Dried vegetable automatic soaking device and soaking method thereof
By designing an automatic dried vegetable soaking device, which utilizes water buoyancy to separate impurities, an electric telescopic rod to adjust the liquid level, and a flipping plate to move the dried vegetables, the problem of difficult impurity separation in existing devices has been solved, achieving efficient dried vegetable soaking and impurity collection, and improving the soaking quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-28
- Publication Date
- 2026-04-07
AI Technical Summary
Existing dried vegetable soaking devices are unable to effectively separate and collect impurities from dried vegetables, affecting the soaking quality.
An automatic dried vegetable soaking device was designed, including a soaking box, a rotating rod, an inclined plate, a flipping plate, an impurity filter box, and an electric telescopic rod. Impurities are separated by water buoyancy, the liquid level is adjusted by the electric telescopic rod, the flipping plate moves the dried vegetables, the inclined plate accelerates the sliding of the dried vegetables, and the impurity filter box collects the impurities.
It achieves efficient separation and collection of impurities during the soaking process of dried vegetables, improving soaking efficiency and quality, and reducing the risk of dried vegetables piling up and water overflowing.
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Figure CN121795644A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of dry vegetable soaking, in particular to a dry vegetable automatic soaking device and a soaking method thereof. BACKGROUND
[0002] In the prior art, dry vegetables are mostly made from fresh vegetables after being exposed to sunlight, such as dry bean curd slices and Changzhi radish yellow vegetables. Dry vegetables are easy to store for a long time because of their low water content. When dry vegetables need to be eaten, they need to be soaked in water for consumption. Dry vegetables can be soaked after being placed in a container and hot water is added. During the soaking process, a small amount of sand and other impurities may exist inside the dry vegetables. The existing soaking device is not convenient for separating the impurities in the dry vegetables, thus causing certain inconvenience. Therefore, the present application provides a dry vegetable automatic soaking device and a soaking method thereof.
[0003] According to the search, a silver fungus soaking device for soaking is disclosed in Chinese patent application No. 202120264295.9. The device includes a device housing and a pressing plate. The inner wall of the device housing is provided with a threaded screw rod, and the end of the threaded screw rod is provided with a motor. The lower part of the motor is provided with a placing plate. The end side of the placing plate is provided with a supporting rod. The pressing plate is arranged on the inner wall of the device housing. The upper part of the pressing plate is provided with a limiting rod, and the end of the limiting rod is provided with a positioning block. The outer side of the limiting rod is fixed with a first spring. The end of the first spring is connected with a fixed block. The lower part of the fixed block is provided with a sliding block. The outer side of the sliding block is fixed with a water filter plate. The middle of the water filter plate is provided with a through hole. The end side of the water filter plate is fixed with a second spring. The end of the second spring is connected with a clamping block.
[0004] The silver fungus soaking device in the above patent has the following disadvantages: during the soaking process, a small amount of granular impurities may be attached to the inside of the silver fungus due to picking and transportation, which is not convenient for separation and collection, thereby affecting the quality of the soaked silver fungus. SUMMARY
[0005] The present application aims to solve the problems in the prior art and provides a dry vegetable automatic soaking device and a soaking method thereof.
[0006] To achieve the above-mentioned purpose, the present application adopts the following technical solutions:
[0007] A dry vegetable automatic soaking device includes a soaking box and a feeding part. The feeding part includes:
[0008] The opening door is connected to the inclined side of the soaking barrel through a hinge, and the top and bottom of the soaking barrel are respectively provided with outlet holes one and two.
[0009] The rotating rod is movably connected to the inner wall of one side of the soaking box, and the end of the rotating rod is fixed with a turnover plate through a pin.
[0010] The inclined slope plate is fixed to the inner wall of the other side of the soaking barrel, and the inclined slope plate is a inclined table structure.
[0011] The L-shaped plate is fixed to the top outer wall of the soaking box, and the T-shaped rod one is movably connected to the inner wall of the through hole at the top of the L-shaped plate.
[0012] The top plate is fixed to the bottom of the T-shaped rod one through a pin.
[0013] The T-shaped rod three is movably connected to the through hole on the surface of the top plate, and the same spring three is fixed between the inner wall of one side of the T-shaped rod three and the outer wall of one side of the top plate through a pin.
[0014] The vertical rod is fixed to one end of the T-shaped rod three through a pin, and the through hole on the surface of the vertical rod is fixed with a side column through embedding.
[0015] The U-shaped seat is movably connected to the circumferential outer wall of the side column, and the impurity filter box is fixed to the bottom of the U-shaped seat.
[0016] The box door is movably connected to one end of the impurity filter box, and the counterweight is fixed on the surface of the box door through embedding.
[0017] The limiting block is fixed to the bottom of the impurity filter box through a pin.
[0018] The connecting rod is fixed to the top outer wall of the soaking box, and the limiting plate is fixed to one end of the connecting rod through a pin.
[0019] The intermediate rod is fixed to the outer wall of the vertical rod through a pin, and the outer diameter of the intermediate rod and the inner diameter of the limiting hole are matched with each other.
[0020] The overflow valve is fixed to the outer wall of one side of the soaking box.
[0021] Preferably, the bottom inner wall of the soaking box is fixed with an electric telescopic rod, and the output end of the electric telescopic rod is fixed with an adjusting plate through a pin.
[0022] Preferably, one side outer wall of the fermentation box is fixed with a liquid discharge valve, and an input end of the liquid discharge valve is connected with the bottom of the adjusting plate through a hose.
[0023] Preferably, the top of the adjusting plate is fixed with a lifting plate, an outer wall of the top of the lifting plate is integrally formed with a horizontal plate, and one side outer wall of the horizontal plate is fixed with a top driving seat.
[0024] Preferably, one side outer wall of the fermentation box is fixed with a guide frame, one end of the rotating rod is movably connected to one side inner wall of the guide frame, one side inner wall of the guide frame is fixed with an annular shell two through a pin, the same coil spring two is fixed between the inner wall of the annular shell two and the circumferential outer wall of the rotating rod through a pin, the circumferential outer wall of the rotating rod is connected with a gear through a key, the top inner wall of the horizontal plate is fixed with a bent rod, and the bottom of the bent rod is fixed with a rack matched with the gear through a pin.
[0025] Preferably, both sides inner walls of the fermentation box are fixed with horizontal plates, and the same fan-shaped seat is movably connected between the two horizontal plates, the top outer wall of the adjusting plate is fixed with a connecting rod, and the top of the connecting rod is fixed with a swing block through a pin.
[0026] Further, one side outer wall of the U-shaped seat is fixed with an annular shell one through a pin, the same coil spring one is fixed between the inner wall of the annular shell one and the circumferential outer wall of the side column through a pin, and one end of the annular shell one is threadedly connected with a protective cover.
[0027] As a further scheme of the application, the top outer wall of the impurity filter box is fixed with a pressing rod through a pin, the top outer wall of the fermentation cylinder is fixed with a rectangular block, the inner wall of a through hole formed in the surface of the rectangular block movably connects with a T-shaped rod two, the same spring two is fixed between one side inner wall of the T-shaped rod two and one side outer wall of the rectangular block through a pin, and one end of the T-shaped rod two is fixed with a conical block through a pin.
[0028] As a further scheme of the application, one side outer wall of the fermentation cylinder is fixed with a collection box, the bottom of the collection box is connected with a flap through a hinge, and the bottom outer wall of the collection box is movably connected with a rotating block through a rotating shaft.
[0029] A fermentation method of the automatic dry vegetable fermentation device, comprising the following steps:
[0030] S1: introducing the dry vegetables needing to be fermented into the fermentation cylinder through the opened door for feeding;
[0031] S2: adjusting the liquid level height in the fermentation box by using the electric telescopic rod, so that the dry vegetables are fermented after the liquid level is higher than the dry vegetables;
[0032] S3: After soaking, use the electric telescopic rod to drive the adjusting plate to move in the opposite direction, so that the liquid level in the soaking box is reduced. At the same time, the rotating plate allows the soaked dried vegetables to be discharged through the outlet hole at the bottom of the soaking tube during the rotation.
[0033] S4: The dried vegetables after export are received using a fan-shaped support;
[0034] S5: After opening the side door, take out the soaked dried vegetables.
[0035] The beneficial effects of this invention are as follows:
[0036] 1. The buoyancy of water is used to float the impurities in the dried vegetables to the outlet at the top of the soaking tube. The impurity filter box can be used to retrieve the impurities. The door of the box opens automatically after it leaves the limit of the outlet, so that the retrieved impurities can be guided into the collection box for collection. The pressure rod and the conical block can vibrate the impurity filter box as it rises, thereby accelerating the falling rate of the impurities in the filter box.
[0037] 2. An electric telescopic rod can be installed to drive the adjustment plate to move vertically, thereby adjusting the liquid level in the soaking tank. When the liquid level in the soaking tank rises, it covers the dried vegetables and soaks them. When the liquid level in the soaking tank drops, the dried vegetables can be introduced from the outlet hole 2 at the bottom of the soaking tube into the fan-shaped seat for collection.
[0038] 3. By setting up a swing block, the fan-shaped seat can be moved up and down. When the swing block is separated from the surface of the fan-shaped seat, the fan-shaped seat can swing left and right, thereby accelerating the drainage rate of dried vegetables.
[0039] 4. The rack and pinion mechanism drives the gears to rotate. During rotation, the gears drive the flipping plate to discharge the soaked dried vegetables through the outlet at the bottom of the soaking tube. The ramp plate accelerates the flow of the dried vegetables and prevents them from piling up inside the soaking tube.
[0040] 5. An anti-overflow valve is provided to prevent water from overflowing from the top of the soaking box during the impurity filter box's impurity collection process. A drain valve is provided to drain the water from the soaking box after the dried vegetables have finished soaking. Attached Figure Description
[0041] Figure 1 This is a schematic diagram of the overall structure of an automatic dried vegetable soaking device proposed in this invention;
[0042] Figure 2 This is a cross-sectional view of an automatic dried vegetable soaking device proposed in this invention.
[0043] Figure 3 This is a schematic diagram of the back structure of an automatic dried vegetable soaking device proposed in this invention;
[0044] Figure 4 This is a schematic diagram of the overall structure of the feeding section of an automatic dried vegetable soaking device proposed in this invention;
[0045] Figure 5 This is a schematic diagram of the overall exploded structure of the feeding section of an automatic dried vegetable soaking device proposed in this invention;
[0046] Figure 6 This is a schematic diagram of the main structure of the feeding section of an automatic dried vegetable soaking device proposed in this invention;
[0047] Figure 7 This is an exploded view of the overall structure of the impurity collection section of an automatic dried vegetable soaking device proposed in this invention;
[0048] Figure 8 This is a partial structural diagram of the impurity collection section of an automatic dried vegetable soaking device proposed in this invention;
[0049] Figure 9 This is a schematic diagram of the overall structure of the drive unit of an automatic dried vegetable soaking device proposed in this invention;
[0050] Figure 10 This is a partial structural diagram of the drive unit of an automatic dried vegetable soaking device proposed in this invention;
[0051] Figure 11 This is a schematic diagram of the bottom structure of the impurity collection frame of an automatic dried vegetable soaking device proposed in this invention;
[0052] Figure 12 This is a schematic diagram of the feeding section of an automatic dried vegetable soaking device proposed in this invention.
[0053] In the diagram: 1-Soaking box, 2-L-shaped plate, 3-Overflow valve, 4-Side door, 5-Drain valve, 6-Electric telescopic rod, 7-Connecting rod, 8-Limit plate, 9-Connecting rod, 10-Soaking cylinder, 11-Spring 1, 12-T-shaped rod 1, 13-Top plate, 14-Flipping plate, 15-Slope plate, 16-Opening door, 17-Collection box, 18-Flipping plate, 19-Arc-shaped plate, 20-Rotating block, 21-Water inlet, 22-Conical block, 23-Spring 2, 24-T-shaped rod 2, 25-Rectangular block, 26-Impurity filter box, 27-Counterweight block, 28-Box door. 29-Intermediate rod, 30-Spring 3, 31-T-shaped rod 3, 32-Plumb rod, 33-U-shaped seat, 34-Annular shell 1, 35-Coil spring 1, 36-Protective cover, 37-Side column, 38-Lifting plate, 39-Pushing seat, 40-Rack, 41-Bent rod, 42-Horizontal plate, 43-Guide frame, 44-Coil spring 2, 45-Gear, 46-Rotating rod, 47-Annular shell 2, 48-Pressure rod, 49-Limiting block, 50-Leakage hole, 51-Fan-shaped seat, 52-Horizontal plate, 53-Swing block, 54-Limiting hole, 55-Adjusting plate, 56-Hose. Detailed Implementation
[0054] The technical solution of the present invention will be further described in detail below with reference to specific embodiments.
[0055] Embodiments of the present invention are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be construed as limiting the present invention.
[0056] Example 1:
[0057] An automatic dried vegetable soaking device, such as Figures 1 to 12 As shown, it includes a foaming box 1 and a feeding section, wherein the feeding section includes:
[0058] Soaking tube 10: It is fixed to the inner wall of one side of the soaking box 1 by bolts, and the opening door 16 is connected to the inclined part of the soaking tube 10 by a hinge. The top and bottom of the soaking tube 10 are respectively provided with outlet hole one and outlet hole two.
[0059] Rotating rod 46: It is rotatably connected to the inner wall of one side of the foaming box 1, and one end of the rotating rod 46 is fixed with a flip plate 14 by a pin, and the surface of the flip plate 14 is provided with a water inlet hole 21.
[0060] Inclined plate 15: It is fixed to the inner wall of the other side of the foaming tube 10 by bolts, and the inclined plate 15 is an inclined platform structure;
[0061] L-shaped plate 2: It is fixed to the top outer wall of the foaming box 1 by bolts, and a T-shaped rod 12 is slidably connected to the inner wall of the through hole opened at the top of the L-shaped plate 2, and the same spring 11 is fixed between the top inner wall of the T-shaped rod 12 and the top outer wall of the L-shaped plate 2 by a pin.
[0062] Top plate 13: It is fixed to the bottom of T-shaped rod 12 by a pin;
[0063] T-shaped rod 31: It is slidably connected to the inner wall of the through hole opened on the surface of the top plate 13, and the same spring 30 is fixed between the inner wall of one side of the T-shaped rod 31 and the outer wall of one side of the top plate 13 by a pin.
[0064] Vertical rod 32: It is fixed to one end of T-shaped rod 31 by a pin, and a side post 37 is fixed to the through hole on the surface of vertical rod 32 by an embedding method;
[0065] U-shaped seat 33: It is rotatably connected to the outer wall of the side column 37, and the bottom of the U-shaped seat 33 is fixed with an impurity filter box 26 by bolts. The bottom of the impurity filter box 26 is fixed with an arc plate 19 by bolts, and the bottom of the impurity filter box 26 is provided with a leakage hole 50.
[0066] Door 28: It is rotatably connected to one end of the impurity filter box 26, and a counterweight 27 is fixed on the surface of the door 28 by embedding.
[0067] Limiting block 49: It is fixed to the bottom of the impurity filter box 26 by a pin;
[0068] Link 9: It is fixed to the top outer wall of the foaming box 1 by bolts, and one end of the link 9 is fixed to the limit plate 8 by a pin, and the limit plate 8 has a limit hole 54 on its surface.
[0069] Intermediate rod 29: It is fixed to the outer wall of the vertical rod 32 by a pin, and the outer diameter of the intermediate rod 29 and the inner diameter of the limiting hole 54 are mutually compatible;
[0070] Anti-overflow valve 3: It is fixed to the outer wall of one side of the foaming box 1 by bolts;
[0071] When it is necessary to soak dried vegetables, the door 16 is opened to facilitate placing the dried vegetables on the upper surface of the flip plate 14. Initially, the flip plate 14 is in a horizontal state. The dried vegetables can be placed using the flip plate 14 and the ramp 15. After water is added to the soaking box 1, the water can enter the area above the flip plate 14 through the water inlet 21. When the liquid level covers the dried vegetables, the dried vegetables can be soaked.
[0072] During the soaking process, the rotating plate 14 is driven to swing back and forth to a certain extent, which can play a stirring role, so that the dried vegetables can be better separated, reducing the cross-linking and tangling between them, thereby improving the contact effect between water and dried vegetables and improving soaking efficiency. After the dried vegetables are soaked, the rotation amplitude of the rotating plate 14 is adjusted. When the rotating plate 14 is rotated to an inclined position and an opening is formed between one end of the rotating plate 14 and the outlet hole 2 at the bottom of the soaking cylinder 10, the dried vegetables can be discharged through the outlet hole 2. By setting the inclined plate 15 to an inclined position, the sliding speed of the dried vegetables from the surface of the inclined plate 15 can be accelerated, and the dried vegetables can be prevented from accumulating on the surface of the inclined plate 15.
[0073] During the soaking process of dried vegetables, lighter impurities in the dried vegetables will float to the outlet hole one through the gap between the impurity filter box 26 and the inner surface of the soaking cylinder 10 under the action of buoyancy. When it is necessary to clean the impurities, the impurity filter box 26 is driven to move upward in the vertical direction. The impurity filter box 26 can slide along the outlet hole one. The outer diameter of the impurity filter box 26 and the inner diameter of the outlet hole one fit together, so that the impurity filter box 26 can pick up the impurities. The leakage hole 50 can prevent water from settling in the impurity filter box 26. As the impurity filter box 26 continues to rise, when the impurity filter box 26 is completely separated from the outlet hole one, the door 28 is no longer restricted by the outlet hole one. The counterweight block 27 makes the door 28 rotate along one end of the impurity filter box 26, thereby making the door... Door 28 opens relative to impurity filter box 26. By setting a rotatable connection between side column 37 and U-shaped seat 33, when impurity filter box 26 is tilted, impurities in impurity filter box 26 can slide down along the bottom inner wall of impurity filter box 26 and the surface of door 28, thereby exporting impurities from impurity filter box 26 and preventing impurities from accumulating in impurity filter box 26. The maximum opening angle of door 28 can be limited by setting limit block 49. When the outer surface of door 28 moves to contact the surface of limit block 49, door 28 is tilted at a certain angle relative to the bottom of impurity filter box 26, which facilitates the export of impurities. When impurity filter box 26 moves in the opposite direction to reset, the top area of foaming cylinder 10 will push door 28, so that door 28 can rotate in the opposite direction and be retracted into outlet hole 1.
[0074] The movement path of the intermediate rod 29 can be guided by setting a limiting hole 54. The limiting hole 54 is set into two parts: an inclined hole and a straight hole. When the intermediate rod 29 moves to the inclined hole area, the intermediate rod 29 will be displaced laterally under the guidance of the inclined hole, so that the impurity filter box 26 moves relative to the outlet side. Since the impurities are light, by moving the impurity filter box 26 away from the outlet, the impurities can be effectively prevented from re-entering the foaming cylinder 10 under the action of external wind.
[0075] Furthermore, an electric telescopic rod 6 is fixed to the bottom inner wall of the foaming box 1 by bolts, and an adjusting plate 55 is fixed to the output end of the electric telescopic rod 6 by pins. The outer wall of the adjusting plate 55 and the inner wall of the foaming box 1 are in close contact with each other. A drain valve 5 is fixed to one side outer wall of the foaming box 1 by bolts, and the input end of the drain valve 5 is connected to the bottom of the adjusting plate 55 by a hose 56.
[0076] The top of the soaking box 1 is open, which facilitates the filling of water into the soaking box 1. A drain valve 5 is provided to drain the water after the dried vegetables have been soaked. An electric telescopic rod 6 is provided to drive the adjusting plate 55 to slide up and down along the inner wall of the soaking box 1. When the volume of water injected into the soaking box 1 is constant, the water level can be adjusted within a certain range by driving the adjusting plate 55 to slide up and down. When it is necessary to soak the dried vegetables, the water level is raised to cover the dried vegetables for soaking. After the dried vegetables have been soaked, the water level is lowered so that the soaked dried vegetables can be easily taken out after being discharged through the outlet hole 2 due to the lower water level.
[0077] Furthermore, a lifting plate 38 is fixed to the top of the adjusting plate 55 by bolts, and a horizontal plate 42 is integrally formed on the outer wall of the top of the lifting plate, and a top moving seat 39 is fixed to one side of the outer wall of the horizontal plate 42 by bolts.
[0078] By fixing the lifting plate 38 and the adjusting plate 55 together, the top moving seat 39 can move synchronously when the adjusting plate 55 moves vertically. When the top moving seat 39 moves to the top plate 13, it can push the top plate 13. After being pushed, the top plate 13 can drive the impurity filter box 26 to collect impurities during the upward process. Since the adjusting plate 55 is also pushing the water during this process, the water level gradually rises. In order to prevent the water from eventually moving out of the top of the foaming tank 1, an overflow valve 3 is provided to discharge part of the rising water in time, thus preventing the water from overflowing from the top of the foaming tank 1.
[0079] Furthermore, a guide frame 43 is bolted to one side of the outer wall of the foaming box 1, and one end of the rotating rod 46 is rotatably connected to the inner wall of one side of the guide frame 43. An annular shell 47 is pinned to one side of the inner wall of the guide frame 43, and the same coil spring 44 is pinned between the inner wall of the annular shell 47 and the outer circumference of the rotating rod 46. A gear 45 is keyed to the outer circumference of the rotating rod 46. A bent rod 41 is bolted to the top inner wall of the horizontal plate 42, and a rack 40 adapted to the gear 45 is pinned to the bottom of the bent rod 41.
[0080] By setting a rack 40 so that it can move synchronously with the horizontal plate 42 in the vertical direction, the rack 40 can drive the gear 45 to rotate during the up and down movement, thereby using the gear 45 to drive the rotating rod 46 and the flipping plate 14 to rotate and feed the soaked dried vegetables.
[0081] Furthermore, the inner walls on both sides of the foaming box 1 are fixed with horizontal plates 52 by bolts, and the two horizontal plates 52 are rotatably connected with the same sector-shaped seat 51;
[0082] The fan-shaped seat 51 is designed to receive the dried vegetables discharged from the second outlet. The surface of the fan-shaped seat 51 has a mesh structure, which helps to drain the dried vegetables. In order to prevent the water level in the soaking tank 1 from falling below the fan-shaped seat 51, the rack 40 drives the gear 45 to rotate, causing the flip plate 14 to rotate and discharge the dried vegetables from the second outlet. The coil spring 44 ensures that the flip plate 14 remains stationary when the rack 40 disengages from the surface of the gear 45. This design ensures that when the liquid level in the soaking tank 1 falls below the fan-shaped seat 51, the rack 40 gradually moves to the gear 45 to drive the gear 45 to rotate, thereby using the rotation of the flip plate 14 to discharge the dried vegetables from the second outlet.
[0083] Furthermore, a connecting rod 7 is fixed to the top outer wall of the adjusting plate 55 by bolts, and a swing block 53 is fixed to the top of the connecting rod 7 by a pin;
[0084] By setting a swing block 53, the edge of the fan-shaped seat 51 can be moved during the downward movement, so that the fan-shaped seat 51 can rotate at a certain angle. When the swing block 53 is separated from the surface of the fan-shaped seat 51, the fan-shaped seat 51 can swing left and right under the action of inertia. During the swinging process, the fan-shaped seat 51 can speed up the draining rate of dried vegetables.
[0085] Furthermore, a side door 4 is connected to one side of the outer wall of the foaming box 1 via a hinge;
[0086] The side door 4 can be opened to remove the dried vegetables from the fan-shaped seat 51 when needed.
[0087] In this embodiment, when it is necessary to soak dried vegetables, the opening door 16 is opened, and then the dried vegetables are placed on the surface of the flip plate 14. After closing the opening door 16, water is poured into the soaking box 1. The adjusting plate 55 can be used to collect the water. In the initial stage, the adjusting plate 55 is at the lowest point. After a certain amount of water is poured in, the electric telescopic rod 6 is used to drive the adjusting plate 55 to move upward in the vertical direction. The adjusting plate 55 pushes the water, so that the liquid level in the soaking box 1 gradually rises. When the liquid level gradually submerges the dried vegetables, the dried vegetables can be soaked. After soaking, the electric telescopic rod 6 is used to drive the adjusting plate 55 to move in the opposite direction. During the rotation of the flip plate 14, the soaked dried vegetables can be guided into the fan-shaped seat 51 through the outlet hole 2 at the bottom of the soaking cylinder 10 for collection. When it is necessary to take out the dried vegetables, the side door 4 is opened. At this time, the liquid level in the soaking box 1 is lower than the side door 4, so the dried vegetables can be taken out.
[0088] Example 2:
[0089] An automatic dried vegetable soaking device, such as Figures 1 to 12 As shown, in order to accelerate the removal rate of impurities, this embodiment makes the following additions based on embodiment 1: an annular shell 34 is fixed to one side of the outer wall of the U-shaped seat 33 by a pin, the inner wall of the annular shell 34 and the outer circumferential wall of the side column 37 are fixed to the same coil spring 35 by a pin, and a protective cover 36 is connected to one end of the annular shell 34 by a thread.
[0090] By incorporating a coil spring 35, the impurity filter box 26 can automatically reset under the restoring force of the coil spring 35 after no external force is applied to its surface, thus ensuring that the impurity filter box 26 can move smoothly into the outlet hole.
[0091] Furthermore, a pressure rod 48 is fixed to the top outer wall of the impurity filter box 26 by a pin, and a rectangular block 25 is fixed to the top outer wall of the foaming cylinder 10 by bolts. A T-shaped rod 24 is slidably connected to the inner wall of the through hole on the surface of the rectangular block 25, and the same spring 23 is fixed between the inner wall of one side of the T-shaped rod 24 and the outer wall of one side of the rectangular block 25 by a pin. A conical block 22 is fixed to one end of the T-shaped rod 24 by a pin.
[0092] As the impurity filter box 26 and the pressure rod 48 rise along the outlet, the pressure rod 48 first contacts the bottom of the conical block 22. Since the bottom of the conical block 22 is a flat structure, it acts as a limit for the pressure rod 48. The pressure rod 48 gradually bends during its ascent. When the pressure rod 48 bends to its maximum extent, i.e., after it disengages from the surface of the conical block 22, the impurity filter box 26 vibrates back and forth under the restoring force of the coil spring 35, thereby accelerating the sliding speed of impurities within the impurity filter box 26. When the impurity filter box 26 needs to be lowered for reset, since the top of the conical block 22 is a sloping structure, the pressure rod 48 can only deform along one circumferential direction during the lowering and reset process. Therefore, the surface of the pressure rod 48 squeezes the sloping area at the top of the conical block 22, so that the conical block 22 retracts towards the rectangular block 25 after the spring 23 deforms. This ensures that the pressure rod 48 can pass smoothly through the conical block 22 for reset and avoids interference between the conical block 22 and the pressure rod 48.
[0093] Furthermore, a collection box 17 is fixed to one side of the outer wall of the foaming tube 10 by bolts, and a flap 18 is connected to the bottom of the collection box 17 by a hinge, and a rotating block 20 is rotatably connected to the bottom outer wall of the collection box 17 by a rotating shaft.
[0094] The collection box 17 can be used to collect the exported impurities. The flap 18 can be unfolded when impurities need to be collected, so as to facilitate the export of impurities. The rotating block 20 can support the bottom of the flap 18 after the flap 18 is closed.
[0095] Example 3:
[0096] A method for rehydrating dried vegetables using an automatic rehydration device includes the following steps:
[0097] S1: The dried vegetables that need to be soaked are fed into the soaking tube 10 through the opening door 16.
[0098] S2: Use the electric telescopic rod 6 to adjust the liquid level in the soaking box 1 so that the liquid level covers the dried vegetables and soaks them.
[0099] S3: After soaking, the electric telescopic rod 6 drives the adjusting plate 55 to move in the opposite direction, so that the liquid level in the soaking box 1 is reduced. At the same time, the flipping plate 14 rotates so that the soaked dried vegetables are discharged through the outlet hole 2 at the bottom of the soaking tube 10.
[0100] S4: The dried vegetables after export are received by the fan-shaped seat 51;
[0101] S5: After opening side door 4, take out the soaked dried vegetables.
[0102] The above description represents a preferred embodiment of the present invention, but it is not the only embodiment of the present invention. Any modifications, equivalent substitutions, and improvements made by those skilled in the art within the scope of the technology disclosed in the present invention, combined with existing technology or common knowledge, and within the spirit and principles of the present invention, should be covered within the protection scope of the present invention.
Claims
1. An automatic dried vegetable soaking device, comprising a soaking box (1) and a feeding section, characterized in that, The feeding section includes: Soaking tube (10): It is fixed to the inner wall of one side of the soaking box (1), and the opening door (16) is connected to the inclined side of the soaking tube (10) by a hinge. The top and bottom of the soaking tube (10) are respectively provided with outlet hole one and outlet hole two. The outer wall of one side of the soaking box (1) is connected to a side door (4) by a hinge. Rotating rod (46): It is movably connected to the inner wall of one side of the foaming box (1), and one end of the rotating rod (46) is fixed with a flip plate (14) by a pin, and the surface of the flip plate (14) is provided with a water inlet hole (21); Inclined plate (15): It is fixed to the inner wall of the other side of the foaming tube (10), and the inclined plate (15) is a sloping platform structure; L-shaped plate (2): It is fixed to the top outer wall of the foaming box (1), and the inner wall of the through hole opened at the top of the L-shaped plate (2) is movably connected to a T-shaped rod (12), and the inner wall of the top of the T-shaped rod (12) and the outer wall of the top of the L-shaped plate (2) are fixed with the same spring (11) by a pin. Top plate (13): It is fixed to the bottom of T-shaped rod (12) by a pin; T-shaped rod three (31): It is movably connected to the inner wall of the through hole opened on the surface of the top plate (13), and the same spring three (30) is fixed between the inner wall of one side of the T-shaped rod three (31) and the outer wall of one side of the top plate (13) by a pin; The plumb line (32) is fixed to one end of the T-shaped rod (31) by a pin, and the through hole on the surface of the plumb line (32) is fixed with a side column (37) by an embedding method. U-shaped seat (33): It is movably connected to the outer wall of the side column (37), and the bottom of the U-shaped seat (33) is fixed with an impurity filter box (26), the bottom of the impurity filter box (26) is fixed with an arc plate (19), and the bottom of the impurity filter box (26) is provided with a leakage hole (50). Box door (28): It is movably connected to one end of the impurity filter box (26), and a counterweight (27) is fixed on the surface of the box door (28) by embedding; Limiting block (49): It is fixed to the bottom of the impurity filter box (26) by a pin; Linkage (9): It is fixed to the top outer wall of the foaming box (1), and one end of the link (9) is fixed to the limiting plate (8) by a pin, and the limiting plate (8) has a limiting hole (54) on its surface; Intermediate rod (29): It is fixed to the outer wall of the vertical rod (32) by a pin, and the outer diameter of the intermediate rod (29) and the inner diameter of the limiting hole (54) are mutually compatible; Anti-overflow valve (3): It is fixed to the outer wall of one side of the foaming box (1).
2. The automatic dried vegetable soaking device according to claim 1, characterized in that, An electric telescopic rod (6) is fixed to the inner wall of the bottom of the foaming box (1). An adjusting plate (55) is fixed to the output end of the electric telescopic rod (6) by a pin. The outer wall of the adjusting plate (55) and the inner wall of the foaming box (1) are in close contact with each other.
3. The automatic dried vegetable soaking device according to claim 2, characterized in that, A drain valve (5) is fixed on one side of the outer wall of the foaming box (1), and the input end of the drain valve (5) and the bottom of the regulating plate (55) are connected by a hose (56).
4. The automatic dried vegetable soaking device according to claim 3, characterized in that, The top of the adjusting plate (55) is fixed with a lifting plate (38), and the outer wall of the top of the lifting plate is integrally formed with a horizontal plate (42), and a top moving seat (39) is fixed on one side of the outer wall of the horizontal plate (42).
5. The automatic dried vegetable soaking device according to claim 4, characterized in that, A guide frame (43) is fixed to one side of the outer wall of the foaming box (1), and one end of the rotating rod (46) is movably connected to the inner wall of one side of the guide frame (43). An annular shell (47) is fixed to one side of the inner wall of the guide frame (43) by a pin, and the same coil spring (44) is fixed between the inner wall of the annular shell (47) and the outer circumference of the rotating rod (46) by a pin. A gear (45) is connected to the outer circumference of the rotating rod (46) by a key. A bent rod (41) is fixed to the top inner wall of the horizontal plate (42), and a rack (40) that matches the gear (45) is fixed to the bottom of the bent rod (41) by a pin.
6. The automatic dried vegetable soaking device according to claim 5, characterized in that, The foaming box (1) has horizontal plates (52) fixed on both sides of its inner wall, and the two horizontal plates (52) are movably connected to the same sector-shaped seat (51). The top outer wall of the adjusting plate (55) is fixed with a connecting rod (7), and the top of the connecting rod (7) is fixed with a swing block (53) by a pin.
7. The automatic dried vegetable soaking device according to claim 6, characterized in that, The outer wall of one side of the U-shaped seat (33) is fixed with an annular shell (34) by a pin. The inner wall of the annular shell (34) and the outer wall of the side column (37) are fixed with the same coil spring (35) by a pin. One end of the annular shell (34) is connected with a protective cover (36) by a thread.
8. The automatic dried vegetable soaking device according to claim 7, characterized in that, The top outer wall of the impurity filter box (26) is fixed with a pressure rod (48) by a pin. The top outer wall of the foaming tube (10) is fixed with a rectangular block (25). The inner wall of the through hole on the surface of the rectangular block (25) is movably connected with a T-shaped rod (24). The inner wall of one side of the T-shaped rod (24) and the outer wall of one side of the rectangular block (25) are fixed with the same spring (23) by a pin. One end of the T-shaped rod (24) is fixed with a conical block (22) by a pin.
9. An automatic dried vegetable soaking device according to claim 8, characterized in that, A collection box (17) is fixed to one side of the outer wall of the foaming tube (10), and a flap (18) is connected to the bottom of the collection box (17) by a hinge, and a rotating block (20) is movably connected to the bottom outer wall of the collection box (17) by a rotating shaft.
10. A method for soaking dried vegetables using an automatic soaking device according to any one of claims 1-9, characterized in that, Includes the following steps: S1: The dried vegetables that need to be soaked are introduced into the soaking tube (10) through the door (16) for feeding; S2: Use the electric telescopic rod (6) to adjust the liquid level in the soaking box (1) so that the liquid level covers the dried vegetables and then soaks them. S3: After soaking, the electric telescopic rod (6) drives the adjusting plate (55) to move in the opposite direction, so that the liquid level in the soaking box (1) is reduced. At the same time, the flip plate (14) rotates so that the dried vegetables after soaking are discharged through the outlet hole at the bottom of the soaking tube (10). S4: The dried vegetables after export are received by a fan-shaped support (51); S5: After opening the side door (4), take out the soaked dried vegetables.
Citation Information
Patent Citations
A soaking device for soaking tremella.
CN215075312U