Auxiliary device and method for processing protein powder

By designing protein powder processing auxiliary devices, using thread groove extrusion of fixed rods and guide frames and servo motor-driven extrusion parts, the problem of difficult to quickly remove and clean raw materials in protein powder production is solved, and rapid removal, thorough crushing and efficient cleaning is achieved, and production efficiency and product quality are improved.

CN120245488AInactive Publication Date: 2025-07-04JIANGXI BAILING IND CO LTD
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Patent Information

Application Number
CN202510517726.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-24
Publication Date
2025-07-04
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During the protein powder production process, after the oil pressing is over, it is difficult to quickly remove the raw materials and the inside of the oil outlet barrel is not thoroughly cleaned, which affects the purity and quality of the product.

Method used

A protein powder processing auxiliary device is designed, including supporting base, oil outlet barrel, guide frame and electric push rod. The connection is automatically rotated through the thread groove of the fixing rod and guide frame. Combined with the extrusion and crushing parts driven by the servo motor, the raw materials can be quickly taken out and completely broken, and the bag opening is fixed through the limiting plate to prevent leakage, and the scraper removes residual grease.

Benefits of technology

It realizes rapid removal and thorough crushing of raw materials, improves production efficiency, ensures product purity and quality stability, prevents raw material leakage, and improves cleanliness and production continuity.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of food processing, in particular to an auxiliary protein powder processing device and method.The auxiliary protein powder processing device comprises a supporting base, an oil outlet barrel is fixedly connected to the upper surface of the supporting base, an oil guide frame is fixedly connected to the outer surface of the bottom of the oil outlet barrel, and an electric push rod is fixedly connected to one side of the upper surface of the supporting base; the top of the moving end of the electric push rod is fixedly connected with a fixing piece, the outer surface of the fixing piece is rotationally connected with a rotating piece, one side of the upper surface of the supporting base is fixedly connected with a guide frame, the inner side of the guide frame is connected with a sliding groove in a penetrating mode, and the top of the sliding groove of the guide frame is in a threaded shape. The outer surface of the fixing rod is in extrusion fit with the inner side of the guide frame thread groove. And when the fixed rod and the threaded groove of the guide frame are extruded, the connecting piece can automatically rotate after moving upwards, and a larger space can be provided for workers, so that raw materials can be taken out more conveniently and quickly.
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Description

Technical Field

[0001] The present invention relates to the technical field of food processing, and specifically to a processing auxiliary device and method for protein powder. Background Art

[0002] As a food raw material and dietary supplement with high nutritional value, protein powder can provide a convenient source of protein and help maintain the normal functions of muscles, bones, and organs. In the production process of protein powder, oil extraction is an important step for extracting oil from oil crops, and these oils can be used as raw materials or additives in the production of protein powder.

[0003] When the protein powder raw material finishes oil extraction, since the extrusion part is close to the oil outlet barrel, it causes the staff to spend more time taking out the raw material from the barrel and makes it difficult for the staff to observe the situation inside the oil outlet barrel, resulting in incomplete cleaning inside the oil outlet barrel and affecting subsequent oil extraction of the raw material.

[0004] Therefore, the present invention proposes a processing auxiliary device and method for protein powder to make up for and improve the deficiencies of the existing technology. Summary of the Invention

[0005] Aiming at the defects existing in the prior art, the present invention provides a processing auxiliary device and method for protein powder, which can effectively solve the above technical problems.

[0006] The technical implementation solution of the present invention is as follows: A processing auxiliary device for protein powder includes a support base. The upper surface of the support base is fixedly connected with an oil outlet barrel. The outer surface of the bottom of the oil outlet barrel is fixedly connected with an oil guiding frame. One side of the upper surface of the support base is fixedly connected with an electric push rod. The top of the movable end of the electric push rod is fixedly connected with a fixing member. The outer surface of the fixing member is rotatably connected with a rotating member. One end of the rotating member is fixedly connected with a connecting member. The bottom of the connecting member is rotatably connected with a rotating part. The bottom of the rotating part is detachably connected with a soft pad. One side of the upper surface of the support base is fixedly connected with a guiding frame. The inner side of the guiding frame is penetrated and connected with a sliding groove. The top of the sliding groove of the guiding frame is in a threaded shape. One side of the rotating member is fixedly connected with a fixing rod. The outer surface of the fixing rod is in extrusion fit with the inner side of the threaded groove of the guiding frame. When the fixing rod is in extrusion with the thread inside the guiding frame, it can make the top of the connecting member rotate when moving, thus facilitating the staff to take the raw material inside the oil outlet barrel.

[0007] More preferably, a protective cover is detachably connected to the upper surface of the connecting member. A servo motor is fixedly connected to the upper surface of the connecting member. The output shaft of the servo motor is fixedly connected to a connecting lead screw. An extrusion member is threadedly connected to the outer surface of the connecting lead screw. One side of the upper surface of the connecting member is rotatably connected to a lever. The outer surface of the extrusion member is in extrusion fit with the outer surface of one end of the lever. A moving frame is slidably connected to the outer surface of the top of the connecting member. The outer surface of the other end of the lever is in extrusion fit with the upper surface of the moving frame. A crushing member is rotatably connected to the bottom of the moving frame. The outer surface of the bottom of the crushing member is slidably connected to a rotating disc. The outer surface of the rotating disc is rotatably connected to the inner side of the bottom of the connecting member. When the connecting lead screw drives the extrusion member to move upward, the crushing member can be driven to move downward to crush the pressed raw materials.

[0008] More preferably, a connecting spring is fixedly sleeved on the outer surface of the bottom of the crushing member. The bottom end of the connecting spring is fixedly connected to the upper surface of the rotating disc. The connecting spring can drive the crushing member to automatically reset.

[0009] More preferably, a connecting rod is rotatably connected through the upper surface of the connecting member. A chute is provided on the outer surface of the connecting rod. The bottom of the chute of the connecting rod is threaded. The bottom of the connecting rod is fixedly connected to the upper surface of the rotating member. One side of the connecting lead screw is slidably connected to the upper surface of the connecting member. The outer surface of one side of the extrusion member is in extrusion fit with the threaded groove on the outer surface of the connecting rod. When the outer surface of one side of the extrusion member is in extrusion with the thread inside the connecting rod, the connecting rod can be driven to drive the rotating member and the soft pad to rotate automatically.

[0010] More preferably, a fixing plate is fixedly connected to the outer surface of the moving frame. A rotating gear is rotatably connected to the lower surface of the fixing plate. A fixing lead screw is fixedly connected to the upper surface of the connecting member. The inner side of the rotating gear is rotatably connected to the outer surface of the fixing lead screw. A missing gear is fixedly connected to the outer side of the upper surface of the crushing member. The outer surface of the rotating gear is in meshing fit with the outer surface of the missing gear. When the rotating gear is engaged with the missing gear, the crushing member can be driven to rotate. When the crushing member moves downward to crush the raw materials, it can also rotate simultaneously, so that the raw materials can be crushed more thoroughly.

[0011] More preferably, a limiting disc is slidably connected to the outer surface of the oil outlet barrel. The upper surface of the limiting disc is in extrusion fit with the lower surface of the top of the oil outlet barrel. Fixed blocks are symmetrically and fixedly connected to the outer surface of the oil outlet barrel. Lifting lead screws are threadedly connected to the inner sides of the fixed blocks respectively. The upper surfaces of the lifting lead screws are in extrusion fit with the lower surface of the limiting disc. When the limiting disc moves upward, the bag mouth of the bag containing the raw materials can be fixed, preventing raw material leakage or inconvenient operation caused by the movement or shaking of the bag mouth.

[0012] More preferably, a scraping member is slidably connected to the outer surface of the oil guiding frame, and one side of the scraping member is slidably engaged with the inner side of the oil guiding frame. When the scraping member slides on the upper surface of the oil guiding frame, the residual grease inside the oil guiding frame can be scraped off.

[0013] An auxiliary device and method for processing protein powder, the specific steps are as follows:

[0014] Step 1: Place the pretreated protein powder raw material inside the oil extraction barrel and start the electric push rod.

[0015] Step 2: Drive the connecting member downward through the electric push rod so that the connecting member can extract oil from the protein powder raw material.

[0016] Step 3: When the electric push rod drives the connecting member to move upward, the fixed rod can be squeezed by the threaded groove of the guiding frame, prompting the connecting member to swing automatically, so as to facilitate taking out the protein powder raw material after oil extraction from the oil extraction barrel.

[0017] Step 4: After the connecting member moves upward, when the output shaft of the servo motor drives the extrusion member to move upward, it can prompt the connecting rod to drive the rotating member and the soft pad to rotate and open simultaneously.

[0018] Step 5: As the output shaft of the servo motor continues to rotate, it can prompt the crushing member to squeeze downward, so that the crushing member can crush the protein powder raw material after oil extraction, facilitating subsequent processing.

[0019] Step 6: When the moving frame moves downward, it can drive the crushing member to rotate the protein powder raw material, so as to achieve further processing.

[0020] Step 7: When placing the protein powder raw material inside the oil extraction barrel, rotating the lifting screw rod can make the limiting disc fix the bag mouth of the protein powder raw material.

[0021] Step 8: As the fried oil flows into the oil guiding frame, the sliding scraping member can quickly drain the oil inside the oil guiding frame.

[0022] Compared with the prior art, the present invention has the following advantages:

[0023] 1. When the fixed rod is squeezed by the threaded groove of the guiding frame in the present invention, the connecting member can automatically rotate after moving upward, which can provide a larger space for the staff, making it more convenient and fast to take out the raw materials. And after the connecting member rotates, the staff can more intuitively observe the residues inside the oil extraction barrel, so as to thoroughly clean the residues, which helps to maintain the purity and quality stability of the product.

[0024] 2. When the extrusion part moves upward, the connecting rod can drive the rotating part and the soft pad to rotate automatically. At this time, the crushing part can move downward to crush the raw materials after pressing, so that continuous operation can be carried out, improving production efficiency. Moreover, the crushed raw materials are easier to store, transport and process subsequently.

[0025] 3. When the rotating gear moves up and down and rotates, it can drive the crushing part to rotate at the same time. When the crushing part extrudes the raw materials, it can also rotate at the same time, exerting a dual effect to crush the raw materials more thoroughly. And during the rotation process of the crushing part, it can also break the lumps in the raw materials, prevent large particles from appearing in the crushed products, and improve the uniformity of the raw material powder.

[0026] 4. When the limit disk rises by rotating the rotating lifting screw rod, the limit disk can clamp the bag mouth of the raw material bag, keeping the position of the raw material bag stable during the oil extraction process, preventing raw material leakage or inconvenient operation caused by the movement or shaking of the bag mouth. And clamping the bag mouth can also prevent raw materials from leaking during the oil extraction process, avoiding waste of raw materials; through the sliding scraping part, the grease inside the oil guide frame can be scraped off, enabling the grease to be fully collected. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 It is a schematic three-dimensional structure diagram of the present invention.

[0028] Figure 2 It is a schematic overall structure diagram of the steering component of the present invention.

[0029] Figure 3 It is a schematic partial structure diagram of the crushing component of the present invention.

[0030] Figure 4 It is a schematic overall structure diagram of the rotating component of the present invention.

[0031] Figure 5 It is a schematic cross-sectional view of the overall structure of the crushing component of the present invention.

[0032] Figure 6 It is a schematic overall structure diagram of the limiting component of the present invention.

[0033] The markings of each component in the attached drawings are as follows: 1 - support base, 11 - oil outlet barrel, 12 - oil guide frame, 13 - guide frame, 14 - electric push rod, 15 - rotating part, 16 - fixing part, 17 - fixing rod, 18 - protective cover, 19 - connecting part, 110 - rotating part, 111 - soft pad, 112 - connecting rod, 113 - servo motor, 114 - connecting lead screw, 2 - extrusion part, 21 - lever, 22 - moving frame, 23 - crushing part, 24 - connecting spring, 25 - rotating disc, 3 - fixing plate, 31 - fixing lead screw, 32 - rotating gear, 33 - missing gear, 4 - lifting lead screw, 41 - limit disc, 42 - fixing block, 43 - scraping part. Detailed implementation mode

[0034] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0035] Next, a specific implementation example of the present invention will be elaborated in detail in conjunction with the accompanying drawings.

[0036] Embodiment 1: An auxiliary device for processing protein powder, including a support base 1. The upper surface of the support base 1 is fixedly connected with an oil outlet barrel 11, and the oil outlet barrel 11 is used for extracting the raw materials of protein powder. The outer surface of the oil outlet barrel 11 is fixedly connected with an oil guide frame 12, and the oil guide frame 12 is used for guiding the oil extracted from the raw materials. The rear side of the upper surface of the support base 1 is fixedly connected with an electric push rod 14. The mobile end at the top of the electric push rod 14 is fixedly connected with a fixing part 16, and the mobile end of the electric push rod 14 is used to drive the fixing part 16 to move up and down. The outer surface of the fixing part 16 is rotatably connected with a rotating part 15. The front end of the rotating part 15 is fixedly connected with a connecting part 19. The fixing part 16 is used to drive the connecting part 19 to move up and down through the rotating part 15, and the connecting part 19 is used to press the raw materials inside the oil outlet barrel 11. The bottom of the connecting part 19 is rotatably connected with a rotating part 110, and the bottom of the rotating part 110 is detachably connected with a soft pad 111. The soft pad 111 is used to increase the sealing performance when the connecting part 19 presses down.

[0037] As described in the background technology, when the protein powder raw materials finish oil extraction, since the connecting part 19 is relatively close to the oil outlet barrel 11, it causes the staff to spend more time taking out the raw materials from the oil outlet barrel 11, and it is difficult for the staff to observe the internal situation of the oil outlet barrel 11, resulting in incomplete cleaning inside the oil outlet barrel 11 and affecting subsequent oil extraction of the raw materials.

[0038] To solve the problem that the connecting member 19 is relatively close to the oil outlet barrel 11, the following technical solution is adopted in this embodiment: A guide frame 13 is fixedly connected to the upper surface at the rear side of the support base 1. A chute is formed through the inside of the guide frame 13. The chute at the top of the guide frame 13 is threaded. A fixing rod 17 is fixedly connected to the rear side of the rotating member 15. The rotating member 15 is used to drive the fixing rod 17 to move up and down. The outer surface of the fixing rod 17 is slidably connected to the chute of the guide frame 13, and the outer surface of the fixing rod 17 is in extrusion fit with the threaded groove of the guide frame 13.

[0039] When the raw materials of the protein powder need to be extracted, first place the raw materials inside the oil outlet barrel 11 and start the electric push rod 14. The output end of the electric push rod 14 can drive the rotating member 15 to move downward through the fixing member 16. When the rotating member 15 moves downward, it can drive the fixing rod 17 to slide downward inside the chute of the guide frame 13. And when the rotating member 15 moves downward, it can also drive the connecting member 19 to move simultaneously. When the connecting member 19 moves downward, it can squeeze the raw materials inside the oil outlet barrel 11, so that the oil squeezed from the excellent raw materials can flow into the inside of the oil guide frame 12 for guiding.

[0040] When the raw material pressing is completed, at this time, the moving end on the upper surface of the electric push rod 14 can drive the rotating member 15 to move upward through the fixing member 16. When the rotating member 15 moves upward, it will drive the fixing rod 17 and the connecting member 19 to move simultaneously. When the fixing rod 17 moves upward first in the chute of the guide frame 13, it will cause the outer surface of the fixing rod 17 to be squeezed against the inside of the threaded groove of the guide frame 13, prompting the fixing rod 17 to swing. As the fixing rod 17 swings, it will drive the connecting member 19 to swing simultaneously through the rotating member 15, so that the lower surface of the connecting member 19 and the upper surface of the oil outlet barrel 11 are not on the same horizontal line, thus providing more space for the staff, making it more convenient and fast to take out the raw materials from the inside of the oil outlet barrel 11. And after the connecting member 19 rotates, the staff can more intuitively observe the residues inside the oil outlet barrel 11 and can thoroughly clean the residues, which helps to maintain the purity and quality stability of the product.

[0041] When taking out the pressed raw materials from the inside of the oil outlet barrel 11, the staff also needs to perform additional crushing treatment on the raw materials.

[0042] To solve the problem that the raw materials need to be processed, the following technical solution is adopted in this embodiment: A protective cover 18 is detachably connected to the upper surface of the connecting piece 19. The protective cover 18 is used to protect the upper surface of the connecting piece 19. A servo motor 113 is fixedly connected to the upper surface of the connecting piece 19. The output shaft of the servo motor 113 is fixedly connected to a connecting lead screw 114. The servo motor 113 is used to drive the connecting lead screw 114 to rotate. The outer surface of the connecting lead screw 114 is threadedly connected to a pressing piece 2. The rear end of the pressing piece 2 is slidably connected to the outer surface of the top of the connecting piece 19. The connecting lead screw 114 is used to drive the pressing piece 2 to slide up and down on the upper surface of the connecting piece 19.

[0043] A lever 21 is rotatably connected to the rear side of the top of the connecting piece 19. The outer surface of the front end of the pressing piece 2 is in pressing fit with the outer surface of the left end of the lever 21. A moving frame 22 is slidably connected to the outer surface of the connecting piece 19. The outer surface of the right end of the lever 21 is in pressing fit with the upper surface of the moving frame 22. The lever 21 is used to drive the moving frame 22 to press downwards. A crushing piece 23 is rotatably connected to the lower surface of the moving frame 22. The moving frame 22 is used to drive the crushing piece 23 to move up and down. The crushing piece 23 is used to crush the raw materials after pressing. The outer surface of the bottom of the crushing piece 23 is slidably connected to a rotating disk 25. The outer surface of the rotating disk 25 is rotatably connected to the inside of the connecting piece 19.

[0044] When the raw materials are finished being pressed, at this time, the working process requires rotating the rotating piece 110 and starting the servo motor 113. When the rotating piece 110 rotates, it can drive the soft pad 111 to rotate at the same time, and the output shaft of the servo motor 113 can drive the connecting lead screw 114 to rotate at the same time. As the connecting lead screw 114 rotates, it can drive the pressing piece 2 to slide upwards on the upper surface of the connecting piece 19. When the connecting piece 19 moves upwards, the outer surface of the front end of the connecting piece 19 can press the outer surface of the left end of the pressing piece 2, prompting the left end of the lever 21 to rotate upwards, and the right end of the lever 21 to move downwards. When the right end of the lever 21 moves downwards, it can press the upper surface of the moving frame 22, causing the moving frame 22 to slide downwards on the outer surface of the connecting piece 19. When the moving frame 22 slides, it will drive the crushing piece 23 to move at the same time. When the crushing piece 23 moves downwards, it can crush the raw materials after pressing, so that continuous operation can be carried out, improving production efficiency, and the crushed raw materials are more conducive to storage, transportation and subsequent processing.

[0045] A connecting spring 24 is fixedly sleeved on the outer surface of the bottom of the crushing member 23. The bottom end of the connecting spring 24 is fixedly connected to the upper surface of the rotating disk 25. The connecting spring 24 is used to drive the crushing member 23 to move in a reset manner. When the connecting lead screw 114 drives the pressing member 2 to move downward, the connecting spring 24 in a compressed state at this time can drive the crushing member 23 to move upward. When the crushing member 23 moves upward, it can drive the moving frame 22 to move simultaneously. When the moving frame 22 moves upward, it can squeeze the outer surface of the right end of the lever 21, so that the lever 21 can swing in a reset manner.

[0046] A connecting rod 112 is rotatably connected through the upper surface of the connecting member 19. A chute is formed on the outer surface of the connecting rod 112. The bottom of the chute of the connecting rod 112 is threaded. The outer surface of the left end of the pressing member 2 is slidably connected in the chute on the outer surface of the connecting rod 112. The outer surface of the left end of the pressing member 2 is in pressing fit with the inner side of the threaded groove of the connecting rod 112. When the pressing member 2 moves up and down, it is used to drive the connecting rod 112 to rotate. The bottom of the connecting rod 112 is rotatably connected to the upper surface of the rotating member 110. The connecting rod 112 is used to drive the soft pad 111 to rotate through the rotating member 110.

[0047] When the connecting lead screw 114 drives the pressing member 2 to move upward, the outer surface of the left end of the pressing member 2 can be pressed against the threaded groove on the outer surface of the connecting rod 112, thereby driving the connecting rod 112 to rotate. When the connecting rod 112 rotates inside the connecting member 19, it can drive the soft pad 111 to rotate simultaneously through the rotating member 110, so that the soft pad 111 can be automatically rotated when the raw material is crushed, thereby reducing manual intervention.

[0048] A fixed plate 3 is fixedly connected to the right side of the outer surface of the moving frame 22. The moving frame 22 is used to drive the fixed plate 3 to move up and down. The lower surface of the fixed plate 3 is rotatably connected to a rotating gear 32. The fixed plate 3 is used to drive the rotating gear 32 to move up and down. A fixed screw rod 31 is fixedly connected to the right side of the upper surface of the connecting member 19. The inner side of the rotating gear 32 is threadedly connected to the outer surface of the fixed screw rod 31. The fixed screw rod 31 is used to drive the rotating gear 32 to rotate. An incomplete gear 33 is fixedly connected to the outer side of the upper surface of the crushing member 23. The outer surface of the rotating gear 32 is in pressing fit with the outer surface of the incomplete gear 33. As the moving frame 22 drives the crushing member 23 to move downward, the moving frame 22 can drive the fixed plate 3 to move simultaneously. When the fixed plate 3 moves downward, it will drive the rotating gear 32 to move simultaneously. When the rotating gear 32 moves downward on the outer surface of the fixed screw rod 31, it will cause the rotating gear 32 to rotate. As the rotating gear 32 rotates, it will drive the incomplete gear 33 to rotate simultaneously. When the incomplete gear 33 rotates, it can drive the crushing member 23 to rotate simultaneously, so that the crushing member 23 can rotate while moving downward, which can act on the raw materials in a dual way, making the raw materials crushed more thoroughly. And during the rotation of the crushing member 23, it can also break the lumps in the raw materials, prevent large particles from appearing in the crushed products, and improve the uniformity of the raw material powder.

[0049] Before the staff squeezes the bag filled with raw materials into the oil extraction barrel 11, when the bag is overfilled or the raw materials are unevenly distributed inside the bag, it is easy to cause the bag mouth to open, which may easily lead to leakage and waste of raw materials.

[0050] To solve the problem of the bag mouth opening, the following technical solution is adopted in this embodiment: A limit disk 41 is slidably connected to the outer surface of the oil extraction barrel 11. The upper surface of the limit disk 41 is in pressing fit with the lower surface of the top of the oil extraction barrel 11. Fixed blocks 42 are symmetrically and fixedly connected to the outer surface of the oil extraction barrel 11. Lifting screw rods 4 are threadedly connected to the inner sides of the fixed blocks 42 respectively. The upper surfaces of the lifting screw rods 4 are in pressing fit with the lower surface of the limit disk 41. When the staff places the bag filled with raw materials inside the oil extraction barrel 11, the bag mouth can be sleeved on the outer surface of the top of the oil extraction barrel 11 at this time, and the lifting screw rods 4 are rotated. As the lifting screw rods 4 rotate inside the fixed blocks 42, they can move upward. When the lifting screw rods 4 move upward, they can press the lower surface of the limit disk 41, causing the limit disk 41 to move upward simultaneously. When the lower surface of the limit disk 41 fits against the lower surface of the top of the oil extraction barrel 11, it can clamp the bag mouth, keeping the position of the raw material bag stable during the oil extraction process and preventing raw material leakage or inconvenient operation caused by the movement or shaking of the bag mouth.

[0051] When it is necessary to take out the bag from inside the oil extraction barrel 11, at this time, the lifting screw rod 4 can be rotated in the reverse direction. When the lifting screw rod 4 rotates in the reverse direction inside the fixed block 42, it can cause the lifting screw rod 4 to move downward. When the lifting screw rod 4 moves downward, it will cause the upper surface of the lifting screw rod 4 to be separated from the lower surface of the limit disc 41. At this time, the limit disc 41 will automatically slide downward, so that the limit disc 41 is disengaged from clamping the bag mouth.

[0052] A scraping member 43 is slidably connected to the upper surface of the oil guiding frame 12. The bottom of the scraping member 43 close to the oil extraction barrel 11 is slidably matched with the inner side of the oil guiding frame 12. When the raw material pressing is completed, at this time, the staff can slide the scraping member 43. When the scraping member 43 slides on the upper surface of the oil guiding frame 12, it can scrape the residual oil on the inner side of the oil guiding frame 12, so that the oil can be fully collected.

[0053] Embodiment 2: A processing auxiliary device and method for protein powder, the specific steps are as follows:

[0054] Step 1: Place the pretreated protein powder raw material inside the oil extraction barrel 11 and start the electric push rod 14.

[0055] Step 2: Drive the connecting member 19 to move downward through the electric push rod 14, so that the connecting member 19 can press the oil from the protein powder raw material.

[0056] Step 3: When the electric push rod 14 drives the connecting member 19 to move upward, it can cause the fixed rod 17 to be squeezed by the thread groove of the guide frame 13, prompting the connecting member 19 to automatically swing, so as to facilitate taking out the protein powder raw material after oil pressing from inside the oil extraction barrel 11.

[0057] Step 4: After the connecting member 19 moves upward, when the output shaft of the servo motor 113 drives the pressing member 2 to move upward, it can cause the connecting rod 112 to drive the rotating member 110 and the soft pad 111 to rotate and open simultaneously.

[0058] Step 5: As the output shaft of the servo motor 113 continues to rotate, it can cause the crushing member 23 to press downward, so that the crushing member 23 can crush the protein powder raw material after oil pressing, facilitating subsequent processing.

[0059] Step 6: When the moving frame 22 moves downward, it can drive the crushing member 23 to rotate the protein powder raw material, so as to achieve further processing.

[0060] Step 7: When placing the protein powder raw material inside the oil extraction barrel 11, rotating the lifting screw rod 4 can cause the limit disc 41 to fix the bag mouth containing the protein powder raw material.

[0061] Step Eight: When the squeezed oil flows into the inside of the oil guide frame 12, the sliding scraping member 43 can quickly drain the oil inside the oil guide frame 12.

[0062] Although the present disclosure has been shown and described with reference to specific exemplary embodiments thereof, those skilled in the art should understand that various changes in form and detail may be made therein without departing from the spirit and scope of the present disclosure as defined by the appended claims and their equivalents. Therefore, the scope of the present disclosure should not be limited to the above embodiments, but should be determined not only by the appended claims, but also by the equivalents of the appended claims.

Claims

1. An auxiliary device for processing protein powder, comprising a support base (1). The upper surface of the support base (1) is fixedly connected with an oil outlet barrel (11). The outer surface of the bottom of the oil outlet barrel (11) is fixedly connected with an oil guide frame (12). One side of the upper surface of the support base (1) is fixedly connected with an electric push rod (14). The top of the movable end of the electric push rod (14) is fixedly connected with a fixing member (16). The outer surface of the fixing member (16) is rotatably connected with a rotating member (15). One end of the rotating member (15) is fixedly connected with a connecting member (19). The bottom of the connecting member (19) is rotatably connected with a rotating member (110). The bottom of the rotating member (110) is detachably connected with a soft pad (111), characterized in that, On one side of the upper surface of the support base (1), a guide frame (13) is fixedly connected. A chute is penetrated and connected inside the guide frame (13). The top of the chute of the guide frame (13) is threaded. On one side of the rotating member (15), a fixed rod (17) is fixedly connected. The outer surface of the fixed rod (17) is in extrusion fit with the inner side of the threaded groove of the guide frame (13).

2. The processing auxiliary device for a protein powder according to claim 1, characterized in that, On the upper surface of the connecting member (19), a protective cover (18) is detachably connected. On the upper surface of the connecting member (19), a servo motor (113) is fixedly connected. The output shaft of the servo motor (113) is fixedly connected with a connecting lead screw (114). An extrusion member (2) is threadedly connected to the outer surface of the connecting lead screw (114). On one side of the upper surface of the connecting member (19), a lever (21) is rotatably connected. The outer surface of the extrusion member (2) is in extrusion fit with the outer surface of one end of the lever (21). A moving frame (22) is slidably connected to the outer surface of the top of the connecting member (19). The outer surface of the other end of the lever (21) is in extrusion fit with the upper surface of the moving frame (22). At the bottom of the moving frame (22), a crushing member (23) is rotatably connected. The outer surface of the bottom of the crushing member (23) is slidably connected to a rotating disk (25). The outer surface of the rotating disk (25) is rotatably connected to the inner side of the bottom of the connecting member (19).

3. The processing auxiliary device for a protein powder according to claim 2, wherein, A connecting spring (24) is fixedly sleeved on the outer surface of the bottom of the crushing member (23). The bottom end of the connecting spring (24) is fixedly connected to the upper surface of the rotating disk (25).

4. The processing auxiliary device for a protein powder according to claim 3, wherein, A connecting rod (112) is penetrated and rotatably connected to the upper surface of the connecting member (19). A chute is provided on the outer surface of the connecting rod (112). The bottom of the chute of the connecting rod (112) is threaded. The bottom of the connecting rod (112) is fixedly connected to the upper surface of the rotating member (110). One side of the connecting lead screw (114) is slidably connected to the upper surface of the connecting member (19). The outer surface of one side of the extrusion member (2) is in extrusion fit with the threaded groove on the outer surface of the connecting rod (112).

5. The processing auxiliary device for a protein powder according to claim 3, wherein, A fixing plate (3) is fixedly connected to the outer surface of the moving frame (22). A rotating gear (32) is rotatably connected to the lower surface of the fixing plate (3). A fixed lead screw (31) is fixedly connected to the upper surface of the connecting member (19). The inner side of the rotating gear (32) is rotatably connected to the outer surface of the fixed lead screw (31). An incomplete gear (33) is fixedly connected to the outer side of the upper surface of the crushing member (23). The outer surface of the rotating gear (32) is in meshing fit with the outer surface of the incomplete gear (33).

6. The processing auxiliary device for a protein powder according to claim 1, characterized in that, A limiting disk (41) is slidably connected to the outer surface of the oil outlet barrel (11). The upper surface of the limiting disk (41) is in extrusion fit with the lower surface of the top of the oil outlet barrel (11). Fixed blocks (42) are symmetrically and fixedly connected to the outer surface of the oil outlet barrel (11). Lifting lead screws (4) are threadedly connected to the inner sides of the fixed blocks (42). The upper surfaces between the lifting lead screws (4) are in extrusion fit with the lower surface of the limiting disk (41).

7. The processing auxiliary device for a protein powder according to claim 6, characterized in that, A scraping member (43) is slidably connected to the outer surface of the oil guiding frame (12), and one side of the scraping member (43) is slidably engaged with the inner side of the oil guiding frame (12).

8. The processing auxiliary device and method of protein powder according to any one of claims 1-7, the specific steps are as follows: Step 1: Place the pretreated protein powder raw material inside the oil outlet barrel (11), and start the electric push rod (14). Step 2: Drive the connecting member (19) to move downward through the electric push rod (14) so that the connecting member (19) can extract oil from the protein powder raw material. Step 3: When the electric push rod (14) drives the connecting member (19) to move upward, the fixed rod (17) can be squeezed by the thread groove of the guide frame (13), prompting the connecting member (19) to swing automatically, so as to facilitate the removal of the protein powder raw material after oil extraction from the inside of the oil outlet barrel (11). Step 4: After the connecting member (19) moves upward, when the output shaft of the servo motor (113) drives the extrusion member (2) to move upward, it can prompt the connecting rod (112) to drive the rotating member (110) and the soft pad (111) to rotate and open simultaneously. Step 5: As the output shaft of the servo motor (113) continues to rotate, it can prompt the crushing member (23) to press downward, so that the crushing member (23) can crush the protein powder raw material after oil extraction, facilitating subsequent processing. Step 6: When the moving frame (22) moves downward, it can drive the crushing member (23) to rotate the protein powder raw material, so as to achieve further processing. Step 7: When placing the protein powder raw material inside the oil outlet barrel (11), rotating the lifting screw rod (4) can make the limit disc (41) fix the bag mouth containing the protein powder raw material. Step 8: As the squeezed oil flows into the oil guiding frame (12), the sliding scraping member (43) can quickly discharge the oil inside the oil guiding frame (12).