A processing method for reducing beany smell of textured soybean protein

By combining the use of a cleaning box and a drying box, and utilizing baking soda stirring and air-drying structures, the problem of low efficiency in removing the beany odor of soy textured protein is solved, and the effects of rapid cleaning and drying are achieved.

CN117137153BActive Publication Date: 2025-09-23江苏石井磨房生物科技有限公司
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Patent Information

Application Number
CN202311132576.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-09-05
Publication Date
2025-09-23
Estimated Expiration
2043-09-05

AI Technical Summary

Technical Problem

Existing methods for reducing the beany flavor of textured soy protein are inefficient, with limited efficiency in soaking and kneading, and inconvenience in subsequent drying.

Method used

A processing device is used, including a sliding base, a cleaning box, a drying box and a stirring structure. After cleaning with baking soda, the material is quickly dried, and the air drying structure is combined to accelerate the drying process.

Benefits of technology

It improves the cleaning efficiency and drying speed, effectively removes the soybean odor, and improves processing efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a processing method for reducing the beany smell of soybean textured protein, which is applied in the technical field of soybean textured protein. The invention provides a lifting structure. When in use, soybeans are poured into the interior of a funnel at the bottom of a mounting frame, and output is performed through a sliding base, so that a lifting block drives a fixed plate to fall to a cleaning position. Then, a worker pours baking soda into the interior of the funnel, and then output is performed through a stirring structure, so that the stirring structure performs a timed stirring and cleaning work. After the cleaning is completed, output is performed through a hydraulic lifting rod, so that the lifting block drives the fixed plate to lift, and the funnel is moved to the top of a water control tank to control water. After stagnation for a certain period of time, the funnel is driven by the lifting block to move, so that the funnel moves to the inner wall of a drying box, and is dried and output through the drying structure. Then, the air-drying structure performs auxiliary air-drying work, thereby completing the soybean drying work.
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Description

Technical Field

[0001] The invention belongs to the technical field of soybean textured protein, and in particular relates to a processing method for reducing the beany smell of soybean textured protein. Background Art

[0002] Textured soy protein is a novel soy product extracted from soy protein. It is also known as textured soy protein or artificial meat. Textured soy protein is made by converting the globulin in defatted soybean meal into silk and fibrin. Tissue-derived soy protein has excellent water and oil absorption properties. Adding it to meat products not only enhances their color, aroma, and flavor, but also significantly increases their protein content. A high-quality, complete plant protein, it is rich in amino acids and possesses high nutritional value. Soy protein can inhibit cholesterol reabsorption, thereby lowering blood cholesterol levels.

[0003] At present, the Chinese patent with the announcement number CN102232425B discloses a field of lactic acid bacteria fermented food fermented in pure plant protein, specifically relating to a method for preparing a soybean protein lactic acid bacteria fermented food with deodorized protein. The preparation method of the soybean protein lactic acid bacteria fermented food of this invention comprises the following steps: soybeans are separated into pulp by the first level; then the pulp is completely deodorized by the second level separation, grinding, and grinding and pressing; after cooling, the acclimated bacteria are inoculated for fermentation, honey, sugar or xylitol is added after fermentation, and the lactic acid bacteria fermented food is obtained after homogenization and filling. This invention removes the fishy smell of soybean protein through the physical steam grinding and pressing method, and has a good deodorization effect, solves the problem of the five major side effects of soybean nutrient absorption, removes the bitter smell of beans, and makes the nutrients easier to absorb after fermentation.

[0004] Existing processing methods for reducing the beany flavor of textured soy protein have the following disadvantages when used:

[0005] 1. Currently, the method of reducing the beany smell of soy textured protein is relatively simple, usually soaking soybeans in clean water. The soaking efficiency is low and the degree of odor removal is limited.

[0006] 2. When soaking soybeans, workers are usually required to rub them. The kneading efficiency of the workers is limited, the processing efficiency is low, and it is not convenient to quickly dry the soybeans after cleaning. Summary of the Invention

[0007] The present invention aims to reduce the beany smell of soybean textured protein in an existing processing method. The method has the advantages of stirring during the cleaning process, adding baking soda during the stirring process, thereby accelerating the cleaning efficiency, and quickly drying the soybeans after cleaning, thereby facilitating the rapid removal of the odor.

[0008] The above technical objectives of the present invention are achieved through the following technical solutions: A processing device for reducing the beany smell of soybean textured protein, comprising a sliding base and a washing box, the top of the sliding base is bolted with a lifting structure, the right side of the washing box is bolted with a water control tank, the right side of the water control tank is bolted with a drying box, the inner wall of the drying box is bolted with a drying structure, a washing rack structure is placed on the inner wall of the washing box, the bottom of the washing rack structure contacts the top of the lifting structure, the rear side of the sliding base is bolted with a bottom plate, the top of the bottom plate is bolted with a support frame, the front side of the support frame is bolted with a stirring structure, the front side of the support frame is bolted with a first reinforcing block, the top of the first reinforcing block is bolted to the bottom of the stirring structure, the front side of the support frame is bolted with an air-drying structure, the bottom of the air-drying structure is bolted with a second reinforcing block, and the rear side of the second reinforcing block is bolted to the front of the support frame.

[0009] The above technical solution is adopted by arranging a sliding base, a cleaning box, a lifting structure, a water control tank, a drying box, a drying structure, a cleaning rack structure, a bottom plate, a support frame, a stirring structure, a first reinforcement block, an air-drying structure and a second reinforcement block. When in use, the soybeans are poured into the interior of the cleaning rack structure, and output is performed through the sliding base, so that the sliding base drives the cleaning rack structure to slide. When the cleaning rack structure moves to the cleaning position of the cleaning box, the staff then pours baking soda into the interior of the cleaning rack structure, and then outputs it through the stirring structure, so that the stirring structure performs regular stirring and cleaning work. After cleaning is completed, output is performed through the lifting structure, so that the funnel moves to the top of the water control tank to control the water. After stagnation for a certain period of time, the cleaning rack structure is driven to move by the lifting structure, so that the cleaning rack structure moves to the inner wall of the drying box, and dried and output is performed through the drying structure. Then, the air-drying structure performs auxiliary air-drying work to complete the soybean drying work.

[0010] The present invention is further configured as follows: the cleaning rack structure includes a mounting frame, a fixing plate and a funnel, the top of the funnel is bolted to the bottom of the mounting frame, the side of the fixing plate close to the mounting frame is bolted to the mounting frame, the bottom of the fixing plate contacts the top of the cleaning box, and the bottom of the fixing plate contacts the top of the lifting structure.

[0011] By adopting the above technical solution, a mounting frame, a fixed plate and a funnel are set up. When in use, the positions of the mounting frame and the funnel are fixed, and the positions of the mounting frame and the fixed plate are fixed. When the lifting structure is outputting, the lifting structure will drive the fixed plate to move, so that the fixed plate can drive the mounting frame and the funnel to move.

[0012] The present invention is further configured as follows: the drying structure includes an output assembly, an output plate and a heating plate assembly, the right side of the heating plate assembly is bolted to the left side of the output plate, the right side of the output plate is bolted to the left side of the output assembly, the surface of the output plate is bolted to the inner wall of the drying box, and the right side of the heating plate assembly is in contact with the inner wall of the drying box.

[0013] By adopting the above technical solution, an output component, an output plate and a heating plate component are set. When in use, the positions of the output component and the output plate are fixed, and the positions of the output plate and the heating plate component are fixed. When the output component outputs, it will drive the heating plate component on the left side of the output plate to heat, which is convenient for heating and drying the soybeans.

[0014] The present invention is further configured as follows: the lifting structure includes an anti-slip pad, a lifting block, a hydraulic lifting rod, a fixed block, a controller and a slider, the bottom of the slider is bolted to the top of the sliding base, the front side of the slider is bolted to the rear side of the controller, the top of the slider is bolted to the bottom of the fixed block, the top of the fixed block is bolted to the bottom of the hydraulic lifting rod, the top of the hydraulic lifting rod is bolted to the bottom of the lifting block, the bottom of the anti-slip pad is bonded to the top of the lifting block, and the top of the anti-slip pad is in contact with the bottom of the fixed plate.

[0015] The above technical solution is adopted by setting an anti-slip pad, a lifting block, a hydraulic lifting rod, a fixed block, a controller and a slider. When in use, the position of the slider and the sliding base is fixed, the position of the slider and the fixed block is fixed, the position of the fixed block and the hydraulic lifting rod is fixed, the position of the hydraulic lifting rod and the lifting block is fixed, and the position of the lifting block and the anti-slip pad is fixed. When the controller outputs, it will drive the hydraulic lifting rod to lift and lower, making it convenient for the hydraulic lifting rod to drive the lifting block and the anti-slip pad to move, and for the lifting block and the anti-slip pad to drive the fixed plate to move, which is convenient for users to use.

[0016] The present invention is further configured as follows: the stirring structure includes a first control frame assembly, a first electric lifting assembly, a driving assembly, a fixing mechanism and a mixing assembly; the surface of the mixing assembly is rotatably connected to the inner wall of the fixing mechanism; the top of the fixing mechanism is bolted to the bottom of the driving assembly; the bottom of the driving assembly is bolted to the top of the mixing assembly; the top of the fixing mechanism is bolted to the bottom of the first electric lifting assembly; the top of the first electric lifting assembly is bolted to the bottom of the first control frame assembly; and the rear side of the first control frame assembly is bolted to the front side of the support frame.

[0017] The above technical solution is adopted by setting a first control frame assembly, a first electric lifting assembly, a driving assembly, a fixing mechanism and a mixing assembly. When in use, the positions of the first control frame assembly and the first electric lifting assembly are fixed, the positions of the first electric lifting assembly and the fixing mechanism are fixed, and the positions of the fixing mechanism and the driving assembly are fixed. When the funnel enters the inner wall of the cleaning box, the output is performed through the first electric lifting assembly, so that the first electric lifting assembly drives the fixing mechanism to fall to the cleaning position, and then the output work is performed through the driving assembly. When the driving assembly outputs, it will drive the mixing assembly to rotate, so that the mixing assembly can perform stable mixing.

[0018] The present invention is further configured as follows: the fixing mechanism includes a rotating assembly and a connecting block, the connecting block is bolted to the rotating assembly on one side close to the rotating assembly, the top of the connecting block is bolted to the bottom of the first electric lifting assembly, the top of the connecting block is bolted to the bottom of the driving assembly, and the inner wall of the rotating assembly is rotatably connected to the surface of the mixing assembly.

[0019] By adopting the above technical solution, a rotating assembly and a connecting block are set. When in use, the positions of the connecting block and the rotating assembly are fixed, and the positions of the connecting block and the first electric lifting assembly are fixed, so that the first electric lifting assembly can drive the connecting block and the rotating assembly to perform stable lifting.

[0020] The present invention is further configured as follows: the drive assembly includes a connecting plate, a support block, a rotating motor, and an output shaft, the top of the output shaft is bolted to the output end of the rotating motor, the front side of the rotating motor is bolted to the rear side of the connecting plate, the front side of the connecting plate is bolted to the rear side of the support block, the bottom of the support block is bolted to the top of the connecting block, and the bottom of the output shaft is bolted to the top of the mixing assembly.

[0021] By adopting the above technical solution, a connecting plate, a support block, a rotating motor, and an output shaft are set. When in use, the position of the rotating motor and the connecting plate are fixed, the position of the connecting plate and the support block are fixed, the position of the support block and the connecting block are fixed, and the position of the output shaft and the rotating motor are fixed. When the rotating motor outputs, it will drive the output shaft to rotate. When the output shaft rotates, it will drive the mixing assembly to rotate, which facilitates the mixing and stirring work of the mixing assembly.

[0022] The present invention is further configured as follows: the mixing assembly includes a rotating shaft, a mounting plate, a rotating plate, a fixed rod and a stirring sleeve, the inner wall of the stirring sleeve is bolted to the surface of the fixed rod, the top of the fixed rod is bolted to the bottom of the rotating plate, the top of the rotating plate is bolted to the bottom of the mounting plate, the top of the mounting plate is bolted to the bottom of the rotating shaft, the top of the rotating shaft is bolted to the bottom of the output shaft, and the surface of the rotating shaft is rotatably connected to the inner wall of the rotating assembly.

[0023] The above technical solution is adopted, by setting a rotating shaft, a mounting plate, a rotating plate, a fixed rod and a stirring sleeve. When in use, the position of the rotating shaft and the mounting plate are fixed, the position of the mounting plate and the rotating plate are fixed, the position of the rotating plate and the fixed rod are fixed, and the position of the fixed rod and the stirring sleeve are fixed. When the rotating motor drives the output shaft to rotate, the output shaft will drive the rotating shaft to rotate. When the rotating shaft rotates, it will drive the mounting plate and the rotating plate to rotate. When the rotating plate rotates, it will drive the fixed rod and the stirring sleeve to rotate, which is convenient for stable stirring.

[0024] The present invention is further configured as follows: the air-drying structure includes a second control frame assembly, a second electric lifting assembly, a fixed frame, a fan assembly and a bellows, the inner wall of the bellows is bolted to the surface of the fan assembly, the side of the fixed frame close to the bellows is bolted to the bellows, the top of the fixed frame is bolted to the bottom of the second electric lifting assembly, the top of the second electric lifting assembly is bolted to the bottom of the second control frame assembly, and the rear side of the second control frame assembly is bolted to the front side of the support frame.

[0025] By adopting the above technical solution, a second control frame assembly, a second electric lifting assembly, a fixed frame, a fan assembly and a bellows are set. When in use, the position of the second control frame assembly and the second electric lifting assembly are fixed, the position of the second electric lifting assembly and the fixed frame are fixed, and the position of the fixed frame and the bellows are fixed. When the funnel enters the inner wall of the drying box, the second electric lifting assembly will drive the fixed frame to fall, which facilitates the falling of the electric bellows of the fixed frame, and causes the fan assembly to rotate and output, so as to facilitate rapid air drying.

[0026] A processing method for reducing the beany smell of textured soybean protein comprises the following steps:

[0027] S1. Pour the soybeans into the funnel at the bottom of the mounting frame, output through the sliding base, and make the sliding base drive the slider to slide. When the lifting block drives the fixed plate to move to the cleaning position of the cleaning box, the hydraulic lifting rod will output, so that the lifting block drives the fixed plate to fall to the cleaning position. Then the staff pours baking soda into the funnel, and then outputs through the stirring structure to make the stirring structure perform regular stirring and cleaning. After cleaning is completed, the hydraulic lifting rod is output, so that the lifting block drives the fixed plate to lift, so that the funnel moves to the top of the water control tank for water control. After a certain period of stagnation, the funnel is driven by the lifting block to move, so that the funnel moves to the inner wall of the drying box, and is dried and output through the drying structure. Then, the air-drying structure performs auxiliary air-drying work, completing the soybean drying work;

[0028] S2. When cleaning the soybeans, the first electric lifting assembly at the bottom of the first control frame assembly is used for output, so that the fixing mechanism falls to the stirring position, and the rotating motor is used for output, so that the rotating motor drives the output shaft to rotate, and the output shaft drives the mixing assembly to rotate when it rotates, so that the soybeans inside the funnel are evenly stirred. After the stirring is completed, the lifting block is moved to move the funnel to the inside of the drying box, and then it falls to the drying position through the air-drying structure to speed up the drying speed.

[0029] In summary, the present invention has the following beneficial effects:

[0030] 1. By setting up a lifting structure, when in use, the soybeans are poured into the inside of the funnel at the bottom of the mounting frame, and the output is carried out through the sliding base, so that the sliding base drives the slider to slide. When the lifting block drives the fixed plate to move to the cleaning position of the cleaning box, the hydraulic lifting rod will output, so that the lifting block drives the fixed plate to fall to the cleaning position, and then the staff pours baking soda into the inside of the funnel, and then outputs through the stirring structure, so that the stirring structure performs regular stirring and cleaning work. After cleaning is completed, the hydraulic lifting rod is output, so that the lifting block drives the fixed plate to lift, and the funnel moves to the top of the water control tank for water control. After stagnation for a certain period of time, the funnel is driven by the lifting block to move, so that the funnel moves to the inner wall of the drying box, and is dried and output through the drying structure, and then the air-drying structure performs auxiliary air-drying work to complete the soybean drying work;

[0031] 2. By setting up a stirring structure and an air-drying structure, when in use, the output is output through the first electric lifting component at the bottom of the first control frame component, so that the fixing mechanism falls to the stirring position, and the output is output by the rotating motor, so that the rotating motor drives the output shaft to rotate. When the output shaft rotates, it drives the mixing component to rotate, and the soybeans inside the funnel are evenly stirred. After the stirring is completed, the lifting block is moved to move the lifting block to the inside of the drying box, and then falls to the drying position through the air-drying structure to speed up the drying speed. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0033] Figure 2 It is a schematic structural diagram of the sliding base of the present invention;

[0034] Figure 3 It is a schematic diagram of the structure of the cleaning rack of the present invention;

[0035] Figure 4 It is a schematic diagram of the drying structure of the present invention;

[0036] Figure 5It is a schematic diagram of the lifting structure of the present invention;

[0037] Figure 6 It is a schematic diagram of the support frame structure of the present invention;

[0038] Figure 7 It is a schematic structural diagram of the stirring structure of the present invention;

[0039] Figure 8 It is a schematic diagram of the structure of the drive assembly of the present invention;

[0040] Figure 9 It is a schematic diagram of the structure of the mixing assembly of the present invention;

[0041] Figure 10 It is a schematic diagram of the air-drying structure of the present invention;

[0042] Figure 11 The present invention is a schematic diagram of a processing method for reducing the beany smell of textured soybean protein.

[0043] Figure numerals: 1. Sliding base; 2. Cleaning rack structure; 201. Mounting rack; 202. Fixing plate; 203. Funnel; 3. Drying structure; 301. Output assembly; 302. Output plate; 303. Heating plate assembly; 4. Lifting structure; 401. Anti-slip pad; 402. Lifting block; 403. Hydraulic lifting rod; 404. Fixing block; 405. Controller; 406. Slider; 5. Stirring structure; 501. First control rack assembly; 502. First electric lifting assembly; 503. Driving assembly; 5031. Connecting plate; 5032. Support block; 5033. Rotating Drive motor; 5034, output shaft; 504, fixing mechanism; 5041, rotating assembly; 5042, connecting block; 505, mixing assembly; 5051, rotating shaft; 5052, mounting plate; 5053, rotating plate; 5054, fixing rod; 5055, stirring sleeve; 6, air-drying structure; 601, second control frame assembly; 602, second electric lifting assembly; 603, fixing frame; 604, fan assembly; 605, bellows; 7, cleaning box; 8, water control tank; 9, drying box; 10, bottom plate; 11, supporting frame; 12, first reinforcement block; 13, second reinforcement block. DETAILED DESCRIPTION

[0044] The present invention will be further described in detail below with reference to the accompanying drawings.

[0045] Example 1:

[0046] refer to Figure 1-10, a processing device for reducing the beany smell of soybean textured protein, comprising a sliding base 1 and a washing box 7, the top of the sliding base 1 is bolted with a lifting structure 4, the right side of the washing box 7 is bolted with a water control tank 8, the right side of the water control tank 8 is bolted with a drying box 9, the inner wall of the drying box 9 is bolted with a drying structure 3, a washing rack structure 2 is placed on the inner wall of the washing box 7, the bottom of the washing rack structure 2 contacts the top of the lifting structure 4, the rear side of the sliding base 1 is bolted with a bottom plate 10, the top of the bottom plate 10 is bolted with a supporting frame 11, the front side of the supporting frame 11 is bolted with a stirring structure 5, the front side of the supporting frame 11 is bolted with a first reinforcing block 12, the top of the first reinforcing block 12 is bolted to the bottom of the stirring structure 5, the front side of the supporting frame 11 is bolted with an air-drying structure 6, the bottom of the air-drying structure 6 is bolted with a second reinforcing block 13, the rear side of the second reinforcing block 13 is bolted to the front of the supporting frame 11, by setting the sliding base 1, the washing box 7, the lifting structure 4, the water control tank 8, and the drying box 9. Drying structure 3, cleaning rack structure 2, bottom plate 10, supporting frame 11, stirring structure 5, first reinforcing block 12, air-drying structure 6 and second reinforcing block 13. When in use, pour soybeans into the inside of the cleaning rack structure 2, and output through the sliding base 1, so that the sliding base 1 drives the cleaning rack structure 2 to slide. When the cleaning rack structure 2 moves to the cleaning position of the cleaning box 7, the staff then pours baking soda into the inside of the cleaning rack structure 2, and then outputs through the stirring structure 5, so that the stirring structure 5 performs regular stirring and cleaning work. After cleaning is completed, output is performed through the lifting structure 4, so that the funnel 203 moves to the top of the water control tank 8 for water control. After stagnation for a certain period of time, the cleaning rack structure 2 is driven to move through the lifting structure 4, so that the cleaning rack structure 2 moves to the inner wall of the drying box 9, and is dried and output through the drying structure 3. Then, the air-drying structure 6 performs auxiliary air-drying work to complete the soybean drying work.

[0047] like Figure 3 As shown, the cleaning rack structure 2 includes a mounting rack 201, a fixing plate 202 and a funnel 203. The top of the funnel 203 is bolted to the bottom of the mounting rack 201, and the fixing plate 202 is bolted to the mounting rack 201 on the side close to the mounting rack 201. The bottom of the fixing plate 202 contacts the top of the cleaning box 7, and the bottom of the fixing plate 202 contacts the top of the lifting structure 4. By setting the mounting rack 201, the fixing plate 202 and the funnel 203, the positions of the mounting rack 201 and the funnel 203 are fixed during use, and the positions of the mounting rack 201 and the fixing plate 202 are fixed. When the lifting structure 4 is outputting, the lifting structure 4 will drive the fixing plate 202 to move, so that the fixing plate 202 can drive the mounting rack 201 and the funnel 203 to move.

[0048] like Figure 4As shown, the drying structure 3 includes an output component 301, an output plate 302 and a heating plate component 303. The right side of the heating plate component 303 is bolted to the left side of the output plate 302, the right side of the output plate 302 is bolted to the left side of the output component 301, the surface of the output plate 302 is bolted to the inner wall of the drying box 9, and the right side of the heating plate component 303 is in contact with the inner wall of the drying box 9. By arranging the output component 301, the output plate 302 and the heating plate component 303, when in use, the position of the output component 301 and the output plate 302 are fixed, and the position of the output plate 302 and the heating plate component 303 are fixed. When the output component 301 is outputting, it will drive the heating plate component 303 on the left side of the output plate 302 to heat, thereby facilitating the heating and drying of soybeans.

[0049] like Figure 5 As shown, the lifting structure 4 includes an anti-skid pad 401, a lifting block 402, a hydraulic lifting rod 403, a fixed block 404, a controller 405 and a slider 406. The bottom of the slider 406 is bolted to the top of the sliding base 1, the front side of the slider 406 is bolted to the rear side of the controller 405, the top of the slider 406 is bolted to the bottom of the fixed block 404, the top of the fixed block 404 is bolted to the bottom of the hydraulic lifting rod 403, the top of the hydraulic lifting rod 403 is bolted to the bottom of the lifting block 402, the bottom of the anti-skid pad 401 is bonded to the top of the lifting block 402, and the top of the anti-skid pad 401 is in contact with the bottom of the fixed plate 202. By setting the anti-skid pad 401, the lifting block 402, the hydraulic lifting rod 4 03, fixed block 404, controller 405 and slider 406. When in use, the position of slider 406 and sliding base 1 is fixed, the position of slider 406 and fixed block 404 is fixed, the position of fixed block 404 and hydraulic lifting rod 403 is fixed, the position of hydraulic lifting rod 403 and lifting block 402 is fixed, and the position of lifting block 402 and anti-slip pad 401 are fixed. When controller 405 outputs, it will drive hydraulic lifting rod 403 to move up and down, so that hydraulic lifting rod 403 can drive lifting block 402 and anti-slip pad 401 to move, and lifting block 402 and anti-slip pad 401 can drive fixed plate 202 to move, so that user can use it easily.

[0050] The use process is briefly described as follows: the soybeans are poured into the funnel 203 at the bottom of the mounting frame 201, and the sliding base 1 is used to output, so that the sliding base 1 drives the slider 406 to slide. When the lifting block 402 drives the fixed plate 202 to move to the cleaning position of the cleaning box 7, the hydraulic lifting rod 403 will be output, so that the lifting block 402 drives the fixed plate 202 to fall to the cleaning position. Then the staff pours baking soda into the funnel 203, and then outputs through the stirring structure 5, so that the stirring structure 5 performs regular stirring and cleaning work. After cleaning is completed, the hydraulic lifting rod 403 is output, so that the lifting block 402 drives the fixed plate 202 to lift, so that the funnel 203 moves to the top of the water control tank 8 for water control. After a certain period of stagnation, the funnel 203 is driven by the lifting block 402 to move, so that the funnel 203 moves to the inner wall of the drying box 9, and is dried and output through the drying structure 3, and then assisted by the air-drying structure 6 to complete the soybean drying work.

[0051] Example 2:

[0052] refer to Figure 6-10 The stirring structure 5 includes a first control frame assembly 501, a first electric lifting assembly 502, a driving assembly 503, a fixing mechanism 504 and a mixing assembly 505. The surface of the mixing assembly 505 is rotatably connected to the inner wall of the fixing mechanism 504. The top of the fixing mechanism 504 is bolted to the bottom of the driving assembly 503. The bottom of the driving assembly 503 is bolted to the top of the mixing assembly 505. The top of the fixing mechanism 504 is bolted to the bottom of the first electric lifting assembly 502. The top of the first electric lifting assembly 502 is bolted to the bottom of the first control frame assembly 501. The rear side of the first control frame assembly 501 is bolted to the front side of the support frame 11. By setting the first control frame assembly 501 and the first electric lifting assembly 5 02, driving component 503, fixing mechanism 504 and mixing component 505, when in use, are fixed by the first control frame component 501 and the first electric lifting component 502, the first electric lifting component 502 and the fixing mechanism 504 are fixed, and the fixing mechanism 504 and the driving component 503 are fixed. When the funnel 203 enters the inner wall of the cleaning box 7, it is output through the first electric lifting component 502, so that the first electric lifting component 502 drives the fixing mechanism 504 to fall to the cleaning position, and then the driving component 503 is used to output. When the driving component 503 outputs, it will drive the mixing component 505 to rotate, so that the mixing component 505 can perform stable mixing.

[0053] like Figure 8As shown, the fixing mechanism 504 includes a rotating component 5041 and a connecting block 5042. The side of the connecting block 5042 close to the rotating component 5041 is bolted to the rotating component 5041, the top of the connecting block 5042 is bolted to the bottom of the first electric lifting component 502, the top of the connecting block 5042 is bolted to the bottom of the driving component 503, and the inner wall of the rotating component 5041 is rotatably connected to the surface of the mixing component 505. By setting the rotating component 5041 and the connecting block 5042, when in use, the position of the connecting block 5042 and the rotating component 5041 is fixed, and the position of the connecting block 5042 and the first electric lifting component 502 is fixed, so that the first electric lifting component 502 can drive the connecting block 5042 and the rotating component 5041 to perform stable lifting.

[0054] like Figure 8 As shown, the driving assembly 503 includes a connecting plate 5031, a supporting block 5032, a rotating motor 5033, and an output shaft 5034. The top of the output shaft 5034 is bolted to the output end of the rotating motor 5033, the front side of the rotating motor 5033 is bolted to the rear side of the connecting plate 5031, the front side of the connecting plate 5031 is bolted to the rear side of the supporting block 5032, the bottom of the supporting block 5032 is bolted to the top of the connecting block 5042, and the bottom of the output shaft 5034 is bolted to the top of the mixing assembly 505. The rotating motor 5033 and the output shaft 5034 are fixed by rotating the motor 5033 and the connecting plate 5031 during use, the connecting plate 5031 and the support block 5032 are fixed, the support block 5032 and the connecting block 5042 are fixed, and the output shaft 5034 and the rotating motor 5033 are fixed. When the rotating motor 5033 outputs, the output shaft 5034 is driven to rotate, and when the output shaft 5034 rotates, the mixing assembly 505 is driven to rotate, so that the mixing assembly 505 can perform mixing and stirring.

[0055] like Figure 9As shown, the mixing assembly 505 includes a rotating shaft 5051, a mounting plate 5052, a rotating plate 5053, a fixed rod 5054 and a stirring sleeve 5055. The inner wall of the stirring sleeve 5055 is bolted to the surface of the fixed rod 5054, the top of the fixed rod 5054 is bolted to the bottom of the rotating plate 5053, the top of the rotating plate 5053 is bolted to the bottom of the mounting plate 5052, the top of the mounting plate 5052 is bolted to the bottom of the rotating shaft 5051, the top of the rotating shaft 5051 is bolted to the bottom of the output shaft 5034, and the surface of the rotating shaft 5051 is rotatably connected to the inner wall of the rotating assembly 5041. By setting the rotating shaft 5051, the mounting plate 5052, the rotating plate 5053, the fixed rod 5054 and When in use, the stirring sleeve 5055 is fixed by the position of the rotating shaft 5051 and the mounting plate 5052, the position of the mounting plate 5052 and the rotating plate 5053 are fixed, the position of the rotating plate 5053 and the fixing rod 5054 are fixed, and the position of the fixing rod 5054 and the stirring sleeve 5055 are fixed. When the rotating motor 5033 drives the output shaft 5034 to rotate, the output shaft 5034 will drive the rotating shaft 5051 to rotate. When the rotating shaft 5051 rotates, it will also drive the mounting plate 5052 and the rotating plate 5053 to rotate. When the rotating plate 5053 rotates, it will also drive the fixing rod 5054 and the stirring sleeve 5055 to rotate, so as to facilitate stable stirring.

[0056] like Figure 10 As shown, the air-drying structure 6 includes a second control frame assembly 601, a second electric lifting assembly 602, a fixing frame 603, a fan assembly 604 and a bellows 605. The inner wall of the bellows 605 is bolted to the surface of the fan assembly 604, the side of the fixing frame 603 close to the bellows 605 is bolted to the bellows 605, the top of the fixing frame 603 is bolted to the bottom of the second electric lifting assembly 602, the top of the second electric lifting assembly 602 is bolted to the bottom of the second control frame assembly 601, and the rear side of the second control frame assembly 601 is bolted to the front side of the support frame 11. By setting the second control frame assembly 601 and the second electric lifting assembly 602, the air-drying structure 6 includes a second control frame assembly 601, a second electric lifting assembly 602, a fixing frame 603, a fan assembly 604 and a bellows 605. The electric lifting assembly 602, the fixed frame 603, the fan assembly 604 and the bellows 605 are fixed by the second control frame assembly 601 and the second electric lifting assembly 602 during use, the second electric lifting assembly 602 and the fixed frame 603 are fixed, and the fixed frame 603 and the bellows 605 are fixed. When the funnel 203 enters the inner wall of the drying box 9, the second electric lifting assembly 602 will drive the fixed frame 603 to fall, so that the fixed frame 603 and the electric bellows 605 can fall, and the fan assembly 604 can rotate and output, so as to facilitate rapid air drying.

[0057] Brief description of the usage process: When cleaning the soybeans, the first electric lifting component 502 at the bottom of the first control frame component 501 is output, so that the fixing mechanism 504 falls to the stirring position, and the rotating motor 5033 is output, so that the rotating motor 5033 drives the output shaft 5034 to rotate. When the output shaft 5034 rotates, it drives the mixing component 505 to rotate, and the soybeans inside the funnel 203 are evenly stirred. After the stirring is completed, the lifting block 402 is moved to move the lifting block 402 to the inside of the drying box 9, and then falls to the drying position through the air-drying structure 6 to speed up the drying speed.

[0058] This specific embodiment is merely an explanation of the present invention and is not intended to limit the present invention. After reading this specification, those skilled in the art may make non-creative modifications to this embodiment as needed. However, as long as such modifications are within the scope of the claims of the present invention, they are protected by patent law.

Claims

1. A processing device for reducing the beany smell of textured soybean protein, comprising a sliding base (1) and a cleaning box (7), characterized in that: The top of the sliding base (1) is bolted to a lifting structure (4), the right side of the cleaning box (7) is bolted to a water control box (8), the right side of the water control box (8) is bolted to a drying box (9), the inner wall of the drying box (9) is bolted to a drying structure (3), a cleaning rack structure (2) is placed on the inner wall of the cleaning box (7), the bottom of the cleaning rack structure (2) is in contact with the top of the lifting structure (4), the rear side of the sliding base (1) is bolted to a bottom plate (10), the bottom plate (10) ) is bolted to the top of a support frame (11), the front side of the support frame (11) is bolted to a stirring structure (5), the front side of the support frame (11) is bolted to a first reinforcing block (12), the top of the first reinforcing block (12) is bolted to the bottom of the stirring structure (5), the front side of the support frame (11) is bolted to an air-drying structure (6), the bottom of the air-drying structure (6) is bolted to a second reinforcing block (13), the rear side of the second reinforcing block (13) is bolted to the front side of the support frame (11); The cleaning rack structure (2) includes a mounting rack (201), a fixing plate (202) and a funnel (203). A worker pours baking soda into the interior of the funnel (203). The top of the funnel (203) is bolted to the bottom of the mounting rack (201). The fixing plate (202) is bolted to the mounting rack (201) on one side thereof close to the mounting rack (201). The bottom of the fixing plate (202) contacts the top of the cleaning box (7). The bottom of the fixing plate (202) contacts the top of the lifting structure (4). The lifting structure (4) includes an anti-skid pad (401), a lifting block (402), a hydraulic lifting rod (403), a fixed block (404), a controller (405) and a slider (406), wherein the bottom of the slider (406) is bolted to the top of the sliding base (1), the front side of the slider (406) is bolted to the rear side of the controller (405), the top of the slider (406) is bolted to the bottom of the fixed block (404), the top of the fixed block (404) is bolted to the bottom of the hydraulic lifting rod (403), the top of the hydraulic lifting rod (403) is bolted to the bottom of the lifting block (402), the bottom of the anti-skid pad (401) is bonded to the top of the lifting block (402), and the top of the anti-skid pad (401) contacts the bottom of the fixed plate (202); The stirring structure (5) comprises a first control frame assembly (501), a first electric lifting assembly (502), a driving assembly (503), a fixing mechanism (504) and a mixing assembly (505); the surface of the mixing assembly (505) is rotatably connected to the inner wall of the fixing mechanism (504); the top of the fixing mechanism (504) is bolted to the bottom of the driving assembly (503); the bottom of the driving assembly (503) is bolted to the top of the mixing assembly (505); the top of the fixing mechanism (504) is bolted to the bottom of the first electric lifting assembly (502); the top of the first electric lifting assembly (502) is bolted to the bottom of the first control frame assembly (501); and the rear side of the first control frame assembly (501) is bolted to the front side of the support frame (11); The driving assembly (503) comprises a connecting plate (5031), a supporting block (5032), a rotating motor (5033), and an output shaft (5034); the top of the output shaft (5034) is bolted to the output end of the rotating motor (5033); the front side of the rotating motor (5033) is bolted to the rear side of the connecting plate (5031); the front side of the connecting plate (5031) is bolted to the rear side of the supporting block (5032); the bottom of the supporting block (5032) is bolted to the top of the connecting block (5042); and the bottom of the output shaft (5034) is bolted to the top of the mixing assembly (505).

2. The processing device for reducing the beany smell of textured soybean protein according to claim 1, characterized in that: The drying structure (3) comprises an output assembly (301), an output plate (302) and a heating plate assembly (303), wherein the right side of the heating plate assembly (303) is bolted to the left side of the output plate (302), the right side of the output plate (302) is bolted to the left side of the output assembly (301), the surface of the output plate (302) is bolted to the inner wall of the drying box (9), and the right side of the heating plate assembly (303) is in contact with the inner wall of the drying box (9).

3. The processing device for reducing the beany smell of textured soybean protein according to claim 1, characterized in that: The fixing mechanism (504) comprises a rotating assembly (5041) and a connecting block (5042), wherein the connecting block (5042) is bolted to the rotating assembly (5041) on one side close to the rotating assembly (5041), the top of the connecting block (5042) is bolted to the bottom of the first electric lifting assembly (502), the top of the connecting block (5042) is bolted to the bottom of the driving assembly (503), and the inner wall of the rotating assembly (5041) is rotatably connected to the surface of the mixing assembly (505).

4. The processing device for reducing the beany smell of textured soybean protein according to claim 3, characterized in that: The mixing assembly (505) comprises a rotating shaft (5051), a mounting plate (5052), a rotating plate (5053), a fixed rod (5054) and a stirring sleeve (5055), wherein the inner wall of the stirring sleeve (5055) is bolted to the surface of the fixed rod (5054), the top of the fixed rod (5054) is bolted to the bottom of the rotating plate (5053), the top of the rotating plate (5053) is bolted to the bottom of the mounting plate (5052), the top of the mounting plate (5052) is bolted to the bottom of the rotating shaft (5051), the top of the rotating shaft (5051) is bolted to the bottom of the output shaft (5034), and the surface of the rotating shaft (5051) is rotatably connected to the inner wall of the rotating assembly (5041).

5. The processing device for reducing the beany smell of textured soybean protein according to claim 1, characterized in that: The air-drying structure (6) comprises a second control frame assembly (601), a second electric lifting assembly (602), a fixed frame (603), a fan assembly (604) and a bellows (605), wherein the inner wall of the bellows (605) is bolted to the surface of the fan assembly (604), the side of the fixed frame (603) close to the bellows (605) is bolted to the bellows (605), the top of the fixed frame (603) is bolted to the bottom of the second electric lifting assembly (602), the top of the second electric lifting assembly (602) is bolted to the bottom of the second control frame assembly (601), and the rear side of the second control frame assembly (601) is bolted to the front side of the support frame (11).

6. A method for reducing the beany smell of textured soybean protein according to any one of claims 1 to 5, characterized in that: The following steps are involved: S1. Pour soybeans into the interior of the funnel (203) at the bottom of the mounting frame (201), and output through the sliding base (1), so that the sliding base (1) drives the slider (406) to slide. When the lifting block (402) drives the fixed plate (202) to move to the cleaning position of the cleaning box (7), the hydraulic lifting rod (403) will output, so that the lifting block (402) drives the fixed plate (202) to fall to the cleaning position. Then the staff pours baking soda into the interior of the funnel (203), and then outputs through the stirring structure (5), so that the stirring structure (5 ) performs the work of stirring and cleaning at a fixed time. After the cleaning is completed, the hydraulic lifting rod (403) is used for output, so that the lifting block (402) drives the fixed plate (202) to perform the lifting work, so that the funnel (203) moves to the top of the water control box (8) to control the water. After a certain period of stagnation, the lifting block (402) drives the funnel (203) to move, so that the funnel (203) moves to the inner wall of the drying box (9), and is dried and output through the drying structure (3). Then, the air-drying structure (6) performs the auxiliary air-drying work, and the soybean drying work is completed; S2. When the soybeans are being cleaned, the first electric lifting assembly (502) at the bottom of the first control frame assembly (501) is output, causing the fixing mechanism (504) to fall to the stirring position, and the rotating motor (5033) is output, causing the rotating motor (5033) to drive the output shaft (5034) to rotate. When the output shaft (5034) rotates, it drives the mixing assembly (505) to rotate, and the soybeans inside the funnel (203) are evenly stirred. After the stirring is completed, the lifting block (402) is moved to move the lifting block (402) to the inside of the drying box (9), and then falls to the drying position through the air-drying structure (6), thereby accelerating the drying speed.

Citation Information

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