Soybean milk powder screening device
Through the cooperation of brackets, rotating shafts, cams, baffles, L-shaped rods and scrapers, the accumulation problem caused by untimely screening in soy milk powder screening equipment is solved, and the multi-level screening method is used to improve the screening efficiency and production efficiency of soy milk powder.
Patent Information
- Application Number
- CN202421863916.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-02
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-08-02
AI Technical Summary
When the existing soy milk powder screening equipment is not screened in time, it will cause soy milk powder to accumulate at the bottom of the feed port, affecting production efficiency.
The combination of bracket, rotation shaft, cam, baffle, L-shaped rod and scraper is adopted to drive the scraper to reciprocate at the bottom of the inner cavity of the first feeding box through the motor, evenly spread the soy milk powder, and improve screening efficiency through multi-stage screening, including screen screening of the first and second feeding boxes.
The uniform spread and multi-level screening of soy milk powder are achieved, which improves production efficiency and reduces the loss of soy milk powder.
Smart Images

Figure CN223184949U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of soy milk powder processing, in particular to a soy milk powder screening device. Background Art
[0002] Soy milk powder is a powdered instant drink made from soybeans after drying, peeling and degerming (low in purine), fine grinding, residue removal, fishy removal, and enzyme inactivation. This product is healthy, nutritious and convenient, and mainly contains protein, fat, carbohydrates, phosphorus, iron, calcium, vitamins, lecithin, anthocyanins and other nutrients.
[0003] During the production process of soy milk powder, impurities are often produced due to incomplete refining or grinding. Existing soy milk powder screening equipment often causes soy milk powder to accumulate at the bottom of the feed port due to untimely screening when screening impurities, thereby affecting production efficiency. Utility Model Content
[0004] In order to solve the problems existing in the background technology, the utility model provides a soy milk powder screening device, which solves the problem that the soy milk powder screening equipment usually accumulates at the bottom of the feed port due to untimely screening when screening impurities, thereby affecting production efficiency.
[0005] In response to the problems in the prior art, the utility model provides a soy milk powder screening device, comprising a bracket, a rotating shaft, a cam, a baffle, an L-shaped rod and a scraper. The bracket is welded from several transverse and longitudinal steel plates. The top of the rotating shaft is fixedly connected to the bottom of the upper bracket, the middle part of the cam is fixedly connected to the circumferential outer wall of the rotating shaft, the baffles are symmetrically arranged on the left and right sides of the cam, one end of the L-shaped rod is fixedly connected to the outer wall of one side of the two baffles, and the outer wall of one side of the scraper is connected to the other end of the two L-shaped rods.
[0006] Specifically, the bottom of the bracket is fixedly connected to the top of the support plate, the right side of the top of the support plate is fixedly connected to a motor, the motor output shaft is fixedly connected to one end of the camshaft, the other end of the camshaft is rotatably connected to the left bracket, and the outer circumferential wall of one end of the camshaft close to the motor is fixedly connected to a first bevel gear, the first bevel gear is meshed with a second bevel gear, and the top of the second bevel gear is fixedly connected to the bottom of the rotating shaft.
[0007] Specifically, the left side of the top of the support plate is fixedly connected to the bottom of four telescopic rods, the tops of the four telescopic rods are fixedly connected to the discharge box, the outer walls of the four telescopic rods are all provided with springs, the top of the discharge box is fixedly connected to the second distribution box, and the top of the second distribution box is fixedly connected to the first distribution box.
[0008] Specifically, a limiting groove is provided on one side wall of the first material distribution box, and the two L-shaped rods pass through the limiting groove. The left and right side walls of the limiting groove are respectively fixedly connected to one end of the limiting telescopic rod, and the other end of the limiting telescopic rod is respectively fixedly connected to the side wall of the L-shaped rod, and a limiting spring is sleeved on the circumferential outer wall of the limiting telescopic rod.
[0009] Specifically, the left side of the top of the first distribution box is fixedly connected to the feed bin, the left sides of the front and rear side walls of the first distribution box are fixedly connected to the discharge ports, and the bottom of the inner cavity of the first distribution box is evenly distributed with first screens.
[0010] Specifically, the middle of the front side wall of the second distribution box is fixedly connected with a discharge port, the bottom of the inner cavity of the second distribution box is evenly distributed with second screens, and the right side of the front side wall of the discharge box is fixedly connected with a discharge port.
[0011] Beneficial effects of the utility model:
[0012] (1) The utility model adopts the cooperation of a bracket, a rotating shaft, a cam, a baffle, an L-shaped rod and a scraper. First, the soy milk powder is put into the interior of the first distribution box through the feed bin, and then the motor is started. The motor drives the scraper to reciprocate on the upper surface of the bottom of the inner cavity of the first distribution box, thereby achieving uniform spreading of the soy milk powder accumulated under the feed bin and improving production efficiency.
[0013] (2) The camshaft is driven to rotate by the motor, and the camshaft drives the discharge box, the second distribution box and the first distribution box to vibrate, so that the soy milk powder screened in the first distribution box can pass through the first screen and fall into the second distribution box, and the soy milk powder screened in the second distribution box can pass through the second screen and fall into the discharge box. The multi-stage screening method is used to improve the screening efficiency of the soy milk powder. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0015] Figure 1 It is a schematic diagram of the overall structure of the utility model;
[0016] Figure 2 It is a top view of the utility model;
[0017] Figure 3 For this utility model Figure 2 Schematic diagram of the enlarged structure at A in the middle;
[0018] Figure 4 This is a schematic diagram of the separation structure of the first distribution box and the second distribution box in the present utility model;
[0019] Figure 5 For this utility model Figure 4Schematic diagram of the enlarged structure at point B in the middle.
[0020] In the figure: 1. bracket; 2. rotating shaft; 3. cam; 4. baffle; 5. L-shaped rod; 6. scraper; 7. support plate; 8. telescopic rod; 9. discharge box; 10. spring; 11. second distribution box; 12. first distribution box; 13. motor; 14. camshaft; 15. first bevel gear; 16. second bevel gear; 17. limiting groove; 18. limiting telescopic rod; 19. limiting spring; 20. feed bin; 21. discharge port; 22. first screen; 23. second screen. DETAILED DESCRIPTION
[0021] In order to make the technical methods, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.
[0022] like Figure 1-5 The soy milk powder screening device shown in the figure includes a bracket 1, a rotating shaft 2, a cam 3, a baffle 4, an L-shaped rod 5 and a scraper 6. The bracket 1 is welded by several transverse and longitudinal steel plates. The top of the rotating shaft 2 is fixedly connected to the bottom of the upper bracket 1, the middle part of the cam 3 is fixedly connected to the circumferential outer wall of the rotating shaft 2, the baffle 4 is symmetrically arranged on the left and right sides of the cam 3, one end of the L-shaped rod 5 is respectively fixedly connected to the outer wall of one side of the two baffles 4, and the outer wall of one side of the scraper 6 is respectively connected to the other end of the two L-shaped rods 5. The bottom of the bracket 1 is fixedly connected to the top of the support plate 7. The right side of the top of the support plate 7 is fixedly connected to a motor 13, and the motor 13 outputs The output shaft is fixedly connected to one end of the camshaft 14, and the other end of the camshaft 14 is rotatably connected to the left bracket 1. The outer circumferential wall of the camshaft 14 at one end close to the motor 13 is fixedly connected to a first bevel gear 15, and the first bevel gear 15 is engaged with a second bevel gear 16. The top of the second bevel gear 16 is fixedly connected to the bottom of the rotating shaft 2. Through the cooperation of the bracket, rotating shaft, cam, baffle, L-shaped rod and scraper, the soy milk powder is first put into the interior of the first distribution box through the feed bin, and then the motor is started. The motor drives the scraper to reciprocate on the upper surface of the bottom of the inner cavity of the first distribution box, thereby achieving uniform spreading of the soy milk powder accumulated under the feed bin and improving production efficiency.
[0023] The top of the first material distribution box 12 is fixedly connected to the second material distribution box 11, and the top of the second material distribution box 11 is fixedly connected to the first material distribution box 12. A limiting groove 17 is provided on one side wall of the first material distribution box 12. The two L-shaped rods 5 pass through the limiting groove 17, and the left and right side walls of the limiting groove 17 are respectively fixedly connected to one end of the limiting telescopic rod 18, and the other end of the limiting telescopic rod 18 is respectively fixedly connected to the side wall of the L-shaped rod 5. The outer wall of the circumference of the limiting telescopic rod 18 is sleeved with a limiting spring 19, and the left side of the top of the first material distribution box 12 is fixedly connected to the feed bin 20, and the left sides of the front and rear side walls of the first material distribution box 12 are fixedly connected to the discharge port. 21. A first screen 22 is evenly distributed on the bottom of the inner cavity of the first distribution box 12, and a discharge port 21 is fixedly connected to the middle of the front side wall of the second distribution box 11. A second screen 23 is evenly distributed on the bottom of the inner cavity of the second distribution box 11, and the right side of the front side wall of the discharge box 9 is fixedly connected to the discharge port 21. The diameter of the first screen 22 is larger than the diameter of the second screen 23. The camshaft 14 is driven to rotate by the motor 13, and the camshaft 14 drives the discharge box 9, the second distribution box 11 and the first distribution box 12 to vibrate, so as to realize that the soy milk powder screened in the first distribution box 12 falls into the second distribution box 11 through the first screen 22, and the soy milk powder screened in the second distribution box 11 falls into the discharge box 9 through the second screen 23. The multi-stage screening method is adopted to improve the screening efficiency of the soy milk powder, and the impurities and large-particle soy milk powder screened out by the second distribution box 11 and the first distribution box 12 are discharged through the discharge port 21, thereby reducing the loss of soy milk powder.
[0024] (1) When in use, first, soybean milk powder is put into the first distribution box 12 through the feeding bin 20, and then the motor 13 is started. The motor 13 drives the first bevel gear 15 to rotate, and the first bevel gear drives the second bevel gear 16 to rotate. The second bevel gear 16 drives the rotating shaft 2 to rotate, and the rotating shaft 2 drives the cam 3 to rotate. When the cam 3 rotates, the two ends of the cam contact the baffle 4 and push the baffle 4;
[0025] (2) When the cam 3 pushes the baffle 4, the L-shaped rod 5 fixedly connected to the baffle 4 will also slide in the limit groove 17, and the L-shaped rod 5 drives the scraper 6 to move. The L-shaped rod 5 squeezes the limit telescopic rod 18 to shrink. The shrinkage of the limit telescopic rod 18 squeezes the limit spring 19. When the cam 3 rotates and does not contact the baffle 4, the limit spring 19 is reset under the action of the elastic force, thereby driving the scraper 6 to reciprocate.
[0026] (3) At this time, the motor 13 drives the camshaft 14 to rotate. When the camshaft 14 rotates, the telescopic rod 8 and the spring 10 between the discharge box 9 and the support plate 7 can be reciprocated, so that the soy milk powder screened in the first distribution box 12 can be dropped into the second distribution box 11 through the first screen 22, and the soy milk powder screened in the second distribution box 11 can be dropped into the discharge box 9 through the second screen 23. The multi-stage screening method is used to improve the screening efficiency of the soy milk powder, and the impurities screened by the second distribution box 11 and the first distribution box 12 and the large-particle soy milk powder are discharged through the discharge port 21, thereby reducing the loss of soy milk powder.
[0027] Working principle: When in use, first put the soy milk powder into the first distribution box 12 through the feeding bin 20, and then start the motor 13. The motor 13 drives the first bevel gear 15 to rotate, and the first bevel gear drives the second bevel gear 16 to rotate. The second bevel gear 16 drives the rotating shaft 2 to rotate, and the rotating shaft 2 drives the cam 3 to rotate. When the cam 3 rotates, the two ends of the cam will push the baffle 4 when they contact with the baffle 4. When the cam 3 pushes the baffle 4, the L-shaped rod 5 fixedly connected to the baffle 4 will also slide in the limiting groove 17. The L-shaped rod 5 drives the scraper 6 to move, and the L-shaped rod 5 squeezes the limiting telescopic rod 18 to contract. When the limiting telescopic rod 18 contracts, it squeezes the limiting spring 19. When the cam 3 rotates and does not contact the baffle 4 When touched, the limit spring 19 is reset under the action of elastic force, so that the scraper 6 can be driven to reciprocate. At this time, the motor 13 drives the camshaft 14 to rotate. When the camshaft 14 rotates, the telescopic rod 8 and the spring 10 between the discharge box 9 and the support plate 7 can be made to reciprocate, so that the soy milk powder screened in the first distribution box 12 can be dropped into the second distribution box 11 through the first screen 22, and the soy milk powder screened in the second distribution box 11 can be dropped into the discharge box 9 through the second screen 23. The multi-stage screening method is adopted to improve the screening efficiency of the soy milk powder, and the impurities screened out by the second distribution box 11 and the first distribution box 12 and the large-particle soy milk powder are discharged through the discharge port 21, thereby reducing the loss of soy milk powder.
Claims
1. A soy milk powder screening device, characterized in that: It comprises a bracket (1), wherein the bracket (1) is welded from a plurality of transverse and longitudinal steel plates; A rotating shaft (2), the top of the rotating shaft (2) being fixedly connected to the bottom of the upper bracket (1); A cam (3), wherein the middle portion of the cam (3) is fixedly connected to the circumferential outer wall of the rotating shaft (2); a baffle (4), the baffle (4) being symmetrically arranged on the left and right sides of the cam (3); An L-shaped rod (5), one end of the L-shaped rod (5) being fixedly connected to one side outer wall of each of the two baffles (4); A scraper (6), wherein an outer wall of one side of the scraper (6) is respectively connected to the other ends of the two L-shaped rods (5).
2. A soymilk powder screening device according to claim 1, characterized in that: The bottom of the bracket (1) is fixedly connected to the top of the support plate (7), the right side of the top of the support plate (7) is fixedly connected to a motor (13), the output shaft of the motor (13) is fixedly connected to one end of a camshaft (14), the other end of the camshaft (14) is rotatably connected to the left bracket (1), the outer wall of the circumference of one end of the camshaft (14) close to the motor (13) is fixedly connected to a first bevel gear (15), the first bevel gear (15) is meshed with a second bevel gear (16), and the top of the second bevel gear (16) is fixedly connected to the bottom of the rotating shaft (2).
3. The soymilk powder screening device according to claim 2, characterized in that: The left side of the top of the support plate (7) is fixedly connected to the bottom of four telescopic rods (8), the tops of the four telescopic rods (8) are fixedly connected to a discharge box (9), the outer circumferential walls of the four telescopic rods (8) are all sleeved with springs (10), the top of the discharge box (9) is fixedly connected to a second distribution box (11), and the top of the second distribution box (11) is fixedly connected to a first distribution box (12).
4. The soymilk powder screening device according to claim 3, characterized in that: A limiting groove (17) is provided on one side wall of the first material distribution box (12), and the two L-shaped rods (5) both pass through the limiting groove (17). The left and right side walls of the limiting groove (17) are respectively fixedly connected to one end of a limiting telescopic rod (18), and the other end of the limiting telescopic rod (18) is respectively fixedly connected to the side wall of the L-shaped rod (5). A limiting spring (19) is sleeved on the circumferential outer wall of the limiting telescopic rod (18).
5. The soymilk powder screening device according to claim 4, characterized in that: The left side of the top of the first distribution box (12) is fixedly connected to a feed bin (20), the left sides of the front and rear side walls of the first distribution box (12) are fixedly connected to discharge ports (21), and the bottom of the inner cavity of the first distribution box (12) is evenly distributed with first screens (22).
6. The soymilk powder screening device according to claim 5, characterized in that: The middle portion of the front side wall of the second distribution box (11) is fixedly connected to a discharge port (21), the bottom of the inner cavity of the second distribution box (11) is evenly distributed with second screens (23), and the right side of the front side wall of the discharge box (9) is fixedly connected to a discharge port (21).