Terminal cutting and tray arrangement device

CN122607741APending Publication Date: 2026-08-21CHANGSHU XUHONG PRECISION COMPONENTS CO LTD
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Patent Information

Application Number
CN202610761493.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-05-29
Publication Date
2026-08-21

AI Technical Summary

Technical Problem

[0003]现有生产模式下,端子裁切设备与摆盘设备多为独立运行,裁切后的端子需经人工或中间转运装置移送至摆盘工序,不仅增加了设备之间的转运时间和人力投入,还容易因频繁搬运导致端子引脚变形、表面划伤等二次损伤

Benefits of technology

[0006]The advantages of adopting the above technical solution are that the terminal strip is automatically fed by the feeding component and the terminal is identified as good by the detection component. The cutting module directly cuts and separates the terminals. After cutting, the transfer module, together with the intermediate placement component, removes defective products. Finally, the transfer module transfers the terminals with the same posture into the tray of the holding device to complete the traying. The entire cutting and traying process does not require manual transfer, which reduces the damage to the terminals caused during the transfer process and ensures that the terminals have a uniform posture after traying, which is convenient for subsequent processes. This greatly improves the processing efficiency and finished product quality of terminal cutting and traying.

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Abstract

The application discloses a terminal cutting and placing equipment, characterized in that the equipment comprises a feeding assembly for feeding terminal material belts, a cutting module for cutting terminals on the terminal material belts, a transfer module comprising a plurality of movable transfer heads for transferring the cut terminals, an intermediate placing assembly arranged on the side of the cutting module and provided with a placing table for placing the terminals, and a containing device provided with a plurality of containing plates, wherein the transfer module places the terminals into the containing plates. The application has the advantages that the whole cutting and placing process does not need manual transfer, the terminal damage caused by the transfer process is reduced, the posture of the terminals after being placed is uniform, the subsequent process is facilitated, and the processing efficiency of the terminal cutting and placing and the finished product quality are greatly improved.
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Description

Technical Field

[0001] This invention relates to the field of terminal processing technology, and more specifically to a terminal cutting and tray-mounting device. Background Technology

[0002] Terminals are core components in connectors, wire harness assemblies, and electronic components, widely used in consumer electronics, automotive electronics, medical electronics, and industrial control. Terminals are typically supplied in strip form. During connector assembly, wire harness processing, and injection molding insert production, a cutting process separates the terminals from the strip, followed by a tray-laying process to arrange them systematically on a carrier or tray for subsequent assembly. The quality and efficiency of terminal cutting and tray-laying directly affect the overall reliability and manufacturing cost of connectors and wire harnesses.

[0003] In the current production model, terminal cutting equipment and tray placement equipment mostly operate independently. The cut terminals need to be transferred to the tray placement process manually or via intermediate transfer devices. This not only increases the transfer time and manpower between equipment, but also easily leads to secondary damage such as terminal lead deformation and surface scratches due to frequent handling. At the same time, the cut terminals lack effective posture correction, resulting in inconsistent terminal arrangement postures during tray placement. Summary of the Invention

[0004] To address the aforementioned technical problems, this invention provides a terminal cutting and tray-stacking device that enables automatic cutting, inspection, and tray-stacking of terminals. This reduces manual handling, lowers the risk of secondary damage to terminals, and ensures consistent terminal posture after tray-stacking. It effectively improves the overall efficiency and finished product qualification rate of terminal cutting and tray-stacking, while reducing labor and time costs in production and processing.

[0005] Specifically, this invention discloses a terminal cutting and tray-mounting device, characterized in that it includes: The feeding assembly is used for feeding terminal strips and is equipped with a detection component. The cutting module is used to cut the terminals off the terminal strip; The transfer module includes multiple movable transfer heads for transferring the cut terminals; A middle placement component is provided on the side of the cutting module, and a placement platform for placing terminals is provided on it; The container has multiple containers, and the transfer module places the terminals into the containers.

[0006] The advantages of adopting the above technical solution are that the terminal strip is automatically fed by the feeding component and the terminal is identified as good by the detection component. The cutting module directly cuts and separates the terminals. After cutting, the transfer module, together with the intermediate placement component, removes defective products. Finally, the transfer module transfers the terminals with the same posture into the tray of the holding device to complete the traying. The entire cutting and traying process does not require manual transfer, which reduces the damage to the terminals caused during the transfer process and ensures that the terminals have a uniform posture after traying, which is convenient for subsequent processes. This greatly improves the processing efficiency and finished product quality of terminal cutting and traying.

[0007] Furthermore, the lower side of the cutting module is provided with a receiving component, including: a movably installable receiving base plate, a first mounting plate, a second mounting plate and a receiving plate, the first mounting plate is connected to the second mounting plate, the first mounting plate is installed on the receiving base plate, the receiving plate is connected to the second mounting plate, and the receiving plate is provided with a positioning post for positioning the terminal.

[0008] The advantage of adopting the above technical solution is that the cut terminals are received by the receiving plate and the initial positioning of the terminals is completed with the positioning post, which avoids the position displacement of the terminals after they are cut and fall, ensures the positioning accuracy of subsequent transportation, and reduces the probability of terminal posture errors.

[0009] Furthermore, the receiving base plate is connected to a horizontal drive component, and the first mounting plate is connected to a vertical drive component. The vertical drive component drives the receiving plate to rise and enter the receiving terminal inside the cutting module.

[0010] The advantages of adopting the above technical solution are that the vertical drive component can drive the receiving plate to rise and fall, rising to the lower side of the material drop hole to receive the terminal during cutting, and then falling down after receiving. The horizontal drive component then moves the received terminal to the designated position. This facilitates material handling by the transfer module, has a simple structure, stable operation, and can accurately complete the receiving and transfer of terminals.

[0011] Furthermore, the intermediate placement component includes: a movable plate, the movable plate being connected to a first movable module, and multiple placement platforms mounted on the movable plate.

[0012] The advantage of adopting the above technical solution is that multiple placement platforms receive the terminals transferred by the transfer module, reject the defective terminals detected by the detection component, place the good terminals on the placement platforms, and the movable plate can be moved to facilitate the transfer of terminals with the transfer device.

[0013] Furthermore, the cutting module includes an upper cutting die and a lower cutting die. The upper cutting die is provided with an upper template and a plurality of cutting blades. The lower cutting die is provided with a material discharge hole.

[0014] The advantage of adopting the above technical solution is that multiple cutting blades can cut multiple terminals on the terminal strip at the same time. After cutting, the terminals fall directly from the dropping hole and are received and positioned by the receiving component below. The cutting action is completed synchronously, with high cutting accuracy and stable efficiency, which can ensure the consistency of the dimensions of multiple terminals after cutting.

[0015] Furthermore, the holding device includes: a tray feeding assembly, a tray moving assembly, and a tray unloading assembly. The tray moving assembly includes a rotatably mounted synchronous belt, on which a receiving plate is mounted. The holding tray is located on the receiving plate. A connecting block is provided on the receiving plate. A limiting block is installed on the connecting block. The connecting block is provided with a strip hole that connects to the receiving plate. The upper end of the limiting block expands outward.

[0016] The advantages of adopting the above technical solution are that it enables automatic loading and unloading of the container tray, limits and positions the container tray by means of a limiting block to prevent displacement of the container tray during movement, and the strip hole can adjust the installation position of the connecting block to adapt to container trays of different sizes and specifications. The limiting block that expands outward at the top facilitates the placement of the container tray from top to bottom and plays a guiding role, resulting in stronger adaptability and better positioning stability.

[0017] Furthermore, the material tray unloading assembly includes an unloading storage rack, a support assembly, and a first lifting assembly. The unloading storage rack is fixedly installed, and the support assembly includes a retractable extension block for supporting the container tray, thereby creating a gap between the container tray and the lower material tray moving assembly.

[0018] The advantage of adopting the above technical solution is that after the full tray of terminals is arranged, it is transported to the bottom of the unloading storage rack. The first lifting component lifts the full tray and extends the block support to lift the entire tray and stack it into the unloading storage rack, realizing the automatic stacking and storage of full tray terminals. There is no need to manually transfer and store the full tray one by one, which further reduces the labor input and is compatible with automated continuous production processes.

[0019] Furthermore, the first lifting assembly includes a lifting plate, a push rod, a lifting plate, and a lifting drive component. The lifting plate is located below the unloading storage rack. The upper end of the push rod is connected to the lifting plate, and the lower end is connected to the lifting plate. The lifting plate is connected to the lifting drive component.

[0020] The advantages of adopting the above technical solution are that the lifting drive component drives the lifting plate to rise and fall smoothly through the lifting plate and the lifting rod, which can stably lift the entire stack of containers upward. The structure is evenly stressed, the lifting action is smooth, and it ensures that the containers will not shake or tilt during the lifting process, thus avoiding the displacement and falling of the terminals.

[0021] Furthermore, the material tray loading assembly includes: a loading storage rack, a lifting assembly and a second lifting assembly, the lifting assembly and the second lifting assembly being located below the loading storage rack, the lifting assembly including: a lifting plate, a lifting drive and a translation drive, the lifting plate being symmetrically arranged and connected to the lifting drive, and the translation drive being connected to the lifting drive.

[0022] The advantage of adopting the above technical solution is that multiple loading trays are stacked and stored in the loading storage rack, which can complete the loading and storage of a large number of empty loading trays at one time without frequent manual replenishment. The support component extends through the extension block to support the stacked loading trays, and works with the second lifting component to complete the sequential unloading of individual loading trays, ensuring that only one empty loading tray moves to the receiving plate at a time. The loading action is smooth and stable, and can effectively adapt to the automated tray loading process.

[0023] Furthermore, the feeding assembly includes a feeding tray and a feeding channel. The feeding channel is equipped with a feeding actuation assembly, including a movable actuation plate, which drives the terminal strip to move horizontally.

[0024] The advantage of adopting the above technical solution is that the feeding plate drives the terminal strip to move step by step, and the accuracy of each movement is high, which can ensure that the terminal is stably fed into the cutting module, ensure the accuracy of the cutting position, avoid the terminal being scrapped due to the cutting position error, and improve the cutting qualification rate. Attached Figure Description

[0025] To more clearly illustrate the technical solutions in the embodiments of the present invention, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.

[0026] Figure 1 This is a schematic diagram of the overall structure of the present invention. Figure 2 This is a schematic diagram of the receiving component structure of the present invention. Figure 3 This is a schematic diagram of the mounting structure of the placement platform of the present invention. Figure 4 This is a schematic diagram of the cutting module structure of the present invention. Figure 5 This is a schematic diagram of the holding device structure of the present invention. Figure 6 This is a schematic diagram of the material tray moving component structure of the present invention. Figure 7 This is a schematic diagram of the support component structure of the present invention. Figure 8 This is a schematic diagram of the component structure of the present invention. Figure 9 This is a schematic diagram of the first lifting component structure of the present invention. Figure 10 This is a schematic diagram of the transfer module structure of the present invention. Figure 11 This is a schematic diagram of the installation structure of the transfer head of the present invention.

[0027] The reference numerals used in the attached figures are as follows: Feeding assembly 1; Feeding tray 11; Feeding channel 12; Feeding plate 13; Detection assembly 2; Cutting module 3; Upper cutting die 31; Lower cutting die 32; Upper template 33; Transfer module 4; Transfer head 41; First assembly plate 42; Gantry frame 43; Second assembly plate 44; Third assembly plate 45; Placement platform 5; Moving plate 51; First moving module 52; Container tray 6; Material tray unloading assembly 61; Unloading storage rack 611; Extending block 612; Lifting plate 613; Push rod 61 4; Lifting plate 615; Lifting drive component 616; Fixing block 617; Limiting block 618; Material tray moving assembly 62; Synchronous belt 621; Receiving plate 622; Connecting block 623; Limiting block 624; Material tray loading assembly 63; Loading storage rack 631; Lifting plate 632; Lifting drive component 633; ​​Translation drive component 634; Supporting base plate 7; First mounting plate 71; Second mounting plate 72; Supporting plate 73; Positioning column 74; Horizontal drive component 75; Adsorption hole 76. Detailed Implementation

[0028] The present invention will now be described in further detail with reference to the accompanying drawings.

[0029] like Figure 1 As shown, the present invention discloses a terminal cutting and tray-mounting device, characterized in that it includes: The frame is equipped with a base plate, on which the following are mounted: The feeding assembly 1 is used for feeding terminal strips and is equipped with a detection assembly 2; Cutting module 3 is used to cut off the terminals from the terminal strip; The transfer module 4 includes multiple movable transfer heads 41 for transferring the cut terminals; A middle placement component is provided on the side of the cutting module 3, and a placement platform 5 for placing terminals is provided on it; The container, located on the side of the central placement component, has multiple container trays 6, and the transfer module 4 places the terminals into the container trays 6.

[0030] The advantages of adopting the above technical solution are that the terminal strip is automatically fed by the feeding component 1 and the terminal is identified as good by the detection component 2. The cutting module 3 directly cuts and separates the terminals. After cutting, the transfer module 4, in conjunction with the intermediate placement component, removes defective products. Finally, the transfer module 4 transfers the terminals with the same posture into the holding tray 6 of the holding device to complete the traying. The entire cutting and traying process does not require manual transfer, which reduces the damage to the terminals caused during the transfer process and ensures that the terminals have a uniform posture after traying, which is convenient for subsequent processes. This greatly improves the processing efficiency and finished product quality of terminal cutting and traying.

[0031] In some implementation schemes, such as Figure 2 As shown, the lower side of the cutting module 3 is provided with a receiving component, including: a movably installable receiving base plate 7, a first mounting plate 71, a second mounting plate 72 and a receiving plate 73. The first mounting plate 71 is connected to the second mounting plate 72 and is installed on the receiving base plate 7. The receiving plate 73 is connected to the second mounting plate 72. The receiving plate 73 is provided with a positioning post 74 for positioning the terminal. The upper surface of the receiving plate 73 is shaped to match the lower surface of the terminal and serves to support the terminal.

[0032] Furthermore, a guide rail and a slider are installed on the base plate, and the receiving base plate 7 is installed on the slider to realize the movable installation of the receiving base plate 7. The receiving base plate 7 is connected to a horizontal drive component 75, which is a cylinder. The cylinder drives the receiving base plate 7 to move, so that the receiving base plate 7 moves out from the bottom of the cutting module 3. The first mounting plate 71 is connected to a vertical drive component, which is also a cylinder. The vertical drive component drives the receiving plate 73 to rise and enter the cutting module 3 to receive the cut terminals. When the cut terminals fall onto the receiving plate 73, the cylinder retracts, and the receiving base plate 7 moves out from the bottom of the cutting module 3, which facilitates the subsequent transfer of terminals by the transfer module 4.

[0033] Furthermore, an adsorption hole 76 is provided on the receiving plate 73, which is connected to a gas pipe and a vacuum generator. After the terminal falls onto the receiving plate, the terminal is adsorbed to prevent the terminal from moving or falling off.

[0034] In some implementation schemes, such as Figure 3As shown, the intermediate placement component includes: a movable plate 51, which is connected to a first movable module 52. The first movable module 52 adopts a lead screw motor module, a synchronous belt module, etc. There are multiple placement platforms 5, which are detachably installed on the movable plate 51. The placement platforms 5 are arranged side by side, and the shape of the upper surface is the same as the shape of the lower surface of the terminal. The placement platform is provided with a positioning post for positioning the terminal. A defective product placement box is provided between the movable plate 51 and the cutting module 3. After the transfer module 4 picks up the terminal located on the receiving plate 73, it places the defective terminal detected by the front detection component into the defective product box. Other terminals are placed on the placement platform 5. The missing material position is picked up again by the transfer head 41 to make up the missing material. Then the transfer head 41 picks up the terminal that is aligned on the placement platform 5 and places it into the holding tray 6.

[0035] In some implementation schemes, such as Figure 4 As shown, the cutting module 3 includes an upper cutting die 31 and a lower cutting die 32. The upper cutting die 31 is connected to a cutting drive unit, which causes the upper cutting die 31 to rise and fall and cut. An upper template 33 is provided inside the upper cutting die 31, and multiple cutting blades are provided on the upper template 33. The lower cutting die 32 is provided with a material dropping hole, and the cut terminals fall from the material dropping hole onto the receiving plate.

[0036] In some implementation schemes, such as Figures 5-6 As shown, the container includes: a tray unloading assembly 61, a tray moving assembly 62, and a tray loading assembly 63. The tray moving assembly 62 is mounted on a second base plate and includes a rotatably mounted synchronous belt 621. A synchronous pulley is mounted on the second base plate to drive the synchronous belt 621 to rotate. The synchronous pulley is connected to a motor. A receiving plate 622 is mounted on the synchronous belt 621 and moves under the drive of the synchronous belt 621. The tray loading assembly 63 receives the container tray 6. After the tray is full of terminals, the tray unloading assembly... The material receiving plate 622 at position 61 is equipped with a connecting block 623. The receiving plate 622 has a groove for accommodating the connecting block 623. The connecting block 623 is fitted with a limiting block 624, which is located around the receiving plate 622. The connecting block 623 has a strip hole for connecting with the receiving plate 622. The strip hole can control the length of the connecting block 623 extending from the periphery of the receiving plate 622. When using different sized receiving plates 6, the upper end of the limiting block 624 expands outward, making the descent of the receiving plate 6 smoother.

[0037] Furthermore, such as Figures 7-8As shown, the material tray unloading assembly 61 includes an unloading storage rack 611, a support assembly, and a first lifting assembly. The unloading storage rack 611 is fixedly installed on the second base plate, and a space for accommodating the container trays 6 is enclosed in the middle. Multiple container trays 6 are stacked in the unloading storage rack 611. The support assembly includes a retractable extension block 612. A fixing block 617 that is installed on the second base plate is provided on the lower side of the extension block 612. A limiting block 618 is installed on the fixing block 617. The main body of the extension block 612 passes through the limiting block 618. The extension block 612 is moved by a cylinder. After the extension block 612 extends, it is located on the lower side of the container trays 6, so that there is a gap between the stacked container trays 6 and the material tray moving assembly 62 on the lower side.

[0038] Furthermore, such as Figure 9 As shown, the first lifting assembly includes a lifting plate 613, a push rod 614, a lifting plate 615, and a lifting drive component 616. The lifting plate 613 is located below the unloading storage rack 611. The upper end of the push rod 614 is connected to the lifting plate 613, and the lower end is connected to the lifting plate 615. The lifting plate 615 is connected to the lifting drive component 616, which is a motor. The motor drives a lead screw to rotate. The moving nut of the lead screw is connected to the lifting plate 615. The lead screw is rotatably mounted. When the lead screw rotates, the moving nut rises, and at this time, the receiving plate... Located on the lower side of the storage rack, the receiving plate 622 has holes for the lifting plate 613 to extend. The push rod 614 drives the lifting plate 613 to pass through the receiving plate 622 and lift the tray filled with terminals. At this time, the tray 6 filled with terminals contacts the tray in the storage compartment. Then the extension block 612 retracts, the lifting plate 613 continues to lift, the extension block 612 extends, and then the lifting plate 613 descends. At this time, all the trays 6 are on the extension block 612, completing the automatic stacking and storage of full trays. The unloading action is smooth and orderly.

[0039] Furthermore, the material tray loading assembly 63 includes: a loading storage rack 631, a lifting assembly, and a second lifting assembly. The lifting assembly and the second lifting assembly are located below the loading storage rack 631. The loading storage rack 631 is mounted on a second base plate and has the same structure as the unloading storage rack 611. The second lifting assembly has the same structure as the first lifting assembly. The lifting assembly includes: a lifting plate 632, a lifting drive component 633, and a translation drive component 634. The lifting plate 632 is symmetrically arranged on both sides of the loading storage rack 631 and connected to the lifting drive component 633. The lifting drive component 633 is a cylinder, and the translation drive component 634 is a cylinder connected to the lifting drive component 632. 33 Connection; When loading is required, the second lifting component lifts the empty container 6 located in the loading storage rack 631. The lifting drive component 633 drives the lifting plate 632 to retract. At this time, the translation drive component 634 extends, driving the lifting plate 632 to move to the outside of the loading storage rack 631. Then, the second lifting component drives the container 6 to descend, placing the container 6 entirely on the receiving plate. At this time, the translation drive component retracts, and the lifting plate 632 is located at the bottom of the second to last container 6. Then, the lifting drive component 633 extends. At this time, only the bottommost container 6 is on the receiving plate, and the other container 6 are lifted, completing the automatic loading of the empty container 6.

[0040] In some implementations, the feeding assembly includes a feeding tray 11 and a feeding channel 12. The feeding channel 12 is mounted on a base plate and is equipped with a feeding actuation assembly, including a movable actuation plate 13. The actuation plate 13 drives the terminal strip to move horizontally. The actuation plate 13 is connected to a linear motion module. The motion module is arranged along the direction of the feeding channel 12 and can be a screw motor module or a synchronous belt module, etc. An extension plate is mounted on the motion module. A vertically mounted cylinder is mounted on the extension plate. The output end of the cylinder is connected to the actuation plate 13, so that the actuation plate 13 can be raised and lowered.

[0041] In some implementation schemes, such as Figures 10-11 As shown, the transfer module 4 includes: a first assembly plate 42 connected to a cylinder, the cylinder being mounted on a gantry 43, a linear motion module mounted on the gantry 43 to drive the first assembly plate 42 to move, a cylinder mounted on the first assembly plate 42 connected to a second assembly plate 44 to allow the second assembly plate 44 to be raised and lowered, multiple vertically movable third assembly plates 45 mounted on the second assembly plate 44, and a transfer head 41 mounted on the third assembly plate 45, which can be a pneumatic gripper or a mechanical gripper, and an adjustable stroke cylinder connected to each third assembly plate 45 to allow the third assembly plate 45 to move independently, so that each transfer head 41 can be raised and lowered independently to grip.

[0042] In some implementations, the detection device is a vision detection device, which can be an industrial camera, installed on the upper side of the feeding channel 12 to detect the quality of the terminals.

[0043] During operation, the terminal strip is mounted on the feeding tray 11. After the strip is pulled out, it is fed into the cutting module 3 along the feeding channel 12. The feeding actuation component's feeding plate 13 descends and inserts into the positioning hole of the strip, driving the strip to step into the cutting module 3. After each feeding, the detection component 2 performs visual inspection on the terminal to be cut and marks the defective product. The cutting drive component of the cutting module 3 drives the upper cutting die 31 to press down, and the cutting blade cuts the terminal off the strip. The cut terminal falls along the dropping hole of the lower cutting die 32 and is received by the receiving plate 73. The suction hole 76 on the receiving plate 73 draws a vacuum to stabilize and fix the terminal. Then, the horizontal drive component 75 drives the receiving base plate 7 to move out from under the cutting module 3, waiting for the transfer module 4 to pick up the material. The multiple transfer heads 41 of the transfer module 4 descend and sequentially clamp the terminals on the receiving plate 73. If the current terminal For pre-marked defective products, the transfer head 41 will place them into the defective product placement box, while good products will be transferred to the placement platform 5 of the intermediate placement component and the posture of the terminals will be adjusted. After the terminals on the placement platform 5 are all aligned, the transfer head 41 will pick up the terminals again and place them into the empty holding trays 6 on the receiving plate 622 of the material tray moving component 62. The empty holding trays 6 are automatically loaded one by one by the material tray loading component 63. Multiple empty holding trays 6 are pre-stacked and stored in the loading storage rack 631. Each time the second lifting component moves, it will only drop the bottommost holding tray 6 onto the receiving plate 622 and move it to the tray position with the synchronous belt 621. When the holding tray 6 is full of terminals, the receiving plate 622 will move the full tray to the bottom of the unloading storage rack 611 and stack the full trays into the unloading storage rack 611 one by one, completing the automatic storage of the full tray. The entire process, from terminal strip feeding to cutting, tray placement, and full tray storage, is fully automated without human intervention. It boasts high production efficiency, high precision in terminal tray placement, and uniform posture, making it compatible with the requirements of subsequent processing steps.

[0044] For those skilled in the art, various modifications and improvements can be made without departing from the inventive concept of this invention, and these all fall within the protection scope of this invention.

Claims

1. A terminal cutting and tray-stacking device, characterized in that, include: The feeding assembly (1) is used for feeding terminal strips and is equipped with a detection assembly (2). The cutting module (3) is used to cut off the terminals from the terminal strip; The transfer module (4) includes multiple movable transfer heads (41) for transferring the cut terminals; A middle placement component is provided on the side of the cutting module (3), and a placement platform (5) for placing terminals is provided on it. The container has multiple containers (6), and the transfer module (4) places the terminals into the containers (6).

2. The terminal cutting and tray-loading device according to claim 1, characterized in that, The cutting module (3) has a receiving component on its lower side, including: a movably installable receiving base plate (7), a first mounting plate (71), a second mounting plate (72) and a receiving plate (73). The first mounting plate (71) is connected to the second mounting plate (72). The first mounting plate (71) is installed on the receiving base plate (7). The receiving plate (73) is connected to the second mounting plate (72). The receiving plate (73) is provided with a positioning post (74) for positioning the terminal.

3. The terminal cutting and tray-stacking equipment according to claim 2, characterized in that, The receiving base plate (7) is connected to a horizontal drive member (75), and the first mounting plate (71) is connected to a vertical drive member. The vertical drive member drives the receiving plate (73) to rise and enter the receiving terminal inside the cutting module (3).

4. The terminal cutting and tray-stacking equipment according to claim 1, characterized in that, The intermediate placement component includes: a movable plate (51), the movable plate (51) is connected to a first movable module (52), and the placement platform (5) is multiple and installed on the movable plate (51).

5. The terminal cutting and tray-loading device according to claim 1, characterized in that, The cutting module (3) includes an upper cutting die (31) and a lower cutting die (32). The upper cutting die (31) is provided with an upper template (33), and the upper template (33) is provided with multiple cutting blades. The lower cutting die (32) is provided with a material dropping hole.

6. The terminal cutting and tray-stacking equipment according to claim 1, characterized in that, The container includes: a tray unloading assembly (61), a tray moving assembly (62), and a tray loading assembly (63). The tray moving assembly (62) includes a rotatably mounted timing belt (621). A receiving plate (622) is mounted on the timing belt (621). The container (6) is placed on the receiving plate (622). A connecting block (623) is provided on the receiving plate (622). A limiting block (624) is installed on the connecting block (623). The connecting block (623) is provided with a strip hole that connects to the receiving plate (622). The upper end of the limiting block (624) expands outward.

7. The terminal cutting and tray-stacking equipment according to claim 6, characterized in that, The material tray loading assembly (63) includes: a loading storage rack (631), a lifting assembly and a second lifting assembly. The lifting assembly and the second lifting assembly are located on the lower side of the loading storage rack (631). The lifting assembly includes: a lifting plate (632), a lifting drive (633) and a translation drive (634). The lifting plate (632) is symmetrically arranged and connected to the lifting drive (633). The translation drive (634) is connected to the lifting drive (633).

8. The terminal cutting and tray-stacking equipment according to claim 7, characterized in that, The material tray unloading assembly (61) includes an unloading storage rack (611), a support assembly and a first lifting assembly. The unloading storage rack (611) is fixedly installed. The support assembly includes a retractable extension block (612). The extension block (612) is used to support the container tray (6) so that there is a gap between the container tray (6) and the lower material tray moving assembly (62).

9. The terminal cutting and tray-stacking equipment according to claim 8, characterized in that, The first lifting assembly includes a lifting plate (613), a top rod (614), a lifting plate (615), and a lifting drive component (616). The lifting plate (613) is located below the unloading storage rack (611). The upper end of the top rod (614) is connected to the lifting plate (613), and the lower end is connected to the lifting plate (615). The lifting plate (615) is connected to the lifting drive component (616).

10. The terminal cutting and tray-stacking equipment according to claim 1, characterized in that, The feeding assembly (1) includes a feeding tray (11) and a feeding channel (12). The feeding channel (12) is provided with a feeding actuation assembly, including a movable actuation plate (13). The actuation plate (13) drives the terminal strip to move horizontally.