Precision filtering device for plateau plant extracting solution
By designing an automated precision filtration device for plateau plant extracts, an electric cylinder and a motor-driven threaded rod are used to automate the installation, cleaning, and heating and drying of the filter screen. This solves the problems of insufficient filtration accuracy and easy damage to the filter screen in traditional filtration devices, achieving efficient and precise filtration and high production efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 西藏米利生物科技有限公司
- Filing Date
- 2025-05-08
- Publication Date
- 2026-04-10
AI Technical Summary
Traditional filtration devices lack sufficient filtration precision when processing extracts from highland plants, and the filter screens are easily damaged due to manual disassembly and cleaning. After long-term operation, the accumulation of fiber impurities leads to pore blockage, affecting production efficiency.
A precision filtration device for plateau plant extracts was designed, employing a stabilizing mechanism, a moving mechanism, a sliding mechanism, and a screening mechanism. The device achieves automated installation, cleaning, and heating and drying of the filter screen through an electric cylinder and a threaded rod driven by a motor, avoiding damage to the filter screen by manual operation, and screening impurities step by step through a multi-stage filtration system.
It achieves efficient and precise filtration, and the automated cleaning and drying process avoids filter clogging, improving production efficiency and filtration accuracy.
Smart Images

Figure CN224100147U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the field of filter equipment, specifically relates to a highland plant extract precision filter equipment. BACKGROUND
[0002] Although the traditional filter equipment can meet the basic filtering requirement, when treating the highland plant extract, it is often difficult to realize the efficient and precise filtering effect because the filtering precision of these filter equipment is insufficient.
[0003] In the prior art, the filter screen of the device needs to be manually disassembled and cleaned, improper cleaning can easily damage the filter screen, and after long-term operation, the accumulation of fiber impurities causes the filter screen pores to be blocked, affecting the production efficiency. UTILITY MODEL CONTENTS
[0004] In order to overcome the problem that the filter screen of the device needs to be manually disassembled and cleaned in the prior art, improper cleaning can easily damage the filter screen, and after long-term operation, the accumulation of fiber impurities causes the filter screen pores to be blocked, affecting the production efficiency, therefore, a highland plant extract precision filter equipment is proposed.
[0005] The technical scheme of the utility model is as follows: a highland plant extract precision filter equipment, comprising a stable mechanism and a first moving mechanism; the upper end of the stable mechanism is provided with the first moving mechanism, one side of the first moving mechanism is provided with a second moving mechanism, one side of the second moving mechanism is provided with a sliding mechanism, the inside of the sliding mechanism is provided with a screening mechanism; the stable mechanism comprises a supporting plate, a heating box, an extension plate and a T-shaped slot hole; the upper end of the supporting plate is fixedly connected with the heating box, the upper end of the heating box is fixedly connected with the extension plate, and the lower end of the extension plate is provided with the T-shaped slot hole; the first moving mechanism comprises a first electric cylinder, a T-shaped sliding block, a second electric cylinder, a connecting plate, a first fixed block and a first slot hole; the inner wall of the T-shaped slot hole is fixedly connected with the first electric cylinder, the output end of the first electric cylinder is fixedly connected with the T-shaped sliding block, the lower end of the T-shaped sliding block is fixedly connected with the second electric cylinder, the output end of the second electric cylinder is fixedly connected with the connecting plate, the lower end of the connecting plate is fixedly connected with the first fixed block, and the side of the first fixed block is provided with the first slot hole.
[0006] Further, the second moving mechanism comprises a first motor, a second fixed block, a second slot hole, a third electric cylinder, a third fixed block, a third slot hole, a second motor, a fourth fixed block and a threaded rod; the inner wall of the first slot hole is fixedly connected with the first motor, the output end of the first motor is fixedly connected with the second fixed block, the other end of the second fixed block is provided with the second slot hole, the first motor is fixedly connected to the inner wall of the second slot hole, one side of the second fixed block is fixedly connected with the third electric cylinder, the output end of the third electric cylinder is fixedly connected with the third fixed block, the other side of the third fixed block is provided with the third slot hole, the inner wall of the third slot hole is fixedly connected with the second motor, the output end of the second motor is fixedly connected with the fourth fixed block, and the other side of the fourth fixed block is fixedly connected with the threaded rod.
[0007] Further, the stabilizing mechanism further comprises a first through hole, a support column and a second through hole; the upper end of the support plate is provided with the first through hole, and the lower end of the support plate is fixedly connected with the three support columns; and the two sides of the heating box are provided with the second through holes.
[0008] Further, the sliding mechanism comprises a protective cover, a funnel block, a third through hole, a limiting block and a fifth slot; the inner wall of the first through hole is fixedly connected with the protective cover, the upper and lower ends of the protective cover are fixedly connected with the funnel blocks, and the two funnel blocks are symmetrically arranged about the center of the protective cover; a plurality of third through holes are vertically and penetratingly arranged on the end of the protective cover close to the heating box, the inner wall of the protective cover is fixedly connected with the limiting block at one end, and the side wall of the limiting block is provided with the fifth slot.
[0009] Further, the screening mechanism comprises a square sliding block, a filter screen, a storage box, an ultrasonic cleaner and a screw hole; the inner wall of each of the plurality of fifth slots is slidingly installed with the square sliding block, one side of each of the plurality of square sliding blocks is fixedly connected with the filter screen, the lower end of the square sliding block is provided with the storage box, the upper end of the support plate is provided with the ultrasonic cleaner, and the end of the filter screen close to the fifth slot is provided with the screw hole.
[0010] Further, the mesh size of the plurality of filter screens decreases in sequence from top to bottom in the vertical direction, and the axes of the second through hole and the third through hole coincide with the axis of the inner cavity of the heating box.
[0011] Further, the screw hole is matched with the threaded rod, the third through hole is fixedly connected with a rubber sheet inside, the height of the second through hole and the third through hole is equal to the height of the filter screen, and the length of the second through hole and the third through hole is equal to the length of the filter screen.
[0012] The beneficial effects of this utility model are as follows: First, the storage box is placed at the lower end of the first through hole. The filter screen is slidably installed inside the protective cover and screw hole through the third through hole. Then, the material to be filtered is poured into the funnel block at the upper end. The material then passes through multiple filter screens, which filter out impurities. Next, the first electric cylinder is activated, pushing the T-shaped sliding block to slide inside the T-shaped slot, bringing the threaded rod closer to the filter screen. Then, the second electric cylinder is activated, adjusting the height of the threaded rod so that it can pass through the second and third through holes. Next, the first motor is activated, rotating the vertical angle of the threaded rod to align it with the screw hole. Then, the third electric cylinder is activated, pushing the threaded rod closer to the screw hole. Finally, the second motor is activated, rotating the threaded rod to move the first moving mechanism and the filter screen... The filter screens are threaded together, and then the output end of the third electric cylinder is retracted to pull the filter screen through the second and third through holes to the top of the ultrasonic cleaner. Then, the first motor is turned on to rotate the filter screen, and the second electric cylinder is turned on to move the filter screen downwards and place it in the ultrasonic cleaner. The ultrasonic cleaner is turned on to clean the filter screen. After cleaning, the second electric cylinder is retracted to move the filter screen upwards, and the first motor is turned on to rotate the filter screen back to its original position. Then, the heating box is turned on. When the third electric cylinder pushes the filter screen into the heating box, the heating box heats and dries the cleaned filter screen to prevent the cleaning water from contaminating the filter material. Finally, the cleaned filter screen is slidably installed inside the protective cover and screw holes through the third through hole. Attached Figure Description
[0013] Figure 1 The diagram shown is a three-dimensional structural schematic of this utility model;
[0014] Figure 2 The diagram shown is a cross-sectional perspective view of the stabilizing mechanism of this utility model.
[0015] Figure 3 The diagram shown is a three-dimensional structural schematic of the first moving mechanism of this utility model.
[0016] Figure 4 The diagram shown is a three-dimensional structural schematic of the second moving mechanism of this utility model;
[0017] Figure 5 The diagram shown is a cross-sectional three-dimensional structural schematic of the sliding mechanism of this utility model;
[0018] Figure 6 The diagram shown is a three-dimensional structural schematic of the screening mechanism of this utility model.
[0019] The marks in the drawings are: 1, a stabilizing mechanism; 11, a support plate; 12, a first through hole; 13, a support column; 14, a heating box; 15, an extension plate; 16, a T-shaped slot hole; 17, a second through hole; 2, a first moving mechanism; 21, a first electric cylinder; 22, a T-shaped sliding block; 23, a second electric cylinder; 24, a connecting plate; 25, a first fixed block; 26, a first slot hole; 3, a second moving mechanism; 31, a first motor; 32, a second fixed block; 33, a second slot hole; 34, a third electric cylinder; 35, a third fixed block; 36, a third slot hole; 37, a second motor; 38, a fourth fixed block; 39, a threaded rod; 4, a sliding mechanism; 41, a protective cover; 42, a funnel block; 43, a third through hole; 44, a limiting block; 45, a fifth slot hole; 5, a screening mechanism; 51, a square sliding block; 52, a filter screen; 53, a storage box; 54, an ultrasonic cleaner; 55, a threaded hole. DETAILED DESCRIPTION
[0020] The utility model is further explained below in combination with the drawings and examples.
[0021] Please refer to Figures 1-6 The utility model provides a kind of highland plant extract liquid precision filtering device, including stabilizing mechanism 1 and first moving mechanism 2;The upper end of stabilizing mechanism 1 is provided with first moving mechanism 2, one side of first moving mechanism 2 is provided with second moving mechanism 3, one side of second moving mechanism 3 is provided with sliding mechanism 4, and the inside of sliding mechanism 4 is provided with screening mechanism 5;Stabilizing mechanism 1 includes support plate 11, heating box 14, extension plate 15 and T-shaped slot hole 16;The upper end of support plate 11 is fixedly connected with heating box 14, the upper end of heating box 14 is fixedly connected with extension plate 15, and the lower end of extension plate 15 is provided with T-shaped slot hole 16;First moving mechanism 2 includes first electric cylinder 21, T-shaped sliding block 22, second electric cylinder 23, connecting plate 24, first fixed block 25 and first slot hole 26;The inner wall side of T-shaped slot hole 16 is fixedly connected with first electric cylinder 21, the output end of first electric cylinder 21 is fixedly connected with T-shaped sliding block 22, the lower end of T-shaped sliding block 22 is fixedly connected with second electric cylinder 23, the output end of second electric cylinder 23 is fixedly connected with connecting plate 24, the lower end of connecting plate 24 is fixedly connected with first fixed block 25, and one side of first fixed block 25 is provided with first slot hole 26.
[0022] In use, first, the storage box 53 is placed at the lower end of the first through hole 12, the filter screen 52 is slidably installed inside the protective cover 41 and the screw hole 55 through the third through hole 43, then the material to be filtered is poured into the funnel block 42 at the upper end, then the material is filtered through the plurality of filter screens 52, the plurality of filter screens 52 screen out the impurities in the material, then the first electric cylinder 21 is opened, the first electric cylinder 21 pushes the T-shaped sliding block 22 to slide inside the T-shaped slot hole 16, the threaded rod 39 approaches the filter screen 52, then the second electric cylinder 23 is opened, the height of the threaded rod 39 is adjusted, the threaded rod 39 can pass through the second through hole 17 and the third through hole 43, then the first motor 31 is opened, the vertical angle of the threaded rod 39 is rotated, the threaded rod 39 is aligned with the screw hole 55, then the third electric cylinder 34 is opened, the third electric cylinder 34 pushes the threaded rod 39 to approach the screw hole 55, finally the second motor 37 is opened, the first moving mechanism 2 and the filter screen 52 are screwed together by rotating the threaded rod 39, then the filter screen 52 is pulled to the upper end of the ultrasonic cleaner 54 through the second through hole 17 and the third through hole 43 by retracting the output end of the third electric cylinder 34, then the angle of the filter screen 52 is rotated by opening the first motor 31, then the filter screen 52 is moved downward by opening the second electric cylinder 23, the filter screen 52 is placed in the ultrasonic cleaner 54, the ultrasonic cleaner 54 is opened to clean the filter screen 52, when the cleaning is completed, the filter screen 52 is moved upward by retracting the second electric cylinder 23, the filter screen 52 is rotated to the original position by opening the first motor 31, then the heating box 14 is opened, when the third electric cylinder 34 pushes the filter screen 52 into the heating box 14, the heating box 14 heats and dries the cleaned filter screen 52 to avoid pollution of the filtered material by cleaning water, then the cleaned filter screen 52 is slidably installed inside the protective cover 41 and the screw hole 55 through the third through hole 43.
[0023] Please refer to Figure 4In this embodiment, the second moving mechanism 3 comprises a first motor 31, a second fixed block 32, a second slot hole 33, a third electric cylinder 34, a third fixed block 35, a third slot hole 36, a second motor 37, a fourth fixed block 38 and a threaded rod 39; the inner wall of the first slot hole 26 is fixedly connected with the first motor 31, the output end of the first motor 31 is fixedly connected with the second fixed block 32, the other end of the second fixed block 32 is provided with the second slot hole 33, the first motor 31 is fixedly connected with the inner wall of the second slot hole 33, one side of the second fixed block 32 is fixedly connected with the third electric cylinder 34, the output end of the third electric cylinder 34 is fixedly connected with the third fixed block 35, the other side of the third fixed block 35 is provided with the third slot hole 36, the inner wall of the third slot hole 36 is fixedly connected with the second motor 37, the output end of the second motor 37 is fixedly connected with the fourth fixed block 38, the other side of the fourth fixed block 38 is fixedly connected with the threaded rod 39, and the rotating direction of the second motor 37 is used to make the filter screen 52 placed into the inside of the ultrasonic cleaner 54.
[0024] Please refer to Figure 2 In this embodiment, the stable mechanism 1 further comprises a first through hole 12, a support column 13 and a second through hole 17; the upper end of the support plate 11 is provided with the first through hole 12, the lower end of the support plate 11 is fixedly connected with three support columns 13, and the two sides of the heating box 14 are provided with the second through hole 17 in penetration, so that the heating box 14 can bake the moisture of the cleaned filter screen 52.
[0025] Please refer to Figure 5 In this embodiment, the sliding mechanism 4 comprises a protective cover 41, a funnel block 42, a third through hole 43, a limiting block 44 and a fifth slot hole 45; the inner wall of the first through hole 12 is fixedly connected with the protective cover 41, the upper and lower ends of the protective cover 41 are fixedly connected with the funnel blocks 42, and the two funnel blocks 42 are symmetrically arranged at the center of the protective cover 41; a plurality of third through holes 43 are provided in penetration in the vertical direction of one end of the protective cover 41 close to the heating box 14, one end of the inner wall of the protective cover 41 is fixedly connected with the limiting block 44, and the side wall of the limiting block 44 is provided with the fifth slot hole 45, so that the protective cover 41 and the limiting block 44 can fix and limit the filter screen 52.
[0026] Please refer to Figure 6 In this embodiment, the screening mechanism 5 comprises a square sliding block 51, a filter screen 52, a storage box 53, an ultrasonic cleaner 54 and a threaded hole 55; the inner wall of each of the plurality of fifth slot holes 45 is slidably connected with the square sliding block 51, one side of each of the plurality of square sliding blocks 51 is fixedly connected with the filter screen 52, the lower end of the square sliding block 51 is provided with the storage box 53, the upper end of the support plate 11 is provided with the ultrasonic cleaner 54, one end of the filter screen 52 close to the fifth slot hole 45 is provided with the threaded hole 55, and the plurality of filter screens 52 are screened more carefully.
[0027] Please refer to Figure 6In the embodiment, the multiple filter screens 52 are arranged in the vertical direction, the mesh size of the filter screens decreases in sequence from top to bottom, and the axes of the second through hole 17 and the third through hole 43 coincide with the axis of the inner cavity of the heating box 14, so that large impurities can be filtered out in sequence.
[0028] Please refer to Figure 6 In the embodiment, the screw hole 55 is matched with the threaded rod 39, the third through hole 43 is fixedly connected with a rubber sheet, the height of the second through hole 17 and the third through hole 43 is equal to the height of the filter screen 52, and the length of the second through hole 17 and the third through hole 43 is equal to the length of the filter screen 52, so that the filter screen 52 can pass through the inside of the second through hole 17 and the third through hole 43.
[0029] Working principle: first, the storage box 53 is placed at the lower end of the first through hole 12, the filter screen 52 is slidably arranged in the inside of the protective cover 41 and the screw hole 55 through the third through hole 43, then the material to be filtered is poured into the funnel block 42 at the upper end, then the material is filtered through the multiple filter screens 52, the multiple filter screens 52 screen out the impurities in the material, then the first electric cylinder 21 is opened, the first electric cylinder 21 pushes the T-shaped sliding block 22 to slide in the T-shaped slot hole 16, so that the threaded rod 39 approaches the filter screen 52, then the second electric cylinder 23 is opened, the height of the threaded rod 39 is adjusted, so that the threaded rod 39 can pass through the second through hole 17 and the third through hole 43, then the first motor 31 is opened, the vertical angle of the threaded rod 39 is rotated, the threaded rod 39 is aligned with the screw hole 55, then the third electric cylinder 34 is opened, the third electric cylinder 34 pushes the threaded rod 39 to approach the screw hole 55, finally the second motor 37 is opened, the first moving mechanism 2 and the filter screen 52 are threadedly connected together by rotating the threaded rod 39, then the filter screen 52 is pulled to the upper end of the ultrasonic cleaner 54 through the second through hole 17 and the third through hole 43 by retracting the output end of the third electric cylinder 34, then the angle of the filter screen 52 is rotated by opening the first motor 31, then the filter screen 52 is moved downward by opening the second electric cylinder 23, the filter screen 52 is placed in the ultrasonic cleaner 54, the ultrasonic cleaner 54 is opened to clean the filter screen 52, when the cleaning is completed, the filter screen 52 is moved upward by retracting the second electric cylinder 23, the filter screen 52 is rotated to the original position by opening the first motor 31, then the heating box 14 is opened, when the third electric cylinder 34 pushes the filter screen 52 into the heating box 14, the heating box 14 heats and dries the cleaned filter screen 52 to avoid pollution of the filtered material by cleaning water, then the cleaned filter screen 52 is slidably arranged in the inside of the protective cover 41 and the screw hole 55 through the third through hole 43.
Claims
1. A high-plant extract liquid precision filtering device, characterized in that, The utility model provides a kind of stable mechanism (1) and first mobile mechanism (2) including;The upper end of stable mechanism (1) is provided with first mobile mechanism (2), one side of first mobile mechanism (2) is provided with second mobile mechanism (3), one side of second mobile mechanism (3) is provided with sliding mechanism (4), the inside of sliding mechanism (4) is provided with screening mechanism (5);Stable mechanism (1) includes support plate (11), heating box (14), extension plate (15) and T slot (16);The upper end of support plate (11) is fixedly connected with heating box (14), the upper end of heating box (14) is fixedly connected with extension plate (15), and the lower end of extension plate (15) is provided with T slot (16);First mobile mechanism (2) includes first electric cylinder (21), T sliding block (22), second electric cylinder (23), connecting plate (24), first fixed block (25) and first slot (26);The inner wall side of T slot (16) is fixedly connected with first electric cylinder (21), and the output end of first electric cylinder (21) is fixedly connected with T sliding block (22), and the lower end of T sliding block (22) is fixedly connected with second electric cylinder (23), and the output end of second electric cylinder (23) is fixedly connected with connecting plate (24), and the lower end of connecting plate (24) is fixedly connected with first fixed block (25), and one side of first fixed block (25) is provided with first slot (26).
2. The high altitude plant extract liquid precision filtering device according to claim 1, characterized in that, Second mobile mechanism (3) includes first motor (31), second fixed block (32), second slot (33), third electric cylinder (34), third fixed block (35), third slot (36), second motor (37), fourth fixed block (38) and threaded rod (39);The inner wall of first slot (26) is fixedly connected with first motor (31), and the output end of first motor (31) is fixedly connected with second fixed block (32), and the other end of second fixed block (32) is provided with second slot (33), and first motor (31) is fixedly connected in the inner wall of second slot (33), and one side of second fixed block (32) is fixedly connected with third electric cylinder (34), and the output end of third electric cylinder (34) is fixedly connected with third fixed block (35), and the other side of third fixed block (35) is provided with third slot (36), and the inner wall of third slot (36) is fixedly connected with second motor (37), and the output end of second motor (37) is fixedly connected with fourth fixed block (38), and the other side of fourth fixed block (38) is fixedly connected with threaded rod (39).
3. The high altitude plant extract liquid precision filtering device according to claim 1, characterized in that, Stable mechanism (1) further includes first through hole (12), support column (13) and second through hole (17);The upper end of support plate (11) is provided with first through hole (12), and the lower end of support plate (11) is fixedly connected with three support columns (13), and the both sides of heating box (14) are provided with second through hole (17).
4. The high plant extract liquid precision filtering device according to claim 3, characterized in that, The sliding mechanism (4) comprises a protective cover (41), a funnel block (42), a third through hole (43), a limiting block (44) and a fifth slot hole (45); the inner wall of the first through hole (12) is fixedly connected with the protective cover (41), the upper and lower ends of the protective cover (41) are fixedly connected with the funnel blocks (42), and the two funnel blocks (42) are symmetrically arranged at the center of the protective cover (41); a plurality of third through holes (43) are vertically arranged at one end of the protective cover (41) close to the heating box (14), one end of the inner wall of the protective cover (41) is fixedly connected with the limiting block (44), and the side wall of the limiting block (44) is provided with the fifth slot hole (45).
5. The high altitude plant extract liquid precision filtering device according to claim 4, characterized in that, The screening mechanism (5) comprises a square sliding block (51), a filter screen (52), a storage box (53), an ultrasonic cleaner (54) and a screw hole (55); the inner wall of each of the plurality of fifth slot holes (45) is slidably connected with the square sliding block (51), one side of each of the plurality of square sliding blocks (51) is fixedly connected with the filter screen (52), the lower end of the square sliding block (51) is provided with the storage box (53), the upper end of the supporting plate (11) is provided with the ultrasonic cleaner (54), and one end of the filter screen (52) close to the fifth slot hole (45) is provided with the screw hole (55).
6. The high altitude plant extract liquid precision filtering device according to claim 5, characterized in that, The plurality of filter screens (52) are arranged in a vertical direction, and the screen holes are sequentially reduced downwards, and the axes of the second through hole (17) and the third through hole (43) coincide with the axis of the inner cavity of the heating box (14).
7. The high altitude plant extract liquid precision filtering device according to claim 5, characterized in that, The screw hole (55) is matched with the threaded rod (39), the third through hole (43) is fixedly connected with a rubber sheet, the height of the second through hole (17) and the third through hole (43) is equal to the height of the filter screen (52), and the length of the second through hole (17) and the third through hole (43) is equal to the length of the filter screen (52).