CN223716427U - Multi-stage soybean protein extraction device - Google Patents
Multi-stage soybean protein extraction deviceInfo
- Publication number
- CN223716427U CN223716427U CN202520116961.2U CN202520116961U CN223716427U CN 223716427 U CN223716427 U CN 223716427U CN 202520116961 U CN202520116961 U CN 202520116961U CN 223716427 U CN223716427 U CN 223716427U
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- fixedly connected
- soybean protein
- extraction device
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- block
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Abstract
The utility model discloses a soybean protein multistage extraction device which comprises an extraction mechanism, wherein one side of the extraction mechanism is provided with a squeezing mechanism, the extraction mechanism is connected with the squeezing mechanism through a connecting pipe, the extraction mechanism comprises a stirring barrel, the top end of the stirring barrel is fixedly connected with a shell, the top end of the shell is fixedly connected with a feeding shell, two groups of first electric motors are fixedly connected with the feeding shell, the output ends of the two groups of first electric motors are fixedly connected with crushing rollers, the bean dregs and an extracting solution are separated through a vibrating sieve plate, the extracting solution and the extracting solution are fully mixed through a pressing plate and a through hole in the stirring barrel, the reaction efficiency of the extracting solution is improved, the extraction time is reduced, the bean dregs in the squeezing barrel are squeezed through a driving pressing plate, the residual extracting solution in the bean dregs is fully extracted, the raw material utilization rate is improved, and the production cost of the device is reduced.
Description
Technical Field
The utility model relates to the technical field of soybean protein extraction equipment, in particular to a soybean protein multistage extraction device.
Background
The isolated soy protein is a main product of the modern soy processing industry, and with the development of modern technology and the continuous deepening of people's knowledge of the nutritional and functional properties of soy protein, the isolated soy protein is widely used as a processing raw material or additive for foods in industries such as meat, milk, refrigeration, candy, flour products and clothing, and the soy protein needs to be squeezed in the extraction process.
Chinese patent CN219438104U provides a multistage extraction element of soybean protein, motor fixed mounting is on the top of smashing the case, grinding table fixed mounting is in the inside of smashing the case, the lower extreme fixedly connected with unsmooth layer of mill, unsmooth layer links to each other with the grinding table activity, two throw the fixed top of seting up at smashing the case in material hole, the inboard fixed unloading chamber of seting up of mill, the both sides fixedly connected with row material pipe of mill, but above-mentioned equipment does not carry out secondary to the bean dregs and squeezes, and residual partial extract in the bean dregs can't be utilized, is unfavorable for improving the production efficiency of this equipment and the utilization ratio of raw materials, does not set up rabbling mechanism in the above-mentioned equipment, is unfavorable for improving extract and extract's reaction efficiency.
To this end, the present utility model provides a multi-stage extraction apparatus for soy protein to solve the above problems.
Disclosure of utility model
Aiming at the defects of the prior art, the utility model provides a soybean protein multistage extraction device, which drives a filter plate to filter by driving a second electric motor to separate bean dregs from extract, and drives a pressing plate to mix the extract and the extract more uniformly, so that the production efficiency of the device is improved by performing secondary squeezing on the bean dregs, and the problems are solved.
The soybean protein multistage extraction device comprises an extraction mechanism, wherein a squeezing mechanism is arranged on one side of the extraction mechanism, the extraction mechanism is connected with the squeezing mechanism through a connecting pipe, the extraction mechanism comprises a stirring barrel, the top end of the stirring barrel is fixedly connected with a shell, the top end of the shell is fixedly connected with a feeding shell, two groups of first electric motors are fixedly connected to the feeding shell, and the output ends of the two groups of first electric motors are fixedly connected with crushing rollers.
Preferably, two groups of crushing rollers are rotatably connected in the feeding shell, and the two groups of crushing rollers are meshed with each other.
Preferably, the second discharge port is formed in one end of the shell, the second chute is formed in the other end of the shell, the filter plate is rotationally connected to the shell, and one end of the filter plate is slidably connected to the second chute.
Preferably, the other end of the shell is fixedly connected with a second electric motor, the output end of the second electric motor is fixedly connected with a rotary table, the rotary table is fixedly connected with a supporting block, and the top end of the supporting block is in sliding connection with the filter plate.
Preferably, one side of the second discharging hole is fixedly connected with a material guiding plate.
Preferably, the second feed inlet has been seted up on the top of agitator, and the third discharge gate has been seted up to the bottom of agitator, and first feed inlet has been seted up to one side of agitator, first feed inlet and connecting pipe fixed connection.
Preferably, the connecting block is fixedly connected with the stirring barrel, the second cylinder is fixedly connected with the connecting block, the pressing plate is fixedly connected with the bottom end of the second cylinder, a plurality of groups of evenly distributed through holes are formed in the pressing plate, and the conical block is fixedly connected with the top end of the second cylinder.
Preferably, the squeezing mechanism comprises a squeezing barrel, a first discharge hole is formed in the bottom end of the squeezing barrel, the bottom end of the first discharge hole is fixedly connected with a connecting pipe, and a filter screen is fixedly connected to the first discharge hole.
Preferably, a fixed plate is fixedly connected to one side of the press barrel, a first cylinder is fixedly connected to the top end of the fixed plate, and a sliding block is fixedly connected to the output end of the first cylinder.
Preferably, the top of fixed plate has seted up first spout, first spout and slider sliding connection, the top fixedly connected with electric telescopic handle one of slider, the top fixedly connected with L shape fixed block of electric telescopic handle one, the bottom fixedly connected with briquetting of L shape fixed block.
Advantageous effects
The utility model provides a soybean protein multistage extraction device. Compared with the prior art, the method has the following beneficial effects:
(1) The bean dregs are separated from the extracting solution by the vibrating sieve plate, and the pressing plate and the through holes are formed in the stirring barrel, so that the extracting solution and the extracting solution are fully mixed, the reaction efficiency of the extracting solution is improved, and the extracting time is shortened.
(2) The bean dregs in the squeezing barrel are squeezed by driving the pressing plate, so that the residual extraction liquid in the bean dregs is fully extracted, the utilization rate of raw materials is improved, and the production cost of the equipment is reduced.
Drawings
FIG. 1 is a perspective view of the external structure of the present utility model;
FIG. 2 is a cross-sectional view of the extraction mechanism of the present utility model;
FIG. 3 is an enlarged schematic view of the structure of area A in FIG. 2 according to the present utility model;
Fig. 4 is a front view of the press mechanism of the present utility model.
The device comprises a1, a pressing mechanism, a 101, a pressing barrel, a 102, a first discharge hole, a 103, a fixed plate, a 104, a first cylinder, a 105, a first chute, a 106, a sliding block, a 107, a first electric telescopic rod, a 108, an L-shaped fixed block, a 109, a pressing block, a 2, an extraction mechanism, a 201, a feeding shell, a 202, a crushing roller, a 203, a first electric motor, a 204, a second discharge hole, a 205, a guide plate, a 206, a stirring barrel, a 207, a third discharge hole, a 208, a first feed hole, a 209, a connecting block, a 210, a second cylinder, a 211, a conical block, a 212, a through hole, a 213, a pressing plate, a 214, a shell, a 215, a second chute, a 216, a filter plate, a 217, a second electric motor, a 218, a turntable, a 219, a supporting block, a 220, a second feed hole, a3 and a connecting pipe.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Embodiment one:
Referring to fig. 1-3, a multi-stage soybean protein extraction device comprises an extraction mechanism 2, wherein a squeezing mechanism 1 is arranged on one side of the extraction mechanism 2, the extraction mechanism 2 is connected with the squeezing mechanism 1 through a connecting pipe 3, the extraction mechanism 2 comprises a stirring barrel 206, the top end of the stirring barrel 206 is fixedly connected with a shell 214, the top end of the shell 214 is fixedly connected with a feeding shell 201, two groups of first electric motors 203 are fixedly connected to the feeding shell 201, and the output ends of the two groups of first electric motors 203 are fixedly connected with crushing rollers 202; the first electric motor 203 is driven to drive the crushing rollers 202 to mesh and crush soybeans, the two groups of crushing rollers 202 are rotationally connected in the feeding shell 201, the two groups of crushing rollers 202 are mutually meshed, a second discharging hole 204 is formed at one end of the outer shell 214, a second sliding groove 215 is formed at the other end of the outer shell 214, a filter plate 216 is rotationally connected to the outer shell 214, one end of the filter plate 216 is slidingly connected to the second sliding groove 215, a second electric motor 217 is fixedly connected to the other end of the outer shell 214, the second electric motor 217 is fixedly connected with a rotary table 218 at the output end, a supporting block 219 is fixedly connected to the rotary table 218, the top end of the supporting block 219 is slidingly connected with the filter plate 216, one side of the second discharging hole 204 is fixedly connected with a guide plate 205, the rotary table 218 is rotationally driven by driving the second electric motor 217, the filter plate 216 is rotationally driven to do circular motion, the filter plate 216 is rotationally driven to vibrate along the second sliding groove 215 to separate filter residues of the soybeans from extract, a second feeding hole 220 is formed at the top end of the stirring barrel 206, a third feeding hole 207 is formed at the bottom end of the stirring barrel 206, a first feeding hole 208 is formed in one side of the stirring barrel 206, the first feeding hole 208 is fixedly connected with the connecting pipe 3, a connecting block 209 is fixedly connected to the stirring barrel 206, a second cylinder 210 is fixedly connected to the connecting block 209, a pressing plate 213 is fixedly connected to the bottom end of the second cylinder 210, a plurality of groups of evenly distributed through holes 212 are formed in the pressing plate 213, a conical block 211 is fixedly connected to the top end of the second cylinder 210, the pressing plate 213 is driven to move in the vertical direction by driving the second cylinder 210 to stir the extracting solution, and the through holes 212 are formed in the pressing plate 213 so that the extracting solution and the extracting solution are mixed more uniformly.
In this embodiment, the first electric motor 203 is driven to drive the crushing roller 202 to mesh and crush soybeans, the second electric motor 217 is driven to rotate to drive the turntable 218 to rotate, the turntable 218 rotates to drive the supporting block 219 to do circular motion, the filter plate 216 slides along the second chute 215 to drive the filter plate 216 to vibrate so as to separate the filter residues of the soybeans from the extraction liquid, the second cylinder 210 is driven to drive the pressing plate 213 to move along the vertical direction so as to stir the extraction liquid, and the through holes 212 are formed in the pressing plate 213 so as to enable the extraction liquid and the extraction liquid to be mixed more uniformly.
Embodiment two:
Referring to fig. 1-4, the present embodiment provides a technical scheme based on the first embodiment, in which the press mechanism 1 includes a press barrel 101, a first discharge port 102 is provided at the bottom end of the press barrel 101, the bottom end of the first discharge port 102 is fixedly connected with a connecting pipe 3, a filter screen is fixedly connected to the first discharge port 102, bean dregs are poured into the press barrel 101 through a guide plate, one side of the press barrel 101 is fixedly connected with a fixing plate 103, the top end of the fixing plate 103 is fixedly connected with a first cylinder 104, the output end of the first cylinder 104 is fixedly connected with a sliding block 106, the sliding block 106 is driven by the first cylinder 104 to move along the horizontal direction, a first sliding groove 105 is provided at the top end of the fixing plate 103, the first sliding groove 105 is slidably connected with the sliding block 106, an electric telescopic rod 107 is fixedly connected to the top end of the sliding block 108, a pressing block 109 is fixedly connected to the bottom end of the L-shaped fixing block 108, the pressing block 109 is driven by the electric telescopic rod 107 to drive the first sliding block 108 and the second sliding block 109 to move along the horizontal direction, and the second pressing block 109 is driven by the driving cylinder 104 to squeeze the second sliding block 106, and the residual dregs in the second direction of the second extraction mechanism, thereby reducing the residual extraction cost of bean dregs in the production and the second extraction process 2.
In this embodiment, the bean dregs are poured into the press barrel 101 through the guide plate, the first driving cylinder 104 drives the sliding block 106 to move along the horizontal direction, the first driving electric telescopic rod 107 drives the L-shaped fixing block 108 and the pressing block 109 to move along the vertical direction to extrude the bean dregs for the second time, and the residual extraction liquid enters the extraction mechanism 2 through the first discharge hole 102 and the connecting pipe 3 to squeeze the residual extraction liquid in the bean dregs to dryness, so that the utilization rate of raw materials is improved, and the production cost is also reduced.
And all that is not described in detail in this specification is well known to those skilled in the art.
It is noted that relational terms such as first and second, and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.
Claims (10)
1. The soybean protein multistage extraction device comprises an extraction mechanism (2), wherein a squeezing mechanism (1) is arranged on one side of the extraction mechanism (2), the extraction mechanism (2) is connected with the squeezing mechanism (1) through a connecting pipe (3), and the soybean protein multistage extraction device is characterized in that the extraction mechanism (2) comprises a stirring barrel (206), the top end of the stirring barrel (206) is fixedly connected with a shell (214), the top end of the shell (214) is fixedly connected with a feeding shell (201), two groups of first electric motors (203) are fixedly connected on the feeding shell (201), and the output ends of the two groups of first electric motors (203) are fixedly connected with crushing rollers (202).
2. A multi-stage extraction device for soy protein according to claim 1, wherein two sets of said crushing rollers (202) are rotatably connected within the feed housing (201), and wherein the two sets of said crushing rollers (202) are intermeshed.
3. The multi-stage soybean protein extraction device as set forth in claim 1, wherein a second discharge port (204) is formed at one end of the housing (214), a second chute (215) is formed at the other end of the housing (214), a filter plate (216) is rotatably connected to the housing (214), and one end of the filter plate (216) is slidably connected to the second chute (215).
4. The multi-stage soybean protein extraction device as set forth in claim 1, wherein a second electric motor (217) is fixedly connected to the other end of the housing (214), a turntable (218) is fixedly connected to the output end of the second electric motor (217), a supporting block (219) is fixedly connected to the turntable (218), and the top end of the supporting block (219) is slidably connected to the filter plate (216).
5. The multi-stage soybean protein extraction device as recited in claim 3, wherein one side of the second discharge port (204) is fixedly connected with a material guiding plate (205).
6. The multi-stage soybean protein extraction device as set forth in claim 1, wherein the top end of the stirring barrel (206) is provided with a second feeding hole (220), the bottom end of the stirring barrel (206) is provided with a third discharging hole (207), one side of the stirring barrel (206) is provided with a first feeding hole (208), and the first feeding hole (208) is fixedly connected with the connecting pipe (3).
7. The multi-stage soybean protein extraction device according to claim 1, wherein the stirring barrel (206) is fixedly connected with a connecting block (209), the connecting block (209) is fixedly connected with a second cylinder (210), the bottom end of the second cylinder (210) is fixedly connected with a pressing plate (213), the pressing plate (213) is provided with a plurality of groups of evenly distributed through holes (212), and the top end of the second cylinder (210) is fixedly connected with a conical block (211).
8. The multi-stage soybean protein extraction device as set forth in claim 1, wherein the squeezing mechanism (1) comprises a squeezing barrel (101), a first discharging port (102) is formed in the bottom end of the squeezing barrel (101), the bottom end of the first discharging port (102) is fixedly connected with the connecting pipe (3), and a filter screen is fixedly connected to the first discharging port (102).
9. The multi-stage soybean protein extraction device as set forth in claim 8, wherein a fixing plate (103) is fixedly connected to one side of the press barrel (101), a first cylinder (104) is fixedly connected to the top end of the fixing plate (103), and a sliding block (106) is fixedly connected to the output end of the first cylinder (104).
10. The multi-stage soybean protein extraction device as set forth in claim 9, wherein a first chute (105) is formed in the top end of the fixing plate (103), the first chute (105) is slidably connected with a sliding block (106), an electric telescopic rod I (107) is fixedly connected to the top end of the sliding block (106), an L-shaped fixing block (108) is fixedly connected to the top end of the electric telescopic rod I (107), and a pressing block (109) is fixedly connected to the bottom end of the L-shaped fixing block (108).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202520116961.2U CN223716427U (en) | 2025-01-18 | 2025-01-18 | Multi-stage soybean protein extraction device |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202520116961.2U CN223716427U (en) | 2025-01-18 | 2025-01-18 | Multi-stage soybean protein extraction device |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN223716427U true CN223716427U (en) | 2025-12-26 |
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Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202520116961.2U Active CN223716427U (en) | 2025-01-18 | 2025-01-18 | Multi-stage soybean protein extraction device |
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| Country | Link |
|---|---|
| CN (1) | CN223716427U (en) |
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- 2025-01-18 CN CN202520116961.2U patent/CN223716427U/en active Active
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