Soybean milk and bean dreg separator
By designing a soy milk and soy pulp separator that includes an inner liner, gears, bearings, and a drive unit, the soy milk and soy pulp are automatically separated using centrifugal filtration technology, solving the problem of high costs associated with manual filtration and achieving efficient soy pulp separation.
Patent Information
- Application Number
- CN202520064776.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-10
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2035-01-10
AI Technical Summary
Current technology for processing soybean residue relies on manual filtration, which is costly and unsuitable for large-scale factory production.
A soy milk and soy pulp separator was designed, comprising an inner liner, gears, bearings, a drive unit, and a filter structure. The drive unit drives the inner liner to rotate for centrifugal filtration, automatically separating soy milk and soy pulp.
It improves production efficiency, is suitable for large-scale factory production, and reduces labor costs.
Smart Images

Figure CN223697042U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to food making field, specifically, a kind of soybean milk and bean dregs separator. BACKGROUND
[0002] Yuba is formed after a thin film is formed on the surface of soybean milk after being heated and boiled, and then dried after being hung down into branch shape. In the manufacturing process of yuba, bean dregs need to be removed.
[0003] In the prior art, the bean dregs are filtered by a screen by manual operation, and the bean dregs are isolated in the screen. The filtered soybean milk leaks out of the screen. Such a filtering method has high labor cost and low efficiency, and is not suitable for large-scale production in a factory. UTILITY MODEL CONTENT
[0004] The utility model is aimed to provide a soybean milk and bean dregs separator to overcome the technical problem of high labor cost and unsuitability for large-scale production in a factory in the prior art.
[0005] The soybean milk and bean dregs separator comprises a shell and a filter screen, the filter screen is located in the shell, and the shell is an inner hollow cylinder.
[0006] The soybean milk and bean dregs separator further comprises:
[0007] An inner container is fixed to the shell. The inner container comprises a table part arranged along the circumference of the shell, a tapered part connected to the table part, and a soybean milk outlet. The cross section of the tapered part is triangular pyramid shape. The tapered bottom of the tapered part is connected to the table part. The area between the table part and the tapered part forms a containing cavity. One end of the soybean milk outlet is connected to the side of the tapered part away from the table part. The other end of the soybean milk outlet extends out of the tapered part.
[0008] A first bearing is installed between the table part and the shell. The inner container can rotate along the first bearing.
[0009] A gear is sleeved on the outer wall of the soybean milk outlet and fixed to the soybean milk outlet.
[0010] A soybean milk outlet pipe has one end opposite to the soybean milk outlet and the other end extending to the outside of the shell.
[0011] A second bearing is sleeved on the outer wall of the soybean milk outlet and located between the soybean milk outlet and the soybean milk outlet pipe.
[0012] A driving device is drivingly connected to the gear. The driving device is used to drive the gear to rotate.
[0013] A filtering structure is arranged in the inner container.
[0014] The filter structure is rotated by the inner container, and the soymilk in the filter structure is centrifugally filtered.
[0015] In the application, the driving device drives the inner container to rotate relative to the outer shell and the soymilk outlet pipe; the soymilk is filled into the inner container through the filter structure; when the inner container rotates, the filter structure is rotated, and the soymilk in the filter structure is centrifugally filtered at the tapered position of the inner container, so that the filtered soymilk flows into the tapered position of the inner container, and the bean dregs in the soymilk are filtered and remain in the filter structure; the soymilk flowing out of the inner container flows into the soymilk outlet pipe through the soymilk outlet, and then flows out of the outer shell.
[0016] The structure of the application is simple, and the automatic rotation centrifugal filtering is realized by the driving device, so that the production efficiency is improved, and the requirement of large-scale production in a factory is met. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 is a structure schematic diagram of the soymilk and bean dregs separator of the application;
[0018] Figure 2 is a structure schematic diagram of the inner structure of the separator after the outer shell is removed. DETAILED DESCRIPTION
[0019] The application will be further described and explained with reference to the specific embodiments and the accompanying drawings:
[0020] Please refer to Figure 1 and Figure 2 The soymilk and bean dregs separator 100 disclosed by the application comprises an outer shell 10, an inner container 20, a first bearing 30, a gear 40, a soymilk outlet pipe 50, a second bearing 60, a driving device 70 and a filter structure 80.
[0021] The inner container 20 is fixed on the outer shell 10, and the inner container 20 comprises a table part 21 arranged along the circumference of the outer shell 10, a tapered part 22 connected with the table part 21 and a soymilk outlet 23, the cross section of the tapered part 22 is in the shape of a triangular cone, the bottom of the tapered part 22 is connected with the table part 21, the area between the table part 21 and the tapered part 22 forms a containing cavity, and one end of the soymilk outlet 23 is connected to the side of the tapered part 22 away from the table part 21, which is also the top of the tapered part 22; the other end of the soymilk outlet 23 extends out of the tapered part 22.
[0022] In the application, the tapered part 22 is in the shape of a funnel, which is large at the top and small at the bottom, and the small end is connected with the soymilk outlet 23.
[0023] The first bearing 30 is installed between the base 21 and the shell 10, and the inner container 20 can rotate along the first bearing 30; when the inner container 20 rotates, the side wall of the inner container 20 rotates together with the inner ring of the first bearing 30; the inner ring of the first bearing 30 is embedded in the outer wall of the inner container 20, and the outer ring of the first bearing 30 is embedded in the shell 10; in this way, the first bearing 30 can support the inner container 20 and reduce the friction during the rotation of the inner container 20.
[0024] The gear 40 is sleeved on the outer wall of the slurry outlet 23 and fixed with the slurry outlet 23. One end of the slurry outlet pipe 50 is opposite to the slurry outlet 23, and the other end extends to the outside of the shell 10; the slurry outlet 23 is in communication with the slurry outlet pipe 50; the second bearing 60 is sleeved on the outer wall of the slurry outlet 23 and located between the slurry outlet 23 and the slurry outlet pipe 50.
[0025] In this embodiment, the second bearing 60 can reduce the friction between the slurry outlet 23 and the slurry outlet pipe 50 during the rotation of the inner container 20, and the rotation will not affect the position of the slurry outlet pipe 50 due to the connection of the second bearing 60, so that the filtered soybean milk can flow out from the same position, which is convenient for the subsequent processing of the soybean milk.
[0026] The driving device 70 is drivingly connected with the gear 40, and the driving device 70 is used to drive the rotation of the gear 40; the filtering structure 80 is arranged in the inner container 20.
[0027] The soybean milk flows into the filtering structure 80, and the filtering structure 80 rotates with the inner container 20; the gear 40 rotates to drive the rotation of the inner container 20, so that the soybean milk in the inner container 20 is centrifuged to filter out the soybean dregs in the soybean milk.
[0028] In this application, the driving device 70 drives the rotation of the inner container 20 relative to the shell 10 and the slurry outlet pipe 50; the soybean milk is filled into the inner container 20 through the filtering structure 80; when the inner container 20 rotates, the filtering structure 80 rotates, and the soybean milk in the filtering structure 80 is centrifuged at the position of the taper part 22 of the inner container 20, so that the filtered soybean milk flows into the taper part 22 of the inner container 20, and the soybean dregs in the soybean milk are filtered and remain in the filtering structure 80; the soybean milk flowing out of the inner container 20 flows into the slurry outlet pipe 50 through the slurry outlet 23 and then flows out of the shell 10.
[0029] The structure of this application is simple, and the automatic rotation and centrifugal filtration are realized by using the driving device 70, which improves the production efficiency and meets the requirements of large-scale production in factories.
[0030] In the application, the driving device 70 comprises a driving motor 71 and a driving wheel 72 connected to a rotating shaft 73 of the driving motor 71, and the driving wheel 72 is engaged with the gear 40. When the driving motor 71 rotates, the driving wheel 72 rotates synchronously, and the driving wheel 72 drives the engaged gear 40 to rotate, and the gear 40 is connected with the slurry outlet 23, thereby driving the slurry outlet 23 and the inner container 20 to rotate, so as to realize the centrifugal unfiltered soybean milk.
[0031] In the application, the filtering structure 80 comprises a filter cloth 81 or a filter screen 82, or both the filter cloth 81 and the filter screen 82.
[0032] When the filtering structure 80 is only the filter cloth 81, the filter cloth 81 is fixed on the inner container 20, or is sleeved on the position of the table part 21 of the inner container 20, and rotates with the inner container 20 when the inner container 20 rotates.
[0033] When the filter cloth 81 is full of dregs, the filter cloth 81 can be manually removed, and the dregs on the filter cloth 81 can be poured out, and then the filter cloth 81 is reinstalled, which is more convenient.
[0034] In the application, when the filtering structure 80 is only the filter screen 82, the filter screen 82 is fixed on the inner container 20, and preferably, the filter screen 82 is detachably fixed. Similarly, when the filter screen 82 is full of dregs, the filter screen 82 can be manually removed, and the dregs on the filter screen 82 can be poured out, and then the filter screen 82 is reinstalled, which is more convenient.
[0035] In the application, the filter cloth 81 can have better filtering effect, but the structural strength of the filter cloth 81 is not high, and the filter cloth 81 cannot bear a large amount of dregs; the filtering effect of the filter screen 82 is not as good as that of the filter cloth 81, but the filter screen 82 filters fast and has high load-bearing capacity, and can bear a large amount of soybean milk for filtering.
[0036] In another embodiment, the filtering structure 80 comprises both the filter screen 82 and the filter cloth 81, wherein the filter screen 82 is fixed in a non-detachable manner, and the filter cloth 81 is detachably fixed on the inner container 20. The filter screen 82 can improve the load-bearing capacity, and the filter cloth 81 can improve the filtering effect, and when the dregs are treated, only the filter cloth 81 needs to be removed, and the dregs can be poured out.
[0037] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, and not to limit the protection scope of the present application. Although the present application has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present application can be modified or replaced equivalently without departing from the spirit and scope of the technical solutions of the present application.
Claims
1. A soybean milk and soybean residue separator, wherein the separator comprises a shell, the shell being a hollow cylinder; characterized in that, The soybean milk and soybean residue separator also includes: The inner liner is fixed to the outer shell. The inner liner includes a platform arranged along the circumference of the outer shell, a cone connected to the platform, and a slurry outlet. The cone has a triangular pyramidal cross-section. The base of the cone is connected to the platform. The area between the platform and the cone forms a receiving cavity. One end of the slurry outlet is connected to the side of the cone away from the platform, and the other end of the slurry outlet extends out of the cone. A first bearing is installed between the platform and the outer shell, and the inner liner can rotate along the first bearing; A gear, which is sleeved on the outer wall of the slurry outlet and fixed to the slurry outlet; A slurry outlet pipe, one end of which is opposite to the slurry outlet, and the other end of which extends to the outside of the outer shell; The second bearing is sleeved on the outer wall of the slurry outlet and located between the slurry outlet and the slurry pipe; A drive device, wherein the drive device is connected to the gear and is used to drive the gear to rotate; A filter structure is disposed inside the inner liner; Soy milk flows in through the filter structure, which rotates with the inner pot; when the gear rotates, it drives the inner pot to rotate, thereby centrifuging the soy milk inside the inner pot and filtering out the soy pulp.
2. The soybean milk and soybean residue separator as described in claim 1, characterized in that, The driving device includes a drive motor and a drive wheel, the drive wheel being connected to the rotating shaft of the drive motor and meshing with the gear.
3. The soybean milk and soybean residue separator as described in claim 1, characterized in that, The filtration structure includes filter cloth and / or filter screen.
4. The soybean milk and soybean residue separator as described in claim 3, characterized in that, The filter structure is a filter cloth, which is fixed to the inner liner and rotates with the inner liner.
5. The soybean milk and soybean residue separator as described in claim 3, characterized in that, The filtration structure is a filter screen, which is fixed to the inner liner and rotates with the inner liner.
6. The soybean milk and soybean residue separator as described in claim 3, characterized in that, The filtration structure includes a filter screen and a filter cloth. The filter screen is fixed to the inner wall of the conical part of the inner liner, and the filter cloth is located on the filter screen. The filter cloth and the filter screen rotate with the inner liner.
7. The soybean milk and soybean residue separator as described in claim 1, characterized in that, The slurry outlet is connected to the slurry outlet pipe.
8. The soybean milk and soybean residue separator as described in claim 1, characterized in that, The inner ring of the first bearing is embedded in the outer wall of the inner liner, and the outer ring of the first bearing is embedded in the outer shell to fix the inner liner.