A cleaning device for processing seasoning raw materials

By designing a cleaning device for the processing of condiment raw materials, multiple cleanings of vegetables and water flow erosion are achieved using the flip mechanism and annular sink, the problem of gradually decreasing the cleanliness of vegetables in the prior art is solved, and the cleaning efficiency and cleanliness are improved.

CN119138615BActive Publication Date: 2025-05-09TAIZHOU DINGYI FOOD CO LTD
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Patent Information

Application Number
CN202411639973.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-18
Publication Date
2025-05-09
Estimated Expiration
2044-11-18

AI Technical Summary

Technical Problem

In the existing vegetable cleaning equipment, the water in the pool is repeatedly used to clean different batches of vegetables, resulting in a gradual decrease in the cleaning of the vegetables in the latter, affecting the cleanliness of the cleanliness.

Method used

A cleaning device for the processing of condiment raw materials is designed, including the primary wash basin and the secondary wash basin. Multiple cleaning of vegetables and water flow erosion are achieved through the flip mechanism and annular sink to ensure that the cleaning water flows fully.

Benefits of technology

By rinsing the flowing water, the cleaning efficiency of vegetables is improved, the cleanliness is guaranteed, and the cleanliness problem is avoided due to repeated use of water in the pool.

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Abstract

The present application relates to the technical field of cleaning, and discloses a cleaning device for processing seasoning raw materials, including: a cleaning table, the table top is divided into a primary washing table tank and a secondary washing table tank; a primary washing water storage tank and a secondary washing water storage tank, respectively located in the primary washing table tank and the secondary washing table tank; a primary washing basket and a secondary washing basket, respectively located in the primary washing water storage tank and the secondary washing water storage tank; a material receiving basket; a turning mechanism, one set of turning mechanisms is used to pour the raw materials in the primary washing basket into the secondary washing table tank, and the other set of turning mechanisms is used to pour the raw materials in the secondary washing basket into the material receiving basket; a water injection pipe group, used to inject clean water with water pressure; an annular water tank, the raw materials on the secondary washing table tank will enter the annular water tank; a material lifting mechanism, used to receive the raw materials in the annular water tank and transport them to the secondary washing basket. The present application realizes the flow of clean water, and also allows vegetables to be washed in the flow, thereby improving the cleaning efficiency and ensuring the cleanliness.
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Description

Technical Field

[0001] The present application relates to the technical field of cleaning, and in particular to a cleaning device for processing seasoning raw materials. Background Art

[0002] Dehydrated vegetables are widely used in the food industry. Dehydrated vegetables are not only used as side dishes in fast food, but also often used in the seasoning market. For example, chili powder, ginger powder, onion powder, etc., which are used as seasoning raw materials, are also made from various vegetables after dehydration. The production process of dehydrated vegetables is generally to wash them first, then rotate them at high speed to dehydrate them using centrifugal force, and then dry them for thorough dehydration. The cleaning in the production factory has also gradually changed from manual to mechanical equipment cleaning, which not only improves production efficiency, but also makes the cleaning of vegetables cleaner.

[0003] However, in the process of implementing relevant technical solutions, it was found that at least the following technical problems exist: currently most vegetable cleaning equipment uses water spray to make the vegetables tumble in the cleaning pool to achieve cleaning. This cleaning method is always cleaned in one pool or two pools, and the water in the pool is repeatedly used to wash different batches of vegetables. The cleanliness of the subsequent vegetables will gradually decrease, thereby affecting the cleanliness. Summary of the invention

[0004] The present application provides a cleaning device for processing seasoning raw materials, which solves the technical problem in the prior art that the cleanliness of different batches of vegetables is gradually reduced by repeatedly using water in a pool, affecting the cleanliness. The application realizes the flow of clean water and also allows the vegetables to be rinsed during the flow, thereby improving the cleaning efficiency and ensuring the cleanliness.

[0005] The present application provides a cleaning device for processing seasoning raw materials, comprising: a cleaning table, the table top is trough-shaped, a partition is arranged on the cleaning table, the partition divides the trough-shaped table top of the cleaning table into a primary cleaning table trough and a secondary cleaning table trough; a primary cleaning water storage tank and a secondary cleaning water storage tank, respectively located in the primary cleaning table trough and the secondary cleaning table trough; a primary cleaning basket and a secondary cleaning basket, respectively located in the primary cleaning water storage tank and the secondary cleaning water storage tank, the primary cleaning basket is used to receive the raw materials to be cleaned; a material receiving basket is located outside the cleaning table and close to the secondary cleaning basket; a turning mechanism is provided with two groups, one of which is used to turn the primary cleaning basket out of the primary cleaning water storage tank and pour the raw materials in the primary cleaning basket into the secondary cleaning basket. In the secondary wash tank, another group of the flipping mechanism is used to flip the secondary wash basket out of the secondary wash water storage tank, and pour the raw materials in the secondary wash basket into the receiving basket; the water injection pipe group is provided with two groups and respectively injects clean water with water pressure into the primary wash water storage tank and the secondary wash water storage tank; an annular water tank is arranged around the bottom of the washing table, one end of the annular water tank is connected with the secondary wash tank, and the raw materials on the secondary wash tank will enter the annular water tank; a lifting mechanism is arranged on one side of the washing table, and is used to receive the raw materials in the annular water tank and transport them to the secondary wash basket, wherein the connecting end of the annular water tank and the secondary wash tank is higher than the end connected with the lifting mechanism.

[0006] Furthermore, the material lifting mechanism includes: a closed trough, which is located on one side of the washing table and is in the shape of a strip; a plurality of material lifting half-tubes are provided and are all located in the closed trough, and the plurality of material lifting half-tubes are arranged in sequence along the length direction of the closed trough, and the ends of two adjacent material lifting half-tubes are fitted with each other, and one end of the material lifting half-tube is higher than the other end, and the edges of the openings at both ends of the material lifting half-tubes are fixedly connected with side sealing plates, and a contact roller and a slider are fixedly connected between the side sealing plates at both ends of each of the material lifting half-tubes, and the slider is located above the contact roller, and the height of each material lifting half-tube gradually increases from one end of the closed trough to the other end; a plurality of slide rails are provided and are all vertically arranged, and the slide rails are located on the outside of the closed trough, and the sliders under each of the material lifting half-tubes are slidably connected to each slide rail respectively; a rotating shaft rod is located below the closed trough, and The length direction is consistent with the arrangement direction of the multiple lifting half-tubes, and a plurality of cams are coaxially connected to the rotating shaft rod 1, and the plurality of cams are respectively in contact with each contact roller. The cams are used to lift and lower the lifting half-tubes, and are used to connect with each other during the lifting and lowering of two adjacent lifting half-tubes; a driving motor 1 is used to drive the rotating shaft rod 1 to rotate; a connecting pipe 1, one end of which is connected to the lower end of the annular water trough, and the other end is connected to the closed surrounding groove, and is used to connect with the lifting half-tube with the lowest height in a lowered state; a connecting pipe 2, one end of which is connected to the lifting half-tube with the highest height in a raised state, and the other end is located above the secondary washing basket; wherein, one end of each of the lifting half-tubes faces the connecting pipe 1, and the other end faces the connecting pipe 2, and one end of the lifting half-tube close to the connecting pipe 1 is higher than the other end.

[0007] Furthermore, the material lifting mechanism also includes a grid plate fixed on the top of the material lifting half pipe.

[0008] Furthermore, the primary wash tank and the secondary wash tank are both fixedly connected with a surrounding plate, the primary wash water storage tank and the secondary wash water storage tank are both located in the surrounding plates in the primary wash tank and the secondary wash tank, the outlet of the water injection pipe group is located on one of the side edges of the surrounding plate, and the height of the side edge of the surrounding plate having the outlet of the water injection pipe group is higher than that of the other side edges, the side surface and the bottom surface of the primary wash basket and the secondary wash basket close to the surrounding plate are both hollow, and the other surfaces are solid plate-shaped, and the side surface of the primary wash basket and the secondary wash basket corresponding to the hollow shape is an inclined surface.

[0009] Furthermore, the water injection pipe group includes a main water pipe connected to a clean water source, and a plurality of branch pipes that are linearly arranged and fixedly connected to one side of the enclosure, each of the branch pipes is connected to the main water pipe, and one end of the branch pipe away from the main water pipe faces a hollow side of the washing basket.

[0010] Furthermore, two water outlet pipes are connected to the washing table, the two water outlet pipes are respectively connected to the primary washing table tank and the secondary washing table tank, and a retaining net is arranged inside the water outlet pipe.

[0011] Furthermore, the flipping mechanism includes: a second rotating shaft rod, rotatably arranged on the washing table; a swing rod, one end of which is fixed to the second rotating shaft rod and the other end is fixed to the outer wall of the washing basket; and a second driving motor, which is installed on the washing table and is used to drive the second rotating shaft rod to rotate.

[0012] One or more technical solutions provided in this application have at least the following technical effects or advantages:

[0013] In the process of washing vegetables, the vegetables to be washed are first put into the primary washing basket, the water pressure makes the vegetables tumble, and then the turning mechanism is used to pour the vegetables in the primary washing basket into the secondary washing table trough. The vegetables in the secondary washing table trough will enter the annular water trough under the action of the water flow, and the vegetables in the annular water trough will eventually enter the lifting mechanism through connecting pipe 1, so that the vegetables can be finally lifted to the height of connecting pipe 2, and then the vegetables will enter the secondary washing basket for washing, and finally the turning mechanism will be used to pour the vegetables in the secondary washing basket into the receiving basket. During the washing process, the clean water flows fully, and the vegetables also flow with it, so that the vegetables are washed during the flow, which improves the washing efficiency and ensures the cleanliness. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 This is a schematic diagram of the overall structure of a cleaning device for seasoning raw material processing in an embodiment of the present application;

[0015] Figure 2 for Figure 1 The schematic diagram of the middle part structure mainly shows the structure of the turnover mechanism and the annular water tank;

[0016] Figure 3 for Figure 1 The schematic diagram of the middle part structure mainly shows the partial structure of the lifting mechanism;

[0017] Figure 4 for Figure 3 The schematic diagram of the middle part structure mainly illustrates the structure of another part of the lifting mechanism;

[0018] In the figure: 1. cleaning table; 11. partition; 12. primary washing table trough; 13. secondary washing table trough; 14. enclosure; 15. water outlet pipe; 2. primary washing water storage tank; 3. secondary washing water storage tank; 4. primary washing basket; 5. secondary washing basket; 6. receiving basket; 7. turning mechanism; 71. rotating shaft rod 2; 72. swing rod; 73. driving motor 2; 8. water injection pipe group; 81. main water pipe; 82. branch pipe; 9. annular water tank; 10. lifting mechanism; 101. closed enclosure trough; 102. lifting half pipe; 1021. side sealing plate; 1022. contact roller; 1023. slider; 103. slide rail; 104. rotating shaft rod 1; 1041. cam; 105. driving motor 1; 106. connecting pipe 1; 107. connecting pipe 2; 108. grid plate. DETAILED DESCRIPTION

[0019] In order to better understand the technical solution of the present application, the technical solution of the present application will be described in detail below in conjunction with the accompanying drawings and specific implementation methods.

[0020] Reference Figure 1 and Figure 2 A cleaning device for processing seasoning raw materials includes a cleaning table 1, a primary washing water storage tank 2, a secondary washing water storage tank 3, a primary washing basket 4, a secondary washing basket 5, a material receiving basket 6, a turning mechanism 7, a water injection pipe group 8, an annular water tank 9 and a material lifting mechanism 10.

[0021] Reference Figure 1 As shown, the washing table 1 is in a strip shape, and the table top is a quadrilateral. The four sides of the table top of the washing table 1 are raised, so that the table top of the washing table 1 is trough-shaped. A partition 11 is fixedly connected to the washing table 1, and the length direction of the partition 11 is perpendicular to the length direction of the washing table 1. The partition 11 divides the trough-shaped table top of the washing table 1 into a primary washing table trough 12 and a secondary washing table trough 13. Two water outlet pipes 15 are connected to the washing table 1, one of which is connected to the primary washing table trough 12, and the other is connected to the secondary washing table trough 13, and a retaining net is arranged in the water outlet pipe 15, and the ends of the two water outlet pipes 15 away from the washing table 1 are connected to the wastewater tank. The primary wash water tank 2 and the secondary wash water tank 3 are both large water tanks with rectangular cross-sections. The primary wash water tank 2 and the secondary wash water tank 3 are respectively located on both sides of the partition 11, and the notch of the primary wash water tank 2 is connected to the primary wash table slot 12, and the notch of the secondary wash water tank 3 is connected to the secondary wash table slot 13, so that the primary wash table slot 12 and the secondary wash table slot 13 are both formed into an annular groove shape. The primary wash basket 4 is located in the primary wash water tank 2, and the secondary wash basket 5 is located in the secondary wash water tank 3. The primary wash basket 4 and the secondary wash basket 5 are both used to put vegetables that need to be washed. The receiving basket 6 is located on the outside of the washing table 1, and the receiving basket 6 is located at the end of the washing table 1 close to one end of the secondary wash basket 5. The receiving basket 6 is used to receive vegetables that have been washed.

[0022] Continue to refer to Figure 1As shown, the primary wash tank 12 and the secondary wash tank 13 are both fixedly connected with a panel 14. The panel 14 in the primary wash tank 12 surrounds the edge of the slot of the primary wash water storage tank 2, and the panel 14 in the secondary wash tank 13 surrounds the edge of the slot of the secondary wash water storage tank 3, and one of the sides of the panel 14 is higher than the other three sides. The water injection pipe group 8 includes a main water pipe 81 and a branch pipe 82. The branch pipe 82 is fixed on a higher side of the enclosure 14, and there are several branch pipes 82, which are evenly distributed along the length direction of the side. The main water pipe 81 is fixed on the washing table 1, and each branch pipe 82 is connected to the main water pipe 81. The water inlet of the main water pipe 81 is connected to the clean water, and the outlet of the branch pipe 82 is inclined downward toward the water storage tank. By pressurizing the clean water, the clean water can enter the primary washing water storage tank 2 and the secondary washing water storage tank 3 through the two groups of water injection pipe groups 8, and because of a certain water pressure, the water in the primary washing water storage tank 2 and the secondary washing water storage tank 3 can roll. In addition, the side surface and bottom surface of the primary washing basket 4 and the secondary washing basket 5 close to the branch pipe 82 are hollow, and the other surfaces are solid plates, and the side surface corresponding to the hollow shape in the primary washing basket 4 and the secondary washing basket 5 is the pouring surface of the vegetables.

[0023] Since only one side and the bottom side of the primary washing basket 4 and the secondary washing basket 5 near the branch pipe 82 are hollow, and the other sides are solid, when the branch pipe 82 discharges water, the water pressure will act on the solid side, and the solid side will provide a reaction force, thereby further strengthening the tumbling of the water, and thus further improving the washing effect of the vegetables in the primary washing basket 4 and the secondary washing basket 5. The clean water in the primary washing water storage tank 2 will overflow into the primary washing table tank 12, and the clean water in the secondary washing basket 5 and the secondary washing water storage tank 3 will overflow into the secondary washing table tank 13, and part of the clean water will flow out through the outlet pipe 15 to ensure that the clean water in the primary washing water storage tank 2 and the secondary washing water storage tank 3 is constantly replaced.

[0024] Reference Figure 2As shown, two groups of flipping mechanisms 7 are provided, one group of flipping mechanisms 7 is used to flip the primary wash basket 4 out of the primary wash water storage tank 2, and pour the vegetables in the primary wash basket 4 into the secondary wash tank 13, and the other group of flipping mechanisms 7 is used to flip the secondary wash basket 5 out of the secondary wash water storage tank 3, and pour the raw materials in the secondary wash basket 5 into the receiving basket 6. The turning mechanism 7 includes a rotating shaft rod 2 71, a swing rod 72 and a driving motor 2 73; the axis of the rotating shaft rod 2 71 is perpendicular to the length direction of the washing table 1, the rotating shaft rod 2 71 in the turning mechanism 7 on the side of the primary washing basket 4 is located on the side of the primary washing basket 4 away from the water injection assembly, and the rotating shaft rod 2 71 in the turning mechanism 7 on the side of the secondary washing basket 5 is located on the side of the secondary washing basket 5 away from the water injection assembly; two swing rods 72 are provided, and the two swing rods 72 are respectively fixed to the two ends of the rotating shaft rod 2 71, and the ends of the two swing rods 72 in the turning mechanism 7 on the side of the primary washing basket 4 away from the rotating shaft rod 2 71 are respectively fixed to the two side walls of the primary washing basket 4, and the ends of the two swing rods 72 in the turning mechanism 7 on the side of the secondary washing basket 5 away from the rotating shaft rod 2 71 are respectively fixed to the two side walls of the secondary washing basket 5; the driving motor 2 73 is installed on one side of the washing table 1, and drives the rotating shaft rod 2 71 to rotate through the gear group transmission.

[0025] When the second driving motor 73 is started, it will drive the second rotating shaft 71 to rotate, and the rotation of the second rotating shaft 71 will drive the swing rod 72 to swing, and the swing of the swing rod 72 will drive the washing basket to flip, so that the vegetables can be dumped out from the dumping surface of the washing basket.

[0026] Reference Figure 1 and Figure 2 As shown, the annular water tank 9 is located below the washing table 1 and below the edge of the washing table 1. The annular water tank 9 is gradually lowered downward in a spiral shape. The top of the annular water tank 9 is connected to the secondary washing table tank 13, and the bottom of the annular water tank 9 is connected to the table material mechanism. After the vegetables in the primary washing basket 4 are initially washed, the turning mechanism 7 is used to pour the vegetables in the primary washing basket 4 into the secondary washing table tank 13. The vegetables in the secondary washing table tank 13 will enter the annular water tank 9 under the action of the water flow. The vegetables continue to flow downward in the annular water tank 9. During the flow, the vegetables will turn over and be flushed by the water flow, so that the vegetables can be further washed. Since the annular water tank 9 is connected to the secondary washing table tank 13, the cleanliness of the water in the annular water tank 9 is higher than that of the primary washing water storage tank 2, so that the cleanliness can be guaranteed.

[0027] Reference Figure 3 and Figure 4The material lifting mechanism 10 includes a closed trough 101, a material lifting half pipe 102, a slide rail 103, a rotating shaft rod 104, a driving motor 105, a connecting pipe 106, a connecting pipe 2 107 and a grid plate 108. The closed trough 101 is composed of a plurality of panels 14, which form a rectangular trough with openings at the top and bottom. The closed trough 101 is located on one side of the length direction of the washing table 1, and the length direction of the closed trough 101 is consistent with the length direction of the washing table 1. The lifting half-tube 102 is a semi-tubular object with a semi-circular cross-section, and the two ends of the lifting half-tube 102 are respectively facing the two ends of the length direction of the closed groove 101. There are several lifting half-tubes 102, and they are all located in the closed groove 101. The several lifting half-tubes 102 are distributed in sequence along the length direction of the closed groove 101, and one end of the inner arc surface of the lifting half-tube 102 is higher than the other end, so that after entering the lifting half-tube 102, the vegetables can slide from the higher end of the lifting half-tube 102 to the lower end. The edges of the openings at both ends of the lifting half-tube 102 are fixedly connected with side sealing plates 1021, which are arranged vertically, perpendicular to the length direction of the closed enclosure 101, and the sides of the side sealing plates 1021 are in conflict with the inner wall of the closed enclosure 101, and the side sealing plates 1021 at the ends of two adjacent lifting half-tubes 102 are in conflict with each other. The height of each lifting half-tube 102 is determined by the height of the side sealing plates 1021. By using side sealing plates 1021 of different heights, each lifting half-tube 102 can be gradually raised from one end of the closed enclosure 101 to the other end. A contact roller 1022 and a slider 1023 are fixedly connected between the side sealing plates 1021 at both ends of each lifting half-tube 102, and the slider 1023 is located above the contact roller 1022.

[0028] Continue to refer to Figure 3 and Figure 4, there are a plurality of slide rails 103 and they are all vertically arranged. The slide rails 103 are located outside the closed enclosure groove 101. The sliders 1023 under each material lifting half pipe 102 are slidably connected to each slide rail 103. The rotating shaft rod 104 is located below the closed enclosure groove 101, and the length direction of the rotating shaft rod is consistent with the length direction of the closed enclosure groove 101. The rotating shaft rod 104 is coaxially connected with a plurality of cams 1041, and the plurality of cams 1041 are respectively in contact with each contact roller 1022. The cams 1041 are used to raise and lower the material lifting half pipe 102, and are used to communicate with each other during the raising and lowering process of two adjacent material lifting half pipes 102. The driving motor 105 is installed on the outer wall of the cleaning table 1, and the driving motor 105 is used to drive the rotating shaft rod 104 to rotate. Connecting pipe 106 and connecting pipe 2 107 are respectively connected to the two ends of the closed groove 101 in the length direction, and the inner arc surface of each lifting half-tube 102 in the closed groove 101 is higher than the other end at one end close to connecting pipe 106. One end of connecting pipe 106 is connected to the lower end of the annular water trough 9, and the other end is connected to the closed groove 101. The lifting half-tube 102 with the lowest height in the closed groove 101 is connected to the end of the connecting pipe 106 away from the annular water trough 9 when it is in a lowered state, so that the vegetables in the annular water trough 9 can flow into the lifting half-tube 102 with the lowest height in the closed groove 101 through connecting pipe 106. One end of the second connecting pipe 107 is located above the secondary washing cage, and the other end is connected to the end of the closed enclosure 101 away from the first connecting pipe 106, and the highest material lifting half pipe 102 in the closed enclosure 101 is connected to the end of the second connecting pipe 107 away from the secondary washing cage when it is in a raised state, so that the raised vegetables can flow into the secondary washing cage through the connecting pipe. In addition, a grid plate 108 is fixed on the top of each material lifting half pipe 102, and the grid plate 108 can prevent the vegetables entering the material lifting half pipe 102 from escaping from the closed enclosure 101 from the top of the material lifting half pipe 102.

[0029] The vegetables in the annular water trough 9 will enter the lowest lifting half-tube 102 in the closed confining groove 101 under the connection of the connecting pipe 106, and then, under the interaction of different cams 1041, the lower lifting half-tube 102 can be connected with the adjacent lifting half-tube 102 during the descending process during the rising process, so that the vegetables in the lower lifting half-tube 102 can enter the higher lifting half-tube 102, and by lifting step by step, the vegetables can be finally lifted to the height of the connecting pipe 2 107 and enter the connecting pipe 2 107. The vegetables can be transported by the connecting pipe 2 107 to fall into the secondary washing basket 5, and in the step-by-step lifting process, the vegetables are turned over again, which further improves the cleanliness of cleaning.

[0030] This application can explain its functional principle through the following operation methods:

[0031] When it is necessary to wash the vegetables for making seasoning ingredients, clean water is stored in the primary wash water tank 2 and the secondary wash water tank 3, and then the vegetables to be washed are placed in the primary wash basket 4, and water is injected into the primary wash water tank 2 using the water injection pipe group 8. Due to a certain water pressure, the water in the primary wash water tank 2 can be rolled, so that the vegetables in the primary wash basket 4 can be washed.

[0032] After the vegetables are initially washed in the primary washing basket 4, the turning mechanism 7 is used to pour the vegetables in the primary washing basket 4 into the secondary washing tank 13. The vegetables in the secondary washing tank 13 will enter the annular water tank 9 under the action of the water flow. The vegetables will continuously flow downward in the annular water tank 9. During the flow, they will turn over and be flushed by the water flow, so that the vegetables can be further washed. Moreover, since the annular water tank 9 is connected to the secondary washing tank 13, the cleanliness of the water in the annular water tank 9 is higher than that of the primary washing water storage tank 2, so that the cleanliness can be guaranteed.

[0033] The vegetables in the annular water trough 9 will eventually enter the lifting mechanism 10 through the connecting pipe 106. By lifting them step by step, the vegetables can be finally lifted to the height of the connecting pipe 107 and enter the connecting pipe 107. The vegetables can be transported through the connecting pipe 107 to fall into the secondary washing basket 5. In the process of lifting them step by step, the vegetables are turned over again, which further improves the cleanliness of cleaning.

[0034] By using another set of water injection pipes 8 to inject water into the secondary wash water storage tank 3, the water in the secondary wash water storage tank 3 can be rolled, so that the vegetables in the secondary wash basket 5 can be washed again. After the second washing, another flipping mechanism 7 is used to pour the vegetables in the secondary wash basket 5 into the receiving basket 6 to complete the final washing.

[0035] Therefore, under the action of the cleaning device, the clean water used to clean the vegetables for making seasoning raw materials can flow fully, and the vegetables also flow along with it, so that the vegetables are rinsed during the flow, thereby improving the cleaning efficiency and ensuring the cleanliness.

[0036] Obviously, those skilled in the art can make various changes and modifications to the present application without departing from the spirit and scope of the present application. Thus, if these modifications and variations of the present application fall within the scope of the claims of the present application and their equivalents, the present application is also intended to include these modifications and variations.

[0037] What has been described above is only a preferred specific implementation manner of the embodiments of the present application, but the protection scope of the present application is not limited thereto. Any technician familiar with the technical field can make equivalent substitutions or changes according to the technical scheme and concept of the present application within the technical scope disclosed in the present application, which should be covered by the protection scope of the present application.

Claims

1. A cleaning device for seasoning raw material processing, characterized in that: include: A washing table (1), the table top being in the shape of a groove, a partition (11) being arranged on the washing table (1), the partition (11) dividing the groove-shaped table top of the washing table (1) into a primary washing table groove (12) and a secondary washing table groove (13); A primary wash water storage tank (2) and a secondary wash water storage tank (3), respectively located in the primary wash tank (12) and the secondary wash tank (13); A primary washing basket (4) and a secondary washing basket (5), respectively located in the primary washing water storage tank (2) and the secondary washing water storage tank (3), the primary washing basket (4) being used to receive raw materials to be washed; A material receiving basket (6) is located outside the washing table (1) and close to the secondary washing basket (5); The turning mechanism (7) is provided in two groups, wherein one group of the turning mechanisms (7) is used to turn the primary wash basket (4) out of the primary wash water storage tank (2) and pour the raw materials in the primary wash basket (4) into the secondary wash tank (13), and the other group of the turning mechanisms (7) is used to turn the secondary wash basket (5) out of the secondary wash water storage tank (3) and pour the raw materials in the secondary wash basket (5) into the receiving basket (6); Two water injection pipe groups (8) are provided and respectively inject clean water with water pressure into the primary wash water storage tank (2) and the secondary wash water storage tank (3); An annular water trough (9) is arranged around the bottom of the washing table (1), one end of the annular water trough (9) is connected to the secondary washing table trough (13), and the raw materials on the secondary washing table trough (13) will enter the annular water trough (9); a material lifting mechanism (10) disposed on one side of the washing table (1) and used for receiving the raw materials in the annular water trough (9) and conveying them to the secondary washing basket (5), wherein the connecting end of the annular water trough (9) and the secondary washing table trough (13) is higher than the end connected to the material lifting mechanism (10); The material lifting mechanism (10) comprises: A closed confined groove (101) located on one side of the cleaning table (1) and in a strip shape; A plurality of material lifting half-tubes (102) are provided and all are located in the closed confining groove (101); the plurality of material lifting half-tubes (102) are arranged in sequence along the length direction of the closed confining groove (101); the ends of two adjacent material lifting half-tubes (102) fit each other, and one end of the material lifting half-tube (102) is higher than the other end; the edges of the openings at both ends of the material lifting half-tube (102) are fixedly connected with side sealing plates (1021); a contact roller (1022) and a slider (1023) are fixedly connected between the side sealing plates (1021) at both ends of each material lifting half-tube (102); the slider (1023) is located above the contact roller (1022); and the height of each material lifting half-tube (102) gradually increases from one end of the closed confining groove (101) to the other end; A plurality of slide rails (103) are provided and are all vertically arranged, the slide rails (103) are located outside the closed confining groove (101), and the sliders (1023) under each of the lifting half pipes (102) are slidably connected to each of the slide rails (103); A rotating shaft rod (104) is located below the closed groove (101), and its length direction is consistent with the arrangement direction of the plurality of material lifting half-tubes (102). A plurality of cams (1041) are coaxially connected to the rotating shaft rod (104), and the plurality of cams (1041) are respectively in contact with the contact rollers (1022). The cams (1041) are used to raise and lower the material lifting half-tubes (102), and are used to connect two adjacent material lifting half-tubes (102) to each other during the raising and lowering process. A driving motor 1 (105) for driving the rotating shaft 1 (104) to rotate; A connecting pipe 1 (106), one end of which is in communication with the lower end of the annular water tank (9), and the other end of which is in communication with the closed confining groove (101), and is used to connect with the lowest material lifting half pipe (102) in a lowered state; A second connecting pipe (107), one end of which is connected to the material lifting half pipe (102) at the highest height in a raised state, and the other end of which is located above the secondary washing basket (5); Among them, one end of each of the lifting half-tubes (102) faces the connecting tube one (106), and the other end faces the connecting tube two (107); one end of the lifting half-tube (102) close to the connecting tube one (106) is higher than the other end.

2. A cleaning device for seasoning raw material processing as claimed in claim 1, characterized in that: The material lifting mechanism (10) further comprises a grid plate (108) fixed on the top of the material lifting half pipe (102).

3. A cleaning device for seasoning raw material processing as claimed in claim 1, characterized in that: The primary wash tank (12) and the secondary wash tank (13) are both fixedly connected with a panel (14); the primary wash water storage tank (2) and the secondary wash water storage tank (3) are both located in the panel (14) in the primary wash tank (12) and the secondary wash tank (13); the water outlet of the water injection pipe group (8) is located on one of the side edges of the panel (14); and the height of the side edge of the panel (14) having the water outlet of the water injection pipe group (8) is higher than that of the other side edges; the side faces and the bottom faces of the primary wash basket (4) and the secondary wash basket (5) close to the panel (14) are both hollow, and the other faces are solid plate-shaped; and the side faces of the primary wash basket (4) and the secondary wash basket (5) corresponding to the hollow are tilted faces.

4. A cleaning device for seasoning raw material processing as claimed in claim 3, characterized in that: The water injection pipe group (8) comprises a main water pipe (81) connected to a clean water source, and a plurality of branch pipes (82) arranged linearly and fixedly connected to one side of the enclosure (14), each of the branch pipes (82) being connected to the main water pipe (81), and one end of the branch pipe (82) away from the main water pipe (81) faces a side surface hollowed out in the washing basket.

5. A cleaning device for seasoning raw material processing as claimed in claim 4, characterized in that: The washing table (1) is connected to two water outlet pipes (15), the two water outlet pipes (15) are respectively connected to the primary washing table tank (12) and the secondary washing table tank (13), and a retaining net is arranged inside the water outlet pipes (15).

6. A cleaning device for seasoning raw material processing as claimed in claim 1, characterized in that: The turning mechanism (7) comprises: A second rotating shaft (71) rotatably disposed on the cleaning table (1); A swing rod (72), one end of which is fixed to the second rotating shaft rod (71), and the other end of which is fixed to the outer wall of the washing basket; The second driving motor (73) is mounted on the cleaning table (1) and is used to drive the second rotating shaft (71) to rotate.

Citation Information

Patent Citations

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