 508 are provided, and the wire body 70 is provided through the interior of the wire pressing frame 501, the movable frame 502 and the side frame 503.
[0083] In addition, in this embodiment, the eccentric wire-pressing component 508 includes a wire-pressing arm 5081, the bottom of the wire-pressing arm 5081 is rotatably connected to the side of the wire-pressing frame 501, and extends to the interior of the side frame 503 and the movable frame 502, and the interior of the wire-pressing arm 5081 is penetrated by a rotating shaft 5082, wherein the rotating shaft 5082 and the movable frame 502 are rotatably connected; a lower pressing wheel 5083, the lower pressing wheel 5083 is rotatably connected to the inner top of the wire-pressing arm 5081, and the side of the lower pressing wheel 5083 presses down and fixes the wire body 70.
[0084] In the above embodiment, when the movable frame 502 is in operation, it drives the wire pressing arm 5081 connected to its side through the rotating shaft 5082 to operate, so that the lower pressing wheel 5083 movably connected to the bottom of the wire pressing arm 5081 can be deflected and moved, automatically resisting and pressing down the wire body 70 set at the bottom of the lower pressing wheel 5083, thereby completing the wire pressing and fixing operation of the wire body 70.
[0085] In the multifunctional wire crimping device of the present invention, when crimping the wire body 70, the DC motor 505 is activated, driving the one-way screw 506 connected to the output end of the DC motor 505 to rotate. The rotation of the one-way screw 506 in turn drives the one-way slider 507 connected to its outer side via a ball bearing to move. This, in conjunction with the one-way screw 506 rotating around the center portion of the mounting block 504, allows the movable frame 502, which is connected to the side of the one-way slider 507, to rotate within the crimping frame 501.
[0086] Specific reference Figure 9 、 Figure 10 and Figure 11 The cutting and stripping assembly 80 includes a side bracket 801, which is mounted on both sides of the processing seat 30 by screws, and a DC motor 802 is mounted on the side of one group of side brackets 801, and the output end of the DC motor 802 is connected to the main shaft 803, and the main shaft 803 is rotatably connected to the inside of the side bracket 801 and extends to the outside of the side bracket 801; a first gear 804, which is provided with two groups, and both groups of first gears 804 are mounted on the outside of the main shaft 803, and the side of the first gear 804 is meshed and connected with the second gear 805, wherein the top of the second gear 805 is connected to the drive shaft 806; a first transmission belt 807, which is connected to the outside of the main shaft 803 through a synchronous wheel arranged on the inside, and is movably connected to the side of a group of side brackets 801, and the inner side of the first transmission belt 807 is also connected to a rotating shaft 808 through a synchronous wheel, and the rotating shaft 808 is movably connected to the inside of the two groups of side brackets 801.
[0087] In this embodiment, a group of cutting wheels 809 located between the two groups of first gears 804 are installed on the central part of the outer side of the main shaft 803, a group of cutting wheels 809 are installed on the top of the drive shaft 806, and a group of cutting wheels 809 are installed on the central part of the outer side of the rotating shaft 808, wherein the side of the cutting wheel 809 is in contact with the wire body 70, the main shaft 803 and the drive shaft 806 are rotatably connected to the side of the triangular support 8030, and the triangular support 8030 is installed on the top of the processing seat 30, wherein a reciprocating pushing assembly 90 is installed on the outer side of the main shaft 803.
[0088] In the above embodiment, when the main shaft 803, the two sets of drive shafts 806 and the rotating shaft 808 are rotating, they can respectively drive the multiple sets of cutting wheels 809 installed on the side of the above parts to rotate, and automatically cut and strip the wire body 70 set on the side of the cutting wheel 809.
[0089] In the multifunctional wire crimping device for manufacturing the present invention, when cutting and stripping the wire body 70, the DC motor 802 is activated, driving the spindle 803 connected to the output end of the DC motor 802 to rotate, thereby rotating the first gear 804 mounted on the outside of the spindle 803. The rotation of the first gear 804 in turn drives the second gear 805 meshing with it on the outside to rotate, causing the drive shaft 806 connected to the top of the second gear 805 to rotate. At this time, the rotation of the spindle 803 also drives the first transmission belt 807 connected to the outside of the spindle via a synchronous pulley, which in turn drives the rotating shaft 808 connected to the inside of the first transmission belt 807 via a synchronous pulley.
[0090] Specific reference Figure 10 and Figure 12 The reciprocating pushing assembly 90 includes a second transmission belt 901, which is connected to the outer side of the main shaft 803 through a synchronous wheel arranged on the inside, and is movably connected to the inner side of a group of side brackets 801. The inner side of the second transmission belt 901 is connected to the shaft end of the third gear 902 through the synchronous wheel, and the third gear 902 is rotatably connected to the side of the side stopper 903, wherein the side stopper 903 is mounted on the side of the processing seat 30; the fourth gear 904, the fourth gear 904 is meshed and connected to the side of the third gear 902, and is rotatably connected to the side of the side stopper 903, and the bottom of the fourth gear 904 is connected to a movable shaft 905; the third transmission belt 906, the third transmission belt 906 is connected to the outer side of the movable shaft 905 through a synchronous wheel arranged on the inside, and the inner side of the third transmission belt 906 is also connected to a reciprocating screw rod 907 through a synchronous wheel, and the reciprocating screw rod 907 is rotatably connected to the central part of the other side of the processing seat 30.
[0091] In this embodiment, the outer side of the reciprocating screw 907 is connected to a sliding push plate 908 through a ball bearing, and the sliding push plate 908 is slidably connected to the inside of the pouring trough 9081. The pouring trough 9081 is opened on the other side of the processing seat 30, wherein a waste recovery box 20 is arranged below the sliding push plate 908. The rotation of the reciprocating screw 907 can drive the sliding push plate 908 connected to the outer side through the ball bearing to move back and forth, thereby pushing the waste generated by cutting and stripping to move and automatically recover it to the inside of the waste recovery box 20.
[0092] In the multifunctional wire crimping device for wire production of the present invention, when the main shaft 803 rotates, it drives the second transmission belt 901, which is connected to the outside of the main shaft via a synchronous pulley, to operate. This in turn causes the third gear 902, which is connected to the inside of the second transmission belt 901 via a synchronous pulley, to rotate. The rotation of the third gear 902 in turn drives the fourth gear 904, which is meshed with the outside of the main shaft, to rotate, causing the movable shaft 905 connected to the bottom of the fourth gear 904 to rotate. The rotation of the movable shaft 905 also drives the third transmission belt 906, which is connected to the outside of the main shaft via a synchronous pulley, to operate, causing the reciprocating screw 907, which is connected to the inside of the third transmission belt 906 via a synchronous pulley, to rotate.
[0093] Without limitation, any person skilled in the art who is familiar with the technical field can make equivalent replacements or changes based on the technical solutions and inventive concepts of the present invention within the technical scope disclosed by the present invention, and these changes should be covered by the protection scope of the present invention.
Claims
1. A multifunctional wire crimping device for wire production, comprising a device base (10), a waste recycling box (20), a processing seat (30), a guide conveying assembly (40), a roller crimping assembly (50), an integrated wire stripping and cleaning mechanism (60) and a wire body (70), characterized in that: A waste recycling box (20) is slidably connected to one side of the top of the equipment base (10), a processing seat (30) is provided on the top of the waste recycling box (20) and the equipment base (10), and a guide conveying assembly (40) is installed on one side of the top of the processing seat (30). A roller wire pressing assembly (50) is provided on the side of the guide conveying assembly (40), an integrated wire stripping and cleaning mechanism (60) is provided on the side of the roller wire pressing assembly (50), the integrated wire stripping and cleaning mechanism (60) is located above the waste recycling box (20), and an electric wire body (70) is provided through the interior of the guide conveying assembly (40), the roller wire pressing assembly (50) and the integrated wire stripping and cleaning mechanism (60). Wherein, the integrated wire stripping and cleaning mechanism (60) comprises: a cutting and stripping assembly (80), the cutting and stripping assembly (80) being mounted on the other side of the top of the processing seat (30), a roller pressing assembly (50) being provided on the side of the cutting and stripping assembly (80), an electric wire body (70) being provided through the interior of the cutting and stripping assembly (80), and the cutting and stripping assembly (80) performing a cutting and stripping operation on the electric wire body (70); A reciprocating pushing assembly (90), the reciprocating pushing assembly (90) is installed on the side of the cutting and stripping assembly (80), the reciprocating pushing assembly (90) is driven by the cutting and stripping assembly (80), the bottom of the reciprocating pushing assembly (90) extends to the inside of the processing seat (30), the reciprocating pushing assembly (90) is located directly above the waste recycling box (20), and the reciprocating pushing assembly (90) pushes the waste cut by the cutting and stripping assembly (80) to the inside of the waste recycling box (20); The roller pressing assembly (50) comprises: A wire pressing frame (501) is mounted at the center of the top of the processing seat (30) by screws, and the left and right sides of the inside of the wire pressing frame (501) are movably connected to movable frames (502) extending to the outside, and side frames (503) are mounted on the sides of the movable frame (502); A mounting block (504) is rotatably connected to one side of the top of the wire pressing frame (501), a DC motor (505) is mounted on the side of the mounting block (504), and a one-way screw rod (506) is connected to the output end of the DC motor (505). The outer side of the one-way screw rod (506) is connected to a one-way slider (507) via a ball bearing, and the one-way slider (507) is installed on the side of the movable frame (502). The inner side of the side frame (503) is provided with an eccentric wire pressing component (508) installed on the side of the movable frame (502).
2. The multifunctional wire crimping device for wire production according to claim 1, characterized in that: The guide conveying assembly (40) includes: Horizontal guide rails (401), the horizontal guide rails (401) are installed on both sides of the top of the equipment base (10), and two groups of the horizontal guide rails (401) are provided, and the outer sides of the two groups of the horizontal guide rails (401) are slidably connected to horizontal sliders (402); An upper support plate (403) is mounted on the top of the two sets of horizontal sliders (402) by screws. The top of the upper support plate (403) supports a guide frame (404). A plurality of spring positioning components (405) are installed inside the guide frame (404). The guide frame (404) is provided with an electric wire body (70) located inside a plurality of spring positioning components (405) running through the interior thereof, and an arc frame (406) is installed on the left and right sides of the guide frame (404), and the arc frame (406) is movably connected to a plurality of guide rollers (407) inside, and the tops of the guide rollers (407) are in contact with the electric wire body (70).
3. The multifunctional wire crimping device for wire production according to claim 2, characterized in that: The spring positioning component (405) includes: An assembly block (4051) is installed at the edge of the interior of the guide frame (404). A positioning rod (4052) extending into the interior of the guide frame (404) is provided through the interior of the assembly block (4051). An arc-shaped positioning block (4053) is installed at the bottom of the positioning rod (4052). Wherein, the bottom of the arc-shaped positioning block (4053) contacts the wired body (70); Guide rods (4054), the guide rods (4054) are installed on both sides of the top of the arc-shaped positioning block (4053) and are located on the left and right sides of the positioning rod (4052), and the guide rods (4054) are arranged to pass through the assembly block (4051); A compression spring (4055) is installed between the assembly block (4051) and the arc-shaped positioning block (4053), and the compression spring (4055) is located outside the positioning rod (4052).
4. The multifunctional wire crimping device for wire production according to claim 1, characterized in that: A gap is left at the connection portion between the side frame (503) and the movable frame (502), and the gap is used for the movement of the eccentric wire pressing component (508). The bottom of the eccentric wire pressing component (508) is pressed down and fixed with an electric wire body (70). There are a plurality of eccentric wire pressing components (508), and wire bodies (70) are provided inside the wire pressing frame (501), the movable frame (502), and the side frame (503).
5. The multifunctional wire crimping device for wire production according to claim 4, characterized in that: The eccentric wire pressing component (508) includes: A wire pressing arm (5081), the bottom of which is rotatably connected to the side of the wire pressing frame (501) and extends to the inside of the side frame (503) and the movable frame (502), and a rotating shaft (5082) is provided through the inside of the wire pressing arm (5081). Wherein, the rotating shaft (5082) and the movable frame (502) are rotatably connected; A lower pressing wheel (5083) is rotatably connected to the inner top of the wire pressing arm (5081), and the side surface of the lower pressing wheel (5083) is pressed down and fixed with the wire body (70).
6. The multifunctional wire crimping device for wire production according to claim 5, characterized in that: The cutting and stripping assembly (80) comprises: Side brackets (801), the side brackets (801) being mounted on both sides of the processing seat (30) by screws, and a DC motor (802) being mounted on the side of a group of the side brackets (801), the output end of the DC motor (802) being connected to a spindle (803), the spindle (803) being rotatably connected to the inside of the side bracket (801) and extending to the outside of the side bracket (801); The first gear (804) is provided with two groups, and the two groups of the first gear (804) are both installed on the outside of the main shaft (803), and the side surface of the first gear (804) is meshedly connected with the second gear (805). Wherein, the top of the second gear (805) is connected to a driving shaft (806); A first transmission belt (807) is connected to the outside of the main shaft (803) through a synchronous wheel provided on the inside, and is movably connected to the side of a group of side brackets (801). The inside of the first transmission belt (807) is also connected to a rotating shaft (808) through the synchronous wheel. The rotating shaft (808) is movably connected to the inside of the two groups of side brackets (801).
7. The multifunctional wire crimping device for wire production according to claim 6, characterized in that: A group of cutting wheels (809) is installed on the central portion of the outer side of the main shaft (803) and is located between the two groups of the first gears (804). A group of cutting wheels (809) is installed on the top of the driving shaft (806). A group of cutting wheels (809) is installed on the central portion of the outer side of the rotating shaft (808). The side of the cutting wheel (809) contacts the electric wire body (70), the main shaft (803) and the driving shaft (806) are rotatably connected to the side of a triangular support (8030), and the triangular support (8030) is installed on the top of the processing seat (30). Wherein, a reciprocating pushing assembly (90) is installed on the outer side of the main shaft (803).
8. The multifunctional wire crimping device for wire production according to claim 7, characterized in that: The reciprocating pushing assembly (90) includes: A second transmission belt (901) is connected to the outside of the main shaft (803) through a synchronous wheel provided on the inside, and is movably connected to the inside of a group of side brackets (801). The inside of the second transmission belt (901) is connected to the shaft end of the third gear (902) through the synchronous wheel. The third gear (902) is rotatably connected to the side of the side block (903). Wherein, the side stopper (903) is installed on the side of the processing seat (30); a fourth gear (904), the fourth gear (904) being meshedly connected to a side surface of the third gear (902) and rotatably connected to a side surface of the side block (903), and a movable shaft (905) being connected to the bottom of the fourth gear (904); A third transmission belt (906) is connected to the outer side of the movable shaft (905) through a synchronous wheel provided on the inner side. The inner side of the third transmission belt (906) is also connected to a reciprocating screw (907) through the synchronous wheel. The reciprocating screw (907) is rotatably connected to the central part of the other side of the processing seat (30).
9. The multifunctional wire crimping device for wire production according to claim 8, characterized in that: The outer side of the reciprocating screw (907) is connected to a sliding push plate (908) via a ball bearing. The sliding push plate (908) is slidably connected to the inside of a pouring trough (9081). The pouring trough (9081) is opened on the other side of the processing seat (30). Wherein, a waste recycling box (20) is provided below the sliding push plate (908).
Citation Information
Patent Citations
Multifunctional wire pressing device for wire production
CN113839290A
Waste recovery device for electric wire peeler
CN105161226A
Wire stripping device with multi-station structure for three-phase motor processing
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