Automatic wire pressing machine for wiring terminal
The fully automated design of the terminal crimping machine solves the problem of low automation in automatic crimping machines, achieving efficient crimping of terminals and wires and improving production efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HUIZHOU LEGANG TECHNOLOGY CO LTD
- Filing Date
- 2025-04-27
- Publication Date
- 2026-04-21
AI Technical Summary
Existing automatic wire crimping machines have a low degree of automation, resulting in low crimping efficiency between terminals and stripped wires, which seriously affects customer experience.
Design an automatic terminal crimping machine, comprising a terminal conveying mechanism, a terminal cutting mechanism, a terminal handling mechanism, a waste material removal and terminal moving mechanism, a wire handling mechanism, and a crimping mechanism. Through the cooperation of these mechanisms, fully automated crimping operations are achieved, ensuring precise alignment and crimping of terminals and wires.
It significantly improved production cycle time, reduced process connection time, increased the crimping efficiency of terminals and wires, and enhanced the level of automation.
Smart Images

Figure CN224153742U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of terminal block manufacturing technology, and in particular to an automatic terminal block crimping machine. Background Technology
[0002] An electronic connector is an electromechanical component used to connect electronic devices or circuits, enabling electrical connections, signal transmission, and mechanical fixation. It can connect or disconnect circuits between two electronic devices, allowing current or signals to flow from one conductor to another. Electronic connectors mainly consist of terminals and wires, which are joined together by crimping. In related technologies, automatic crimping machines are primarily used to crimp the terminals and stripped wires together. However, the automation level of these automatic crimping machines is low, resulting in low crimping efficiency and significantly impacting customer experience. Utility Model Content
[0003] Therefore, it is necessary to provide an automatic wire crimping machine for terminals to address the problem that the automatic wire crimping machines in related technologies have a low degree of automation, resulting in low crimping efficiency between the terminals and the stripped wires, which seriously affects the customer experience.
[0004] An automatic terminal crimping machine includes a terminal conveying mechanism, a terminal cutting mechanism, a terminal handling mechanism, a waste material removal and terminal moving mechanism, a wire handling mechanism, and a crimping mechanism;
[0005] The terminal conveying mechanism is connected to the terminal cutting mechanism, the terminal cutting mechanism is connected to the terminal transport mechanism, the terminal transport mechanism is connected to the waste material removal and terminal moving mechanism, and the waste material removal and terminal moving mechanism and the wire transport mechanism are respectively connected to the pressing mechanism;
[0006] The terminal conveying mechanism is used to drive the terminal strip to the cutting position of the terminal cutting mechanism. The terminal strip includes braided tape and multiple terminals connected to the braided tape. The multiple terminals are arranged at equal intervals, and each terminal is provided with a through hole on the braided tape.
[0007] The terminal cutting mechanism is used to sequentially cut individual terminals from the terminal strip. The terminal transport mechanism is used to place the cut individual terminals at the waste removal position of the waste removal and terminal moving mechanism. The waste removal and terminal moving mechanism is used to remove waste from the individual terminals and move the terminals after waste removal to the pressing position of the pressing mechanism. The wire transport mechanism is used to move the stripped wires to the pressing position of the pressing mechanism. The pressing mechanism is used to press the terminals after waste removal and the stripped wires together.
[0008] The aforementioned automatic terminal crimping machine includes a terminal conveying mechanism, a terminal cutting mechanism, a terminal handling mechanism, a waste material removal and terminal moving mechanism, a wire handling mechanism, and a crimping mechanism. The terminal conveying mechanism is connected to the terminal cutting mechanism, which is connected to the terminal handling mechanism. The terminal handling mechanism is connected to the waste material removal and terminal moving mechanism, and the waste material removal and terminal moving mechanism and the wire handling mechanism are respectively connected to the crimping mechanism. When the automatic terminal crimping machine is working, the terminal conveying mechanism first moves the terminal strip to the cutting position of the terminal cutting mechanism. Then, the terminal cutting mechanism cuts individual terminals sequentially from the terminal strip. Next, the terminal handling mechanism places the cut individual terminals at the waste material removal position of the waste material removal and terminal moving mechanism. Then, the waste material removal and terminal moving mechanism removes the waste from the individual terminals and moves the terminals after waste removal to the crimping position of the crimping mechanism. Next, the wire handling mechanism places the stripped wire at the crimping position of the crimping mechanism, ensuring accurate alignment between the stripped wire and the terminal after waste removal. Finally, the crimping mechanism crimps the terminal after waste removal and the stripped wire together. As can be seen, this automatic terminal crimping machine achieves fully automated crimping operations through the coordinated operation of a terminal conveying mechanism, a terminal cutting mechanism, a terminal handling mechanism, a waste material removal and terminal moving mechanism, a wire handling mechanism, and a crimping mechanism. Compared with traditional manual operation, it significantly reduces process connection time and substantially improves production cycle time. Furthermore, because the multiple terminals connected to the tape are equidistantly spaced, the terminal conveying mechanism can move the terminal tape by the same distance each time to cooperate with the terminal cutting mechanism to cut each terminal sequentially. Since there are through holes on the tape corresponding to each terminal position, the terminal conveying mechanism can cooperate with the through holes to apply a translational force to the terminal tape, thereby driving the terminal tape to move in a translational manner.
[0009] In one embodiment, the terminal conveying mechanism includes a support plate, a pre-pressing block, and a pushing block;
[0010] The terminal strip is disposed between the support plate and the pre-pressing block. The support plate is used to support the terminal strip, the pre-pressing block is used to pre-press and level the terminal strip, and the pushing block is used to push the terminal strip to the cutting position of the terminal cutting mechanism.
[0011] In one embodiment, the pushing block includes a lower pushing block and an upper pushing block, the upper pushing block is disposed above the lower pushing block, the lower pushing block is fixedly connected to a buffer spring and a rotating shaft, and the upper pushing block passes through the rotating shaft and abuts against the buffer spring;
[0012] The upper push block is provided with a plug tip that matches the through hole, and the lower push block is connected to a first cylinder and a return spring.
[0013] In one embodiment, the lower side of the lower push block is provided with a slide rail that cooperates with the lower push block.
[0014] In one embodiment, the terminal cutting mechanism includes a second cylinder, a transmission block, a first cutter body, and a second cutter body;
[0015] The second cylinder is hinged to the transmission block, and the transmission block is fixedly connected to the first blade body. The second blade body is used to cooperate with the first blade body to complete the cutting of a single terminal.
[0016] In one embodiment, the waste removal and terminal moving mechanism includes a cutting part and a moving part. The cutting part is used to remove waste from a single terminal, and the moving part is used to move the terminal after waste removal to the pressing position of the pressing mechanism.
[0017] In one embodiment, the cutting portion includes a first cutting portion and a second cutting portion, which are disposed on both sides of the pressing mechanism;
[0018] The moving part includes a first moving part and a second moving part, wherein the first moving part is used to cooperate with the first cutting part, and the second moving part is used to cooperate with the second cutting part.
[0019] In one embodiment, the support plate is provided with a limiting block, which is used to limit the terminal strip.
[0020] In one embodiment, the terminal conveying mechanism further includes a calibration block for calibrating the travel distance of the terminal strip. Attached Figure Description
[0021] Figure 1 This is a structural block diagram of the automatic terminal crimping machine of this utility model;
[0022] Figure 2 This is a schematic diagram of the terminal conveying mechanism in the automatic terminal crimping machine of this utility model;
[0023] Figure 3 This is a schematic diagram of the terminal cutting mechanism in the automatic terminal crimping machine of this utility model;
[0024] Figure 4 This is a schematic diagram of the terminal handling mechanism in the automatic terminal crimping machine of this utility model;
[0025] Figure 5 This is a schematic diagram of the waste removal and terminal movement mechanism in the automatic terminal crimping machine of this utility model;
[0026] Figure 6This is a partial structural schematic diagram of the terminal conveying mechanism in the automatic terminal crimping machine of this utility model;
[0027] Figure 7 This is a schematic diagram of the terminal material strip in the automatic terminal crimping machine of this utility model;
[0028] Among them, 10 is the terminal conveying mechanism, 20 is the terminal cutting mechanism, 30 is the terminal handling mechanism, 40 is the waste material removal and terminal moving mechanism, 50 is the terminal strip, 11 is the support plate, 12 is the pre-pressing block, 13 is the pushing block, 131 is the lower pushing block, 132 is the upper pushing block, 1321 is the insertion tip, 133 is the buffer spring, 134 is the rotating shaft, 135 is the slide rail, 21 is the second cylinder, 22 is the transmission block, 23 is the first cutter body, 24 is the second cutter body, 31 is the gripper, 41 is the cutting part, 42 is the moving part, 51 is the tape weaving, 52 is the terminal, and 53 is the through hole. Detailed Implementation
[0029] To make the above-mentioned objects, features, and advantages of this utility model more apparent and understandable, the specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings. Many specific details are set forth in the following description to provide a full understanding of this utility model. However, this utility model can be implemented in many other ways different from those described herein, and those skilled in the art can make similar modifications without departing from the spirit of this utility model. Therefore, this utility model is not limited to the specific embodiments disclosed below.
[0030] It should be noted that when an element is said to be "fixed to" another element, it can be directly on the other element or there may be an intervening element. When an element is said to be "connected to" another element, it can be directly connected to the other element or there may be an intervening element. Conversely, when an element is said to be "directly on" another element, there is no intervening element. The terms "vertical," "horizontal," "left," "right," and similar expressions used in this document are for illustrative purposes only.
[0031] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0032] This utility model discloses an automatic terminal crimping machine.
[0033] like Figures 1 to 7As shown, the automatic terminal crimping machine includes a terminal conveying mechanism 10, a terminal cutting mechanism 20, a terminal handling mechanism 30, a waste material removal and terminal moving mechanism 40, a wire handling mechanism, and a crimping mechanism; the terminal conveying mechanism 10 is connected to the terminal cutting mechanism 20, the terminal cutting mechanism 20 is connected to the terminal handling mechanism 30, the terminal handling mechanism 30 is connected to the waste material removal and terminal moving mechanism 40, and the waste material removal and terminal moving mechanism 40 and the wire handling mechanism are respectively connected to the crimping mechanism.
[0034] The terminal conveying mechanism 10 is used to move the terminal strip 50 to the cutting position of the terminal cutting mechanism 20. The terminal strip 50 includes a braided strip 51 and multiple terminals 52 connected to the braided strip 51. The multiple terminals 52 are arranged at equal intervals. A through hole 53 is provided on the braided strip 51 corresponding to the position of each terminal 52. The terminal cutting mechanism 20 is used to cut individual terminals 52 sequentially from the terminal strip 50. The terminal transport mechanism 30 is used to place the cut individual terminals 52 at the waste removal and terminal moving mechanism 40. The waste removal and terminal moving mechanism 40 is used to remove waste from the individual terminals 52 and move the terminal after waste removal to the pressing position of the pressing mechanism. The wire transport mechanism is used to place the stripped wire at the pressing position of the pressing mechanism. The pressing mechanism is used to press the individual terminals 52 and the stripped wire together.
[0035] The aforementioned automatic terminal crimping machine includes a terminal conveying mechanism, a terminal cutting mechanism, a terminal handling mechanism, a waste material removal and terminal moving mechanism, a wire handling mechanism, and a crimping mechanism. The terminal conveying mechanism is connected to the terminal cutting mechanism, which is connected to the terminal handling mechanism. The terminal handling mechanism is connected to the waste material removal and terminal moving mechanism, and the waste material removal and terminal moving mechanism and the wire handling mechanism are respectively connected to the crimping mechanism. When the automatic terminal crimping machine is working, the terminal conveying mechanism first moves the terminal strip to the cutting position of the terminal cutting mechanism. Then, the terminal cutting mechanism cuts individual terminals sequentially from the terminal strip. Next, the terminal handling mechanism places the cut individual terminals at the waste material removal position of the waste material removal and terminal moving mechanism. Then, the waste material removal and terminal moving mechanism removes the waste from the individual terminals and moves the terminals after waste removal to the crimping position of the crimping mechanism. Next, the wire handling mechanism places the stripped wire at the crimping position of the crimping mechanism, ensuring accurate alignment between the stripped wire and the terminal after waste removal. Finally, the crimping mechanism crimps the terminal after waste removal and the stripped wire together. As can be seen, this automatic terminal crimping machine achieves fully automated crimping operations through the coordinated operation of a terminal conveying mechanism, a terminal cutting mechanism, a terminal handling mechanism, a waste material removal and terminal moving mechanism, a wire handling mechanism, and a crimping mechanism. Compared with traditional manual operation, it significantly reduces process connection time and substantially improves production cycle time. Furthermore, because the multiple terminals connected to the tape are equidistantly spaced, the terminal conveying mechanism can move the terminal tape by the same distance each time to cooperate with the terminal cutting mechanism to cut each terminal sequentially. Since there are through holes on the tape corresponding to each terminal position, the terminal conveying mechanism can cooperate with the through holes to apply a translational force to the terminal tape, thereby driving the terminal tape to move in a translational manner.
[0036] The terminal cutting mechanism 20 includes a first terminal cutting mechanism and a second terminal cutting mechanism, and the terminal transport mechanism 30 can transport individual terminals via grippers 31. Furthermore, the terminal transport mechanism 30 includes a first terminal transport mechanism and a second terminal transport mechanism. The first terminal cutting mechanism and the second terminal transport mechanism have the same structure and function. The first terminal cutting mechanism cooperates with the first terminal transport mechanism, and the second terminal cutting mechanism cooperates with the second terminal transport mechanism. When the automatic terminal crimping machine is working, by alternately cutting individual terminals from the terminal strip using the first and second terminal cutting mechanisms, bidirectional transport of terminals can be achieved, which can greatly improve the cutting and transport efficiency of terminals, and ultimately improve the crimping efficiency of terminals.
[0037] The terminal conveying mechanism 10 includes a support plate 11, a pre-pressing block 12, and a pushing block 13. The terminal strip 50 is disposed between the support plate 11 and the pre-pressing block 12. The support plate 11 is used to support the terminal strip 50, the pre-pressing block 12 is used to pre-press and level the terminal strip 50, and the pushing block 13 is used to push the terminal strip 50 to the cutting position of the terminal cutting mechanism 20.
[0038] When the terminal conveying mechanism 10 is working, the push block 13 can cooperate with the through hole 53 to drive the terminal strip 50 to the cutting position of the terminal cutting mechanism 20. The pre-pressing block 12 pre-presses and flattens the terminal strip 50, so that the terminal strip 50 will not warp or deform during the translational movement, thereby improving the translational accuracy of the terminal strip 50 and further improving the cutting accuracy of the terminal cutting mechanism 20. Because the pre-pressing block 12 pre-presses and flattens the terminal strip 50, a first frictional force is formed between the terminal strip 50 and the pre-pressing block 12 during the translational movement, and the pulling force applied by the push block 13 to the terminal strip 50 is greater than the first frictional force.
[0039] The push block 13 includes a lower push block 131 and an upper push block 132. The upper push block 132 is located on the upper side of the lower push block 131. The lower push block 131 is fixedly connected to a buffer spring 133 and a rotating shaft 134. The upper push block 131 passes through the rotating shaft 134 and abuts against the buffer spring 133. The upper push block 132 is provided with an insertion tip 1321 that matches the through hole 53. The lower push block 131 is connected to a first cylinder and a return spring.
[0040] When the push block 13 starts working, the insertion tip 1321 is inserted into the current through hole 53 on the terminal strip 50 and protrudes from the surface of the terminal strip 50. First, the first cylinder drives the lower push block 131 to move a preset distance, which is equal to the distance between adjacent terminals 52 on the terminal strip 50. During the translation of the lower push block 131, the lower push block 131 drives the buffer spring 133, the rotating shaft 134 and the upper push block 132 to move synchronously. Since the insertion tip 1321 is inserted into the current through hole 53 on the terminal strip 50, the push block 13 drives the terminal strip 50 to move a preset distance, so that the terminal cutting mechanism 20 completes the cutting of the current terminal 52. Then, driven by the return spring, the push block 131 is reset. During the reset process of the lower push block 131, the lower push block 131 drives the buffer spring 133, the rotating shaft 134 and the upper push block 132 to move synchronously. Due to the limiting effect of the terminal strip 50, the insertion tip 1321 rotates counterclockwise by a certain angle, thereby descending a certain distance and sliding into contact with the lower surface of the terminal strip 50 until the insertion tip 1321 is inserted into the next through hole 53 on the terminal strip 50. At this time, the insertion tip 1321 rotates clockwise by the same angle and rises by the same distance, thereby protruding out of the surface of the terminal strip 50 again.
[0041] The lower side of the lower push block 131 is provided with a slide rail 135 that cooperates with the lower push block 131. By setting the slide rail 135, the translational movement of the lower push block 131 is more stable, and the cutting accuracy of the terminal cutting mechanism 20 can be further improved.
[0042] The terminal cutting mechanism 20 includes a second cylinder 21, a transmission block 22, a first cutter body 23, and a second cutter body 24. The second cylinder 21 is hinged to the transmission block 22, the transmission block 22 is fixedly connected to the first cutter body 23, and the second cutter body 24 is used to cooperate with the first cutter body 23 to complete the cutting of a single terminal.
[0043] When the terminal cutting mechanism 20 is working, the cylinder axis is first controlled by the second cylinder 21 to move upward. Since the second cylinder 21 is hinged to the transmission block 22, the transmission block 22 moves downward, which in turn drives the first cutter body 23 to move downward, thereby enabling the first cutter body 23 and the second cutter body 24 to cooperate to complete the cutting of the terminal 52.
[0044] The waste removal and terminal moving mechanism 40 includes a cutting section 41 and a moving section 42. The cutting section 41 is used to remove waste from a single terminal 52, and the moving section 42 is used to move the terminal after waste removal to the pressing position of the pressing mechanism. Further, the cutting section 41 includes a first cutting section and a second cutting section, which are located on both sides of the pressing mechanism; the moving section includes a first moving section and a second moving section, whereby the first moving section cooperates with the first cutting section, and the second moving section cooperates with the second cutting section. Through the mutual cooperation between the first moving section and the first cutting section, and the mutual cooperation between the second moving section and the second cutting section, the automatic terminal crimping machine can perform bidirectional waste removal and terminal moving on both sides of the pressing mechanism, thereby improving the working efficiency of the automatic terminal crimping machine.
[0045] like Figure 7 As shown, the terminal cutting mechanism 20 can sequentially cut individual terminals 52 from the terminal strip along the first cutting line. Furthermore, before pressing the individual terminals 52 with the stripped wires into a mold, the cutting part 41 removes waste material with through holes 53 from the individual terminals 52 along the second cutting line.
[0046] The support plate 11 is equipped with a limiting block, which is used to limit the terminal strip 50. By setting the limiting block on the support plate 11, the terminal strip 50 can move more smoothly during translation and will not deviate.
[0047] The terminal conveying mechanism 10 also includes a calibration block, which is used to calibrate the movement distance of the terminal strip. The calibration block allows for easy observation of the displacement error of the terminal strip 50 and enables manual intervention when the displacement error is too large. For example, the calibration block can be aligned with the center of the through hole 53. Ideally, during the cutting process of the terminal cutting mechanism 20, the calibration block is aligned sequentially with the center of each through hole 53 on the terminal strip 50. However, due to the accumulation of errors, the calibration block may not be aligned with the center of the through hole 53 during subsequent processing, at which point manual calibration can be performed.
[0048] Furthermore, the wire handling mechanism and the pressing mechanism both adopt existing technologies, which will not be elaborated here.
[0049] This utility model also discloses a method for operating the above-mentioned automatic terminal crimping machine. The method for operating the automatic terminal crimping machine includes the following steps:
[0050] Terminal conveying mechanism 10 moves the terminal strip horizontally to the cutting position of terminal cutting mechanism 20; terminal cutting mechanism 20 cuts individual terminals sequentially from the terminal strip; terminal handling mechanism 30 places the cut individual terminals at the waste removal position of waste removal and terminal moving mechanism 40; waste removal and terminal moving mechanism 40 removes waste from the individual terminals and moves the terminals after waste removal to the pressing position of pressing mechanism; wire handling mechanism moves the stripped wires to the pressing position of pressing mechanism; pressing mechanism presses the terminals after waste removal and the stripped wires together.
[0051] As can be seen, the fully automated wire pressing operation is achieved through the coordinated operation of the terminal conveying mechanism, terminal cutting mechanism, terminal handling mechanism, waste material removal and terminal moving mechanism, wire handling mechanism, and pressing mechanism. Compared with traditional manual operation, this significantly reduces the process connection time and greatly improves the production cycle time. Furthermore, because the multiple terminals connected to the tape are equidistantly spaced, the terminal conveying mechanism can move the terminal tape by the same distance each time, allowing the terminal cutting mechanism to cut individual terminals sequentially. Since there are through holes on the tape corresponding to each terminal position, the terminal conveying mechanism can cooperate with the through holes to apply a translational force to the terminal tape, thereby driving the terminal tape to move in a translational manner.
[0052] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0053] The embodiments described above are merely illustrative of several implementations of this utility model, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.
Claims
1. An automatic wire crimping machine for a terminal, characterized by comprising: This includes a terminal conveying mechanism, a terminal cutting mechanism, a terminal handling mechanism, a waste material removal and terminal moving mechanism, a wire handling mechanism, and a pressing mechanism; The terminal conveying mechanism is connected to the terminal cutting mechanism, the terminal cutting mechanism is connected to the terminal transport mechanism, the terminal transport mechanism is connected to the waste material removal and terminal moving mechanism, and the waste material removal and terminal moving mechanism and the wire transport mechanism are respectively connected to the pressing mechanism; The terminal conveying mechanism is used to drive the terminal strip to the cutting position of the terminal cutting mechanism. The terminal strip includes braided tape and multiple terminals connected to the braided tape. The multiple terminals are arranged at equal intervals, and each terminal is provided with a through hole on the braided tape. The terminal cutting mechanism is used to sequentially cut individual terminals from the terminal strip. The terminal transport mechanism is used to place the cut individual terminals at the waste removal position of the waste removal and terminal moving mechanism. The waste removal and terminal moving mechanism is used to remove waste from the individual terminals and move the terminals after waste removal to the pressing position of the pressing mechanism. The wire transport mechanism is used to move the stripped wires to the pressing position of the pressing mechanism. The pressing mechanism is used to press the terminals after waste removal and the stripped wires together.
2. The crimping terminal automatic press according to claim 1, wherein The terminal conveying mechanism includes a support plate, a pre-pressing block, and a pushing block; The terminal strip is disposed between the support plate and the pre-pressing block. The support plate is used to support the terminal strip, the pre-pressing block is used to pre-press and level the terminal strip, and the pushing block is used to push the terminal strip to the cutting position of the terminal cutting mechanism.
3. The automatic terminal crimping machine according to claim 2, characterized in that, The pushing block includes a lower pushing block and an upper pushing block. The upper pushing block is located above the lower pushing block. The lower pushing block is fixedly connected to a buffer spring and a rotating shaft. The upper pushing block passes through the rotating shaft and abuts against the buffer spring. The upper push block is provided with a plug tip that matches the through hole, and the lower push block is connected to a first cylinder and a return spring.
4. The crimping machine of claim 3, wherein The lower side of the lower push block is provided with a slide rail that cooperates with the lower push block.
5. The automatic wire crimping machine of any one of claims 1 to 4, wherein The terminal cutting mechanism includes a second cylinder, a transmission block, a first cutter body, and a second cutter body; The second cylinder is hinged to the transmission block, and the transmission block is fixedly connected to the first blade body. The second blade body is used to cooperate with the first blade body to complete the cutting of a single terminal.
6. The automatic terminal crimping machine according to any one of claims 1 to 4, characterized in that, The waste removal and terminal moving mechanism includes a removal part and a moving part. The removal part is used to remove waste from a single terminal, and the moving part is used to move the terminal after waste removal to the pressing position of the pressing mechanism.
7. The terminal crimper of claim 6, wherein The cutting portion includes a first cutting portion and a second cutting portion, which are disposed on both sides of the pressing mechanism; The moving part includes a first moving part and a second moving part, the first moving part being used to cooperate with the first cutting part, and the second moving part being used to cooperate with the second cutting part.
8. The wire termination automatic crimper of claim 2, wherein The support plate is provided with a limiting block, which is used to limit the terminal strip.
9. The wire termination automatic crimper of claim 1, wherein The terminal conveying mechanism further comprises a calibration block for calibrating the moving distance of the terminal material tape.