High-efficiency pulverizing device for agricultural product processing
By designing a high-efficiency pulverizing device that includes a pulverizing component, a screen component, and a pretreatment component, the problem of low pulverizing efficiency of existing devices for agricultural products with high fiber content or large differences in toughness has been solved, achieving a high-efficiency and low-energy-consumption pulverizing effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-30
- Publication Date
- 2026-03-31
AI Technical Summary
Existing crushing equipment is difficult to adapt to the crushing requirements of different types of agricultural products, especially materials with high fiber, high moisture or large differences in toughness, resulting in low crushing efficiency, high energy consumption and poor versatility.
A high-efficiency crushing device was designed, comprising a crushing component, a screen component, a pretreatment component, and a drive mechanism. The pretreatment component performs preliminary crushing of the material, the crushing is carried out by counter-rotating crushing blades, and the grading is achieved by adjusting the aperture of the screen component. Combined with the power transmission system of the drive mechanism, the material is crushed efficiently.
It enables pre-treatment, crushing, pulverizing, and grading of agricultural products, improving crushing efficiency and particle size uniformity, and reducing energy consumption and maintenance costs.
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Figure CN121402185B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of agricultural product crushing technology, specifically a high-efficiency crushing device for agricultural product processing. Background Technology
[0002] Agricultural products generally refer to primary products derived from agriculture, including grains, beans, tubers, fruits and vegetables, and various cash crops. Crushing is a pretreatment step in agricultural product processing, which can effectively increase the specific surface area of materials, improve the efficiency of subsequent drying, extraction, mixing, or packaging processes, and also help improve the uniformity and performance of products to meet different deep processing needs.
[0003] Currently, common crushing devices on the market, such as hammer mills and blade crushers, still have certain limitations in practical applications. They are difficult to adapt to the crushing requirements of different types of materials (such as agricultural products with high fiber, high moisture, or large differences in toughness), have poor versatility, and cannot fully pre-treat materials before crushing, resulting in high energy consumption and low efficiency when crushing directly. Summary of the Invention
[0004] The purpose of this invention is to provide a high-efficiency crushing device for agricultural product processing, so as to solve the problem of inconvenience in using existing crushing devices.
[0005] To achieve the above objectives, the present invention provides the following technical solution:
[0006] A high-efficiency crushing device for agricultural product processing includes a base and further includes:
[0007] A pulverizing assembly includes a pulverizing cylinder mounted above a base, a collecting cylinder located below the pulverizing cylinder, and pulverizing blades inside the collecting cylinder. A support frame is mounted on the top of the base, and a rotating ring is rotatably mounted between two support frames. The pulverizing cylinder is located inside the rotating ring. A fixed frame is mounted at the bottom of the pulverizing cylinder, and a rotating cylinder is positioned at the center of the fixed frame. A connecting plate is mounted outside the rotating cylinder, and the collecting cylinder is connected to the rotating cylinder. A fixed cylinder is mounted on the connecting plate, and a movable cylinder is slidably fitted outside the fixed cylinder. One end of the movable cylinder extends into the collecting cylinder and is fitted with a pressure plate. A rotating rod is mounted inside the fixed cylinder, and a rotating tube is rotatably mounted outside the rotating rod. Both the rotating tube and the rotating rod extend out of the fixed cylinder and are fitted with pulverizing blades.
[0008] The screen assembly includes two sets of screens mounted on a fixed frame, an adjusting rod mounted outside the screens, and a transmission plate mounted inside the crushing cylinder. The adjusting rod is slidably mounted on the outer wall of the crushing cylinder. The collecting cylinder is in contact with the screens. A transmission rod is mounted inside the crushing cylinder, and a transmission plate is mounted at one end of the transmission rod.
[0009] The pretreatment assembly includes a treatment cylinder disposed above a crushing cylinder, a rotating disk and a crushing disk disposed inside the treatment cylinder, and multiple pressing blocks disposed outside the crushing disk. A movable rod is disposed at the center of the treatment cylinder, and the rotating disk and the crushing disk are both disposed outside the movable rod. A cam that cooperates with the crushing disk is disposed outside the movable rod. A guide cylinder is disposed at the top of the crushing disk, and multiple fixing teeth are disposed on the inner wall of the treatment cylinder.
[0010] The drive mechanism, connected to the transmission rod, compresses the material inside the crushing cylinder through the screen by moving the transmission plate.
[0011] A rotating mechanism, installed inside the fixed cylinder, is used to drive the crushing blades to rotate and crush the material passing through the screen.
[0012] Based on the above technical solutions, the present invention also provides the following optional technical solutions:
[0013] In one alternative embodiment: the driving mechanism includes a support plate, a motor, and a mounting frame. The mounting frame is provided at the bottom of the crushing cylinder, and the motor is provided on the mounting frame. The rotating end of the motor is connected to the rotating cylinder. A support plate is provided outside the movable cylinder. One end of the support plate is inserted into the interior of the rotating cylinder and a nut is provided therein. A screw is provided inside the rotating cylinder, and the nut is sleeved on the outside of the screw.
[0014] In one alternative embodiment: the rotating mechanism includes a power component, a transmission column, and a turntable. Turntables are provided on the exterior of both the rotating rod and the rotating tube. Gear disks are provided on the adjacent sides of the two turntables. A fixed plate is provided inside the fixed cylinder. A transmission column is rotatably mounted on the fixed plate. Meshing gear teeth are provided between the two transmission columns. The gear teeth mesh with the gear disks. The power component is provided inside the fixed cylinder. The rotating end of the power component is connected to the rotating rod.
[0015] In one alternative: the support frame is provided with a rotating shaft, both of which are connected to a rotating ring. The rotating ring is provided with a handle on the outside, and the rotating shaft is provided with a chuck with multiple slots.
[0016] In one alternative: the support frame has an installation groove, and a locking block is provided inside the installation groove, the locking block being inserted into the groove.
[0017] In one alternative: the base is provided with columns on its exterior, a horizontal plate is provided between two columns, and the processing cylinder is placed on the horizontal plate.
[0018] In one alternative embodiment: a feed inlet is provided at the top of the processing cylinder, and a drive motor is provided at the top of the processing cylinder, with the rotating end of the drive motor connected to the movable rod.
[0019] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0020] High-efficiency crushing devices for agricultural product processing can perform pre-treatment crushing, pulverizing, and grading of materials. The materials are initially crushed by the fixed teeth and rotating crushing disc inside the processing cylinder, effectively reducing the initial particle size and hardness of the materials and creating ideal conditions for subsequent pulverization. Driven by a power component and a gear system, two sets of crushing blades rotate synchronously in opposite directions to pulverize the materials. Compared with the traditional unidirectional crushing method, the pulverization efficiency is higher, ensuring thorough pulverization and uniform particle size. The materials temporarily stored inside the collection cylinder can be pushed back into the crushing chamber and pulverized again by the crushing blades rotating in the opposite direction, improving the production efficiency of agricultural product processing and reducing energy consumption and maintenance costs. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of a high-efficiency crushing device for agricultural product processing.
[0022] Figure 2 This is a schematic diagram of the structure of a high-efficiency crushing device for agricultural product processing after the crushing cylinder has been flipped.
[0023] Figure 3 This is a schematic diagram of the structure of a high-efficiency crushing device for agricultural product processing after the transmission plate has been flipped.
[0024] Figure 4 This is a schematic diagram of the structure of a screen in a high-efficiency crushing device for agricultural product processing.
[0025] Figure 5 This is a cross-sectional view of the crushing cylinder in a high-efficiency crushing device for agricultural product processing.
[0026] Figure 6 This is a schematic diagram of the structure of the pulverizing blades in a high-efficiency pulverizing device for agricultural product processing.
[0027] Figure 7 This is a cross-sectional view of the fixed cylinder in a high-efficiency crushing device for agricultural product processing.
[0028] Figure 8 This is a cross-sectional view of the rotary table in a high-efficiency crushing device for agricultural product processing.
[0029] Figure 9 This is a schematic diagram of the transmission column in a high-efficiency crushing device for agricultural product processing.
[0030] Figure 10 This is a schematic diagram of the processing cylinder in a high-efficiency crushing device for agricultural product processing.
[0031] Figure 11This is a schematic diagram of the cam structure in a high-efficiency crushing device for agricultural product processing.
[0032] Figure reference numerals: 1-Base, 2-Support frame, 201-Mounting groove, 3-Rotating ring, 301-Handle, 4-Crushing cylinder, 401-Fixed frame, 5-Processing cylinder, 501-Modular rod, 502-Fixed tooth, 503-Guide cylinder, 504-Crushing disc, 505-Pressure block, 506-Rotating disc, 507-Crushing tooth, 508-Cam, 509-Feed inlet, 6-Groove, 7-Column, 8-Horizontal plate, 9-Drive motor, 10-Rotating shaft, 11-Chuck, 111-Chuck slot, 12-Chuck block. 13-Collection box, 14-Handle, 15-Transmission plate, 16-Mounting bracket, 17-Collection cylinder, 171-Baffle, 18-Moving cylinder, 19-Fixed cylinder, 20-Transmission rod, 21-Motor, 22-Rotating cylinder, 23-Support plate, 231-Nut, 24-Connecting plate, 25-Screen, 26-Adjusting rod, 27-Pressure plate, 28-Crushing blade, 29-Rotating tube, 30-Rotating rod, 31-Power component, 32-Turntable, 33-Gear teeth, 34-Transmission column, 35-Fixed plate, 36-Gear disc. Detailed Implementation
[0033] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.
[0034] The specific implementation of the present invention will be described in detail below with reference to specific embodiments.
[0035] like Figure 1-11 As shown, a high-efficiency crushing device for agricultural product processing is provided in one embodiment of the present invention, including a base 1, and further comprising:
[0036] The pulverizing assembly includes a pulverizing cylinder 4 positioned above a base 1, a collecting cylinder 17 positioned below the pulverizing cylinder 4, and pulverizing blades 28 inside the collecting cylinder 17. A support frame 2 is vertically mounted on the top of the base 1. A groove 6 is formed on the base 1, and a collecting box 13 is slidably mounted inside the groove 6. A handle 14 is provided on the collecting box 13 for easy movement. A rotating ring 3 is positioned between the two support frames 2, and the rotating ring 3 is rotatably mounted on the support frame 2 via a rotating shaft 10. The pulverizing cylinder 4 is positioned inside the rotating ring 3, meaning the rotating ring 3 can drive the pulverizing cylinder 4 to rotate, allowing the pulverizing cylinder 4 to flip. A fixing frame is provided at the bottom of the pulverizing cylinder 4. 401, a rotating cylinder 22 is rotatably arranged at the center of the fixed frame 401. A connecting plate 24 is fixedly arranged on the outside of the rotating cylinder 22. The side wall of the collecting cylinder 17 is connected to the rotating cylinder 22, that is, the rotating cylinder 22 can drive the collecting cylinder 17 to rotate. A fixed cylinder 19 is arranged on the connecting plate 24. A movable cylinder 18 is slidably sleeved on the outside of the fixed cylinder 19. One end of the movable cylinder 18 is inserted into the inside of the collecting cylinder 17 and is provided with a pressure plate 27. A rotating rod 30 is arranged inside the fixed cylinder 19. A rotating tube 29 is rotatably arranged on the outside of the rotating rod 30. One end of the rotating tube 29 and the rotating rod 30 both pass out of the fixed cylinder 19 and are provided with crushing blades 28.
[0037] The screen assembly includes two sets of screens 25 mounted on a fixed frame 401, an adjusting rod 26 mounted outside the screens 25, and a transmission plate 15 mounted inside the crushing cylinder 4. The two sets of screens 25 have different initial apertures. One end of the adjusting rod 26 passes through the side wall of the crushing cylinder 4 and connects to the screens 25 inside. By rotating the adjusting rod 26, the two sets of screens 25 rotate relative to each other. During rotation, the screen holes of the two sets of screens 25 overlap, thereby adjusting the effective filtration aperture of the screens 25. The adjusting rod 26 is slidably mounted on the outer side wall of the crushing cylinder 4. The collecting cylinder 17 is in contact with the screens 25. To prevent material falling from the screens 25 from not completely entering the collecting cylinder 17, a baffle 171 can be installed on the top of the collecting cylinder 17. Figure 5As shown, the baffle 171 is a circular plate with a circular hole. The baffle 171 is located below the fixed frame 401 and blocks the material falling from the screen 25 above. The collecting cylinder 17 drives the baffle 171 to rotate, and the material falls into the collecting cylinder 17 along the circular hole. The crushing cylinder 4 is equipped with a transmission rod 20. One end of the transmission rod 20 is equipped with a transmission plate 15. The transmission plate 15 can only slide up and down. The side of the transmission plate 15 near the crushing cylinder 4 has an inclined groove to facilitate the material to slide down. Two sets of flaps are hinged to both sides of the transmission plate 15 by torsion hinges. An elastic joint is provided between the flaps and the transmission plate 15. The reset component and the transmission rod 20 are reciprocating screws rotatably mounted on the fixed frame 401. The transmission rod 20 is connected to the rotating cylinder 22. The transmission rod 20 rotates under the drive of the rotating cylinder 22, and is converted into the up-and-down reciprocating motion of the transmission plate 15 through the reciprocating screw structure. When the transmission plate 15 moves downward, the material generates an upward reaction force on the flaps, causing the two sets of flaps to rotate to a horizontal state, forming a complete horizontal extrusion surface, and achieving uniform compaction of the material. When the transmission plate 15 rises, the flaps automatically reset and open under the action of the elastic reset component, which can guide the downward sliding material.
[0038] When the transmission plate 15 moves downward under the drive of the transmission rod 20, it generates vertical pressure on the material, compacting it and causing it to pass through the screen 25 below the crushing cylinder 4. The crushing blades 28 rotating in the opposite direction crush the material passing through the screen 25, improving crushing efficiency and particle size uniformity. The crushed material falls into the collection cylinder 17 for temporary storage. At this time, the collection cylinder 17, which is connected to the rotating cylinder 22, drives the movable cylinder 18 and the pressure plate 27 to rotate synchronously through the support plate 23. Since the screw 221 fixed on the fixed frame 401 and the support plate 23 form a helical pair, the rotational motion is converted into the axial displacement of the pressure plate 27. During the initial crushing process, the pressure plate 27 gradually moves away from the crushing blades 28, providing sufficient collection space for the crushed material. When secondary crushing is required, the effective aperture of the screen 25 is reduced by the adjusting rod 26, and then the entire crushing cylinder 4 is flipped over by driving the rotating ring 3. Figure 2 At the position shown, the pressure plate 27 moves in the opposite direction to squeeze the material temporarily stored in the collection cylinder 17. The two sets of crushing blades 28 rotating in opposite directions further crush the material. The crushed material passes through the screen 25 and falls back into the crushing cylinder 4. Finally, it slides out along the inclined guide groove set on the transmission plate 15 and completes the centralized collection of the material through the collection box 13.
[0039] The pretreatment assembly includes a treatment cylinder 5 positioned above a crushing cylinder 4, a rotating disk 506 and a crushing disk 504 positioned inside the treatment cylinder 5, and multiple pressing blocks 505 positioned outside the crushing disk 504. A movable rod 501 is positioned at the center of the treatment cylinder 5. The rotating disk 506 and the crushing disk 504 are both positioned outside the movable rod 501. A cam 508 that cooperates with the crushing disk 504 is positioned outside the movable rod 501. A guide cylinder 503 is positioned at the top of the crushing disk 504. Multiple fixing teeth 502 are positioned on the inner wall of the treatment cylinder 5. Multiple crushing teeth 507 that cooperate with the fixing teeth 502 are positioned outside the rotating disk 506.
[0040] The pretreatment component is set above the crushing cylinder 4, forming an independent pre-crushing chamber. Multiple triangular pressing blocks 505 are evenly distributed on the outer periphery of the crushing disc 504. The pressing blocks 505 are staggered with the fixed teeth 502 fixedly installed on the inner wall of the processing cylinder 5 to form a crushing pair. The cam 508 contacts the inner wall of the crushing disc 504. The falling agricultural products enter the gap between the crushing disc 504 and the processing cylinder 5. The rotation of the cam 508 will periodically squeeze the crushing disc 504, so that it crushes and breaks large and hard agricultural products, providing uniform and suitable feeding conditions for subsequent crushing.
[0041] The drive mechanism is connected to the transmission rod 20 and squeezes the material inside the crushing cylinder 4 through the screen 25 by driving the transmission plate 15 to move.
[0042] A rotating mechanism, installed inside the fixed cylinder 19, is used to drive the crushing blades 28 to rotate and crush the material passing through the screen 25.
[0043] like Figure 1-7 As shown, in a preferred embodiment of the present invention, the driving mechanism includes a support plate 23, a motor 21, and a mounting frame 16. The bottom of the crushing cylinder 4 is provided with a mounting frame 16, and the motor 21 is provided on the mounting frame 16. The rotating end of the motor 21 is connected to the rotating cylinder 22. The movable cylinder 18 is provided with a support plate 23. One end of the support plate 23 is inserted into the rotating cylinder 22 and a nut 231 is provided. The rotating cylinder 22 is provided with a screw 221. One end of the screw 221 is fixed on the fixing frame 401. The nut 231 is sleeved on the outside of the screw 221. The motor 21 drives the rotating cylinder 22 to rotate.
[0044] like Figure 1-9As shown, in a preferred embodiment of the present invention, the rotating mechanism includes a power component 31, a transmission column 34, and a turntable 32. Both the rotating rod 30 and the rotating tube 29 are provided with turntables 32. A gear disk 36 is provided on the side of each of the two turntables 32 that is close to each other. A fixed plate 35 is provided inside the fixed cylinder 19. The transmission column 34 is rotatably mounted on the fixed plate 35. Gear teeth 33 are provided between the two transmission columns 34, and the gear teeth 33 mesh with the gear disk 36. The power component 31 is provided inside the fixed cylinder 19. The rotation of the power component 31... The end is connected to the rotating rod 30. The power component 31 is a micro motor or motor that can drive the rotating rod 30 to rotate. When the power component 31 is started, the rotating rod 30 drives the gear disk 36 on it to rotate. Through the gear teeth 33 meshing with it, the transmission column 34 is driven to rotate. The gear teeth 33 on the two transmission columns 34 mesh with each other, so that the other set of transmission columns 34 rotates in the opposite direction, driving the gear teeth 33 meshing with them to rotate, and then driving the rotating tube 29 to rotate in the opposite direction, ensuring that the two sets of crushing blades 28 installed at the ends of the rotating rod 30 and the rotating tube 29 form an efficient counter-rotating shearing motion.
[0045] like Figure 1-2 As shown, in a preferred embodiment of the present invention, the support frame 2 is provided with a rotating shaft 10, and both rotating shafts 10 are connected to the rotating ring 3. The rotating ring 3 is provided with a handle 301 on the outside, and a chuck 11 is provided on the outside of the rotating shaft 10. The chuck 11 is provided with a plurality of slots 111. The support frame 2 is provided with an installation groove 201. A locking block 12 is provided inside the installation groove 201. The locking block 12 passes into the slot 111. After the rotating ring 3 rotates, the chuck 11 is fixed by the locking block 12.
[0046] like Figure 1-2 As shown, in a preferred embodiment of the present invention, the base 1 is provided with a column 7 on its outside, a horizontal plate 8 is provided between the two columns 7, and the processing cylinder 5 is provided on the horizontal plate 8.
[0047] like Figure 1-4 As shown, in a preferred embodiment of the present invention, the top of the processing cylinder 5 is provided with a feed inlet 509, and the top of the processing cylinder 5 is provided with a drive motor 9, the rotating end of the drive motor 9 being connected to the movable rod 501.
[0048] The above embodiments of the present invention provide a high-efficiency crushing device for agricultural product processing. Agricultural raw materials to be processed are fed into the feed inlet 509. The drive motor 9 drives the movable rod 501 to rotate. The material undergoes preliminary crushing pretreatment through the synergistic action of the crushing disc 504 and the fixed teeth 502. The pretreated material falls into the crushing cylinder 4, and the drive motor 9 is stopped. The rotating cylinder 22 drives the transmission plate 15 downwards via the transmission rod 20. The flap remains horizontal under the reaction force of the material, continuously squeezing the material through the screen 25. The rotating rod 30 and the rotating tube 29 rotate in opposite directions, driving two sets of crushing blades 28 to form a counter-rotating shearing action. The crushed material falls into the collection cylinder 17 for temporary storage. When finer crushing is required, the relative positions of the two sets of screens 25 are adjusted by adjusting rod 26 to reduce the effective filtration aperture. The rotating ring 3 is rotated by handle 301, and the locking block 12 is locked into the corresponding slot 111 of chuck 11 to lock the position of crushing cylinder 4. The rotation of support plate 23 drives moving cylinder 18 to move, which drives pressure plate 27 to squeeze the material in collection cylinder 17. The material is then finely crushed again by crushing blades 28 rotating in the opposite direction. The crushed material falls back into crushing cylinder 4, slides out along the inclined groove of transmission plate 15, and is collected by collection box 13.
[0049] The above description is merely a specific embodiment of this disclosure, but the scope of protection of this disclosure is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this disclosure should be included within the scope of protection of this disclosure. Therefore, the scope of protection of this disclosure should be determined by the scope of the claims.
Claims
1. A high efficiency grinding device for agricultural product processing comprising a base, characterized in that, Also include: The crushing assembly comprises a crushing cylinder arranged above the base, a collecting cylinder arranged below the crushing cylinder, and crushing blades inside the collecting cylinder, the top of the base is provided with a support frame, a rotating ring is rotatably arranged between the two support frames, the crushing cylinder is arranged inside the rotating ring, the bottom of the crushing cylinder is provided with a fixing frame, a rotating cylinder is arranged at the center position of the fixing frame, a connecting plate is arranged outside the rotating cylinder, the collecting cylinder is connected with the rotating cylinder, a fixed cylinder is arranged on the connecting plate, an active cylinder is slidably arranged outside the fixed cylinder, one end of the active cylinder penetrates into the inside of the collecting cylinder and is provided with a pressing plate, a rotating rod is arranged inside the fixed cylinder, a rotating tube is rotatably arranged outside the rotating rod, the rotating tube and the rotating rod are both arranged to penetrate out of the fixed cylinder and are provided with crushing blades; The screen assembly comprises two groups of screens arranged on the fixing frame, an adjusting rod arranged outside the screens, and a transmission plate arranged inside the crushing cylinder, the adjusting rod is slidably arranged on the outer wall of the crushing cylinder, the collecting cylinder is in contact with the screens, the inside of the crushing cylinder is provided with a transmission rod, one end of the transmission rod is provided with a transmission plate; The pretreatment assembly comprises a treatment cylinder arranged above the crushing cylinder, a rotating disc and a crushing disc arranged inside the treatment cylinder, and a plurality of pressing blocks arranged outside the crushing disc, the center position of the treatment cylinder is provided with a movable rod, the rotating disc and the crushing disc are both arranged outside the movable rod, the outside of the movable rod is provided with a cam matched with the crushing disc, the top of the crushing disc is provided with a guide cylinder, and a plurality of fixed teeth are arranged on the inner wall of the treatment cylinder; The driving mechanism is connected with the transmission rod, and the material in the crushing cylinder is extruded to pass through the screen by driving the transmission plate to move; The rotating mechanism is installed inside the fixed cylinder for driving the crushing blades to rotate and crushing the material passing through the screen; The driving mechanism comprises a support plate, a motor and a mounting frame, the bottom of the crushing cylinder is provided with a mounting frame, the mounting frame is provided with a motor, the rotating end of the motor is connected with the rotating cylinder, the outside of the movable cylinder is provided with a support plate, one end of the support plate penetrates into the inside of the rotating cylinder and is provided with a nut, the inside of the rotating cylinder is provided with a screw rod, and the nut is sleeved outside the screw rod; The rotating mechanism comprises a power member, a transmission column and a rotating disc, the outside of the rotating rod and the rotating tube is provided with a rotating disc, one side of the two rotating discs close to each other is provided with a gear disc, the inside of the fixed cylinder is provided with a fixed plate, the fixed plate is rotatably provided with a transmission column, the two transmission columns are provided with intermeshing teeth therebetween, the teeth are engaged with the gear disc, the inside of the fixed cylinder is provided with a power member, and the rotating end of the power member is connected with the rotating rod; The support frame is provided with a rotating shaft, the two rotating shafts are connected with the rotating ring, the outside of the rotating ring is provided with a handle, the outside of the rotating shaft is provided with a chuck, and the chuck is provided with a plurality of clamping grooves; The support frame is provided with a mounting groove, and the inside of the mounting groove is provided with a clamping block which penetrates into the inside of the clamping groove.
2. The high efficiency grinding device for agricultural product processing according to claim 1, characterized by The outside of the base is provided with a stand, the two stands are provided with a horizontal plate, and the treatment cylinder is arranged on the horizontal plate.
3. The high efficiency comminution device for processing agricultural products according to claim 2, characterized by The processing cylinder top is provided with a feeding port, and the processing cylinder top is provided with a driving motor, and the rotating end of the driving motor is connected with a movable rod.
Citation Information
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