Multi-compartment intelligent bean soaking device
By designing a multi-compartment intelligent bean soaking equipment, which uses pneumatic or electrical valves to control feeding and discharging, the problem of existing equipment requiring a large amount of manual intervention is solved, realizing the automation and intelligence of the bean soaking process and reducing the complexity and labor intensity of manual operation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- XUCHANG CHIKE MASCH MFG CO LTD
- Filing Date
- 2025-07-22
- Publication Date
- 2026-06-05
AI Technical Summary
Existing soybean soaking equipment requires a large amount of manual labor and has a low level of automation, resulting in a heavy workload.
The design includes a multi-compartment intelligent bean soaking equipment, comprising a support frame, bean soaking compartments, bean feeding pipes, feeding hoppers, and discharge troughs. The feeding and discharging are controlled by pneumatic or electrical valves to achieve automated operation.
It reduces the amount of manual labor involved, improves the intelligence level of the bean soaking process, and reduces the complexity and labor intensity of manual operation.
Smart Images

Figure CN224320207U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of soybean product processing equipment, specifically to a multi-compartment intelligent soybean soaking equipment. Background Technology
[0002] Soaking soybeans is a preliminary step in making tofu. Soaking allows the soybeans to fully absorb water and soften their structure, reducing energy consumption and wear during the subsequent grinding process. It also improves the dispersion of soybean protein colloids, which is beneficial for protein extraction.
[0003] In the prior art, Chinese patent document CN218977995U describes a soybean soaking device for whole soybean milk production. The device includes a left soaking tank on the left, a middle soaking tank in the middle, and a right soaking tank on the right. A draining tank is located below the left, middle, and right soaking tanks. A left support frame is located at the left end of the device, and the left sides of the left soaking tank and draining tank are fixed to the left support frame, while the right sides of the right soaking tank and draining tank are fixed to the right support frame. A feed inlet is located on the left side of the upper end face of the middle soaking tank, and a water inlet is located on the right side of the upper end face of the middle soaking tank. This soybean soaking device for whole soybean milk production requires considerable manual intervention during the processes of adding dry soybeans and outputting soaked soybeans.
[0004] Therefore, it is necessary to provide a bean soaking device that is highly intelligent throughout the entire bean soaking process and can reduce the amount of manual labor. Utility Model Content
[0005] The present invention aims to provide a multi-compartment intelligent soybean soaking device to reduce the amount of manual labor involved in the soybean soaking process and improve the level of intelligence in soybean soaking.
[0006] To solve the above-mentioned technical problems, the present invention adopts the following technical solution:
[0007] Design a multi-compartment intelligent bean soaking device, including a support frame, on which multiple bean soaking compartments are arranged, each bean soaking compartment having a discharge port at its bottom and a discharge valve on the discharge port, and further comprising:
[0008] The water bean feeding pipe includes a low section, a lifting section and a high section. The high section passes through each of the soaking bean bins. The high section is connected to multiple feeding sections that lead to each of the soaking bean bins. Each feeding section is equipped with a feeding valve.
[0009] A feeding hopper is provided above the lower section, the bottom of the feeding hopper is connected to the lower section, and a hopper valve is provided at the bottom of the feeding hopper. A liquid inlet is provided on the lower section.
[0010] The discharge chute passes through the discharge port at the bottom of each of the bean soaking chambers, and the discharge chute gradually decreases from front to back.
[0011] Furthermore, an overflow beam is provided on the top of the partition between adjacent bean soaking chambers, the overflow beam has an overflow section, and the overflow section has a permeable mesh for water overflow between adjacent bean soaking chambers;
[0012] An overflow box is provided next to the top of at least one of the bean soaking compartments. The overflow box has a water-permeable mesh on the side facing the bean soaking compartment, and an overflow pipe is connected to the bottom of the overflow box.
[0013] Furthermore, the bottom of the bean soaking hopper includes an outer cover, which has a drain outlet and a bean inlet. An inner mesh cover is provided inside the outer cover, with its top communicating with the bean soaking hopper and its bottom communicating with the bean inlet. The feeding valve includes a first valve and a second valve, with the first valve located at the bean inlet and the second valve located at the drain outlet. The feeding valve, feeding valve, and hopper valve are all pneumatically or electrically controlled valves.
[0014] Furthermore, the feeding valve includes a rotating gate that is hinged to a corresponding position in the bean feed pipe, and a hinge shaft on one side of the rotating gate passes through the bean feed pipe and is connected to a rotating gate drive cylinder.
[0015] The hopper valve includes a pull-out gate plate inserted into the bottom of the feed hopper, and a pull-out gate plate drive cylinder is connected to the rear end of the pull-out gate plate.
[0016] Furthermore, the discharge trough is provided with different branch trough sections that extend to the location of the discharge port at the bottom of each of the bean soaking chambers. The end of each branch trough section is connected to a converging trough section. The bottom of the converging trough section is provided with a drain groove and a drain hole.
[0017] Furthermore, a walking platform is provided on the support frame surrounding the bean soaking bin, a railing is provided on the outside of the walking platform, and a staircase is provided next to the walking platform.
[0018] Furthermore, each of the bean soaking compartments has reinforcing ribs formed by bending its side panels.
[0019] Furthermore, two rows of soaking bean bins are arranged side by side on the support frame, and the upper section of the water bean feeding pipe passes through the top of the partition between the two rows of soaking bean bins.
[0020] Furthermore, a control cabinet is provided on one side of the support frame, and a belt conveyor is provided at the bottom of the end of the discharge chute.
[0021] Furthermore, the cross-sectional area inside the liquid inlet gradually increases.
[0022] Compared with existing technologies, the beneficial effects of this utility model are as follows: This multi-compartment intelligent bean soaking equipment provides an actuator for more intelligent operation of the feeding and discharging of each bean soaking compartment by setting up a water bean feeding pipe, a feeding hopper, and a discharging chute. By controlling the relevant feeding and valve mechanisms, the feeding and discharging of the bean soaking compartments can be realized, improving the intelligence level of bean soaking and reducing the amount of manual labor involved in the feeding and discharging of bean soaking compartments. The water bean feeding pipe includes a low section, a lifting section, and a high section. The feeding hopper is set above the low section, so that dry beans can be fed at a low position, which is more convenient and reduces the amount of manual work. By setting the feeding hopper above the low section and setting a liquid inlet in the low section, the dry beans can be transported to the high bean soaking compartment through a liquid medium, further reducing the amount of manual work. Attached Figure Description
[0023] The present invention will be explained in detail below with reference to the accompanying drawings. It should be noted that the drawings are used to provide a further understanding of the present invention and form part of the specification. They are used together with the embodiments of the present invention to explain the present invention, but should not impose any limitation on the implementability of the present invention.
[0024] In the attached diagram:
[0025] Figure 1 This is one of the three-dimensional structural schematic diagrams of an embodiment of the multi-compartment intelligent bean soaking device of this utility model.
[0026] Figure 2 This is the second three-dimensional structural schematic diagram of an embodiment of the multi-compartment intelligent bean soaking device of this utility model.
[0027] Figure 3 This is a side view of an embodiment of the multi-compartment intelligent bean soaking device of this utility model.
[0028] Figure 4 This is a schematic diagram of the split overflow section in one embodiment of the multi-compartment intelligent bean soaking device of this utility model.
[0029] Figure 5 This is a schematic diagram of the side panel of the bean soaking compartment in one embodiment of the multi-compartment intelligent bean soaking device of this utility model.
[0030] Figure 6 This is a three-dimensional structural diagram of the feeding port in one embodiment of the multi-compartment intelligent bean soaking equipment of this utility model.
[0031] Figure 7 This is a cross-sectional view of the feeding port in one embodiment of the multi-compartment intelligent bean soaking device of this utility model.
[0032] Figure 8 This is a schematic diagram of the feeding valve connected to the feeding port in one embodiment of the multi-compartment intelligent bean soaking equipment of this utility model.
[0033] Figure 9 This is a schematic diagram of the feeding valve in one embodiment of the multi-compartment intelligent bean soaking equipment of this utility model.
[0034] Figure 10 for Figure 1 Enlarged view of part A.
[0035] Figure 11 for Figure 2 Enlarged view of part B.
[0036] Figure 12 This is a schematic diagram of the discharge trough in one embodiment of the multi-compartment intelligent bean soaking equipment of this utility model.
[0037] In the picture:
[0038] Support frame 10;
[0039] Soaking Beans Container 20, Overflow Beam 21, Water Outlet 21-1, Overflow Section 22, Split Overflow Section 22-1, Mesh Partition 22-1-1, Integrated Overflow Section 22-2, Overflow Box 23, Overflow Pipe 24, Feed Outlet 25, Outer Cover 25-1, Drain 25-2, Bean Feed Outlet 25-3, Inner Mesh Cover 25-4, First Valve 25-5, Second Valve 25-6, Side Plate 26, Reinforcing Rib 26-1;
[0040] Water bean feeding pipe 30, low section 31, lifting section 32, high section 33, feeding section 34, feeding valve 35, rotating gate 35-1, hinge shaft 35-2, rotating gate drive cylinder 35-3, connecting rod 35-4;
[0041] Feed hopper 40, hopper valve 41, pull-out gate 41-1, pull-out gate drive cylinder 41-2;
[0042] Discharge trough 50, branch trough section 51, confluence trough section 52, drain groove 53;
[0043] Walking platform 60, stairs 61; control cabinet 70; belt conveyor 80. Detailed Implementation
[0044] The technical solutions of the embodiments of this disclosure will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this disclosure. All other embodiments obtained by those skilled in the art based on the embodiments of this disclosure without creative effort are within the scope of protection of this disclosure.
[0045] In one embodiment, a multi-compartment intelligent bean soaking device is provided, such as... Figure 1-3 As shown, the multi-compartment intelligent soybean soaking device includes a support frame 10, on which multiple soybean soaking compartments 20 are provided. The upper part of each soybean soaking compartment 20 is square, and the bottom is a four-sided pyramid. The support frame 10 needs to have a high load-bearing capacity to support the soybean soaking compartments 20. The soybean soaking compartments 20 are used to input water and soybeans, and the soybeans are soaked in the soybean soaking compartments 20. The bottom of each soybean soaking compartment 20 is provided with a discharge port 25, which is used to discharge the soaked soybeans and the water used for soaking the soybeans. A discharge valve (not shown in the figure) is provided on the discharge port 25, and the discharge of water and soaked soybeans in the soybean soaking compartment 20 is controlled by the discharge valve.
[0046] The multi-compartment intelligent soybean soaking equipment also includes a soybean feeding pipe 30, a feeding hopper 40, and a discharge chute 50. The soybean feeding pipe 30 comprises a low section 31, a lifting section 32, and a high section 33. The low section 31 is positioned near the ground, and the high section 33 is located above the soybean soaking compartments 20. The lifting section 32 is a vertical section, with its lower end connected to the low section 31 and its upper end connected to the high section 33. The high section 33 passes through each soybean soaking compartment 20 and is connected to multiple feeding sections 34, each leading to a different compartment. Each feeding section 34 is equipped with a feeding valve 35, which controls the flow of soybeans and water into the corresponding soybean soaking compartment 20.
[0047] A feeding hopper 40 is positioned above the lower section 31. The feeding hopper 40 is used to hold dried soybeans. The bottom of the feeding hopper 40 is connected to the lower section 31, and a hopper valve 41 is located at the bottom of the feeding hopper 40. Opening the hopper valve 41 allows the dried soybeans in the feeding hopper 40 to flow downwards into the lower section 31. Closing the hopper valve 41 stops the downward flow of dried soybeans. A liquid inlet 311 is located on the lower section 31, through which water can be introduced into the water-soybean feeding pipe 30. The water acts as a medium, carrying the dried soybeans flowing from the feeding hopper 40 into the water-soybean feeding pipe 30 and into each soaking chamber 20. The cross-sectional area inside the liquid inlet 311 gradually increases, which helps to increase the water flow rate.
[0048] The discharge trough 50 passes through the discharge port 25 at the bottom of each soybean soaking chamber 20. The discharge trough 50 is inclined and gradually decreases from front to back. After the soybeans in the soybean soaking chamber 20 are soaked, the water and the soaked soybeans can be discharged into the discharge trough 50 by opening the discharge valve on the discharge port 25, and flow along the discharge trough 50 to the end of the discharge trough 50 for collection.
[0049] The working principle of this multi-compartment intelligent bean soaking equipment is as follows:
[0050] Inputting dry beans into the soaking bean hopper 20: Open the feeding valve 35 in the feeding section 34 corresponding to the soaking bean hopper 20 to which dry beans are to be input; put the dry beans into the feeding hopper 40, and input water into the water bean feeding pipe 30 through the liquid inlet 311. Open the hopper valve 41 at the bottom of the feeding hopper 40, and the dry beans in the feeding hopper 40 flow downward into the low section 31. The water input in the low section 31 through the liquid inlet 311 acts as a medium to carry the dry beans flowing from the feeding hopper 40 into the water bean feeding pipe 30 into the corresponding soaking bean hopper 20. After the dry beans are input, close the hopper valve 41, stop inputting water into the water bean feeding pipe 30 through the liquid inlet 311, and close the feeding valve 35 in the feeding section 34 corresponding to the soaking bean hopper 20.
[0051] Water input to the soybean soaking chamber 20: If water needs to be added to the soybean soaking chamber 20 during the soybean soaking process, open the feeding valve 35 in the feeding section 34 corresponding to the soybean soaking chamber 20 to be replenished with water, and input water into the soybean feed pipe 30 through the liquid inlet 311. Close the hopper valve 41 at the bottom of the feeding hopper 40. The water input through the liquid inlet 311 in the low section 31 enters the corresponding soybean soaking chamber 20. After the water replenishment is completed, stop inputting water into the soybean feed pipe 30 through the liquid inlet 311 and close the feeding valve 35 in the feeding section 34 corresponding to the soybean soaking chamber 20.
[0052] Discharge the soaked soybeans from the soaking chamber 20: Open the discharge valve corresponding to the discharge port 25 at the bottom of the soaking chamber 20, which is ready to discharge the soaked soybeans, and discharge the water and soaked soybeans from the soaking chamber 20 into the discharge trough 50, and let them flow along the discharge trough 50 to the end of the discharge trough 50 for collection.
[0053] This multi-compartment intelligent bean soaking equipment has the following technical advantages: By setting up a water bean feeding pipe 30, a feeding hopper 40, and a discharge chute 50, it provides an actuator for more intelligent operation of feeding and discharging in each bean soaking compartment 20. By controlling the relevant feeding and valve mechanisms, the feeding and discharging of the bean soaking compartment 20 can be realized, improving the intelligence level of bean soaking and reducing the amount of manual labor involved in feeding and discharging in the bean soaking compartment 20. The water bean feeding pipe includes a low section, an lifting section, and a high section. The feeding hopper is set above the low section, so that dry beans can be fed at a low position, which is more convenient and reduces the amount of manual work. By setting the feeding hopper above the low section and setting a liquid inlet in the low section, the dry beans can be transported to the high bean soaking compartment through a liquid medium, further reducing the amount of manual work.
[0054] Furthermore, in another embodiment, such as Figure 1 As shown, the multi-compartment intelligent bean soaking device has an overflow top beam 21 on the top of the partition between adjacent bean soaking compartments 20. The overflow top beam 21 has an overflow section 22. The overflow section 22 has a water-permeable mesh for water overflow between adjacent bean soaking compartments 20. The overflow top beam 21 is square, which serves to strengthen the device. The overflow section 22 is used to overflow excess water from the bean soaking compartment 20 into the adjacent bean soaking compartment 20, preventing water from overflowing from the bean soaking compartment 20 when it is full.
[0055] like Figure 1 As shown, an overflow box 23 is located next to the top of the leftmost bean soaking compartment 20. The side of the overflow box 23 facing the bean soaking compartment 20 has a permeable mesh. The bottom of the overflow box 23 is connected to an overflow pipe 24. The permeable mesh side of the overflow box 23 is located at... Figure 1 Between the two bean soaking chambers 20 on the left side, the water in both bean soaking chambers 20 can overflow from the overflow box 23.
[0056] In this embodiment, the overflow section 22 has two structural forms, namely Figure 4 The split overflow section 22-1 shown and Figure 5 The integrated overflow section 22-2 shown herein, wherein, combined with Figure 4 As shown, the split overflow section 22-1 is a separate square short beam structure with an open bottom. It contains a perforated partition 22-1-1, allowing excess water from the adjacent bean soaking chambers 20 to overflow through the open bottom and the perforated partition 22-1-1. The split overflow section 22-1 is a pre-reserved empty section fixed to the overflow top beam 21 by welding or screw connection, serving as part of the overflow top beam 21.
[0057] Combination Figure 5As shown, the integrated overflow section 22-2 belongs to the middle section of the overflow top beam 21. The bottom of one side of the overflow top beam 21 where the integrated overflow section 22-2 is located is provided with a horizontal water outlet 21-1. The side and bottom surfaces of the integrated overflow section 22-2 are provided with mesh holes, so that the water in the bean soaking bin 20 on one side can overflow from the water outlet 21-1 and the mesh holes to the bean soaking bin 20 on the other side.
[0058] like Figure 5 As shown, each bean soaking chamber 20 has a reinforcing rib 26-1 formed by bending the side plate 26. The reinforcing rib 26-1 can improve the strength of the bean soaking chamber 20.
[0059] Furthermore, in another embodiment, such as Figure 6-7 As shown, the bottom discharge port 25 of the bean soaking chamber 20 of the multi-compartment intelligent bean soaking device includes an outer cover 25-1, which is square. The outer cover 25-1 has a drain outlet 25-2 and a bean discharge port 25-3. The drain outlet 25-2 is located on the side, and the bean discharge port 25-3 is located on the bottom. An inner mesh cover 25-4 is provided inside the outer cover 25-1. The inner mesh cover 25-4 has mesh holes and is a tapered shape that gradually narrows from top to bottom. The top of the inner mesh cover 25-4 is welded to the bottom of the bean soaking chamber 20 together with the top of the outer cover 25-1. The top of the inner mesh cover 25-4 communicates with the bottom of the bean soaking chamber 20, and the bottom of the inner mesh cover 25-4 communicates with the bean discharge port 25-3.
[0060] Combination Figure 8 As shown, the discharge valves connected to the discharge port 25 include a first valve 25-5 and a second valve 25-6. The first valve 25-5 is located at the bean discharge port 25-3, and the second valve 25-6 is located at the drain port 25-2. The two discharge valves, as well as the preceding feeding valve 35 and hopper valve 41, are all pneumatically or electrically controlled valves, so that they can be automatically controlled by a pneumatic or electrical control system, thereby improving the level of intelligence.
[0061] Combination Figure 1-2 As shown, a control cabinet 70 is provided on one side of the support frame, and a belt conveyor 80 is provided at the bottom of the end of the discharge chute 50. The control cabinet 70 controls each electrical actuator, and the belt conveyor 80 can pick up and transport beans.
[0062] The feeding method through the feed port 25 is as follows: (1) After the beans in the soaking pod 20 are soaked, open the second valve 25-6 and close the first valve 25-5. The water used for soaking the beans is discharged from the second valve 25-6. Under the filtration of the inner mesh cover 25-4, the soaked beans can be left in the soaking pod 20 and the water is drained away; (2) In the same way as above, clean water is input into the corresponding soaking pod 20 through the water bean feed pipe 30. At the same time, open the first valve 25-5 and close the second valve 25-6 so that the clean water carries the soaked beans out from the first valve 25-5 until the beans are completely discharged. Since the clean water and beans flow together to the discharge trough 50, the clean water carrying the soaked beans can be transported from the discharge trough 50 to the end. The soaked beans are collected at the end of the discharge trough 50 for later use.
[0063] Furthermore, in another embodiment, such as Figure 9-10 As shown, the feeding valve 35 of the multi-compartment intelligent bean soaking equipment includes a rotating gate 35-1 hinged to a corresponding position in the bean feeding pipe 30. The rotating gate 35-1 can block the inlet of the feeding section 34. A hinge shaft 35-2 on one side of the rotating gate 35-1 passes through the bean feeding pipe 30 and is connected to a rotating gate drive cylinder 35-3. The hinge shaft 35-2 is hinged in the bean feeding pipe 30. The rear end of the rotating gate drive cylinder 35-3 is hinged to the outer wall of the bean feeding pipe 30. The front end of the rotating gate drive cylinder 35-3 is connected to the hinge shaft 35-2 through a connecting rod 35-4. The connecting rod 35-4 and the hinge shaft 35-2 are fixedly connected. The rotating gate 35-1 can be opened and closed by the rotating gate drive cylinder 35-3.
[0064] like Figure 11 As shown, the hopper valve 41 includes a pull-out gate 41-1 inserted into the bottom of the feed hopper. The rear end of the pull-out gate 41-1 is connected to a pull-out gate drive cylinder 41-2. The pull-out gate 41-1 can be driven to move in and out by the pull-out gate drive cylinder 41-2, thereby realizing the opening and closing of the hopper valve 41.
[0065] Furthermore, in another embodiment, such as Figure 12 As shown, the discharge trough 50 of the multi-compartment intelligent bean soaking equipment is provided with different branch trough sections 51 extending to the location of the discharge port at the bottom of each bean soaking compartment 20, such as... Figure 1-2 As shown, two rows of bean soaking bins 20 are arranged side by side on the support frame 10. The high section 33 of the water bean feeding pipe 30 passes through the top of the partition between the two rows of bean soaking bins 20. In this embodiment, since two rows of bean soaking bins 20 are provided, two branch trough sections 51 are provided. The end of each branch trough section 51 is connected to a confluence trough section 52. The bottom of the confluence trough section 52 is provided with a drain groove 53. The bottom of the drain groove 53 is provided with a drain hole. When the clean water and soybeans flow together to the end of the confluence trough section 52, the clean water can flow out from the drain hole at the bottom of the drain groove 53.
[0066] Furthermore, in another embodiment, such as Figure 1-2 As shown, the multi-compartment intelligent bean soaking device has a walking platform 60 on the support frame 10 surrounding the bean soaking compartment 20. The outside of the walking platform 60 is equipped with railings, and a staircase 61 is provided next to the walking platform 60. The bean soaking status in the bean soaking compartment 20 can be observed by going to the walking platform 60 through the staircase 61.
[0067] It should be noted that, unless otherwise defined, all terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this disclosure pertains, and terms such as those defined in a common dictionary should be interpreted as having a meaning consistent with their meaning in the context of the relevant art. It should also be understood that the above is a description of this disclosure and should not be considered as a limitation thereof. Although several exemplary embodiments of this disclosure have been described, those skilled in the art will readily understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of this invention. Therefore, all such modifications are intended to be included within the scope of this disclosure as defined in the claims, and will not be detailed here.
Claims
1. A multi-compartment intelligent bean soaking device, comprising a support frame, on which multiple bean soaking compartments are arranged, each bean soaking compartment having a discharge port at its bottom, and each discharge port having a discharge valve, characterized in that, Also includes: The water bean feeding pipe includes a low section, a lifting section and a high section. The high section passes through each of the soaking bean bins. The high section is connected to multiple feeding sections that lead to each of the soaking bean bins. Each feeding section is equipped with a feeding valve. A feeding hopper is provided above the lower section, the bottom of the feeding hopper is connected to the lower section, and a hopper valve is provided at the bottom of the feeding hopper. A liquid inlet is provided on the lower section. The discharge chute passes through the discharge port at the bottom of each of the bean soaking chambers, and the discharge chute gradually decreases from front to back.
2. The multi-compartment intelligent bean soaking equipment according to claim 1, characterized in that: An overflow beam is provided on the top of the partition between adjacent bean soaking chambers. The overflow beam has an overflow section and a permeable mesh for overflowing water between adjacent bean soaking chambers. An overflow box is provided next to the top of at least one of the bean soaking compartments. The overflow box has a water-permeable mesh on the side facing the bean soaking compartment, and an overflow pipe is connected to the bottom of the overflow box.
3. The multi-compartment intelligent bean soaking equipment according to claim 1, characterized in that: The bottom of the bean soaking hopper includes an outer cover, which has a drain outlet and a bean inlet. An inner mesh cover is provided inside the outer cover, with its top communicating with the bean soaking hopper and its bottom communicating with the bean inlet. The feeding valve includes a first valve and a second valve, with the first valve located at the bean inlet and the second valve located at the drain outlet. The feeding valve, feeding valve, and hopper valve are all pneumatically or electrically controlled valves.
4. The multi-compartment intelligent bean soaking equipment according to claim 1, characterized in that: The feeding valve includes a rotating gate that is hinged to a corresponding position in the bean feed pipe. The hinge shaft on one side of the rotating gate passes through the bean feed pipe and is connected to a rotating gate drive cylinder. The hopper valve includes a pull-out gate plate inserted into the bottom of the feed hopper, and a pull-out gate plate drive cylinder is connected to the rear end of the pull-out gate plate.
5. The multi-compartment intelligent bean soaking equipment according to claim 1, characterized in that: The discharge trough is provided with different branch trough sections that extend to the bottom of each of the bean soaking chambers and have discharge ports. Each branch trough section is connected to a converging trough section at its end. The bottom of the converging trough section is provided with a drain groove and a drain hole.
6. The multi-compartment intelligent bean soaking equipment according to claim 1, characterized in that: A walking platform is provided on the support frame surrounding the bean soaking bin. A railing is provided on the outside of the walking platform, and a staircase is provided next to the walking platform.
7. The multi-compartment intelligent bean soaking equipment according to claim 1, characterized in that: Each of the aforementioned bean soaking chambers has a reinforcing rib formed by bending its side panel.
8. The multi-compartment intelligent bean soaking equipment according to claim 1, characterized in that: Two rows of soaking bean bins are arranged side by side on the support frame, and the upper section of the water bean feeding pipe passes through the top of the partition between the two rows of soaking bean bins.
9. The multi-compartment intelligent bean soaking equipment according to claim 1, characterized in that: A control cabinet is provided on one side of the support frame; a belt conveyor is provided at the bottom of the end of the discharge chute.
10. The multi-compartment intelligent bean soaking equipment according to claim 1, characterized in that: The cross-sectional area inside the liquid inlet gradually increases.