Rubbing, washing and separating equipment for gluten processing dough
The hydraulic telescopic rod and sliding plate structure solves the problem of troublesome and laborious fixing of the water filling bin cover with bolts, realizes convenient disassembly and efficient kneading and cleaning of gluten processing equipment, and improves dough extraction efficiency.
Patent Information
- Application Number
- CN202423038469.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-10
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-12-10
AI Technical Summary
In existing gluten processing dough kneading, washing and separation equipment, the water injection bin cover is fixed by bolts, which makes installation and removal time-consuming and labor-intensive, affecting the dough extraction efficiency.
It adopts a hydraulic telescopic rod and sliding plate structure, and the slider and movable bracket are used to realize the convenient removal and fixation of the bin cover. The motor-driven kneading component is combined to improve the dough kneading efficiency.
The efficiency of removing the bin cover is improved, the dough extraction process is simplified, and the practicality of the equipment and the efficiency of dough kneading and washing are improved.
Smart Images

Figure CN223474571U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of gluten processing, and in particular to a dough kneading and separating device for gluten processing. Background Technology
[0002] Gluten is a plant-based protein composed of gliadin and glutenin, and is an important protein source for vegetarians or people who restrict their intake of animal protein. Gluten processing dough kneading and separating equipment is a type of machinery used in gluten production, mainly for kneading, washing, and separating dough. It is an important piece of equipment in the gluten production process, which can improve production efficiency, ensure product quality, and bring convenience to gluten production.
[0003] According to the patent application CN221241568U, a dough kneading and separating device for gluten processing is disclosed online, "This utility model discloses a dough kneading and separating device for gluten processing, including a separation chamber, a water injection chamber cover, a kneading and washing plate, and a filter cylinder. The water injection chamber cover is movably connected to the middle position of the top of the separation chamber. Bolts are evenly installed at equal intervals on the outside of the water injection chamber cover. A first motor is installed at the middle position of the top of the water injection chamber cover, and a first rotating rod is installed at the output shaft end of the first motor. By installing the first motor at the top of the water injection chamber cover, the first motor can drive the first rotating rod and the first gear to rotate. At the same time, the first gear can drive the second gear on the second rotating rod to rotate. At this time, the kneading and washing plate and the push plate on the first and second rotating rods can efficiently perform the dough kneading and washing work. Furthermore, the second motor at the bottom of the separation chamber can drive the dough in the filter cylinder to rotate in the opposite direction through a square insert, thereby efficiently separating the starch and water in the dough."
[0004] Regarding the above description, the applicant believes the following issues exist:
[0005] In the process of using this utility model, the water injection chamber cover is fixed with bolts, which allows for the installation and removal of the water injection chamber cover and the removal of the filter cylinder containing the separated dough. However, installing or removing the bolts requires specific tools, and removing or installing the bolts around the water injection chamber cover is time-consuming and laborious, affecting the dough extraction efficiency and reducing the practicality of the device. Therefore, it is necessary to improve the dough kneading and separating equipment for gluten processing to solve the above problems. Utility Model Content
[0006] To overcome the problem that fixing the water tank cover with bolts requires specific tools to install or remove the bolts, and that removing or installing bolts around the water tank cover is time-consuming and laborious, thus affecting the extraction efficiency of dough.
[0007] The technical solution of this utility model is as follows: a dough kneading and separating device for gluten processing, including a separating chamber, a foot frame, a chamber cover, a water inlet, a water outlet, a slider, a movable support with a limiting block, and a kneading component. The bottom of the separating chamber is fixedly connected to the foot frame, the outside of the separating chamber is provided with a chamber cover, the top of the chamber cover is fixedly connected to a water inlet, the inside of the separating chamber is provided with a water outlet, the inside of the separating chamber is provided with a kneading component, the inside of the chamber cover is slidably connected to a slider, the top of the slider is fixedly connected to a limiting block, the inside of the limiting block is rotatably connected to a movable support, and the limiting block is slidable by the slider and the movable support.
[0008] The device is fixed inside the fixed block by a hydraulic telescopic rod. The telescopic rod causes the sliding plate to slide up and down. Two first optical axes limit the sliding plate, allowing the movable bracket to rotate and connect inside the U-shaped block. The movable bracket rotates inside the limiting block, causing the limiting block to slide inside the chamber cover via a slider. The telescopic hydraulic rod then slides the four limiting blocks outwards, away from the corresponding grooves of the separation chamber and the chamber cover, facilitating the removal of the chamber cover and the extraction of the dough from the filter bucket. This improves the efficiency of chamber cover removal and enhances the practicality of the device. Conversely, by fixing the chamber cover, water is injected into the separation chamber through the water inlet, improving the kneading and washing of the dough. The separation effect is achieved by draining the water from the dough after kneading through the outlet, thus improving the efficiency of dough kneading. The filter bucket is placed inside the separation chamber, with its corresponding groove contacting the square insert. Support plates and the interior of the separation chamber provide auxiliary support. Starting the second motor rotates the filter bucket, which in turn rotates the second optical shaft inside the chamber cover, driving the first gear. The meshing of the first and second gears causes the kneading rollers to rotate in the opposite direction, kneading the dough inside the filter bucket. This combined action of the rotating filter bucket and the kneading and separating process improves the efficiency of dough kneading and enhances the practicality of the device.
[0009] Preferably, the cover has a groove at the corresponding position of the slider, and the slider slides in the groove.
[0010] Preferably, a fixing block is fixedly connected to the top of the cover, a hydraulic telescopic rod is fixedly connected inside the fixing block, a sliding plate is fixedly connected to the telescopic end of the hydraulic telescopic rod, a first optical axis is fixedly connected to the bottom of the sliding plate, the first optical axis slides inside the fixing block, a U-shaped block is fixedly connected to the bottom of the sliding plate, and a movable bracket is rotatably connected inside the U-shaped block.
[0011] Preferably, the separation chamber and the chamber cover have grooves at the corresponding positions of the limiting block, and the limiting block is engaged in the groove.
[0012] Preferably, the kneading assembly includes a first motor, which is fixedly connected to the left side of the fixed block. A second optical shaft is fixedly connected to the output end of the first motor and rotates inside the chamber cover. A first gear is fixedly connected to the outside of the second optical shaft, and a second gear is meshed with the outside of the first gear. A third optical shaft is fixedly connected inside the second gear and rotates inside the chamber cover. A bushing is fixedly connected to the outside of the second and third optical shafts, and a kneading roller is fixedly connected to the outside of the bushings. A second motor is fixedly connected to the bottom of the separation chamber, and a rotating shaft is fixedly connected to the output end of the second motor. The rotating shaft rotates inside the separation chamber. A support plate is fixedly connected to the top of the rotating shaft, and a square insert is fixedly connected to the top of the support plate. A filter barrel is provided outside the square insert, and a sealing ring is provided between the separation chamber and the rotating shaft.
[0013] Preferably, the filter barrel has a groove at the corresponding position of the square insert, and the square insert is placed in the groove.
[0014] Preferably, six kneading rollers are provided, which are evenly distributed on the outside of the two bushings.
[0015] The beneficial effects of this utility model are as follows: Compared with fixing the water filling chamber cover with bolts, the sliding plate is moved up and down by a telescopic hydraulic rod, so that the movable bracket is rotatably connected to the inside of the U-shaped block. The movable bracket rotates inside the limiting block, so that the limiting block slides inside the chamber cover by a slider. The telescopic hydraulic rod will slide the four limiting blocks outward, away from the grooves corresponding to the separation chamber and the chamber cover, making it easier to disassemble the chamber cover and extract the dough inside the filter bucket. This improves the efficiency of disassembling the chamber cover and enhances the practicality of the device. Conversely, fixing the chamber cover avoids the need for specific tools when installing or disassembling bolts, and the time and effort required to disassemble or install bolts around the water filling chamber cover, which would affect the extraction efficiency of the dough. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the overall structure of the gluten processing dough kneading and separating equipment of this utility model;
[0017] Figure 2 This is a schematic diagram of the hydraulic telescopic rod structure of the gluten processing dough kneading and separating equipment of this utility model;
[0018] Figure 3 This is a schematic diagram of the sliding plate structure of the gluten processing dough kneading and separating equipment of this utility model;
[0019] Figure 4 This is a schematic diagram of the kneading component structure of the gluten processing dough kneading and washing separation equipment of this utility model;
[0020] Figure 5 This is a schematic diagram of the sealing ring structure of the gluten processing dough kneading and separating equipment of this utility model.
[0021] Explanation of reference numerals in the attached drawings: 1. Separation chamber; 21. Fixing block; 22. Hydraulic telescopic rod; 23. First optical axis; 24. Sliding plate; 25. U-shaped block; 26. Movable bracket; 27. Limiting block; 28. Sliding block; 31. First motor; 32. Second optical axis; 33. First gear; 34. Second gear; 35. Third optical axis; 36. Bushing; 37. Kneading roller; 38. Second motor; 39. Rotating shaft; 310. Support plate; 311. Sealing ring; 312. Square insert; 313. Filter barrel; 4. Leg; 5. Chamber cover; 6. Water inlet; 7. Water outlet. Detailed Implementation
[0022] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0023] Please see Figure 1-Figure 5 This utility model provides an embodiment of a dough kneading and separating device for gluten processing, including a separating chamber 1, a support 4, a chamber cover 5, a water inlet 6, a water outlet 7, a slider 28, a limiting block 27, a movable support 26, and a kneading assembly. The bottom of the separating chamber 1 is fixedly connected to the support 4, the outside of the separating chamber 1 is provided with the chamber cover 5, the top of the chamber cover 5 is fixedly connected to the water inlet 6, the inside of the separating chamber 1 is provided with the water outlet 7, the inside of the separating chamber 1 is provided with the kneading assembly, the inside of the chamber cover 5 is slidably connected to the slider 28, the top of the slider 28 is fixedly connected to the limiting block 27, the inside of the limiting block 27 is rotatably connected to the movable support 26, the limiting block 27 slides through the slider 28 and the movable support 26, the limiting block 27 slides through the slider 28 and the corresponding position of the slider 28, the slider 28 slides in the groove, the groove allows the inside of the chamber cover 5 to slide, and it is engaged with the inside of the chamber cover 5 and the separating chamber 1, thereby improving the efficiency of installing and disassembling the chamber cover 5.
[0024] Please see Figure 2-Figure 3In this embodiment, a fixing block 21 is fixedly connected to the top of the cover 5. A hydraulic telescopic rod 22 is fixedly connected inside the fixing block 21. A sliding plate 24 is fixedly connected to the telescopic end of the hydraulic telescopic rod 22. A first optical axis 23 is fixedly connected to the bottom of the sliding plate 24. The first optical axis 23 slides inside the fixing block 21. A U-shaped block 25 is fixedly connected to the bottom of the sliding plate 24. A movable bracket 26 is rotatably connected inside the U-shaped block 25 and fixedly connected to the fixing block 21 via the hydraulic telescopic rod 22. By extending and retracting the hydraulic telescopic rod 22, the sliding plate 24 is driven to slide up and down. The two first optical axes 23 limit the sliding plate 24, causing the movable bracket 26 to rotatably connect inside the U-shaped block 25. The movable bracket 26 rotates inside the limiting block 27, causing the limiting block 27 to slide inside the cover 5 via the slider 28. The telescopic hydraulic telescopic rod 22 causes the four limiting blocks 27 to slide outward, away from the corresponding grooves of the separation chamber 1 and the cover 5, making it easier to disassemble the cover 5 and extract the dough inside the filter bucket 313. This improves the efficiency of disassembling the cover 5 and enhances the practicality of the device. Conversely, it can fix the cover 5. The separation chamber 1 and the cover 5 have grooves at the corresponding positions of the limiting block 27. The limiting block 27 is engaged in the groove, allowing the movable limiting block 27 to fix or disassemble the cover 5 and the separation chamber 1, thus improving convenience.
[0025] Please see Figures 4-5In this embodiment, the kneading assembly includes a first motor 31, which is fixedly connected to the left side of the fixing block 21. A second optical shaft 32 is fixedly connected to the output end of the first motor 31. The second optical shaft 32 rotates inside the housing cover 5. A first gear 33 is fixedly connected to the outside of the second optical shaft 32. A second gear 34 is meshed with the outside of the first gear 33. A third optical shaft 35 is fixedly connected inside the second gear 34 and rotatably connected inside the housing cover 5. A bushing 36 is fixedly connected to the outside of both the second optical shaft 32 and the third optical shaft 35. A kneading roller 37 is fixedly connected to the outside of the bushing 36. A second motor 38 is fixedly connected to the bottom of the separation chamber 1. A rotating shaft 39 is fixedly connected to the output end of the second motor 38. The rotating shaft 39 rotates inside the separation chamber 1. A support plate 310 is fixedly connected to the top of the rotating shaft 39. A square insert 312 is fixedly connected to the top of the support plate 310. A filter barrel 313 is provided on the outside of the square insert 312. A sealing ring 311 is provided between the separation chamber 1 and the rotating shaft 39. By placing the filter barrel 313 inside the separation chamber 1, the corresponding groove of the filter barrel 313 is aligned with the square insert 312. The insert block 312 contacts the filter barrel 313, which is further supported by the support plate 310 and the interior of the separation chamber 1. The second motor 38 is started, causing the filter barrel 313 to rotate. Simultaneously, the first motor 31 is started, causing the second optical shaft 32 to rotate inside the chamber cover 5, which in turn rotates the first gear 33. The first gear 33 meshes with the second gear 34, causing the kneading roller 37 to rotate in the opposite direction, kneading the dough inside the filter barrel 313. The rotating filter barrel 313 effectively washes and separates the dough, improving the washing process. To improve efficiency and practicality, the filter barrel 313 has a groove at the corresponding position of the square insert 312. The square insert 312 is placed in the groove. The groove limits the filter barrel 313 when it is placed inside the separation chamber 1, so that the filter barrel 313 is rotated by the second motor 38. Six kneading rollers 37 are provided, which are evenly distributed on the outside of the two bushings 36. The six kneading rollers 37 knead the dough inside the filter barrel 313, and knead and separate the dough inside the filter barrel 313, thereby improving the practicality of the device.
[0026] During operation, the hydraulic telescopic rod 22 is fixedly connected to the inside of the fixed block 21. The telescopic hydraulic telescopic rod 22 drives the sliding plate 24 to slide up and down. Two first optical axes 23 limit the sliding plate 24, causing the movable bracket 26 to rotate and connect to the inside of the U-shaped block 25. The movable bracket 26 rotates inside the limiting block 27, causing the limiting block 27 to slide inside the chamber cover 5 via the slider 28. The telescopic hydraulic telescopic rod 22 causes the four limiting blocks 27 to slide outwards, away from the corresponding grooves of the separation chamber 1 and the chamber cover 5, facilitating the removal of the chamber cover 5 and the extraction of the dough inside the filter bucket 313. This improves the efficiency of disassembling the chamber cover 5 and enhances the practicality of the device. Conversely, the chamber cover 5 is fixed in place, and water is injected into the separation chamber 1 through the water inlet 6 to improve the flow rate of the filter. The dough is effectively separated through the outlet 7, which drains the water after kneading, thus improving the efficiency of the dough washing process. The filter barrel 313 is placed inside the separation chamber 1, with its corresponding groove contacting the square insert 312. Support is provided by the support plate 310 and the interior of the separation chamber 1. Starting the second motor 38 rotates the filter barrel 313, which in turn rotates the second optical shaft 32 inside the chamber cover 5, driving the first gear 33 to rotate. The first gear 33 meshes with the second gear 34, causing the kneading roller 37 to rotate in the opposite direction, kneading the dough inside the filter barrel 313. The rotating filter barrel 313 effectively separates the dough through kneading, improving the efficiency of the dough washing process and enhancing the practicality of the device.
[0027] Through the above steps, the telescopic hydraulic telescopic rod 22 will slide the four limiting blocks 27 outward, away from the grooves corresponding to the separation chamber 1 and the chamber cover 5, making it easier to disassemble the chamber cover 5 and extract the dough inside the filter bucket 313. This improves the disassembly efficiency of the chamber cover 5 and enhances the practicality of the device. Conversely, fixing the chamber cover 5 solves the problem that installing or removing the bolts not only requires specific tools, but also that disassembling or installing the bolts around the chamber cover 5 is time-consuming and laborious, affecting the dough extraction efficiency.
Claims
1. A dough kneading and separating device for gluten processing, comprising a separating chamber (1), a support frame (4), a chamber cover (5), a water inlet (6), and a water outlet (7), characterized in that: It also includes a slider (28), a limiting block (27), a movable bracket (26), and a kneading component. The bottom of the separation chamber (1) is fixedly connected to a foot bracket (4). The outside of the separation chamber (1) is provided with a chamber cover (5). The top of the chamber cover (5) is fixedly connected to a water inlet (6). The inside of the separation chamber (1) is provided with a water outlet (7). The inside of the separation chamber (1) is provided with a kneading component. The inside of the chamber cover (5) is slidably connected to a slider (28). The top of the slider (28) is fixedly connected to a limiting block (27). The inside of the limiting block (27) is rotatably connected to a movable bracket (26). The limiting block (27) is slidably connected to the slider (28) and the movable bracket (26). The limiting block (27) is slidable by the slider (28) and the movable bracket (26).
2. The gluten processing dough kneading and separating equipment according to claim 1, characterized in that: The cover (5) has a groove at the corresponding position of the slider (28), and the slider (28) slides in the groove.
3. The gluten processing dough kneading and separating equipment according to claim 1, characterized in that: A fixed block (21) is fixedly connected to the top of the cover (5). A hydraulic telescopic rod (22) is fixedly connected inside the fixed block (21). A sliding plate (24) is fixedly connected to the telescopic end of the hydraulic telescopic rod (22). A first optical axis (23) is fixedly connected to the bottom of the sliding plate (24). The first optical axis (23) slides inside the fixed block (21). A U-shaped block (25) is fixedly connected to the bottom of the sliding plate (24). A movable bracket (26) is rotatably connected inside the U-shaped block (25).
4. The gluten processing dough kneading and separating equipment according to claim 3, characterized in that: The separation chamber (1) and the chamber cover (5) have grooves at the corresponding positions of the limiting block (27), and the limiting block (27) is engaged in the groove.
5. The dough kneading and separating equipment for gluten processing according to claim 1, characterized in that: The kneading assembly includes a first motor (31), which is fixedly connected to the left side of the fixed block (21). The output end of the first motor (31) is fixedly connected to a second optical shaft (32), which rotates inside the chamber cover (5). A first gear (33) is fixedly connected to the outside of the second optical shaft (32). A second gear (34) is meshed with the outside of the first gear (33). A third optical shaft (35) is fixedly connected inside the second gear (34), and the third optical shaft (35) is rotatably connected inside the chamber cover (5). The outsides of the second optical shaft (32) and the third optical shaft (35) are respectively... A bushing (36) is fixedly connected, and a kneading roller (37) is fixedly connected to the outside of the bushing (36). A second motor (38) is fixedly connected to the bottom of the separation chamber (1). A rotating shaft (39) is fixedly connected to the output end of the second motor (38). The rotating shaft (39) rotates inside the separation chamber (1). A support plate (310) is fixedly connected to the top of the rotating shaft (39). A square insert (312) is fixedly connected to the top of the support plate (310). A filter barrel (313) is provided outside the square insert (312). A sealing ring (311) is provided between the separation chamber (1) and the rotating shaft (39).
6. The dough kneading and separating equipment for gluten processing according to claim 5, characterized in that: The filter barrel (313) has a groove at the corresponding position of the square insert (312), and the square insert (312) is placed in the groove.
7. The dough kneading and separating equipment for gluten processing according to claim 5, characterized in that: There are six kneading rollers (37), which are evenly distributed on the outside of the two bushings (36).
Citation Information
Patent Citations
Rubbing, washing and separating equipment for gluten processing dough
CN221241568U