Ultra-silence terminal machine capable of automatically feeding
By designing an automatic loading ultra-silent terminal machine, the limiting assembly, partitioning block, concave block and transmission assembly are used to realize the automatic fixation of the cable and the automatic rotation of the copper core, solving the problems of easy displacement and safety hazards of the copper core in the prior art, and improving the stability and safety of the pressing process.
Patent Information
- Application Number
- CN202311693555.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-06
- Publication Date
- 2025-06-06
AI Technical Summary
Existing ultra-silent terminal machines require manual placement of the copper core of the cable one by one, which makes the copper core easily displaced due to manual operation, reduces the pressing quality, and poses safety hazards.
An ultra-silent terminal machine that can be automatically loaded is designed, and a loading mechanism includes a fixing seat, a rotating column, a fixing device and a rotating device. Through the limiting assembly, a partition block, a concave block and a transmission assembly, the automatic fixing of the cable and the automatic rotation of the copper core to the pressing area are realized.
Through the automatic loading mechanism, the copper core is avoided from being displaced due to manual operation, the stability and safety of the pressing process are improved, and the risk of manual operation is reduced.
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Figure CN120109608A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of an ultra-quiet terminal machine capable of automatic loading, in particular to an ultra-quiet terminal machine capable of automatic loading. Background Art
[0002] The terminal machine refers to a machine used for wire processing. It presses the hardware head to the wire end and then makes it conductive. The punched terminal can be connected without welding, which is convenient to use. The ultra-quiet terminal machine adopts modern inverter control technology and is suitable for crimping various terminals and wires. The terminal machine runs ultra-quietly, and the inverter itself can save 30% of electricity. In addition, the ultra-quiet terminal machine is powered on once it works, eliminating unnecessary idling of the motor, which is more energy-saving to use.
[0003] However, when using the current ultra-quiet terminal machine, the copper cores in the cable need to be placed one by one in the terminal pressing area, and then the terminal is pressed by the pressing die. During the terminal pressing process, the worker's hand must always hold the cable tightly, and the copper core is easily displaced due to the worker's movements, reducing the quality of terminal pressing. In addition, because the worker's hand is too close to the pressing die, it is easy to enter the pressing area due to accidental movements, causing safety accidents. In view of this, we propose an ultra-quiet terminal machine that can automatically load materials. Summary of the invention
[0004] The purpose of the present invention is to provide an ultra-quiet terminal machine capable of automatic loading, which solves the problems in the background technology.
[0005] To achieve the above object, the present invention provides the following technical solutions:
[0006] An ultra-quiet terminal machine capable of automatic feeding comprises a machine body; a pressing block for pressing terminals; a lifting component for driving the pressing block to move up and down; a feeding mechanism; the feeding mechanism comprises a fixed seat, a rotating column is rotatably mounted on the fixed seat, a fixing device and a rotating device are arranged on the rotating column, the fixing device is used to fix the cable, and the rotating device is used to control the rotation of the cable.
[0007] Preferably, the fixing device includes a placement plate, which is fixedly mounted on the top of the rotating column, and a plurality of partition blocks and a plurality of concave blocks are fixedly mounted on the top of the placement plate, and the plurality of concave blocks are arranged in an equiangular radial pattern, and a limiting component is provided on the placement plate.
[0008] Preferably, the limiting assembly includes a support plate, a connecting plate is rotatably mounted on the support plate via a rotating shaft, the connecting plate is elastically connected to the support plate via a first torsion spring, a movable plate is fixedly connected to the connecting plate, and a limiting frame is fixedly connected to the movable plate.
[0009] Preferably, the fixing device further comprises a first magnetic block and a second magnetic block, the first magnetic block is fixedly mounted on the placement plate, the second magnetic block is fixedly mounted on the fixing seat, and the magnetic poles of one side of the first magnetic block and the second magnetic block are opposite.
[0010] Preferably, the rotating device includes a turntable, which is fixedly mounted on the rotating column. The turntable is provided with a plurality of special-shaped grooves, wherein a special-shaped rod is slidably connected to the inner wall of one of the special-shaped grooves, a guide assembly is provided on the special-shaped rod, and a transmission assembly is connected to the guide assembly.
[0011] Preferably, the guide assembly includes a guide plate, which is fixedly mounted on the inner wall of the fixed seat, a frame is slidably connected to the guide plate, a fixing rod is fixedly mounted on the inner wall of the frame, a slider is slidably connected to the surface of the fixing rod, one end of the slider is elastically connected to the inner wall of the frame by a spring, and the other end of the slider is fixedly connected to the special-shaped rod.
[0012] Preferably, a limiting block is fixedly connected to the frame, and the surface of the limiting block is slidably connected to the inner wall of the guide plate; a groove is provided on the guide plate, a trapezoidal plate is fixedly connected to the inner wall of the groove, a guide block is slidably connected to the inner wall of the groove, and one end of the guide block is fixedly connected to the slider.
[0013] Preferably, the rotating device further comprises a fixed inclined plate, which is fixedly mounted on the inner wall of the fixed seat and is located below the rotating disk; a movable inclined plate is rotatably mounted on the bottom end of the trapezoidal plate through a rotating shaft, the movable inclined plate is elastically connected to the trapezoidal plate through a second torsion spring, and the side of the movable inclined plate close to the rotating column contacts the trapezoidal plate
[0014] Preferably, the transmission assembly includes a connecting block, one end of the connecting block is fixedly connected to the frame, the other end of the connecting block is fixedly connected to a transmission rack, the surface of the transmission rack is meshed with a transmission gear, the side of the transmission gear away from the transmission rack is meshed with a driving rack, a connecting rod is fixedly connected to the driving rack, and the end of the connecting rod away from the driving rack is fixedly connected to the pressing block.
[0015] Preferably, the transmission assembly further comprises a mounting seat, the mounting seat is fixedly mounted on the guide plate, and the axis of the transmission gear is rotatably mounted on the mounting seat via a rotating shaft.
[0016] By means of the above technical solution, the present invention provides an ultra-quiet terminal machine capable of automatic feeding, which has at least the following beneficial effects:
[0017] (1) This ultra-quiet terminal machine with automatic feeding can compress the cable by using the elastic force of the torsion spring by setting a limit component on the placement plate, preventing the cable from moving at will, so that the cable remains stable during the terminal pressing process. By setting a plurality of radial partition blocks and concave blocks on the placement plate, the plurality of copper cores in the cable can be separated and arranged in sequence, making it easier for the machine to press the copper cores one by one without manual operation by the staff, thereby improving the stability and safety of the pressing process.
[0018] (2) The ultra-quiet terminal machine with automatic loading is provided with a rotating device so that after each pressing of the pressing block, the placement plate can automatically rotate to a certain angle, thereby driving the cable to rotate, so that multiple copper cores are rotated into the terminal pressing area in turn, without the need to manually adjust the position of the copper core, further improving the safety of pressing.
[0019] (3) The ultra-quiet terminal machine capable of automatic feeding can guide the motion trajectory of the special-shaped rod by setting a guide component, so that the special-shaped rod can move in a circular trajectory, thereby achieving automatic movement and automatic reset. By setting a transmission component, the lifting component can synchronously drive the turntable to rotate during operation, thereby improving the convenience of use. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] The accompanying drawings described herein are used to provide a further understanding of the present invention and constitute a part of this application:
[0021] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0022] Figure 2 It is a schematic diagram of the local structure of the present invention;
[0023] Figure 3 It is a schematic diagram of the feeding mechanism in the present invention;
[0024] Figure 4 It is a schematic diagram of the limiting component in the present invention;
[0025] Figure 5 is a cross-sectional view of the fixing seat in the present invention;
[0026] Figure 6 is a cross-sectional view of the frame of the present invention;
[0027] Figure 7 is a schematic diagram of a movable inclined plate in the present invention;
[0028] Figure 8 It is a schematic diagram of the rotating device in the present invention;
[0029] Fig. 9 is a cross-sectional view of the slider in the present invention;
[0030] Fig.10 It is a schematic diagram of the mounting base in the present invention.
[0031] In the figure: 1, machine body; 2, base; 3, lifting component; 4, pressing block; 5, feeding mechanism; 51, fixed seat; 52, rotating column; 53, fixing device; 531, placing plate; 532, partition block; 533, concave block; 534, limiting assembly; 5341, supporting plate; 5342, connecting plate; 5343, movable plate; 5344, limiting frame; 5345, first torsion spring; 535, first magnetic block; 536, second magnetic block; 54, rotating device; 541, turntable; 5411, special-shaped groove; 542, special-shaped rod; 5 43. Guide assembly; 5431. Guide plate; 5432. Frame; 5433. Slider; 5434. Fixed rod; 5435. Groove; 5436. Guide block; 5437. Movable inclined plate; 5438. Second torsion spring; 5439. Trapezoidal plate; 54310. Limit block; 544. Transmission assembly; 5441. Connecting block; 5442. Drive rack; 5443. Transmission gear; 5444. Transmission rack; 5445. Connecting rod; 5446. Mounting seat; 545. Fixed inclined plate; 6. Upper mold; 7. Lower mold. DETAILED DESCRIPTION
[0032] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions 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 of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0033] See also Figure 1-Figure 10 , a technical solution provided by the present invention:
[0034] An ultra-quiet terminal machine capable of automatic loading includes a base 2, a body 1 of the ultra-quiet terminal machine capable of automatic loading is fixedly mounted on the top of the base 2, a lifting component 3 is arranged on the body 1, and the lifting component 3 is a structure such as a cylinder or an electric push rod. A pressing block 4 is fixedly mounted on the output end of the lifting component 3, and the pressing block 4 is used to press the terminal. More specifically, an upper mold 6 is fixedly mounted on the bottom of the pressing block 4, and a lower mold 7 is fixedly mounted on the top of the base 2. When in use, the copper core in the cable is placed on the lower mold 7, and the pressing block 4 is controlled to move downward by the lifting component 3, and the pressing block 4 presses the terminal out of the end of the copper core through the upper mold 6. A feeding mechanism 5 is arranged on the base 2.
[0035] Specifically, the feeding mechanism 5 includes a fixed seat 51 on which a rotating column 52 is rotatably mounted. The rotating column 52 is provided with a fixing device 53 and a rotating device 54. The fixing device 53 is used to fix the cable, and the rotating device 54 is used to control the rotation of the cable.
[0036] In this embodiment, the fixing device 53 includes a placement plate 531, which is fixedly mounted on the top of the rotating column 52 and is used to place the cables to be pressed. A plurality of partition blocks 532 and a plurality of concave blocks 533 are fixedly mounted on the top of the placement plate 531. The plurality of partition blocks 532 are arranged in an equiangular radial shape with the axis of the rotating column 52 as the center, and the plurality of concave blocks 533 are arranged in an equiangular radial shape with the axis of the rotating column 52 as the center. The partition blocks 532 are used to separate the copper cores in the cable, and the concave blocks 533 are located outside the partition blocks 532, and are used to expand the distance between the copper cores, so that the device can press the copper cores one by one. A limit assembly 534 is provided on the placement plate 531 for fixing the cable.
[0037] In this embodiment, the limiting assembly 534 includes a support plate 5341, a connecting plate 5342 is rotatably mounted on the support plate 5341 through a rotating shaft, a movable plate 5343 is fixedly connected to the connecting plate 5342, and a limiting frame 5344 is fixedly connected to the movable plate 5343. The lower surface of the limiting frame 5344 contacts the cable to limit the cable. The limiting frame 5344 is provided with an arched groove on one side close to the placement plate 531 to enlarge the contact area between it and the cable, so as to achieve a better limiting effect. The connecting plate 5342 is elastically connected to the support plate 5341 through a first torsion spring 5345, so that the limiting frame 5344 can automatically press the cable by elastic force to prevent the cable from moving at will.
[0038] Furthermore, the fixing device 53 also includes a first magnetic block 535 and a second magnetic block 536. The first magnetic block 535 is fixedly installed on the placement plate 531, and the second magnetic block 536 is fixedly installed on the fixing base 51. The magnetic poles of the first magnetic block 535 and the second magnetic block 536 are opposite. When the first magnetic block 535 is in contact with the second magnetic block 536, the placement plate 531 is in an initial position. The magnetic connection between the first magnetic block 535 and the second magnetic block 536 can increase the stability of the fixing device 53 in the initial position, which is convenient for the staff to reset the device.
[0039] In this embodiment, the rotating device 54 includes a rotating disk 541, which is fixedly mounted on the rotating column 52. A plurality of special-shaped grooves 5411 are provided on the outer circumference of the rotating disk 541. The special-shaped grooves 5411 are in an inclined state, and a special-shaped rod 542 is slidably connected to the inner wall of one of the special-shaped grooves 5411. The special-shaped rod 542 is provided with a guide assembly 543. By providing the guide assembly 543, the movement direction of the special-shaped rod 542 can be guided. When the special-shaped rod 542 moves downward, the rotating disk 541 can be pushed through the inclined special-shaped groove 5411. The rotating disk 541 drives the placement plate 531 to rotate synchronously through the rotating column 52, thereby driving the cable to rotate, so that the copper core is rotated to the lower mold 7 in sequence. The guide assembly 543 is connected to the transmission assembly 544.
[0040] In this embodiment, the guide assembly 543 includes a guide plate 5431, which is fixedly mounted on the inner wall of the fixed seat 51, and a frame 5432 is slidably connected to the guide plate 5431. A fixing rod 5434 is fixedly mounted on the inner wall of the frame 5432, and a slider 5433 is slidably connected to the surface of the fixing rod 5434. By setting the fixing rod 5434, the slider 5433 can be limited, so that the relative movement between the slider 5433 and the frame 5432 is more stable. One end of the slider 5433 is elastically connected to the inner wall of the frame 5432 through a spring, so that the slider 5433 can be automatically reset, and the other end of the slider 5433 is fixedly connected to the special-shaped rod 542, which is used to drive the special-shaped rod 542 to move. A limit block 54310 is fixedly connected to the frame 5432, and the surface of the limit block 54310 is slidably connected to the inner wall of the guide plate 5431. The guide plate 5431 is provided with a sliding groove for the limit block 54310 to slide up and down. Through the cooperation between the limit block 54310 and the sliding groove, the moving direction of the frame 5432 can be limited so that the frame 5432 can only move up and down.
[0041] In order to guide the motion trajectory of the slider 5433, a groove 5435 is provided on the guide plate 5431, and a trapezoidal plate 5439 is fixedly connected to the inner wall of the groove 5435, and the bottom of the trapezoidal plate 5439 is an inclined surface. The trapezoidal plate 5439 is located at the center of the groove 5435, so that a circular groove is formed on the guide plate 5431. A guide block 5436 is slidably connected to the inner wall of the groove 5435, and one end of the guide block 5436 is fixedly connected to the slider 5433. Furthermore, the rotating device 54 further comprises a fixed inclined plate 545, which is fixedly mounted on the inner wall of the fixed seat 51 and is located below the rotating disk 541. The inclination of the fixed inclined plate 545 is the same as the inclination of the bottom of the trapezoidal plate 5439. When the special-shaped rod 542 is separated from the rotating disk 541, it will contact the fixed inclined plate 545 and move to a side away from the fixed inclined plate 545 under the push of the inclined surface of the fixed inclined plate 545. At this time, the guide block 5436 moves along the inclined surface of the bottom of the trapezoidal plate 5439.
[0042] It is worth noting that the bottom end of the trapezoidal plate 5439 is rotatably mounted with a movable inclined plate 5437 through a rotating shaft, and the movable inclined plate 5437 is elastically connected to the trapezoidal plate 5439 through a second torsion spring 5438, and the side of the movable inclined plate 5437 close to the rotating column 52 is in contact with the trapezoidal plate 5439. When the guide block 5436 moves to a specified position, it pushes the movable inclined plate 5437, and when the guide block 5436 is separated from the movable inclined plate 5437, the movable inclined plate 5437 automatically resets under the elastic force of the second torsion spring 5438, and blocks the guide block 5436, so that the guide block 5436 cannot return along the original path.
[0043] In this embodiment, the transmission assembly 544 includes a connecting block 5441, one end of the connecting block 5441 is fixedly connected to the surface of the frame 5432, the other end of the connecting block 5441 is fixedly connected to a transmission rack 5444, the surface of the transmission rack 5444 is meshed with a transmission gear 5443, the side of the transmission gear 5443 away from the transmission rack 5444 is meshed with a driving rack 5442, and the driving rack 5442 is fixedly connected with a connecting rod 5445, and one end of the connecting rod 5445 away from the driving rack 5442 is fixedly connected to the pressing block 4, through the transmission of the transmission gear 5443 and the two racks, when the pressing block 4 moves downward, the special-shaped rod 542 can be reset downward, and the placement plate 531 remains stationary, so that the pressing process is more stable. When the pressing block 4 is reset upward, it can drive the special-shaped rod 542 to move downward, thereby causing the placement plate 531 to rotate a certain angle, so that different copper cores are rotated to the pressing mold. The transmission assembly 544 also includes a mounting seat 5446 , which is fixedly mounted on the guide plate 5431 . The axis of the transmission gear 5443 is rotatably mounted on the mounting seat 5446 via a rotating shaft to improve the rotation stability of the transmission gear 5443 .
[0044] Working principle: The staff places the cable at the designated position on the placement plate 531 and presses the cable through the limit frame 5344. Then the exposed copper core is passed through the partition blocks 532 one by one and pulled out from the outside of the concave block 533. During the pressing process, the output end of the lifting component 3 drives the pressing block 4 to move downward, pressing the copper core on the lower mold 7 into a terminal. After the pressing is completed, the output end of the lifting component 3 drives the pressing block 4 to reset upward.
[0045] During the upward movement of the pressing block 4, the driving rack 5442 is synchronously driven to move downward through the connecting rod 5445, the driving rack 5442 drives the transmission gear 5443 to rotate through meshing, the transmission gear 5443 drives the transmission rack 5444 to move downward through meshing, the transmission rack 5444 drives the frame 5432 to move downward through the connecting block 5441, the frame 5432 drives the slider 5433 to move downward through the fixing rod 5434, and the slider 5433 drives the shaped rod 542 and the guide block 5436 to move downward at the same time. The shaped rod 542 slides in the shaped groove 5411, and pushes the rotating disk 541 through the inclined shaped groove 5411, so that the rotating disk 541 rotates a certain angle, and the rotating disk 541 synchronously drives the placing plate 531 to rotate through the rotating column 52, thereby driving the cable to rotate, so that the copper core rotates to the top of the lower mold 7. When the special-shaped rod 542 is separated from the rotating disk 541, it will contact the fixed inclined plate 545 and move to the side away from the fixed inclined plate 545 under the push of the inclined surface of the fixed inclined plate 545. At this time, the guide block 5436 moves along the inclined surface at the bottom of the trapezoidal plate 5439. When the guide block 5436 moves to the specified position, it will push the movable inclined plate 5437. When the special-shaped rod 542 moves to the rightmost side of the fixed inclined plate 545, the guide block 5436 can be separated from the movable inclined plate 5437. At this time, the movable inclined plate 5437 will automatically reset under the elastic force of the second torsion spring 5438 and block the guide block 5436.
[0046] When the pressing block 4 moves upward, the driving rack 5442 will be synchronously driven to move upward through the connecting rod 5445, and then the transmission rack 5444 will be driven to move upward. The transmission rack 5444 will drive the frame 5432 to move upward through the connecting block 5441, and the frame 5432 will drive the slider 5433 to move upward through the fixing rod 5434. The slider 5433 will simultaneously drive the special-shaped rod 542 and the guide block 5436 to move upward. Since the guide block 5436 is blocked by the movable inclined plate 5437 when it moves upward and cannot move to the left, it will enter between the right side of the trapezoidal plate 5439 and the right side wall of the groove 5435, and move upward along the channel. When the guide block 5436 moves to the top of the trapezoidal plate 5439, the slider 5433 will move to the left under the elastic force of the spring, and drive the special-shaped rod 542 and the guide block 5436 to move to the left, so as to achieve reset.
[0047] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.
[0048] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An ultra-quiet terminal machine with automatic loading function. It is characterized in that include: Body (1); A pressing block (4), used for pressing the terminal; A lifting component (3) is used to drive the pressing block (4) to move up and down; Feeding mechanism (5); The feeding mechanism (5) comprises a fixed seat (51), a rotating column (52) is rotatably mounted on the fixed seat (51), a fixing device (53) and a rotating device (54) are arranged on the rotating column (52), the fixing device (53) is used to fix the cable, and the rotating device (54) is used to control the rotation of the cable.
2. The ultra-quiet terminal machine capable of automatic loading according to claim 1, It is characterized in that The fixing device (53) comprises a placement plate (531), wherein the placement plate (531) is fixedly mounted on the top of the rotating column (52), a plurality of partition blocks (532) and a plurality of concave blocks (533) are fixedly mounted on the top of the placement plate (531), the plurality of concave blocks (533) are arranged in an equiangular radial pattern, and a limiting component (534) is arranged on the placement plate (531).
3. The ultra-quiet terminal machine capable of automatic loading according to claim 2, It is characterized in that The limiting assembly (534) comprises a support plate (5341), a connecting plate (5342) is rotatably mounted on the support plate (5341) via a rotating shaft, the connecting plate (5342) is elastically connected to the support plate (5341) via a first torsion spring (5345), a movable plate (5343) is fixedly connected to the connecting plate (5342), and a limiting frame (5344) is fixedly connected to the movable plate (5343).
4. The ultra-quiet terminal machine capable of automatic loading according to claim 2, It is characterized in that The fixing device (53) further comprises a first magnetic block (535) and a second magnetic block (536); the first magnetic block (535) is fixedly mounted on the placement plate (531); the second magnetic block (536) is fixedly mounted on the fixing seat (51); and the magnetic poles of the first magnetic block (535) and the second magnetic block (536) facing each other are opposite.
5. The ultra-quiet terminal machine capable of automatic loading according to claim 1, It is characterized in that The rotating device (54) comprises a rotating disk (541), wherein the rotating disk (541) is fixedly mounted on the rotating column (52), and a plurality of special-shaped grooves (5411) are provided on the rotating disk (541), wherein a special-shaped rod (542) is slidably connected to the inner wall of one of the special-shaped grooves (5411), and a guide assembly (543) is provided on the special-shaped rod (542), and a transmission assembly (544) is connected to the guide assembly (543).
6. The ultra-quiet terminal machine capable of automatic loading according to claim 5, It is characterized in that The guide assembly (543) comprises a guide plate (5431), wherein the guide plate (5431) is fixedly mounted on the inner wall of the fixed seat (51), a frame (5432) is slidably connected to the guide plate (5431), a fixing rod (5434) is fixedly mounted on the inner wall of the frame (5432), a sliding block (5433) is slidably connected to the surface of the fixing rod (5434), one end of the sliding block (5433) is elastically connected to the inner wall of the frame (5432) via a spring, and the other end of the sliding block (5433) is fixedly connected to the special-shaped rod (542).
7. The ultra-quiet terminal machine capable of automatic loading according to claim 6, It is characterized in that A limiting block (54310) is fixedly connected to the frame (5432), and a surface of the limiting block (54310) is slidably connected to an inner wall of the guide plate (5431); The guide plate (5431) is provided with a groove (5435), a trapezoidal plate (5439) is fixedly connected to the inner wall of the groove (5435), a guide block (5436) is slidably connected to the inner wall of the groove (5435), and one end of the guide block (5436) is fixedly connected to the slider (5433).
8. The ultra-quiet terminal machine capable of automatic loading according to claim 6, It is characterized in that The rotating device (54) further comprises a fixed inclined plate (545), wherein the fixed inclined plate (545) is fixedly mounted on the inner wall of the fixed seat (51), and the fixed inclined plate (545) is located below the rotating disk (541); A movable inclined plate (5437) is rotatably mounted on the bottom end of the trapezoidal plate (5439) via a rotating shaft. The movable inclined plate (5437) is elastically connected to the trapezoidal plate (5439) via a second torsion spring (5438), and the side of the movable inclined plate (5437) close to the rotating column (52) is in contact with the trapezoidal plate (5439).
9. The ultra-quiet terminal machine capable of automatic loading according to claim 6, It is characterized in that The transmission assembly (544) comprises a connecting block (5441), one end of which is fixedly connected to the frame (5432), the other end of which is fixedly connected to a transmission rack (5444), a surface of which is meshed with a transmission gear (5443), a side of which is away from the transmission rack (5444) is meshed with a driving rack (5442), a connecting rod (5445) is fixedly connected to the driving rack (5442), and an end of which is away from the driving rack (5442) is fixedly connected to the pressing block (4).
10. The ultra-quiet terminal machine capable of automatic loading according to claim 9, It is characterized in that The transmission assembly (544) further comprises a mounting seat (5446), wherein the mounting seat (5446) is fixedly mounted on the guide plate (5431), and the axis of the transmission gear (5443) is rotatably mounted on the mounting seat (5446) via a rotating shaft.