A slicing device for traditional Chinese medicinal materials
By combining the pressure rollers, pulling plates, and fixed and sliding blades of the medicinal herb slicing equipment, the problems of difficult removal of fibrous fibers and surface impurities from dried Albizia julibrissin bark are solved. This achieves the effect of quickly removing fibrous fibers and removing impurities without damage, thus maintaining the aesthetics and medicinal properties of Albizia julibrissin bark.
Patent Information
- Application Number
- CN202311224708.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-21
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2043-09-21
AI Technical Summary
Existing technologies make it difficult to quickly remove the fibrous strands on both sides of the dried Albizia bark, and the shrinking of surface cracks during the drying process makes it difficult to remove impurities, affecting both appearance and medicinal properties.
A slicing device for Chinese medicinal materials was designed. Through the cooperation of pressure rollers, pulling plates, fixed blades and sliding blades, the bark of Albizia julibrissin tree is pulled apart on both sides to expose the fibrous fibers, which are then extracted through a filter. The surface is polished with a sanding belt to remove impurities from tightly packed areas, thus avoiding the influence of washing on the medicinal properties.
It enables the rapid removal of the fibrous bark of Albizia julibrissin trees, preserving their aesthetic appeal, and removes surface impurities through polishing, thus avoiding the impact of washing on their medicinal properties.
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Figure CN117226921B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of cutting technology, and in particular to a slicing device for Chinese medicinal materials. Background Technology
[0002] Before cutting dried strips of Albizia bark into segments, the bark has already undergone a drying process, which removes the internal moisture. As a result, the bark shrinks and bends further from its original curved shape, causing the fibrous fibers along the long side of the bark to become trapped inside. This makes it difficult to quickly remove the fibrous fibers from the front and back edges of the bark using existing technology, thus affecting the overall aesthetics of the cut bark segments.
[0003] Furthermore, during the drying process of Albizia bark, the surface of the bark shrinks and becomes denser, meaning the cracks on the surface of the bark become smaller. This makes it more difficult to remove debris or powdery impurities trapped in the cracks. Currently, water washing is commonly used to remove more debris or powdery impurities, but this method can easily affect the medicinal properties of Albizia bark. Summary of the Invention
[0004] To overcome the drawback of the fact that the bark of Albizia julibrissin bends inward on both sides, making it difficult to quickly remove the fibrous fibers on the front and back edges of the bark using existing technologies, this invention provides a slicing device for Chinese medicinal materials.
[0005] The technical solution is as follows: A slicing device for Chinese medicinal materials includes a table, a support block, and a first mounting block; the support block is fixedly connected to the upper right side of the table; the first mounting block is fixedly connected to the upper side of the support block; it also includes a telescopic rod, a pull plate, a support plate, a pressure roller, a corrugated plate, a filter port, a first air inlet, a fixed blade, a sliding blade, an arc-shaped slider, a power component, and a distance component; the first mounting block is fixedly connected to at least one telescopic rod with its telescopic part facing forward and at least one telescopic rod with its telescopic part facing backward; the telescopic part of the forward telescopic rod is fixedly connected to a pull plate for pulling open the front side of the bark of the Albizia julibrissin tree; the telescopic part of the backward telescopic rod is fixedly connected to another pull plate; two support plates distributed front and back are fixedly connected to the upper right side of the table, and the first mounting block is located between the two support plates; a pressure roller is fixedly connected to the upper side of both support plates. The roller has a sensing block located on the upper left side of the first mounting block, directly below the pressure roller. The first mounting block is connected to a power assembly. The power assembly is connected to two front-to-back corrugated plates. The power assembly is connected to two front-to-back filter ports, which are used to draw out the fibrous fibers from the acacia bark. Each filter port is connected to a first air intake. The power assembly is connected to a remote component. At least one fixed blade is connected to both the front and rear sides of the remote component. At least one sliding blade is connected to both the front and rear sides of the remote component, and the sliding blade engages with the corresponding fixed blade, working together to remove the fibrous fibers from the acacia bark. An arc-shaped slider is fixed to the underside of each sliding blade. The power assembly is used to move the remote component and its connected parts left and right.
[0006] More preferably, the component further away includes a spring rod, a first arc-shaped guide plate, and a second limiting plate; at least one spring rod is connected to both the front and rear sides of the power component; a first arc-shaped guide plate is fixedly connected to the telescopic part of the front spring rod; another first arc-shaped guide plate is fixedly connected to the telescopic part of the rear spring rod, and the first arc-shaped guide plate is fixedly connected to the corresponding fixed blade; each first arc-shaped guide plate has several through slots; each first arc-shaped guide plate is fixedly connected to a second limiting plate, and the second limiting plate is slidably connected to the corresponding sliding blade.
[0007] More preferably, each of the first arc-shaped guide plates has an arc-shaped part on its right side for guiding the hard structure on the acacia bark.
[0008] More preferably, it also includes a first mounting frame, a guide mold, a second arc-shaped guide plate, a second mounting frame, a second drive motor, a rotating shaft, and a sanding belt; the first mounting frame is fixedly connected to the upper left side of the table; the guide mold is fixedly connected to the left side of the first mounting frame; the second arc-shaped guide plate is fixedly connected to the first mounting frame; the second mounting frame is fixedly connected to the middle left side of the table; the second mounting frame is rotatably connected to two rotating shafts distributed front and rear; the two rotating shafts are fitted with a sanding belt for polishing the upper surface of the Albizia bark; two second drive motors distributed front and rear are fixedly connected to the left side of the first mounting frame, and the second drive motors are fixedly connected to the corresponding rotating shafts.
[0009] More preferably, it also includes a second air intake; the first mounting bracket is fixedly connected to a second air intake for absorbing the debris remaining after the upper surface of the acacia bark is polished, and the second air intake is located to the upper left of the sanding belt.
[0010] More preferably, the guide mold is provided with a guide section.
[0011] More preferably, it also includes connecting rods and a third arc-shaped guide plate; two connecting rods distributed front and rear are fixed to the upper right side of the second mounting bracket; the two connecting rods are jointly fixed to a third arc-shaped guide plate for guiding the acacia bark into the guide mold and the sand belt.
[0012] More preferably, it also includes an electric push rod and a cutter; two electric push rods distributed front and rear are fixedly connected to the left side of the second mounting bracket; the telescopic parts of the two electric push rods are jointly fixedly connected to the cutter.
[0013] More preferably, it also includes a screen, a scraper, an electric slide rail, and a collection box; two baffles are provided on the upper left side of the table; an inclined groove is provided on the upper left side of the table, the inclined groove being located between the two baffles; the screen is slidably connected to both baffles; an electric slide rail is fixedly connected to the left baffle, and the electric slide rail is fixedly connected to the collection box; a scraper that slides between the two baffles is slidably connected to the electric slide rail.
[0014] More preferably, the sloping groove is inclined.
[0015] The beneficial effects are as follows: by using the pressure roller, the first mounting block and the pull plate to pull open the front and back sides of the Albizia bark, the fibrous fibers on the front and back sides are exposed. Then, by using the filter port to draw the fibrous fibers on the front and back sides of the Albizia bark between the corresponding fixed knife and sliding knife, the fixed knife and sliding knife can work together to quickly remove the fibrous fibers on the front and back sides of the Albizia bark. This ensures the aesthetic appearance of the Albizia bark after it is cut into sections. This avoids the problem that the front and back sides of the Albizia bark will bend inward when the internal moisture is dried during the drying process, which makes it difficult to quickly remove the fibrous fibers on the front and back sides of the Albizia bark using existing technology.
[0016] The first arc-shaped guide plate allows the fixed blade and the sliding blade to avoid the hard structure on the side of the corresponding Albizia bark, thereby protecting the fixed blade and the sliding blade and preventing the hard structure on the side of the Albizia bark from damaging the corresponding fixed blade and the sliding blade.
[0017] By sanding the surface of the Albizia bark with a sanding belt, without cleaning the bark, a lot of debris or powdery impurities trapped in the tightly packed parts of the bark can be removed, thus avoiding any potential impact on the medicinal properties of the bark. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the first structure of the slicing device for Chinese medicinal materials disclosed in this invention;
[0019] Figure 2 This is a schematic diagram of the second structure of the slicing device for Chinese medicinal materials disclosed in this invention;
[0020] Figure 3 This is a schematic diagram of the structure of the support block, the first mounting block, the pull plate, the support plate and the pressure roller disclosed in the slicing equipment for Chinese medicinal materials of the present invention.
[0021] Figure 4 This is a schematic diagram of the structure of the support block, the first mounting block, the telescopic rod, and the pull plate disclosed in the slicing device for Chinese medicinal materials of the present invention.
[0022] Figure 5 This is a schematic diagram of the structure of the first mounting block, the pull plate, and the second mounting block disclosed in the slicing device for Chinese medicinal materials of the present invention;
[0023] Figure 6 This is a partial structural diagram of the first type of slicing device for Chinese medicinal materials disclosed in this invention;
[0024] Figure 7 This is a schematic diagram of the second partial structure of the medicinal herb slicing device disclosed in this invention;
[0025] Figure 8 This is a schematic diagram of the structure of the first mounting frame, second air inlet, second arc-shaped guide plate, electric push rod, and cutter disclosed in the slicing device for Chinese medicinal materials of the present invention;
[0026] Figure 9 This is a schematic diagram of the structure of the guide mold and the second arc-shaped guide plate disclosed in the slicing equipment for Chinese medicinal materials of the present invention;
[0027] Figure 10 This is a schematic diagram of the structure of the second mounting frame, second drive motor, rotating shaft, sanding belt and connecting rod disclosed in the slicing device for Chinese medicinal materials of the present invention;
[0028] Figure 11 This is a schematic diagram of the table, sieve, scraper, electric slide rail, and collection box of the medicinal herb slicing equipment disclosed in this invention.
[0029] The components in the attached diagram are labeled as follows: 2-Table, 101-Support block, 103-First mounting block, 104-Telescopic rod, 105-Pull plate, 107-Support plate, 108-Pressure roller, 113-Wave plate, 118-Filter port, 119-First air intake port, 1113-Fixed blade, 1114-Sliding blade, 1115-Arc-shaped slider, 111-Second mounting block, 112-First limiting plate, 114-Slide plate, 115-First drive motor, 116-Multi-stage linkage, 1110-Spring rod, 1111-First arc-shaped guide plate, 1112-Second... Limiting plate, 201-First mounting bracket, 204-Guide mold, 205-Second arc-shaped guide plate, 211-Second mounting bracket, 212-Second drive motor, 214-Rotating shaft, 216-Sand belt, 203-Second air intake, 217-Connecting rod, 218-Third arc-shaped guide plate, 221-Electric push rod, 223-Cutter, 301-Screw, 302-Scraper, 303-Electric slide rail, 304-Collection box, 2a-Baffle part, 2b-Inclined groove, 1111a-Through groove, 1111b-Arc-shaped part, 204a-Guide part, 100-Albizia bark. Detailed Implementation
[0030] The present invention will be further described below with reference to specific embodiments. The illustrative embodiments and descriptions herein are used to explain the present invention, but are not intended to limit the present invention.
[0031] Example 1
[0032] A slicing device for Chinese medicinal materials, such as Figure 1-7 As shown, it includes a table 2, a support block 101 and a first mounting block 103; the support block 101 is fixedly connected to the upper right side of the table 2; the first mounting block 103 for supporting the bark of the Albizia julibrissin tree 100 is fixedly connected to the upper side of the support block 101.
[0033] It also includes a telescopic rod 104, a pull plate 105, a support plate 107, a pressure roller 108, a corrugated plate 113, a filter port 118, a first air intake port 119, a fixed blade 1113, a sliding blade 1114, an arc-shaped slider 1115, a power assembly, and a distance assembly; the first mounting block 103 is fixedly connected to two telescopic rods 104 with their telescopic parts facing forward and two with their telescopic parts facing backward; the telescopic parts of the two forward-facing telescopic rods 104 are jointly fixedly connected to a pull plate 105; The telescopic parts of the two rearward telescopic rods 104 are jointly fixed to another pull plate 105 for pulling open the rear side of the Albizia bark 100, and the pull plate 105 is in contact with the first mounting block 103; two support plates 107 distributed front and back are fixed to the upper right side of the table 2, and the first mounting block 103 is located between the two support plates 107; the upper sides of the two support plates 107 are jointly fixed to a pressure roller for cooperating with the first mounting block 103 to clamp the middle side of the Albizia bark 100. 108; A sensing block for sensing the bark of the Albizia julibrissin tree 100 is provided on the upper left side of the first mounting block 103, and the sensing block is located directly below the pressure roller 108; the first mounting block 103 is connected to a power assembly; the power assembly is connected to two front-to-back wave plates 113; the power assembly is connected to two front-to-back filter ports 118; each filter port 118 is connected to a first air intake port 119; the power assembly is connected to a remote component; two left-to-right fixed blades 1113 are connected to the front and rear sides of the remote component; two left-to-right sliding blades 1114 are connected to the front and rear sides of the remote component, and the sliding blades 1114 are in contact with the corresponding fixed blades 1113; an arc-shaped slider 1115 is fixedly attached to the lower side of each sliding blade 1114, and the arc-shaped slider 1115 is used to cooperate with the corresponding wave plate 113 to drive the sliding blade 1114 to move up and down; the power assembly is used to drive the remote component and its connected parts to move left and right.
[0034] The power assembly includes a second mounting block 111, a first limiting plate 112, a sliding plate 114, a first drive motor 115, and a multi-stage connecting rod 116. Two second mounting blocks 111 are fixedly connected to the left side of the first mounting block 103, and the second mounting blocks 111 are fixedly connected to the corresponding wave plate 113. Each second mounting block 111 is fixedly connected to a first limiting plate 112. Each first limiting plate 112 is slidably connected to a sliding plate 114, and the sliding plate 114 is fixedly connected to the corresponding filter port 118. The two sliding plates 114 are connected together to the component away from the power assembly. Each first limiting plate 112 is bolted to the left side of a first drive motor 115. The output shaft of each first drive motor 115 is fixedly connected to a multi-stage connecting rod 116, and the multi-stage connecting rod 116 is rotatably connected to the corresponding sliding plate 114.
[0035] The remote component includes a spring rod 1110, a first arc-shaped guide plate 1111, and a second limiting plate 1112; each slide plate 114 is fixedly connected to two spring rods 1110; the telescopic portions of the two front spring rods 1110 are jointly fixedly connected to a first arc-shaped guide plate 1111; the telescopic portions of the two rear spring rods 1110 are jointly fixedly connected to another first arc-shaped guide plate 1111, and the first arc-shaped guide plate 1111 is fixedly connected to the corresponding fixed blade 1113; each first arc-shaped guide plate 1111 has several through slots 1111a; each first arc-shaped guide plate 1111 is fixedly connected to a second limiting plate 1112, and the second limiting plate 1112 is slidably connected to the corresponding sliding blade 1114.
[0036] Each first arc-shaped guide plate 1111 has an arc-shaped part 1111b on its right side.
[0037] The specific operation of the above embodiment 1 is as follows: First, the dried Albizia bark 100 is manually placed on the first mounting block 103, such as... Figure 2 As shown, during the drying process, the internal moisture of the Albizia bark 100 is dried, causing the front and rear sides of the bark to bend inward. The first mounting block 103 and the two pull plates 105 are positioned between the front and rear sides of the bark. Then, the bark is manually pushed to the left, allowing it to pass from left to right between the pressure roller 108 and the first mounting block 103, and then between the two filter openings 118. During this process, just as the bark is about to pass between the pressure roller 108 and the first mounting block 103, its raised shape causes it to be blocked by the pressure roller 108. The sensor block on the first mounting block 103 then senses this and controls the four telescopic rods. The telescopic part of 104 extends, pushing the two corresponding pull plates 105 away from each other. During this process, the front pull plate 105 pushes the front side of the Albizia bark 100 to move forward against the pressure roller 108, while the rear pull plate 105 pushes the rear side of the Albizia bark 100 to move backward against the pressure roller 108. This pulls the front and rear sides of the Albizia bark 100 apart, making the Albizia bark 100 flat. Therefore, it is no longer blocked by the pressure roller 108 and passes between the pressure roller 108 and the first mounting block 103. The pressure roller 108 will limit and squeeze the middle side of the Albizia bark. At this time, since the front and rear sides of the Albizia bark 100 are pulled apart and no longer bend inward, the fibrous fibers of the front and rear cross sections of the Albizia bark 100 will be exposed.
[0038] When the acacia bark 100 passes between the two filter ports 118, such as Figure 5 and Figure 6As shown, the two first drive motors 115 control the sliding plate 114 and its connected parts to move left and right through the corresponding multi-stage linkages 116. During this process, the four arc-shaped sliders 1115 continuously push the sliding blade 1114 to move up and down against the fixed blade 1113 through the corresponding wave plates 113. At the same time, the external negative pressure machine continuously draws air from the front and rear edges of the Albizia bark 100 through the first air intake 119 and the filter 118. During this process, the fibrous fibers on the front and rear edges of the Albizia bark 100 change from a vertically hanging state to a watery state under the action of the suction force. The bark 100 is positioned either horizontally forward or horizontally backward. However, to cut as many fibrous fibers as possible, the front and rear edges of the acacia bark 100 are very close to the first arc-shaped guide plate 1111, with a very small gap between them. The upward movement of the fibrous fibers is blocked by the first arc-shaped guide plate 1111. Therefore, it is necessary to coordinate with the left and right sliding of the first arc-shaped guide plate 1111. The first arc-shaped guide plate 1111 will lift the fibrous fibers through the friction of its own surface, making them face left or right. At this time, the fibrous fibers are aligned with the through groove 1111a and then pulled into the through groove 1111a by suction force. Then, it enters between the fixed blade 1113 and the sliding blade 1114. Since the four sliding blades 1114 move up and down against the corresponding fixed blades 1113, the fibrous fibers on the front and rear edges of the Albizia bark 100 are cut off by the corresponding fixed blades 1113 and sliding blades 1114 when they enter between them. Thus, the pressure roller 108, the first mounting block 103, and the pull plate 105 work together to pull the front and rear sides of the Albizia bark 100 apart, exposing the fibrous fibers on its front and rear edges. Then, it passes through the filter port 11... 8. By drawing the fibrous fibers from the front and rear edges of the Albizia bark 100 between the corresponding fixed blade 1113 and sliding blade 1114, the fixed blade 1113 and sliding blade 1114 can work together to quickly remove the fibrous fibers from the front and rear edges of the Albizia bark 100, thus ensuring the aesthetics of the Albizia bark 100 after it is cut into segments. This avoids the situation where the front and rear edges of the Albizia bark 100 bend inward due to the drying of the internal moisture during the drying process, making it difficult to quickly remove the fibrous fibers from the front and rear edges of the Albizia bark 100 using existing technology.
[0039] It should be noted that when the acacia bark 100 passes between the two first arc-shaped guide plates 1111, if... Figure 7As shown, when a hard structure appears on the front and rear edges of the Albizia bark 100, when this hard structure comes into contact with the corresponding first arc-shaped guide plate 1111, it will squeeze the corresponding first arc-shaped guide plate 1111, causing the spring rod 1110 to retract. This will drive the first arc-shaped guide plate 1111, the second limiting plate 1112, the fixed blade 1113, and the sliding blade 1114 to move away from the Albizia bark 100, so that the fixed blade 1113 and the sliding blade 1114 can avoid the hard structure on the side of the Albizia bark 100 corresponding to them, thereby protecting the fixed blade 1113 and the sliding blade 1114 and preventing the hard structure on the side of the Albizia bark 100 from damaging the corresponding fixed blade 1113 and the sliding blade 1114.
[0040] Example 2
[0041] Based on Example 1, such as Figure 1-2 and Figure 8-11 As shown, it also includes a first mounting frame 201, a guide mold 204, a second arc-shaped guide plate 205, a second mounting frame 211, a second drive motor 212, a rotating shaft 214, and a sanding belt 216; the first mounting frame 201 is fixedly connected to the upper left side of the table 2; the guide mold 204 is fixedly connected to the left side of the first mounting frame 201; the second arc-shaped guide plate 205, which cooperates with the guide mold 204 to restrict the bark 100 of the Albizia julibrissin tree, is fixedly connected to the first mounting frame 201; the second mounting frame 211 is fixedly connected to two rotating shafts 214 distributed front and rear; the two rotating shafts 214 are fitted with the sanding belt 216; the left side of the first mounting frame 201 is bolted to two second drive motors 212 distributed front and rear, and the second drive motors 212 are fixedly connected to the corresponding rotating shafts 214.
[0042] It also includes a second air intake 203; the first mounting bracket 201 is fixedly connected to the second air intake 203, which is located to the upper left of the sanding belt 216.
[0043] The guide mold 204 is provided with a guide part 204a for guiding the acacia bark 100.
[0044] It also includes a connecting rod 217 and a third arc-shaped guide plate 218; two connecting rods 217 distributed front and rear are fixed to the upper right side of the second mounting bracket 211; the two connecting rods 217 are jointly fixed to the third arc-shaped guide plate 218.
[0045] It also includes an electric push rod 221 and a cutter 223; the left side of the second mounting bracket 211 is bolted with two electric push rods 221 distributed front and rear; the telescopic parts of the two electric push rods 221 are jointly fixed with a cutter 223 for cutting the bark of the Albizia julibrissin tree 100.
[0046] It also includes a screen 301, a scraper 302, an electric slide rail 303, and a collection box 304; two baffles 2a are provided on the upper left side of the table 2; an inclined groove 2b is provided on the upper left side of the table 2, and the inclined groove 2b is located between the two baffles 2a; the two baffles 2a are slidably connected to a screen 301 for screening the cut acacia bark 100; the left baffle 2a is bolted to an electric slide rail 303, and the electric slide rail 303 is fixed to the collection box 304; the electric slide rail 303 is slidably connected to a scraper 302 that slides between the two baffles 2a.
[0047] The inclined groove 2b is set at an angle for faster movement of debris and powder.
[0048] The specific operation of the above embodiment 2 is as follows: During the process of manually pushing the Albizia bark 100 from left to right away between the pressure roller 108 and the first mounting block 103, such as... Figure 8 As shown, the portion of the Albizia bark 100 that has detached from the pull plate 105 and the pressure roller 108 will return to its initial state. When the Albizia bark 100 contacts the guide mold 204, under the action of the guide part 204a, the Albizia bark 100 will insert between the guide mold 204 and the second arc-shaped guide plate 205, and then pass between the guide mold 204 and the second arc-shaped guide plate 205. Then, when the Albizia bark 100 contacts the third arc-shaped guide plate 218, the Albizia bark 100 will insert between the sanding belt 216 and the guide mold 204, and then pass between the sanding belt 216 and the guide mold 204. During this process, the two second drive motors 2 12 drives the corresponding rotating shaft 214 to rotate. The two rotating shafts 214 drive the sanding belt 216 to rotate along the third arc-shaped guide plate 218, so that the sanding belt 216 polishes the upper surface of the Albizia bark 100, exposing the cracks and grooves in the bark, which is convenient for subsequent processing by wind power. There is no need to clean the Albizia bark 100. This can remove more debris or powder impurities stuck in the cracks of the Albizia bark 100, which can avoid affecting the medicinal properties of the Albizia bark 100. The third arc-shaped guide plate 218 also supports the sanding belt 216, preventing the sanding belt 216 from failing to maintain its arch shape and requiring manual adjustment each time.
[0049] Then the Albizia bark 100 continues to move. When it passes under the second air inlet 203, it will absorb the debris and impurities remaining on the upper surface after polishing, as well as the debris or impurities in the cracks. This makes it easier to store the Albizia bark 100 later and prevents the growth of insects and bacteria. Then the Albizia bark 100 continues to move. The electric push rod 221 drives the cutter 223 to move up and down to cut the Albizia bark 100 into segments.
[0050] After the Albizia bark 100 is cut into sections, it slides onto the screen 301. The cutting debris and powder fall onto the inclined groove 2b below the screen 301. Then, the electric slide rail 303 drives the scraper 302 to push the Albizia bark 100 on the screen 301 into the collection box 304, which can separate the Albizia bark 100 from the debris and powder, so that Albizia bark 100 processed in different ways can be stored in the same location.
[0051] Finally, it should be noted that the above description is only a preferred embodiment of the present invention and is not intended 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 make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A slicing device for Chinese medicinal materials, comprising a table (2), a support block (101), and a first mounting block (103); the support block (101) is fixedly connected to the upper right side of the table (2); the first mounting block (103) is fixedly connected to the upper side of the support block (101); characterized in that: It also includes a telescopic rod (104), a pull plate (105), a support plate (107), a pressure roller (108), a corrugated plate (113), a filter port (118), a first air intake port (119), a fixed blade (1113), a sliding blade (1114), an arc-shaped slider (1115), a power assembly, and a remote assembly; the first mounting block (103) is fixedly connected to at least one telescopic rod (104) with its telescopic part facing forward and another with its telescopic part facing backward; the telescopic part of the telescopic rod (104) facing forward is fixedly connected to a pull plate (105) for pulling open the front side of the Albizia bark (100); the telescopic rod (104) facing backward... The telescopic part of the table (2) is fixedly connected to another pull plate (105) for pulling open the rear side of the acacia bark (100); two support plates (107) distributed front and back are fixedly connected to the upper right side of the table (2), and the first mounting block (103) is located between the two support plates (107); the upper sides of the two support plates (107) are jointly fixedly connected to a pressure roller (108); a sensing block is provided on the upper left side of the first mounting block (103), and the sensing block is located directly below the pressure roller (108); each filter port (118) is connected to a first air intake port (119); an arc-shaped slider (1115) is fixedly connected to the lower side of each sliding blade (1114). The remote component includes a spring rod (1110), a first arc-shaped guide plate (1111), and a second limiting plate (1112); at least one spring rod (1110) is connected to both the front and rear sides of the power component; the telescopic part of the front spring rod (1110) is fixedly connected to a first arc-shaped guide plate (1111); the telescopic part of the rear spring rod (1110) is fixedly connected to another first arc-shaped guide plate (1111), and the first arc-shaped guide plate (1111) is fixedly connected to the corresponding fixed blade (1113); each first arc-shaped guide plate (1111) is provided with several through slots (1111a); each first arc-shaped guide plate (1111) is fixedly connected to a second limiting plate (1112), and the second limiting plate (1112) is slidably connected to the corresponding sliding blade (1114); The power assembly includes a second mounting block (111), a first limiting plate (112), a sliding plate (114), a first drive motor (115), and a multi-stage connecting rod (116); two second mounting blocks (111) are fixedly connected to the left side of the first mounting block (103), and the second mounting blocks (111) are fixedly connected to the corresponding wave plate (113); each second mounting block (111) is fixedly connected to a first limiting plate (112); each first limiting plate (112) is slidably connected to a sliding plate (114), and the sliding plate (114) is fixedly connected to the corresponding filter port (118), and the two sliding plates (114) are connected together to the component away from it; each first limiting plate (112) is bolted to the left side of a first drive motor (115); the output shaft of each first drive motor (115) is fixedly connected to a multi-stage connecting rod (116), and the multi-stage connecting rod (116) is rotatably connected to the corresponding sliding plate (114); The two first drive motors (115) are controlled to drive the slide plate (114) and its connected parts to move left and right through the corresponding multi-stage linkage (116). The four arc-shaped sliders (1115) will continuously push the sliding blade (1114) to move up and down along the fixed blade (1113) through the corresponding wave plate (113).
2. The slicing device for Chinese medicinal materials according to claim 1, characterized in that: Each first arc-shaped guide plate (1111) has an arc-shaped part (1111b) on the right side for guiding the hard structure on the bark (100) of the Albizia julibrissin tree.
3. The slicing device for Chinese medicinal materials according to claim 2, characterized in that: It also includes a first mounting bracket (201), a guide mold (204), a second arc-shaped guide plate (205), a second mounting bracket (211), a second drive motor (212), a rotating shaft (214), and a sanding belt (216); the first mounting bracket (201) is fixedly connected to the upper left side of the table (2); the guide mold (204) is fixedly connected to the left side of the first mounting bracket (201); the second arc-shaped guide plate (205) is fixedly connected to the first mounting bracket (201); the second mounting bracket (211) is fixedly connected to the middle left side of the table (2); the second mounting bracket (211) is rotatably connected to two rotating shafts (214) distributed in the front and back; the two rotating shafts (214) are fitted together with a sanding belt (216) for polishing the upper surface of the acacia bark (100); the first mounting bracket (201) is fixedly connected to two second drive motors (212) distributed in the front and back, and the second drive motors (212) are fixedly connected to the corresponding rotating shafts (214).
4. The slicing device for Chinese medicinal materials according to claim 3, characterized in that: It also includes a second air intake (203); the first mounting bracket (201) is fixedly connected to a second air intake (203) for absorbing the debris remaining after the upper surface of the acacia bark (100) is polished, and the second air intake (203) is located to the upper left of the sanding belt (216).
5. A slicing device for Chinese medicinal materials according to claim 3, characterized in that: The guide mold (204) is provided with a guide part (204a).
6. A slicing device for traditional Chinese medicinal materials according to any one of claims 4-5, characterized in that: It also includes a connecting rod (217) and a third arc-shaped guide plate (218); the upper right side of the second mounting bracket (211) is fixed with two connecting rods (217) distributed front and back; the two connecting rods (217) are jointly fixed with a third arc-shaped guide plate (218) for guiding the acacia bark (100) into the guide mold (204) and the sand belt (216).
7. A slicing device for Chinese medicinal materials according to claim 6, characterized in that: It also includes an electric push rod (221) and a cutter (223); two electric push rods (221) are fixedly connected to the left side of the second mounting bracket (211) and distributed in front and behind; the telescopic parts of the two electric push rods (221) are jointly fixedly connected to the cutter (223).
8. A slicing device for Chinese medicinal materials according to claim 7, characterized in that: It also includes a screen (301), a scraper (302), an electric slide rail (303), and a collection box (304); two baffles (2a) are provided on the upper left side of the table (2); an inclined groove (2b) is provided on the upper left side of the table (2), and the inclined groove (2b) is located between the two baffles (2a); the two baffles (2a) are slidably connected to the screen (301); the left baffle (2a) is fixedly connected to the electric slide rail (303), and the electric slide rail (303) is fixedly connected to the collection box (304); the electric slide rail (303) is slidably connected to the scraper (302) that slides between the two baffles (2a).
9. A slicing device for Chinese medicinal materials according to claim 8, characterized in that: The inclined groove (2b) is set at an angle.
Citation Information
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