Slicing device for radix sophorae flavescentis processing
By designing a slicing device including a pressing mechanism, a moving mechanism and a regulating mechanism, the problem of difficulty in achieving uniform cutting of irregular shapes of slicing in the prior art is solved, and the efficient, stable and diversified requirements of the slicing process are achieved.
Patent Information
- Application Number
- CN202510349602.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2025-05-30
AI Technical Summary
It is difficult to achieve uniform cutting of irregularly shaped Sophora ginseng.
A hard-working slicing device is designed, including a pressing mechanism, a moving mechanism and an adjusting mechanism. The pressing mechanism uses the first spring and moving ring mechanism to ensure that the Sophora cinnabar is not damaged by excessive pressing during the slicing process; the moving mechanism uses the electric telescopic rod and the sliding rod to achieve accurate adjustment of the cutting knife; the adjustment mechanism controls the shipment of the slice through the rotating plate and the pull rope.
It effectively avoids the problem of inconsistent slice length caused by displacement, ensures the integrity of Sophora cinnabar during the slicing process, realizes the diversified cutting requirements for Sophora cinnabar of different lengths, and ensures the efficient and stable slicing process.
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Figure CN120056194A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of Sophora flavescens processing, and specifically to a slicing device for Sophora flavescens processing. Background Art
[0002] Sophora flavescens is the dried root of the leguminous plant Sophora flavescens and is a commonly used Chinese medicinal material. It is in the shape of a long cylindrical column, with a thin outer skin that is mostly cracked and curled back. Sophora flavescens is bitter in taste and cold in nature, and belongs to the heart, liver, stomach, large intestine, and bladder meridians. It has the effects of clearing heat and drying dampness, killing insects, and promoting diuresis, and can be used to treat symptoms such as damp-heat diarrhea, jaundice, leukorrhea, and eczema.
[0003] The patent application with the application number CN202022796765.4 discloses a slicing device for Sophora flavescens processing, including a workbench. Both sides of the inner wall of the workbench are connected to a rotating rod through bearings, and a motor is provided on the outer wall of one side of the workbench. The output shaft of the motor is connected to the other end of one of the rotating rods through a coupling.
[0004] Currently, in the cutting and processing of Sophora flavescens, for Sophora flavescens with irregular shapes, it is difficult to achieve uniform cutting with the existing technology, and there is room for improvement. Summary of the Invention
[0005] Aiming at the deficiencies of the existing technology, the purpose of the present invention is to provide a slicing device for Sophora flavescens processing to solve the problems raised in the above background art.
[0006] To achieve the above purpose, the present invention provides the following technical solution: A slicing device for Sophora flavescens processing, including four sets of support legs. A load-bearing plate is fixedly connected to the top of each of the four sets of support legs. Arc-shaped plates are provided on the left and right sides of the load-bearing plate. The sides of the arc-shaped plates close to the inside of the load-bearing plate are fixedly connected to the outer wall of the load-bearing plate. Two fixing blocks are provided on the outer wall of the top of the arc-shaped plates. The sides of the two fixing blocks close to the arc-shaped plates are fixedly connected to the outer wall of the arc-shaped plates. First fixing rods are fixedly connected to the inner walls of the two fixing blocks. The sides of the two first fixing rods close to the inside of the load-bearing plate are fixedly connected to the top of the load-bearing plate. It further includes: A pressing mechanism, the pressing mechanism includes a contact block. The sides of the contact block close to the two first fixing rods are fixedly connected to the outer wall of the first fixing rods. A second fixing rod is provided on the top of the contact block. The side of the second fixing rod close to the contact block is fixedly connected to the top of the contact block. A moving ring is slidably connected to the outer wall of the second fixing rod. A first spring is provided on the side of the moving ring close to the contact block. The side of the first spring close to the contact block is fixedly connected to the top of the contact block. The side of the first spring away from the contact block is fixedly connected to the bottom of the moving ring. The left and right groups of the moving ring are rotatably connected to a rotating rod through a first rotating shaft. This first spring is used to push the moving ring in the reverse direction.
[0007] According to the above technical solution, on one side of each of the two groups of rotating rods close to the contact block, a pulling rod is rotatably connected through a second rotating shaft. On one side of each of the two groups of pulling rods away from the rotating rod, a pull ring is fixedly connected. On one side of each pull ring away from the contact block, a pressing block is fixedly connected, and this pressing block is used to limit the sophora flavescens.
[0008] According to the above technical solution, it further includes a moving mechanism. The moving mechanism includes a first electric telescopic rod. On one side of the first electric telescopic rod close to the arc-shaped plate, it is fixedly connected to the inner wall of the top of the arc-shaped plate. On one side of the first electric telescopic rod away from the arc-shaped plate, a protective shell is fixedly connected. A sliding rod is arranged on the inner wall of the protective shell, and both ends of the sliding rod close to the inner wall of the protective shell are fixedly connected to it. On the front and back sides of the outer wall of the sliding rod, second springs are arranged, and this protective shell is used to position the sliding safety device.
[0009] According to the above technical solution, on one side of each of the two groups of second springs close to the protective shell, they are fixedly connected to the inner wall of the protective shell. On one side of each of the two groups of second springs close to the sliding rod, they are in contact with the outer wall of the sliding rod, and these second springs are used to pull the sliding rod to move.
[0010] According to the above technical solution, on one side of each of the two groups of second springs close to each other, a baffle is fixedly connected. A connecting rod is slidably connected to the inner walls of the two baffles. Two hook plates are arranged on the outer wall of the connecting rod. On one side of each of the two hook plates close to the connecting rod, they are fixedly connected to the outer wall of the connecting rod. On one side of each of the two connecting rods close to each other, a sliding block is fixedly connected, and these hook plates are used to drive the baffle to move together.
[0011] According to the above technical solution, on one side of each of the two groups of hook plates close to the baffle, they are fixedly connected to the baffle. A cutting knife is fixedly connected to the bottom of the sliding block. The second springs, baffles, hook plates, connecting rods, and sliding rods are all provided in two groups and are symmetrically arranged with the center of the protective shell as the center. This connecting rod is used to pull the hook plate to limit the sliding block.
[0012] According to the above technical solution, it further includes an adjusting mechanism. The adjusting mechanism includes a positioning rod. On one side of the positioning rod close to the bearing plate, it is fixedly connected to the top of the bearing plate. In the middle of the top of the positioning rod, a second electric telescopic rod is fixedly connected. On one side of the second electric telescopic rod away from the positioning rod, a pushing plate is fixedly connected. The pushing plate is rotatably connected to the bearing plate through a third rotating shaft. A fitting block is fixedly connected to the bottom of the bearing plate, and this fitting block is used to support the pushing plate.
[0013] According to the above technical solution, two pulling ropes are fixedly connected to the inner wall of the fitting block. On one side of the two pulling ropes away from the inside of the bearing plate, a rotating plate is fixedly connected. On one side of the rotating plate close to the pushing plate, it is rotatably connected to the fitting block through a fourth rotating shaft, and these pulling ropes are used to control the rotation angle inside the rotating plate.
[0014] Compared with the prior art, the present invention provides a sophora flavescens processing and slicing device, which has the following beneficial effects: 1. By setting a pressing mechanism and a fixing mechanism, the fixing mechanism can press and fix the sophora flavescens before cutting, and the pressing mechanism only presses the upper-layer sophora flavescens, ensuring that the placed sophora flavescens will not be easily displaced during the slicing process, effectively avoiding the problem of inconsistent slice lengths caused by displacement.
[0015] 2. By setting the first spring, when the pressing block presses downwards, the first spring will apply a reverse pulling force to the pressing block. In this way, it can effectively avoid excessive pressing of the sophora flavescens by the pressing block, prevent damage to the outer wall of the sophora flavescens, and thus ensure the integrity of the sophora flavescens in the fixed state.
[0016] 3. By setting a moving mechanism, the position of the cutting knife can be accurately adjusted, so that when cutting sophora flavescens of different lengths, the operator only needs to adjust the position of the cutting knife to meet diverse cutting requirements. Even when facing sophora flavescens of different lengths, the device can perform the cutting task and ensure the cutting effect.
[0017] 4. By setting an adjusting mechanism, after the sophora flavescens is sliced, the output volume of the sophora flavescens slices can be accurately controlled by adjusting the angle of the rotating plate. In this way, during the slicing process of the sophora flavescens, the output volume remains constant all the time, avoiding excessive accumulation of the already sliced sophora flavescens on one side, which may interfere with the subsequent slicing operation, and thus ensuring the efficient and stable progress of the sophora flavescens slicing work. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 is a schematic structural diagram of the present invention; Figure 2 is a structural sectional view of the present invention; Figure 3 is a schematic structural diagram of the arc-shaped plate of the present invention; Figure 4 is a schematic structural diagram of the fixing block of the present invention; Figure 5 is a schematic structural diagram of the pressing mechanism of the present invention; Figure 6 is a schematic structural diagram of the moving mechanism of the present invention; Figure 7 is a schematic structural diagram of the sliding rod of the present invention; Figure 8 is a schematic structural diagram of the adjusting mechanism of the present invention.
[0019] In the figure: 1, support leg; 2, load-bearing plate; 3, arc-shaped plate; 4, first fixing rod; 5, fixing block; 6, pressing mechanism; 601, contact block; 602, second fixing rod; 603, moving ring; 604, first spring; 605, rotating rod; 606, pull ring; 607, pulling rod; 608, pressing block; 7, moving mechanism; 701, first electric telescopic rod; 702, protective shell; 703, cutting knife; 704, sliding block; 705, connecting rod; 706, sliding rod; 707, second spring; 708, hook plate; 709, baffle; 8, adjusting mechanism; 801, fitting block; 802, rotating plate; 803, pull rope; 804, pushing plate; 805, positioning rod; 806, second electric telescopic rod. Detailed implementation manner
[0020] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.
[0021] Examples of the embodiments are shown in the accompanying drawings, where the same or similar reference numerals represent the same or similar elements or elements with the same or similar functions throughout. The embodiments described below by referring to the accompanying drawings are exemplary and are intended to explain the present invention and should not be construed as limiting the present invention.
[0022] In the present invention, unless otherwise clearly defined and limited, terms such as "installation", "connection", "connection", "fixation" and other terms should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or integrated; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements or the interaction relationship between two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.
[0023] Embodiment 1: Refer to Figures 1 - 5 , the present invention provides a technical solution: a processing and slicing device for Sophora flavescens, including four groups of support legs 1, load-bearing plates 2 are fixedly connected to the tops of the four groups of support legs 1, arc-shaped plates 3 are arranged on the left and right sides of the load-bearing plate 2, and the sides of the arc-shaped plates 3 close to the inside of the load-bearing plate 2 are fixedly connected to the outer walls of the load-bearing plates 2. Two fixing blocks 5 are arranged on the outer walls of the tops of the arc-shaped plates 3. The sides of the two fixing blocks 5 close to the arc-shaped plates 3 are fixedly connected to the outer walls of the arc-shaped plates 3. First fixing rods 4 are fixedly connected to the inner walls of the two fixing blocks 5. The sides of the two first fixing rods 4 close to the inside of the load-bearing plate 2 are fixedly connected to the top of the load-bearing plate 2. It also includes: The pressing mechanism 6 includes a contact block 601, and the sides of the contact block 601 close to the two groups of first fixed rods 4 are fixedly connected to the outer wall of the first fixed rod 4. A second fixed rod 602 is arranged on the top of the contact block 601, and the side of the second fixed rod 602 close to the contact block 601 is fixedly connected to the top of the contact block 601. A moving ring 603 is slidably connected to the outer wall of the second fixed rod 602, and a first spring 604 is arranged on the side of the moving ring 603 close to the contact block 601, and the side of the first spring 604 close to the contact block 601 is fixedly connected to the top of the contact block 601. By setting the first spring 604, it can be ensured that the moving ring 603 will push the first spring 604 to contract when it moves downward, and at this time, the first spring 604 pushes the moving ring in the opposite direction. 603 ensures that the pressing block 608 will be restricted when moving downward, thereby ensuring that the pressing block 608 will not damage the outer wall of the Sophora flavescens. The side of the first spring 604 away from the contact block 601 is fixedly connected to the bottom of the movable ring 603. The left and right groups of movable rings 603 are rotatably connected to the rotating rod 605 through the first rotating shaft. The first spring 604 is used to push the movable ring 603 in the opposite direction. The two groups of rotating rods 605 are rotatably connected to the pull rod 607 on the side close to the contact block 601 through the second rotating shaft. The two groups of pull rods 607 are fixedly connected to the pull ring 606 on the side away from the rotating rod 605. The side of the pull ring 606 away from the contact block 601 is fixedly connected to the pressing block 608. The pressing block 608 is used to limit the Sophora flavescens.
[0024] The working principle of this embodiment is as follows: the staff first places the Sophora flavescens in the groove of the load-bearing plate 2, and then pushes the Sophora flavescens to move in the groove until it reaches directly below the lower pressing block 608. At this time, the rotating rod 605 begins to rotate, so that it gradually rotates downward until it is close to vertical with the pulling rod 607. The pulling rod 607 rotates downward accordingly, driving the pull ring 606 to move downward. The downward movement of the pull ring 606 further drives the lower pressing block 608 to move downward. When the lower pressing block 608 continues to move downward, it contacts and applies pressure to the outer wall of the Sophora flavescens on the top. This pressure prompts the Sophora flavescens on the upper layer to move downward, thereby restricting the Sophora flavescens on the bottom. At the same time, the downward movement of the lower pressing block 608 also drives the moving ring 603 to slide on the second fixed rod 602. During the sliding process, the moving ring 603 pushes the first spring 604 to contract, ensuring that the first spring 604 pushes the moving ring 603 upward in the opposite direction through the rebound force. This mechanism ensures that the lower pressing block 608 does not exert excessive pressure on the Sophora flavescens, thereby protecting the Sophora flavescens from excessive squeezing.
[0025] Example 2: Please refer to Figures 6 - 7, on the basis of the first embodiment, the present invention provides a technical solution: further comprising a moving mechanism 7 including a first electric telescopic rod 701. The sides of the first electric telescopic rod 701 close to the arc-shaped plate 3 are fixedly connected to the inner wall of the top of the arc-shaped plate 3. The sides of the first electric telescopic rod 701 away from the arc-shaped plate 3 are fixedly connected with a protective shell 702. A sliding rod 706 is arranged on the inner wall of the protective shell 702. Both ends of the sliding rod 706 close to the inner wall of the protective shell 702 are fixedly connected thereto. Second springs 707 are arranged on both the front and back sides of the outer wall of the sliding rod 706. The protective shell 702 is used to position the sliding safety. The sides of the two groups of second springs 707 close to the protective shell 702 are fixedly connected to the inner wall of the protective shell 702. The sides of the two groups of second springs 707 close to the sliding rod 706 are in contact with the outer wall of the sliding rod 706. The second spring 707 is used to pull the sliding rod 706 to move. The sides of the two groups of second springs 707 close to each other are fixedly connected with a baffle 709. A connecting rod 705 is slidably connected to the inner walls of the two groups of baffles 709. Two hook plates 708 are arranged on the outer wall of the connecting rod 705. The sides of the two groups of hook plates 708 close to the connecting rod 705 are fixedly connected to the outer wall of the connecting rod 705. The sides of the two groups of connecting rods 705 close to each other are fixedly connected with a sliding block 704. The hook plate 708 is used to drive the baffle 709 to move together. By setting the hook plate 708, it can be ensured that when the hook plate 708 moves, it can pull the second spring 707 to stretch or contract. Then, through the mutual pulling or pushing of the two groups of second springs 707, it can be ensured that the sliding block 704 can be in a fixed state after moving on the sliding rod 706. The sides of the two groups of hook plates 708 close to the baffle 709 are fixedly connected to the baffle 709. A cutting knife 703 is fixedly connected to the bottom of the sliding block 704. The second spring 707, the baffle 709, the hook plate 708, the connecting rod 705 and the sliding rod 706 are all arranged in two groups and are symmetrically arranged with the center of the protective shell 702 as the center. The connecting rod 705 is used to pull the hook plate 708 to limit the sliding block 704.
[0026] The working principle of this embodiment is as follows: During the sophora flavescens cutting operation, the staff first pushes the sophora flavescens to the moving mechanism 7. When slices of different thicknesses are required, the staff adjusts the position of the sliding block 704 to achieve the synchronous movement of the cutting knife 703 blade. Specifically, the displacement of the sliding block 704 on the sliding rod 706 will drive the connecting rod 705 to move, and then drive the hook plate 708 to generate a corresponding displacement. The movement of the hook plate 708 will pull the baffle 709 to move. During this process, the baffle 709 will stretch one side of the second spring 707 and contract the second spring 707 on the other side at the same time. This symmetric spring action mechanism ensures that the sliding block 704 can maintain a stable fixation after completing the position adjustment, thus effectively preventing position deviation during the slicing process and ensuring the cutting accuracy.
[0027] Example 3: Please refer toFigure 8 , based on the first and second embodiments, the present invention provides a technical solution: it further includes an adjustment mechanism 8. The adjustment mechanism 8 includes a positioning rod 805. Both sides of the positioning rod 805 close to the load-bearing plate 2 are fixedly connected to the top of the load-bearing plate 2. The middle end of the top of the positioning rod 805 is fixedly connected to a second electric telescopic rod 806. By setting the pulling rope 803, it can be ensured that after the rotating plate 802 rotates, the rotating plate 802 can be pulled back through the pulling rope 803, so as to ensure that subsequent work can continue. One side of the second electric telescopic rod 806 away from the positioning rod 805 is fixedly connected to a pushing plate 804. The pushing plate 804 is rotationally connected to the load-bearing plate 2 through a third rotating shaft. A fitting block 801 is fixedly connected to the bottom of the load-bearing plate 2. The fitting block 801 is used to support the pushing plate 804. Two groups of pulling ropes 803 are fixedly connected to the inner wall of the fitting block 801. By setting the rotating plate 802 to gather a certain amount of Sophora flavescens, it can be ensured that when the rotating plate 802 rotates downward, the Sophora flavescens can be better collected. The two groups of pulling ropes 803 are fixedly connected to a rotating plate 802 on the side away from the load-bearing plate 2. One side of the rotating plate 802 close to the pushing plate 804 is rotationally connected to the fitting block 801 through a fourth rotating shaft. The pulling rope 803 is used to control the rotation angle of the rotating plate 802.
[0028] The working principle of this embodiment is as follows: After the Sophora flavescens is sliced, the slices will slide down through the groove of the load-bearing plate 2 to the pushing plate 804. The staff can adjust the angle between the pushing plate 804 and the load-bearing plate 2 according to the number of slices: when the angle is larger, the sliding speed of the slices is accelerated, which effectively prevents the situation of slices staying after cutting. At the same time, driven by the second electric telescopic rod 806, the pushing plate 804 rotates and contacts the rotating plate 802, driving the rotating plate 802 to rotate downward. During this process, the rotating plate 802 will stretch the connecting components, and the slices will temporarily stay and gradually gather after contacting the rotating plate 802. When the number of slices on the rotating plate 802 reaches a certain amount, the rotating plate 802 continues to rotate downward, enabling the slices to fall smoothly, facilitating subsequent collection operations.
[0029] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.
[0030] Finally, it should be noted that the above are only preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. A ginseng processing and slicing device, comprising four groups of supporting legs (1), the tops of the four groups of supporting legs (1) are fixedly connected to a load-bearing plate (2), the left and right sides of the load-bearing plate (2) are provided with arc-shaped plates (3), the sides of the arc-shaped plates (3) close to the inside of the load-bearing plate (2) are fixedly connected to the outer wall of the load-bearing plate (2), the top outer wall of the arc-shaped plate (3) is provided with two groups of fixing blocks (5), the sides of the two groups of fixing blocks (5) close to the inside of the arc-shaped plate (3) are fixedly connected to the outer wall of the arc-shaped plate (3), the inner walls of the two groups of fixing blocks (5) are fixedly connected to a first fixing rod (4), the sides of the two groups of the first fixing rod (4) close to the inside of the load-bearing plate (2) are fixedly connected to the top of the load-bearing plate (2), characterized in that: Also includes: The pressing mechanism (6) comprises a contact block (601), wherein a side of the contact block (601) close to the two groups of first fixing rods (4) is fixedly connected to an outer wall of the first fixing rod (4), a second fixing rod (602) is arranged on the top of the contact block (601), a side of the second fixing rod (602) close to the contact block (601) is fixedly connected to the top of the contact block (601), and a moving ring (603) is slidably connected to the outer wall of the second fixing rod (602), and the moving ring (603) A first spring (604) is provided on a side of the movable ring (603) close to the contact block (601); a side of the first spring (604) close to the contact block (601) is fixedly connected to the top of the contact block (601); a side of the first spring (604) away from the contact block (601) is fixedly connected to the bottom of the movable ring (603); both left and right groups of the movable ring (603) are rotatably connected to a rotating rod (605) via a first rotating shaft; the first spring (604) is used to push the movable ring (603) in the reverse direction.
2. The device for processing and slicing Sophora flavescens according to claim 1, characterized in that: The two groups of rotating rods (605) are rotatably connected to a pulling rod (607) on one side close to the contact block (601) via a second rotating shaft, and the two groups of pulling rods (607) are fixedly connected to a pulling ring (606) on one side away from the rotating rod (605), and the pull ring (606) is fixedly connected to a pressing block (608) on one side away from the contact block (601), and the pressing block (608) is used to limit the position of the Sophora flavescens.
3. The device for processing and slicing Sophora flavescens according to claim 1, characterized in that: The invention also includes a moving mechanism (7), wherein the moving mechanism (7) includes a first electric telescopic rod (701), wherein a side of the first electric telescopic rod (701) close to the arc plate (3) is fixedly connected to the inner wall of the top of the arc plate (3), and a side of the first electric telescopic rod (701) away from the arc plate (3) is fixedly connected to a protective shell (702), and a sliding rod (706) is arranged on the inner wall of the protective shell (702), and both ends of the sliding rod (706) close to the inner wall of the protective shell (702) are fixedly connected thereto, and a second spring (707) is arranged on both sides of the outer wall of the sliding rod (706), and the protective shell (702) is used to position the sliding rod.
4. The device for processing and slicing Sophora flavescens according to claim 3, characterized in that: The sides of the two groups of second springs (707) close to the protective shell (702) are fixedly connected to the inner wall of the protective shell (702), and the sides of the two groups of second springs (707) close to the sliding rod (706) are in contact with the outer wall of the sliding rod (706). The second springs (707) are used to pull the sliding rod (706) to move.
5. The device for processing and slicing Sophora flavescens according to claim 4, characterized in that: The two groups of second springs (707) are fixedly connected to a baffle (709) on the sides close to each other, the inner walls of the two groups of baffles (709) are slidably connected to a connecting rod (705), the outer wall of the connecting rod (705) is provided with two groups of hook plates (708), the sides of the two groups of hook plates (708) close to the connecting rod (705) are fixedly connected to the outer wall of the connecting rod (705), the sides of the two groups of connecting rods (705) close to each other are fixedly connected to a sliding block (704), and the hook plate (708) is used to drive the baffle (709) to move together.
6. The device for processing and slicing Sophora flavescens according to claim 5, characterized in that: The two groups of hook plates (708) are fixedly connected to the baffle plate (709) on one side thereof, and the bottom of the sliding block (704) is fixedly connected to a cutting knife (703). The second spring (707), the baffle plate (709), the hook plate (708), the connecting rod (705) and the sliding rod (706) are all arranged in two groups and are symmetrically arranged with the middle of the protective shell (702) as the center. The connecting rod (705) is used to pull the hook plate (708) to restrict the sliding block (704).
7. The device for processing and slicing Sophora flavescens according to claim 1, characterized in that: The device also comprises an adjusting mechanism (8), wherein the adjusting mechanism (8) comprises a positioning rod (805), wherein a side of the positioning rod (805) close to the load-bearing plate (2) is fixedly connected to the top of the load-bearing plate (2), a second electric telescopic rod (806) is fixedly connected to the middle end of the top of the positioning rod (805), a side of the second electric telescopic rod (806) away from the positioning rod (805) is fixedly connected to a push plate (804), the push plate (804) is rotatably connected to the load-bearing plate (2) via a third rotating shaft, and a fitting block (801) is fixedly connected to the bottom of the load-bearing plate (2), and the fitting block (801) is used to support the push plate (804).
8. The device for processing and slicing Sophora flavescens according to claim 7, characterized in that: Two groups of pull ropes (803) are fixedly connected to the inner wall of the bonding block (801); the sides of the two groups of pull ropes (803) away from the load-bearing plate (2) are fixedly connected to the rotating plate (802); the side of the rotating plate (802) close to the pushing plate (804) is rotatably connected to the bonding block (801) via a fourth rotating shaft; the pull ropes (803) are used to control the rotation angle of the rotating plate (802).
Citation Information
Patent Citations
Slicing device for radix sophorae flavescentis processing
CN214293282U