Radix astragali slicing device

By designing an astragalus slicing device and adjusting the angle and distance between the astragalus and the cutting plane, elliptical slices are cut, solving the problem of uneven diffusion of effective components caused by the difference in the thickness of the astragalus slices, and realizing uniform diffusion and efficient utilization of astragalus slices during the decoction process.

CN223947989UActive Publication Date: 2026-02-27NINGXIA HUI AUTONOMOUS REGION DRUG INSPECTION & RES INST
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Patent Information

Application Number
CN202520622236.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2026-02-27
Estimated Expiration
2035-04-03

AI Technical Summary

Technical Problem

In existing technologies, during the slicing process of artificially cultivated Astragalus membranaceus, the large difference in thickness between the two ends results in a significant difference in the size of the cut surface near the ends, affecting the inconsistent diffusion rate of the effective components during decoction and causing waste.

Method used

An Astragalus slicing device was designed. By adjusting the angle and distance between the Astragalus and the cutting plane through the adjusting component and the guiding component, elliptical slices are cut to increase the cutting area. This ensures that the cut surface size of slices from different positions of the same Astragalus is similar. The thickness of the slices is adjusted by the cutting platform and the support component to achieve automatic slice discharge.

Benefits of technology

By adjusting the shape and size of the astragalus slices, the diffusion rate of active ingredients in slices from the same astragalus root is made consistent during decoction, avoiding waste caused by the slow diffusion rate of smaller slices, thus improving decoction efficiency and the utilization rate of active ingredients.

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Abstract

The utility model belongs to the technical field of radix astragali slicing, and particularly relates to a radix astragali slicing device. Comprising a cutting platform used for cutting radix astragali into pieces; the adjusting assembly is rotationally connected to the cutting platform and used for adjusting the inclination angle between the radix astragali and the cutting platform; the supporting assembly is arranged on the cutting platform and used for adjusting the thickness of the astragalus membranaceus slices; the guiding assembly is arranged below the cutting platform and used for adjusting the inclination angle of the cutting platform, the adjusting assembly is used for driving astragalus membranaceus to adjust the angle relative to the surface of the blade, thin astragalus membranaceus is inclined on the blade, and the section of the cut astragalus membranaceus slices is oval. The section area of an astragalus membranaceus slice is increased in an oval mode, the angle of the slice can be changed according to different thicknesses of astragalus membranaceus, and the section areas of the astragalus membranaceus slices obtained by cutting different positions of the same astragalus membranaceus with different thicknesses can be similar in size.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technology field of astragalus slice, specifically relates to an astragalus slice device. BACKGROUND

[0002] In reality, astragalus is used in the form of slice, which is mainly obtained by drying and slicing the harvested astragalus. The effective components of the sliced astragalus can be quickly diffused during decoction. The astragalus is mainly obtained by artificial cultivation. The wild astragalus is curved, has a small yield and a large difference in thickness, and is difficult to process and obtain uniform slices. The astragalus obtained by artificial cultivation has a large yield, a straight stem, and a uniform thickness, and is easy to slice. That is, the stem of the astragalus obtained by artificial cultivation is straight, and the thickness of the astragalus gradually and uniformly changes from thick to thin. The thick end of the astragalus and the thin end of the astragalus are uniformly connected without a large difference.

[0003] However, when the astragalus obtained by artificial cultivation is sliced, the astragalus has a large difference in thickness between the two ends (the thick end of the astragalus and the thin end of the astragalus are uniformly connected without a large difference), and the area of the slice gradually changes (the size of the slice gradually decreases when the thick end is sliced to the thin end, and the size of the slice gradually increases when the thin end is sliced to the thick end) during slicing. As a result, the size of the slice near the end of the astragalus has a large difference. Because the contact area of the slice and the solvent is proportional to the decoction rate of the effective components (that is, the larger the contact area of the slice and the solvent, the higher the decoction rate of the effective components), when the same astragalus is sliced, the size of the slice obtained should be close to ensure that the decoction rate of the effective components of all slices is close (because the fire and time of the medicinal material during decoction need to be strictly controlled, if the size of the slice is too large, the effective components in the slice with a small size may not be completely decocted within the decoction time), otherwise the effective components in the slice with a small size may be wasted. SUMMARY

[0004] Therefore, the utility model provides an astragalus slicing device to solve the technical problem that the astragalus has a large difference in thickness between the two ends, the size of the slice near the end of the astragalus has a large difference, and the effective components in the slice with a small size diffuse at a slower speed than the effective components in the slice with a large size within the decoction time, resulting in waste.

[0005] The technical solution of the utility model to solve the above technical problem is as follows:

[0006] A device for slicing Astragalus membranaceus, comprising:

[0007] a cutting platform having a cutting plane for cutting Astragalus membranaceus;

[0008] an adjusting assembly comprising an Astragalus membranaceus carrying part rotatably connected to the cutting platform, Astragalus membranaceus being placed in the Astragalus membranaceus carrying part, the Astragalus membranaceus carrying part being used for carrying Astragalus membranaceus and adjusting the angle of inclination between Astragalus membranaceus and the cutting plane;

[0009] a supporting assembly arranged on the side of the cutting platform away from the Astragalus membranaceus carrying part, the supporting assembly being used for adjusting the distance between Astragalus membranaceus and the cutting plane for adjusting the thickness of Astragalus membranaceus slices;

[0010] a guiding assembly arranged below the cutting platform for adjusting the angle of inclination of the cutting platform.

[0011] Preferably, the cutting platform comprises a supporting plate, a telescopic rod fixed at the end of the supporting plate, the upper surface of the supporting plate being the cutting plane, a cutter being fixed on the telescopic shaft of the telescopic rod, the cutting direction of the cutter being parallel to the cutting plane, and the Astragalus membranaceus carrying part being rotatably connected to the supporting plate.

[0012] Preferably, the Astragalus membranaceus carrying part comprises a tube, the adjusting assembly further comprises a rotating shaft fixed on the outer side of the lower end of the tube, the rotating shaft being rotatably connected to the side wall of the supporting plate and penetrating the side wall of the supporting plate, a thread being formed on the outer wall of the part of the rotating shaft penetrating the side wall of the supporting plate and a locking nut A being connected to the thread, and the distance between the rotating center of the rotating shaft and the upper end surface of the cutter being greater than the radius of the tube.

[0013] Preferably, the number of the adjusting assemblies is multiple, and the cutting platform is provided with several partition parts, the partition part being arranged between any two adjacent adjusting assemblies for classifying Astragalus membranaceus slices with different inclination degrees.

[0014] Preferably, the partition part comprises a partition strip, the partition strip being fixedly connected to the supporting plate and the length direction of the partition strip being parallel to the cutting direction of the cutter.

[0015] Preferably, the supporting assembly comprises a screw, the screw being connected below the cutting platform and being able to penetrate the cutting platform upwardly, and the screw being located below the Astragalus membranaceus carrying part and being able to contact the end of Astragalus membranaceus in the Astragalus membranaceus carrying part.

[0016] Preferably, a groove is formed in the middle of the partition strip for the moving range of the cutter to penetrate the space below the adjusting assembly.

[0017] Preferably, a pushing rib is formed on the rear side of the lower end surface of the cutter for pushing the Astragalus membranaceus slice cut by the cutter and located below the cutter.

[0018] Preferably, the guiding assembly comprises a base and two supporting rods, sliding holes are formed in both sides of the base, one end of the two supporting rods is slidably arranged in the two sliding holes and fixed with threaded columns, lock nuts B are connected to the two threaded columns, the end of the supporting plate is rotatably arranged at the end of the base, and the other end of the two supporting rods is rotatably arranged at the middle of the supporting plate.

[0019] Preferably, the material pipe is a transparent pipe.

[0020] Compared with the prior art, the present application has at least the following advantages:

[0021] The present application provides a kind of astragalus slice device, by blade cutting astragalus constantly, get astragalus slice, when the size of the section of astragalus slice is adjusted, the angle of astragalus adjustment relative to the surface of blade is driven by astragalus carrying part, make the remaining fine astragalus be inclined on blade, the section of astragalus slice cut is oval, the section area of astragalus slice is increased by using oval form (the section area of oval cut of astragalus in the same position is greater than the section area of circular cut, because the diameter does not change under the condition that the thickness degree of the same position is unchanged, and the long radius of oval here increases, short radius remains unchanged and is consistent with the diameter of circle, so the section area of oval is greater than the section area of circular cut), can change the angle of slice according to the different thickness of astragalus, make the section area of oval astragalus slice approach the section area of circular astragalus slice, can realize that the section area of astragalus slice cut in different positions of the same astragalus is similar, so that the slice cut in the same astragalus is close to the rate of decocting effective component when decocting. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 It is the structure schematic diagram of the present application astragalus slice device;

[0023] Figure 2 It is another direction structure schematic diagram of the present application astragalus slice device;

[0024] Figure 3 It is the side sectional view of the present application;

[0025] Figure 4 It is the structure schematic diagram of the present application supporting plate;

[0026] Figure 5 It is the structure schematic diagram of the present application screw;

[0027] Figure 6 It is the structure schematic diagram of the present application cutter;

[0028] Figure 7 It is the structure schematic diagram of the present application material pipe;

[0029] Figure 8 Figure is a structure diagram of the locking nut A of the utility model;

[0030] Figure 9 Figure is a structure diagram of the guiding assembly of the utility model.

[0031] In the drawing: the supporting plate 101; the telescopic rod 102; the partition strip 103; the screw 104; the cutter 105; the pushing rib 106; the material pipe 107; the rotating shaft 108; the locking nut A 109; the base 201; the sliding hole 202; the supporting rod 203; the locking nut B 204. DETAILED DESCRIPTION

[0032] In order to facilitate the understanding of the utility model, the utility model will be described more fully below with reference to the relevant drawings. The preferred embodiments of the utility model are shown in the drawings. However, the utility model can be realized in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the utility model more thorough and comprehensive.

[0033] It should be noted that when an element is referred to as "provided on" another element, it can be directly on the other element or there can be a middle element. When an element is referred to as "connected" to another element, it can be directly connected to the other element or there can be a middle element. The terms "vertical", "horizontal", "left", "right", "top", "bottom", "bottom end", "top end" and similar expressions used herein are for illustrative purposes only and are not intended to be the only implementation.

[0034] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which the utility model belongs. The terms used in the specification of the present application are only for the purpose of describing specific embodiments and are not intended to limit the utility model. The term "and / or" used herein includes any and all combinations of one or more related listed items.

[0035] Please refer to Figures 1 to 9 , in a specific embodiment of the utility model,

[0036] A kind of astragalus slice device, comprising:

[0037] Cutting platform has the cutting plane of cutting astragalus;

[0038] Adjusting assembly, the adjusting assembly includes astragalus carrying part, the astragalus carrying part is rotationally connected on the cutting platform, astragalus can be placed in the astragalus carrying part, the astragalus carrying part is used to carry astragalus and adjust the inclination angle between astragalus and the cutting plane;

[0039] a support assembly arranged on a side of the cutting platform away from the astragal carrying part, and the support assembly supports adjustment of the distance between the astragal and the cutting plane for adjusting the thickness of astragal slices;

[0040] a guide assembly arranged below the cutting platform for adjusting the inclination angle of the cutting platform;

[0041] The cutting platform can be a basic component for cutting astragal, and first has a cutting plane (which can be understood as a chopping board when cutting vegetables), and second has a blade for cutting astragal (in the utility model, the blade cuts astragal in parallel to the cutting plane), which can cut astragal; the astragal carrying part can be a clamp capable of clamping astragal, or a device capable of driving astragal to adjust the angle; the support assembly can be a bolt (screw 104 mentioned below) contacting the end of astragal to adjust the distance between the end of astragal and the back of the blade, or a telescopic rod; the guide assembly can be a hydraulic cylinder capable of driving the cutting platform to incline, or a support device capable of supporting the cutting platform to incline;

[0042] After the artificially cultivated astragal is dried, the relatively thick end is placed in the astragal carrying part in the direction of the cutting platform, then the adjusting assembly is rotated to the angle perpendicular to the cutting plane, the support assembly is adjusted so that the support assembly contacts the end of astragal passing through the astragal carrying part, the distance between the end of astragal and the back of the blade is adjusted, so that after the blade cuts astragal, the thickness of the slice cut on the back of the blade changes accordingly, and the astragal slice can be obtained by continuously cutting astragal with the blade, at this time the cutting surface of the astragal slice is circular (because the astragal is perpendicular to the blade, the irregular part can be ignored, and the cutting surface is close to circular), when the size of the cutting surface of the astragal slice is adjusted, after the relatively thick part of astragal perpendicular to the surface of the blade is cut by the blade, the astragal carrying part is driven by the adjusting assembly to adjust the angle of astragal relative to the surface of the blade, so that the remaining relatively thin astragal is inclined on the blade, and the cutting surface of the astragal slice cut by the blade is elliptical, the area of the cutting surface of the elliptical form is increased (the area of the cutting surface of the elliptical form is greater than that of the circular form because the diameter does not change under the condition that the thickness degree at the same position is unchanged, and the long radius of the elliptical form is increased and the short radius remains unchanged, which is consistent with the diameter of the circular form, so the area of the cutting surface of the elliptical form is greater than that of the circular form), and the cutting platform is inclined by the guide assembly, so that the astragal slice obtained after cutting slides down and is automatically discharged;

[0043] Through the above process, when the astragalus slices are cut, the form of the slices can be changed according to the different thicknesses of the astragalus, the cutting surface of the cut astragalus slices is increased by using the elliptical structure, so that the cutting surface of the elliptical astragalus slices is close to the cutting surface area of the circular astragalus slices, the cutting surface area of the astragalus slices cut at different positions of the same astragalus is similar, so that the effective components of the cut slices of the same astragalus are diffused at a speed close to each other during decocting, the decocting time can be controlled, for example, in the case of decocting for five minutes, the effective components of the large circular slices cut by the traditional method are diffused fast and decocting is completed, while the effective components of the small circular slices are diffused slowly and decocting is not completed; when the astragalus slices processed by the utility model are decocted, the cutting surface areas of the circular slices and the elliptical slices are close to each other, the diffusion speeds of the effective components are similar, and all the slices are decocted within five minutes; the slices with incomplete diffusion of effective components are not wasted due to limited decocting time.

[0044] Specifically, an embodiment of a cutting platform is provided for the above process:

[0045] The cutting platform comprises a supporting plate 101 and a telescopic rod 102 fixed at the end of the supporting plate 101, the upper surface of the supporting plate 101 is the cutting plane, the telescopic shaft of the telescopic rod 102 is fixed with a cutter 105, the cutting direction of the cutter 105 is parallel to the cutting plane, and the astragalus carrying part is rotationally connected to the supporting plate 101.

[0046] The cutter 105 is driven by the telescopic shaft of the telescopic rod 102 to reciprocate on the supporting plate 101, so that after the astragalus is placed in the astragalus carrying part, the end of the astragalus is adjusted at a corresponding angle with the cutter 105 by the astragalus carrying part, or is perpendicular or inclined, so that the lower part of the astragalus contacting the supporting plate 101 is cut into pieces after one reciprocation of the cutter 105.

[0047] In the above manner, the cutter 105 is driven by the telescopic rod 102 to reciprocate horizontally, so that the astragalus is continuously cut.

[0048] Specifically, an embodiment of adjusting the angle between the astragalus and the blade (cutter 105) is provided for the above process:

[0049] The carrying part of the Astragalus root comprises a tube 107, and the adjusting assembly further comprises a rotating shaft 108 fixed outside the lower end of the tube 107, the rotating shaft 108 being rotatably connected to the side wall of the supporting plate 101 and penetrating the side wall of the supporting plate 101, a threaded hole being formed in the outer wall of the part of the rotating shaft 108 penetrating the side wall of the supporting plate 101, and a locking nut A 109 being connected to the threaded hole, the distance between the rotating center of the rotating shaft 108 and the upper end surface of the cutter 105 being greater than the radius of the tube 107;

[0050] The tube 107 is rotatably connected to the side wall of the supporting plate 101 through the rotating shaft 108, the supporting plate 101 being horizontally placed, the Astragalus root being placed into the tube 107 from top to bottom, so that the Astragalus root slides down in the tube 107 due to its own gravity and contacts the supporting plate 101 at the lower end of the tube 107, then the tube 107 is rotated so that the axis of the tube 107 is perpendicular to the cutter 105 on the supporting plate 101, and then the locking nut A 109 is tightened, the Astragalus root being cut when the cutter 105 moves below the tube 107, the Astragalus root slice with a thickness equal to the distance between the cutter 105 and the supporting plate 101 being cut, the slice being taken away after cutting, the Astragalus root sliding down in the tube 107 again due to its own gravity and contacting the supporting plate 101, so that the feeding is completed and the subsequent cutting process is waited for; after the thicker part of the Astragalus root is cut, the locking nut A 109 is loosened so that the rotating shaft 108 can rotate, the tube 107 is rotated so that the Astragalus root in the tube 107 is inclined at a proper angle with respect to the cutter 105, and then the locking nut A 109 is tightened again so that the tube 107 is kept in the inclined state, the cutter 105 cutting the thinner part of the Astragalus root to obtain an oval slice;

[0051] Through the above process, the inclination angle between the Astragalus root and the cutter 105 can be flexibly adjusted when the Astragalus root is sliced, the shape and form of the Astragalus root slice can be changed according to needs, and the Astragalus root slice with uniform cutting surface size is obtained;

[0052] Meanwhile, since the material pipe 107 is rotated relative to the plane where the cutter 105 is located, the lowest point of the lower end of the material pipe 107 relative to the plane where the cutter 105 is located is always above the plane where the cutter 105 is located when the material pipe 107 is rotated to adjust the inclination angle, that is, when the material pipe 107 is moved to the lowest position, the material pipe 107 will not enter the plane where the cutter 105 is located, for example, the distance between the rotation center of the rotating shaft 108 and the plane where the cutter 105 is located is greater than the distance between the rotating shaft 108 and the farthest end of the outer wall of the material pipe 107 in the same plane, and when the material pipe 107 is rotated with the rotating shaft 108 as the center, the outer wall of the material pipe 107 will not intrude into the plane where the cutter 105 is located; for another example, the lower end of the material pipe 107 is in a circular arc structure and the center of the circular arc structure is located on the axis of the rotating shaft 108, in this case, the distance between the lower end of the material pipe 107 and the plane where the cutter 105 is located remains unchanged, and the rotation of the material pipe 107 will not affect the movement of the cutter 105.

[0053] In addition, the material pipe 107 is a transparent pipe, that is, the material pipe 107 can be made transparent, and after the astragalus is put in, the astragalus can be observed from the outside, and during the cutting process, as the astragalus is cut, the length of the astragalus continuously decreases in the material pipe 107, so that the remaining amount of the astragalus can be known in time, and the astragalus can be continuously added.

[0054] Further, the material pipe 107 can be replaced, and can be replaced adaptively according to different batches of astragalus, for example, when cutting a batch of astragalus with a diameter of 3 cm, the inner diameter of the material pipe 107 is selected to be 4-5 cm, so that there is a gap between the astragalus and the inner wall of the material pipe 107, and the range of shaking of the astragalus in the material pipe 107 is minimized (because the cutter 105 will push the astragalus when cutting the astragalus, so that the astragalus will slightly shake in the material pipe 107), so that the cutting surface of the slice cut by the astragalus in the material pipe 107 will not be affected too much, and the relative stability of the astragalus in the cutting state can be maintained.

[0055] As mentioned above, different inclination angles are used to cut different parts of the astragalus, and the astragalus is cut vertically (the astragalus is perpendicular to the cutter 105) to obtain a circular astragalus slice, and the astragalus is cut at an inclination (the astragalus is inclined at an appropriate angle relative to the cutter 105) to obtain an oval astragalus slice, so that adjustment is required during cutting, and a pause is required in the middle, which will cause a loss of time; therefore, in order to solve this problem, in the utility model:

[0056] The number of the adjusting assemblies is multiple, and the cutting platform is provided with a plurality of separation portions, and the separation portion is arranged between any two adjacent adjusting assemblies, and is used for classifying the astragalus slices with different inclination degrees; the separation portion can be a plate-shaped separation plate, or a plurality of channels, and the separation portion is used for separating the astragalus slices cut by the astragalus in the plurality of adjusting assemblies;

[0057] In use, the separation portion is arranged on the cutting platform, then the same astragalus is cut from a proper position (for example, the middle part, at which the diameter difference between the thick end part and the thin end part and the middle part is small, and the difference of the cutting surface of the cut slice is not large), so that the astragalus is divided into a plurality of segments with different thicknesses, then the plurality of segments are respectively arranged in the plurality of adjusting assemblies, the adjusting assemblies of the plurality of segments are adjusted to be perpendicular to the cutting platform or inclined to the cutting platform, and are fixed at a proper inclination angle (that is, the size of the oval cutting surface of the cut slice is close to the size of the circular cutting surface of the cut slice cut by the perpendicular cutting, and the inclination angle is the proper inclination angle), then the plurality of segments of the astragalus are simultaneously cut, the thick segment is cut into a circular slice, and the thin segment is cut into an oval slice, and after the cutting, the circular slice and the oval slice are separated by the separation portion and are respectively located on two sides of the separation portion, and are not mixed together.

[0058] By using the above process, the plurality of segments of the astragalus with different thicknesses are simultaneously cut, the cutting efficiency is improved, and the slices with different shapes are classified, so that the slices with different shapes are classified, collected and stored.

[0059] Specifically, a specific embodiment of the separation portion in the above process is provided.

[0060] The separation portion comprises a separation strip 103, and the separation strip 103 is fixedly connected to the supporting plate 101, and the length direction of the separation strip 103 is parallel to the cutting direction of the cutter 105.

[0061] The separation strip 103 is arranged on the supporting plate 101, and the two adjacent adjusting assemblies (the pipe 107 mentioned above) are respectively located on two sides of the same separation strip 103, so that after the two segments of the astragalus with different thicknesses are respectively arranged in the two pipes 107, the angle of the pipe 107 relative to the cutter 105 is adjusted, so that the simultaneous cutting process with different inclination angles is performed, and the slices with different shapes are separated on two sides of the separation strip 103, so that the slices with different shapes are not mixed together.

[0062] In addition, the partition strip 103 needs to separate the cut astragalus slices, and thus needs to be located below the middle of the two adjacent material pipes 107 to separate the cut astragalus slices, and the cutter 105 needs to form a space penetrating through the space below the material pipe 107 to ensure that the astragalus is cut off, so that the recess is arranged in the middle of the partition strip 103 to enable the moving range of the cutter 105 to penetrate through the space below the adjusting assembly.

[0063] When the cutter 105 is close to the astragalus for cutting, the cutter 105 can move to penetrate through the space below the material pipe 107 when entering the space below the material pipe 107, so that the cutter 105 can move smoothly without interference of the partition strip 103.

[0064] In addition, another way is that the height of the partition strip 103 does not exceed the height of the cutter 105, that is, the lower end surface of the cutter 105 is located above the partition strip 103 when the cutter 105 moves through the partition strip 103, and interference does not occur, and the astragalus slices cut by the cutter 105 are located on both sides of the partition strip 103 below the cutter 105, so that the cutter 105 can move smoothly without interference.

[0065] Specifically, an embodiment of the support assembly mentioned above is provided.

[0066] The support assembly comprises a screw 104, the screw 104 is connected below the cutting platform and can penetrate upwardly out of the cutting platform, and the screw 104 is located below the astragalus carrying part and can contact the end of the astragalus in the astragalus carrying part.

[0067] The cutting platform is provided with a threaded hole, the screw 104 is connected in the threaded hole and penetrates upwardly out of the surface of the cutting platform, the highest end of the screw 104 is lower than the cutter 105, and after the astragalus is placed in the adjusting assembly and the inclination angle of the adjusting assembly is adjusted, the distance between the highest end of the screw 104 and the lower end surface of the cutter 105 is adjusted by rotating the screw 104, at this time, the end of the astragalus contacts the highest end of the screw 104, so that the thickness of the astragalus between the cutter 105 and the highest end of the screw 104 changes, and different thickness astragalus slices can be obtained when the cutter 105 cuts,

[0068] Through the above process, the thickness of the astragalus slice can be quickly adjusted, and astragalus slices with different thicknesses can be obtained as required.

[0069] After the cutter 105 cuts the astragalus, the cut astragalus slices are located below the cutter 105, and the cutter 105 needs to be stopped when the astragalus slices are taken out, which reduces the cutting frequency of the cutter 105 and is inconvenient for the user to operate; therefore, in the utility model, the lower end surface of the cutter 105 is formed with a push rib 106 at the rear side, which is used for pushing the astragalus slices cut by the cutter 105 and located below the cutter 105.

[0070] When the cutter 105 moves, the push rib 106 moves together with the cutter 105, at this time, the lower end of the astragalus contacts the highest end of the adjusting screw 104, and the height of the push rib 106 protruding from the lower end surface of the cutter 105 is located above the highest end of the screw 104 without interference (because the astragalus slice has a thickness, which is controlled by the distance between the highest end of the screw 104 and the cutter 105, and the height of the push rib 106 protruding from the lower end surface of the cutter 105 is less than the minimum distance), at the moment when the cutter 105 finishes cutting the astragalus, the push rib 106 contacts the side surface of the cut astragalus slice, and the continuous movement of the cutter 105 pushes the push rib 106 to move the astragalus slice away from the space below the pipe 107, so that when the cutter 105 returns to the original position, the end of the astragalus contacts the upper end surface of the cutter 105, and when the cutter 105 leaves the space below the pipe 107, the astragalus falls in the pipe 107, so that the end of the astragalus contacts the highest end of the adjusting screw 104 again to wait for cutting.

[0071] Through the above mode, the astragalus slice obtained after cutting can be pushed, the cut slice below the cutter 105 can be moved out of the space below the cutter 105, the astragalus slice can be continuously pushed out in the process of continuous cutting, and automatic discharging is realized.

[0072] When the supporting plate 101 is horizontally placed, the center of gravity of the astragalus slice and the surface of the supporting plate 101 are perpendicular to each other, so the friction is the largest, and a large pushing force is required when the astragalus slice is pushed on the surface of the supporting plate 101, therefore, in the utility model, the guide assembly comprises a base 201 and two supporting rods 203, slide holes 202 are formed on both sides of the base 201, one end of each of the two supporting rods 203 is slidably arranged in the slide hole 202 and fixedly provided with a threaded column, a locking nut B 204 is connected to the threaded column, the end of the supporting plate 101 is rotatably arranged at the end of the base 201, and the other end of each of the two supporting rods 203 is rotatably arranged in the middle of the supporting plate 101.

[0073] In the initial state, the supporting plate 101 is horizontally placed on the base 201, at this time, the threaded column at the end of the supporting rod 203 is located at the farthest position from the rotating position of the base 201 and the supporting plate 101 in the sliding hole 202, by loosening the locking nut B 204, the threaded column at the end of the supporting rod 203 can slide in the sliding hole 202 towards the direction close to the rotating position of the base 201 and the supporting plate 101, thereby the supporting rod 203 drives the supporting plate 101 to rotate on the base 201, supporting the supporting plate 101, changing the inclination angle between the supporting plate 101 and the base 201, at this time, the center of gravity of the astragalus slice and the surface of the supporting plate 101 are not perpendicular to each other, but an inclination angle appears, the friction between the astragalus slice and the surface of the supporting plate 101 is reduced, which can make the cut astragalus slice slide down along the inclined surface of the supporting plate 101;

[0074] Through the above process, the automatic discharging effect of the astragalus slice can be realized, the astragalus slice automatically slides down after cutting; after use, it can be restored to the initial position, so that the supporting plate 101 is horizontally placed on the base 201, the space occupied by the whole astragalus slice device is reduced, and it is convenient to store.

[0075] The above embodiments only express several embodiments of the present application, and the description is more specific and detailed, but it cannot be understood as the limitation of the patent application range. It should be pointed out that for ordinary skilled in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which belong to the protection range of the present application. Therefore, the protection range of the present application patent should be subject to the appended claims.

Claims

1. A device for slicing Astragalus root, characterized by comprising: The application relates to a cutting platform for cutting astragalus root, which comprises the following components. A cutting platform with a cutting plane for cutting astragalus root; An adjusting assembly, which comprises an astragalus root carrying part rotatably connected to the cutting platform, astragalus root can be placed in the astragalus root carrying part, the astragalus root carrying part is used for carrying astragalus root and adjusting the inclination angle between astragalus root and the cutting plane; A supporting assembly arranged on the side of the cutting platform away from the astragalus root carrying part, which supports the adjustment of the distance between astragalus root and the cutting plane and is used for adjusting the thickness of astragalus root slices; A guiding assembly arranged below the cutting platform, which is used for adjusting the inclination angle of the cutting platform.

2. The astragalus slice device according to claim 1, wherein, The cutting platform comprises a supporting plate (101) and a telescopic rod (102) fixed at the end of the supporting plate (101), the upper surface of the supporting plate (101) is the cutting plane, a cutter (105) is fixed on the telescopic shaft of the telescopic rod (102), the cutting direction of the cutter (105) is parallel to the cutting plane, and the astragalus root carrying part is rotatably connected to the supporting plate (101).

3. The astragalus slice device of claim 2, wherein, The astragalus root carrying part comprises a pipe (107), the adjusting assembly further comprises a rotating shaft (108) fixed outside the lower end of the pipe (107), the rotating shaft (108) is rotatably connected to the side wall of the supporting plate (101) and penetrates through the side wall of the supporting plate (101), a thread is formed on the outer wall of the part of the rotating shaft (108) penetrating through the side wall of the supporting plate (101), and a locking nut A (109) is connected to the thread, the distance between the rotating center of the rotating shaft (108) and the upper end surface of the cutter (105) is greater than the radius of the pipe (107).

4. The astragalus slice device of claim 2, wherein the cutting device is a rotary knife. The number of the adjusting assemblies is multiple, a plurality of separation parts are arranged at intervals on the cutting platform, the separation part is arranged between any two adjacent adjusting assemblies, and astragalus root slices with different inclination degrees are classified.

5. The astragal sectioning device of claim 4, wherein The separation part comprises a separation strip (103) fixedly connected to the supporting plate (101), and the length direction of the separation strip (103) is parallel to the cutting direction of the cutter (105).

6. The astragal sectioning device of claim 1, wherein The supporting assembly comprises a screw (104) connected below the cutting platform and capable of penetrating upwardly through the cutting platform, and the screw (104) is located below the astragalus root carrying part and capable of contacting the end of astragalus root in the astragalus root carrying part.

7. The astragal sectioning device of claim 5, wherein A groove is formed in the middle of the separation strip (103), and the moving range of the cutter (105) penetrates through the space below the adjusting assembly.

8. The astragal sectioning device of claim 2, wherein A pushing rib (106) is formed on the rear side of the lower end surface of the cutter (105), which is used for pushing astragalus root slices cut by the cutter (105) and located below the cutter (105).

9. The astragal sectioning device of claim 2, wherein The guiding assembly comprises a base (201) and two supporting rods (203), sliding holes (202) are formed on the two sides of the base (201), one end of each of the two supporting rods (203) is slidably arranged in the sliding hole (202) and fixedly connected with a threaded column, a locking nut B (204) is connected to each of the two threaded columns, the end of the supporting plate (101) is rotatably arranged at the end of the base (201), and the other end of each of the two supporting rods (203) is rotatably arranged in the middle of the supporting plate (101).

10. The astragal slicing apparatus of claim 3, wherein the cutting device is a knife. The pipe (107) is a transparent pipe.