Raw material conveying device and method for food processing
By designing automatic switching and cleaning mechanisms, the problem of cleaning sponges not being able to be replaced quickly and automatically cleaned is solved, the cleaning efficiency and continuity of the food raw material conveying device is improved, and the operation process is simplified.
Patent Information
- Application Number
- CN202510551910.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-29
- Publication Date
- 2025-07-18
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing food raw material conveying device lacks a switching structure, which causes the cleaning sponge to be shut down and replaced after use, affecting the conveying effect. The cleaning sponge after use cannot be automatically cleaned, which increases the cleaning time for staff.
A raw material conveying device including cleaning, stabilization, cleaning and feeding mechanism is designed. The automatic switching of the cleaning sponge is achieved by driving the switching gear by the servo motor. Combined with the design of the circular pushing disc and coil spring, the automatic cleaning of the cleaning sponge and wastewater discharge is achieved, and the linear electric cylinder controls the movement of the feed plate to achieve intermittent feeding.
Automatic switching and cleaning of cleaning sponges is realized, the cleaning efficiency of the conveyor belt is improved, downtime is reduced, the replacement and cleaning process of cleaning sponges is simplified, and the continuity and efficiency of food raw materials are improved.
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Figure CN120328093A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of food processing, and more specifically, particularly relates to a food processing raw material conveying device and method. Background Art
[0002] Food processing refers to the processing activities of directly using agricultural, forestry, animal husbandry, and fishery products as raw materials, including cereal milling, feed processing, vegetable oil and sugar processing, slaughtering and meat processing, aquatic product processing, as well as the processing of foods such as vegetables, fruits, and nuts, and the processing of potatoes, dehydrated vegetables, and canned vegetables. It is a type of broad agricultural product processing industry; during food processing, it is necessary to convey the raw materials of food. Currently, the conveying of food raw materials generally uses a conveyor belt.
[0003] The currently used raw material conveying device still has the following problems: 1. Usually, there is a lack of a switching structure, resulting in the need to stop the machine to replace the cleaning sponge after use, and it is impossible to quickly replace the used cleaning sponge, which affects the conveying effect of food raw materials; 2. The used cleaning sponge cannot be automatically cleaned, increasing the time for staff to clean the cleaning sponge. Summary of the Invention
[0004] The embodiments of the present disclosure relate to a food processing raw material conveying device and method, which have a cleaning mechanism, a stabilizing mechanism, a cleaning mechanism, and a feeding mechanism; when two servo motors work, two switching gears B can drive two switching gears A to rotate, realizing the automatic switching of two cleaning sponges; four circular cleaning rods drive the two circular pushing disks below to move inward, exerting a squeezing effect on the lower cleaning sponge, facilitating the discharge of sewage in the lower cleaning sponge, and realizing the reciprocating cleaning of the lower cleaning sponge; solving the problems of inability to quickly replace the used cleaning sponge and the used cleaning sponge not being able to be automatically cleaned.
[0005] In the first aspect of the present disclosure, a food processing raw material conveying device is provided, including: a conveyor belt, a cleaning mechanism, a stabilizing mechanism, a cleaning mechanism, and a feeding mechanism; the cleaning mechanism is installed at the bottom of the conveyor belt; the stabilizing mechanism is installed at the bottom of the cleaning mechanism, and the stabilizing mechanism is used to position the cleaning mechanism;
[0006] The cleaning mechanism is installed at the bottom of the conveyor belt, and the cleaning mechanism is located directly below the cleaning mechanism. The cleaning mechanism is used to clean the cleaning mechanism; the feeding mechanism is installed at the top of the conveyor belt, and the feeding mechanism is used to temporarily store the food raw materials to be conveyed.
[0007] In at least some embodiments, the cleaning mechanism includes: a triangular mounting plate, a circular connecting shaft, and a mounting flat plate; there are two triangular mounting plates in total, and the two triangular mounting plates are fixedly mounted at the bottom of the conveyor belt; the circular connecting shaft is rotatably mounted on the two triangular mounting plates, and two stable card slots are respectively provided on the upper and lower sides of the circular connecting shaft; there are two mounting flat plates in total, and the two mounting flat plates are fixedly mounted on the outside of the circular connecting shaft.
[0008] In at least some embodiments, the cleaning mechanism further includes: a hexagonal rod, a cleaning sponge, and a circular push disk; there are two hexagonal rods in total, and the two hexagonal rods are fixedly mounted on the two mounting flat plates; there are two cleaning sponges in total, and the two cleaning sponges are slidably mounted on the outside of the two hexagonal rods; there are four circular push disks in total, and the four circular push disks are slidably mounted on the outside of the two hexagonal rods, and the inner sides of the four circular push disks are in contact with the two cleaning sponges.
[0009] In at least some embodiments, the cleaning mechanism further includes: a switching gear A, a servo motor, and a switching gear B; there are two switching gears A in total, and the two switching gears A are fixedly mounted at the front and rear ends of the circular connecting shaft; there are two servo motors in total, and the two servo motors are fixedly mounted on the two triangular mounting plates; there are two switching gears B in total, and the two switching gears B are fixedly mounted on the output shafts of the two servo motors, and the two switching gears B are meshed and connected with the two switching gears A.
[0010] In at least some embodiments, the stabilizing mechanism includes: a stabilizing bracket, a stabilizing pin, and a helical spring A; there are two stabilizing brackets in total, and the two stabilizing brackets are fixedly mounted at the bottom of the two triangular mounting plates; there are two stabilizing pins in total, and the two stabilizing pins are slidably mounted on the two stabilizing brackets and the two triangular mounting plates; the tops of the two stabilizing pins are provided with rounded corners, and the tops of the two stabilizing pins are inserted into the two stable card slots below; there are two helical springs A in total, and the two helical springs A are sleeved on the outside of the two stabilizing pins.
[0011] In at least some embodiments, the cleaning mechanism includes: a water storage housing, a sewage discharge cover, a U-shaped drainage frame, and a circular guiding shaft; the water storage housing is fixedly mounted at the bottom of the conveyor belt; the sewage discharge cover is fixedly mounted at the bottom of the water storage housing; the U-shaped drainage frame is fixedly mounted at the bottom of the sewage discharge cover; there are two circular guiding shafts in total, and the two circular guiding shafts are slidably mounted on the U-shaped drainage frame.
[0012] In at least some embodiments, the cleaning mechanism further includes: a movable sealing plate, a spiral spring B, and a triangular force-receiving plate; the movable sealing plate is fixedly installed on the tops of two circular guide shafts, and the bottom of the movable sealing plate is a bevel structure, and the bottom of the movable sealing plate contacts the water storage housing; there are two spiral springs B in total, and the two spiral springs B are sleeved outside the two circular guide shafts, and the two spiral springs B are located between the U-shaped drainage frame and the movable sealing plate; there are two triangular force-receiving plates in total, and the two triangular force-receiving plates are fixedly installed on the top of the movable sealing plate, and the tops of the two triangular force-receiving plates contact the bottoms of the two installation plates.
[0013] In at least some embodiments, the feeding mechanism includes: a storage housing, an intermittent feeding plate, and a linear electric cylinder; the storage housing is fixedly installed on the top of the conveyor belt; there are two intermittent feeding plates in total, and the two intermittent feeding plates are slidably installed on the storage housing; there are two linear electric cylinders in total, and the two linear electric cylinders are fixedly installed on the front and back sides of the conveyor belt.
[0014] In at least some embodiments, the feeding mechanism further includes: a multi-functional frame and a circular cleaning rod; there are two multi-functional frames in total, and the two multi-functional frames are fixedly installed on the output shafts of the two linear electric cylinders, and the inner sides of the two multi-functional frames are also fixedly connected to the two intermittent feeding plates; there are four circular cleaning rods in total, and the four circular cleaning rods are fixedly installed on the inner sides of the two multi-functional frames, and the four circular cleaning rods are also slidably connected to the water storage housing.
[0015] A method for transporting raw materials for food processing:
[0016] 1), Fix the water outlet end of the external pure water water pipe in the water storage housing, and then fixedly connect the sewage discharge pipe to the sewage discharge cover;
[0017] 2), Pour the food raw materials to be transported into the storage housing, and then start the motor on the conveyor belt and the two linear electric cylinders;
[0018] 3), When it is necessary to replace the cleaning sponge, start the two servo motors to make the circular connecting shaft rotate half a turn;
[0019] 4), After the food raw materials are transported, turn off the motor on the conveyor belt and the two linear electric cylinders.
[0020] Compared with the prior art, the present invention has the following beneficial effects:
[0021] 1. When the two servo motors of the present invention work, the two switching gears B can drive the two switching gears A to rotate, realizing the automatic switching of the two cleaning sponges, ensuring the cleaning effect of the conveyor belt; the setting of the two stable pins plays a positioning role for the rotated circular connecting shaft, making the two cleaning sponges more stable after switching;
[0022] In addition, when two switching gears B drive two switching gears A to rotate, the circular connecting shaft can push two stable pins downward, causing the two stable pins to automatically separate from the two stable slots. When the circular connecting shaft rotates to an appropriate angle, the two stable pins can be inserted into two other stable slots under the action of two helical springs A.
[0023] 2. The present invention facilitates the cleaning of the switched cleaning sponges. When the two cleaning sponges are switched, the movable sealing plate automatically moves upward under the action of two helical springs B. At this time, a gap is automatically generated between the movable sealing plate and the water storage housing, and the sewage in the water storage housing can flow out through the gap between the movable sealing plate and the water storage housing, and then be discharged through the sewage discharge cover, realizing the automatic cleaning of the wastewater after cleaning; when the switching of the two cleaning sponges is completed, two mounting plates can push two triangular force-receiving plates downward, making the bottom of the movable sealing plate contact the water storage housing, realizing automatic sealing and facilitating the next cleaning use.
[0024] 3. When the output shafts of two linear electric cylinders contract, two intermittent feeding plates move inward, and when the output shafts of two linear electric cylinders extend, two intermittent feeding plates move outward, realizing the intermittent feeding of food raw materials;
[0025] In addition, when the output shafts of two linear electric cylinders contract, four circular cleaning rods drive two circular pushing disks below to move inward, exerting an extrusion effect on the lower cleaning sponge and facilitating the discharge of sewage in the lower cleaning sponge; when the output shafts of two linear electric cylinders extend, the lower cleaning sponge drives two circular pushing disks below to reset outward, enabling the pure water in the water storage housing to enter the lower cleaning sponge, realizing the reciprocating cleaning of the lower cleaning sponge. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly introduced below.
[0027] The accompanying drawings in the following description only relate to some embodiments of the present invention and do not limit the present invention.
[0028] In the accompanying drawings:
[0029] Figure 1 The three-dimensional structural schematic diagram of the present invention is shown.
[0030] Figure 2 The structural schematic diagram of the cleaning mechanism and the stable mechanism of the present invention is shown.
[0031] Figure 3 The present invention is shown Figure 1 from the main viewing angle structural schematic diagram.
[0032] Figure 4 Shows the present invention Figure 3 The schematic cross-sectional structure diagram in the A-A direction in the present invention.
[0033] Figure 5 Shows the present invention Figure 4 The enlarged partial structure schematic diagram of area B in the present invention.
[0034] Figure 6 Shows the structural schematic diagram of the cleaning mechanism of the present invention.
[0035] Figure 7 Shows the present invention Figure 6 The central cross-sectional structure schematic diagram of the present invention.
[0036] Figure 8 Shows the present invention Figure 4 The enlarged partial structure schematic diagram of area C in the present invention.
[0037] Figure 9 Shows the structural schematic diagram of the feeding mechanism of the present invention.
[0038] Figure 10 Shows the present invention Figure 1 The enlarged partial structure schematic diagram of area D in the present invention.
[0039] Figure 11 Shows the present invention Figure 3 The schematic cross-sectional structure diagram in the E-E direction in the present invention.
[0040] Figure 12 Shows the present invention Figure 11 The enlarged partial structure schematic diagram of area F in the present invention.
[0041] List of reference numerals:
[0042] 100, conveyor belt;
[0043] 200, cleaning mechanism; 201, triangular mounting plate; 202, circular connecting shaft; 2021, stable card slot; 203, mounting flat plate; 204, hexagonal rod; 205, cleaning sponge; 206, circular push plate; 207, switching gear A; 208, servo motor; 209, switching gear B;
[0044] 300, stabilizing mechanism; 301, stabilizing bracket; 302, stabilizing pin; 303, helical spring A;
[0045] 400, cleaning mechanism; 401, water storage housing; 402, sewage discharge cover; 403, U-shaped drainage frame; 404, circular guide shaft; 405, movable sealing plate; 406, helical spring B; 407, triangular force-bearing plate;
[0046] 500. Feeding mechanism; 501. Storage housing; 502. Intermittent feeding plate; 503. Linear electric cylinder; 504. Multi-functional rack; 505. Circular cleaning rod. Detailed implementation manners
[0047] In order to make the objectives, solutions and advantages of the technical solutions of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings of the specific embodiments of the present invention. Unless otherwise specified, the terms used herein have the ordinary meanings in the art. The same reference numerals in the drawings represent the same components.
[0048] Embodiment: Please refer to Figures 1 to 12 as shown in the figure: The present invention provides a raw material conveying device for food processing, including: a conveyor belt 100, a cleaning mechanism 200, a stabilizing mechanism 300, a cleaning mechanism 400 and a feeding mechanism 500; the cleaning mechanism 200 is installed at the bottom of the conveyor belt 100; the stabilizing mechanism 300 is installed at the bottom of the cleaning mechanism 200, and the stabilizing mechanism 300 is used to position the cleaning mechanism 200; the cleaning mechanism 400 is installed at the bottom of the conveyor belt 100, and the cleaning mechanism 400 is located directly below the cleaning mechanism 200, and the cleaning mechanism 400 is used to clean the cleaning mechanism 200; the feeding mechanism 500 is installed at the top of the conveyor belt 100, and the feeding mechanism 500 is used to temporarily store the food raw materials to be conveyed.
[0049] In the embodiments of the present disclosure, as Figure 2 and Figure 5As shown in the figure, the cleaning mechanism 200 includes: a triangular mounting plate 201, a circular connecting shaft 202, and a mounting flat plate 203. There are two triangular mounting plates 201 in total, and the two triangular mounting plates 201 are fixedly installed at the bottom of the conveyor belt 100. The circular connecting shaft 202 is rotatably installed on the two triangular mounting plates 201, and two stable card slots 2021 are respectively formed on the upper and lower sides of the circular connecting shaft 202. There are two mounting flat plates 203 in total, and the two mounting flat plates 203 are fixedly installed on the outside of the circular connecting shaft 202. The cleaning mechanism 200 further includes: a hexagonal rod 204, a cleaning sponge 205, and a circular pushing disk 206. There are two hexagonal rods 204 in total, and the two hexagonal rods 204 are fixedly installed on the two mounting flat plates 203. There are two cleaning sponges 205 in total, and the two cleaning sponges 205 are slidably installed on the outside of the two hexagonal rods 204. There are four circular pushing disks 206 in total, and the four circular pushing disks 206 are slidably installed on the outside of the two hexagonal rods 204, and the inner sides of the four circular pushing disks 206 are in contact with the two cleaning sponges 205. The cleaning mechanism 200 further includes: a switching gear A 207, a servo motor 208, and a switching gear B 209. There are two switching gears A 207 in total, and the two switching gears A 207 are fixedly installed at the front and rear ends of the circular connecting shaft 202. There are two servo motors 208 in total, and the two servo motors 208 are fixedly installed on the two triangular mounting plates 201. There are two switching gears B 209 in total, and the two switching gears B 209 are fixedly installed on the output shafts of the two servo motors 208, and the two switching gears B 209 are meshed and connected with the two switching gears A 207.
[0050] The stabilizing mechanism 300 includes: a stabilizing bracket 301, a stabilizing pin 302, and a helical spring A 303. There are two stabilizing brackets 301 in total, and the two stabilizing brackets 301 are fixedly installed at the bottom of the two triangular mounting plates 201. There are two stabilizing pins 302 in total, and the two stabilizing pins 302 are slidably installed on the two stabilizing brackets 301 and the two triangular mounting plates 201. The tops of the two stabilizing pins 302 are provided with rounded corners, and the tops of the two stabilizing pins 302 are inserted into the two stable card slots 2021 below. There are two helical springs A 303 in total, and the two helical springs A 303 are sleeved on the outside of the two stabilizing pins 302.
[0051] Its specific functions are as follows: Since the two switching gears A207 are fixedly installed at the front and rear ends of the circular connecting shaft 202, and the two switching gears B209 are fixedly installed on the output shafts of the two servo motors 208, and the two switching gears B209 are meshed with the two switching gears A207, when the two servo motors 208 work, the two switching gears B209 can drive the two switching gears A207 to rotate, realizing the automatic switching of the two cleaning sponges 205 and ensuring the cleaning effect of the conveyor belt 100; Also, since two stable clamping grooves 2021 are respectively formed on the upper and lower sides of the circular connecting shaft 202, and the tops of the two stable pins 302 are inserted into the two stable clamping grooves 2021 below, and the two spiral springs A303 are sleeved outside the two stable pins 302, which plays a positioning role for the rotated circular connecting shaft 202 and makes the two cleaning sponges 205 more stable after switching; When the two switching gears B209 drive the two switching gears A207 to rotate, the circular connecting shaft 202 can push the two stable pins 302 to move downward, so that the two stable pins 302 are automatically separated from the two stable clamping grooves 2021. When the circular connecting shaft 202 rotates to an appropriate angle, the two stable pins 302 can be inserted into the other two stable clamping grooves 2021 under the action of the two spiral springs A303.
[0052] In the embodiment of the present disclosure, as Figures 6 to 8 shown, the cleaning mechanism 400 includes: a water storage housing 401, a sewage discharge cover 402, a U-shaped drainage frame 403 and a circular guiding shaft 404; the water storage housing 401 is fixedly installed at the bottom of the conveyor belt 100; the sewage discharge cover 402 is fixedly installed at the bottom of the water storage housing 401; the U-shaped drainage frame 403 is fixedly installed at the bottom of the sewage discharge cover 402; there are two circular guiding shafts 404 in total, and the two circular guiding shafts 404 are slidably installed on the U-shaped drainage frame 403; the cleaning mechanism 400 further includes: a movable sealing plate 405, a spiral spring B406 and a triangular force-bearing plate 407; the movable sealing plate 405 is fixedly installed at the tops of the two circular guiding shafts 404, and the bottom of the movable sealing plate 405 is of an inclined surface structure, and the bottom of the movable sealing plate 405 is in contact with the water storage housing 401; there are two spiral springs B406 in total, and the two spiral springs B406 are sleeved outside the two circular guiding shafts 404, and the two spiral springs B406 are located between the U-shaped drainage frame 403 and the movable sealing plate 405; there are two triangular force-bearing plates 407 in total, and the two triangular force-bearing plates 407 are fixedly installed at the tops of the movable sealing plate 405, and the tops of the two triangular force-bearing plates 407 are in contact with the bottoms of the two mounting plates 203;
[0053] Its specific functions are as follows: Since the water storage housing 401 is fixedly installed at the bottom of the conveyor belt 100, and pure water is provided inside the water storage housing 401, and the liquid level of the pure water in the water storage housing 401 is higher than the top of the cleaning sponge 205 below, it is convenient to clean the cleaning sponge 205 after switching. Also, since the bottom of the movable sealing plate 405 is of an inclined surface structure, and two triangular force-receiving plates 407 are fixedly installed on the top of the movable sealing plate 405, and the tops of the two triangular force-receiving plates 407 are in contact with the bottoms of the two mounting plates 203. When the two cleaning sponges 205 are switched, the movable sealing plate 405 automatically moves upward under the action of the two spiral springs B406. At this time, a gap is automatically formed between the movable sealing plate 405 and the water storage housing 401, and the sewage in the water storage housing 401 can flow out through the gap between the movable sealing plate 405 and the water storage housing 401, and then is discharged through the sewage discharge cover 402, realizing the automatic cleaning of the wastewater after cleaning. When the switching of the two cleaning sponges 205 is completed, the two mounting plates 203 can push the two triangular force-receiving plates 407 downward, so that the bottom of the movable sealing plate 405 is in contact with the water storage housing 401, realizing automatic sealing and facilitating the next cleaning use.
[0054] In the embodiment of the present disclosure, as Figure 9 , Figure 10 and Figure 12 shown, the feeding mechanism 500 includes: a storage housing 501, an intermittent feeding plate 502, and a linear electric cylinder 503; the storage housing 501 is fixedly installed on the top of the conveyor belt 100; there are two intermittent feeding plates 502 in total, and the two intermittent feeding plates 502 are slidably installed on the storage housing 501; there are two linear electric cylinders 503 in total, and the two linear electric cylinders 503 are fixedly installed on the front and rear sides of the conveyor belt 100; the feeding mechanism 500 further includes: a multi-functional frame 504 and a circular cleaning rod 505; there are two multi-functional frames 504 in total, and the two multi-functional frames 504 are fixedly installed on the output shafts of the two linear electric cylinders 503, and the inner sides of the two multi-functional frames 504 are also fixedly connected to the two intermittent feeding plates 502; there are four circular cleaning rods 505 in total, and the four circular cleaning rods 505 are fixedly installed on the inner sides of the two multi-functional frames 504, and the four circular cleaning rods 505 are also slidably connected to the water storage housing 401;
[0055] Its specific functions are as follows: Since the two multifunctional frames 504 are fixedly installed on the output shafts of the two linear electric cylinders 503, and the inner sides of the two multifunctional frames 504 are also fixedly connected to the two intermittent feeding plates 502, when the output shafts of the two linear electric cylinders 503 contract, the two intermittent feeding plates 502 move inwards, and when the output shafts of the two linear electric cylinders 503 extend, the two intermittent feeding plates 502 move outwards, realizing the intermittent feeding of food raw materials; Also, since the four circular cleaning rods 505 are fixedly installed on the inner sides of the two multifunctional frames 504, and the four circular cleaning rods 505 are also slidably connected to the water storage housing 401, when the output shafts of the two linear electric cylinders 503 contract, the four circular cleaning rods 505 drive the two circular pushing disks 206 below to move inwards, exerting a squeezing effect on the lower cleaning sponge 205, facilitating the discharge of sewage in the lower cleaning sponge 205; When the output shafts of the two linear electric cylinders 503 extend, the lower cleaning sponge 205 drives the two circular pushing disks 206 below to reset outwards, enabling the pure water in the water storage housing 401 to enter the lower cleaning sponge 205, realizing the reciprocating cleaning of the lower cleaning sponge 205.
[0056] Among them, before starting the two servo motors 208, it is necessary to ensure that the output shafts of the two linear electric cylinders 503 are in the extended state to prevent the four circular cleaning rods 505 from affecting the normal switching of the two cleaning sponges 205.
[0057] A method for transporting raw materials in food processing:
[0058] 1) Fix the water outlet end of the external pure water water pipe in the water storage housing 401, and then fixedly connect the sewage discharge pipe to the sewage discharge cover 402.
[0059] 2) Pour the food raw materials to be transported into the storage housing 501, and then start the motor on the conveyor belt 100 and the two linear electric cylinders 503.
[0060] 3) When it is necessary to replace the cleaning sponge 205, start the two servo motors 208 to rotate the circular connecting shaft 202 half a turn.
[0061] 4) After the transportation of the food raw materials is completed, turn off the motor on the conveyor belt 100 and the two linear electric cylinders 503.
[0062] The specific usage method and functions of this embodiment:
[0063] When the present invention is in use, first, the water outlet end of the external pure water water pipe is fixed in the water storage housing 401, and then the sewage discharge pipe is fixedly connected to the sewage discharge cover 402; the food raw materials to be transported are poured into the storage housing 501, and then the motor on the conveyor belt 100 and the two linear electric cylinders 503 are started; when it is necessary to replace the cleaning sponge 205, the two servo motors 208 are started to rotate the circular connecting shaft 202 by half a turn. When the two servo motors 208 are working, the two switching gears B209 can drive the two switching gears A207 to rotate, realizing the automatic switching of the two cleaning sponges 205 and ensuring the cleaning effect of the conveyor belt 100; the setting of the two stable pins 302 plays a positioning role for the rotated circular connecting shaft 202, making the two cleaning sponges 205 more stable after switching; when the two switching gears B209 drive the two switching gears A207 to rotate, the circular connecting shaft 202 can push the two stable pins 302 to move downward, so that the two stable pins 302 are automatically separated from the two stable slots 2021. When the circular connecting shaft 202 rotates to an appropriate angle, the two stable pins 302 can be inserted into the other two stable slots 2021 under the action of the two spiral springs A303; when the two cleaning sponges 205 are switched, the movable sealing plate 405 automatically moves upward under the action of the two spiral springs B406. At this time, a gap is automatically generated between the movable sealing plate 405 and the water storage housing 401, and the sewage in the water storage housing 401 can flow out through the gap between the movable sealing plate 405 and the water storage housing 401, and then be discharged through the sewage discharge cover 402, realizing the automatic cleaning of the waste water after cleaning. Then, water is added to the water storage housing 401 through the external pure water water pipe; when the switching of the two cleaning sponges 205 is completed, the two mounting plates 203 can push the two triangular force-receiving plates 407 to move downward, making the bottom of the movable sealing plate 405 contact the water storage housing 401, realizing automatic sealing and facilitating the next cleaning use; when the output shafts of the two linear electric cylinders 503 contract, the two intermittent feeding plates 502 move inward, and when the output shafts of the two linear electric cylinders 503 extend, the two intermittent feeding plates 502 move outward, realizing the intermittent feeding of food raw materials; when the output shafts of the two linear electric cylinders 503 contract, the four circular cleaning rods 505 drive the two circular pushing disks 206 below to move inward, exerting an extrusion effect on the lower cleaning sponge 205 and facilitating the discharge of the sewage in the lower cleaning sponge 205; when the output shafts of the two linear electric cylinders 503 extend, the lower cleaning sponge 205 drives the two circular pushing disks 206 below to reset outward, enabling the pure water in the water storage housing 401 to enter the lower cleaning sponge 205, realizing the reciprocating cleaning of the lower cleaning sponge 205; after the transportation of the food raw materials is completed, the motor on the conveyor belt 100 and the two linear electric cylinders 503 are turned off.
[0064] In this article, the following points need to be noted:
[0065] 1. The attached drawings of the embodiments of the present disclosure only relate to the structures involved in the embodiments of the present disclosure, and other structures can refer to the general design.
[0066] 2. Without conflict, the embodiments of the present disclosure and the features in the embodiments can be combined with each other to obtain new embodiments.
[0067] The above is only the specific implementation manner of the present disclosure, but the protection scope of the present disclosure is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present disclosure can easily think of changes or substitutions, which should be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.
Claims
1. A raw material conveying device for food processing, comprising: Conveyor belt (100), cleaning mechanism (200), stabilizing mechanism (300), cleaning mechanism (400) and feeding mechanism (500); characterized in that the cleaning mechanism (200) is installed at the bottom of the conveyor belt (100); the stabilizing mechanism (300) is installed at the bottom of the cleaning mechanism (200), and the stabilizing mechanism (300) is used to position the cleaning mechanism (200); The cleaning mechanism (400) is installed at the bottom of the conveyor belt (100), and the cleaning mechanism (400) is located directly below the cleaning mechanism (200). The cleaning mechanism (400) is used to clean the cleaning mechanism (200); the feeding mechanism (500) is installed at the top of the conveyor belt (100), and the feeding mechanism (500) is used to temporarily store the food raw materials to be conveyed.
2. The raw material conveying device for food processing according to claim 1, characterized in that, The cleaning mechanism (200) includes: triangular mounting plate (201), circular connecting shaft (202) and mounting flat plate (203); there are two triangular mounting plates (201) in total, and the two triangular mounting plates (201) are fixedly installed at the bottom of the conveyor belt (100); the circular connecting shaft (202) is rotatably installed on the two triangular mounting plates (201), and two stabilizing slots (2021) are respectively arranged on the upper and lower sides of the circular connecting shaft (202); there are two mounting flat plates (203) in total, and the two mounting flat plates (203) are fixedly installed outside the circular connecting shaft (202).
3. The raw material conveying device for food processing according to claim 2, wherein The cleaning mechanism (200) further includes: hexagonal rod (204), cleaning sponge (205) and circular push plate (206); there are two hexagonal rods (204) in total, and the two hexagonal rods (204) are fixedly installed on the two mounting flat plates (203); there are two cleaning sponges (205) in total, and the two cleaning sponges (205) are slidably installed outside the two hexagonal rods (204); there are four circular push plates (206) in total, and the four circular push plates (206) are slidably installed outside the two hexagonal rods (204), and the inner sides of the four circular push plates (206) are in contact with the two cleaning sponges (205).
4. A raw material conveying device for food processing according to claim 3, characterized in that, The cleaning mechanism (200) further includes: switching gear A (207), servo motor (208) and switching gear B (209); there are two switching gears A (207) in total, and the two switching gears A (207) are fixedly installed at the front and rear ends of the circular connecting shaft (202); there are two servo motors (208) in total, and the two servo motors (208) are fixedly installed on the two triangular mounting plates (201); there are two switching gears B (209) in total, and the two switching gears B (209) are fixedly installed on the output shafts of the two servo motors (208), and the two switching gears B (209) are meshed and connected with the two switching gears A (207).
5. The raw material conveying device for food processing according to claim 2, characterized in that, The stabilizing mechanism (300) includes: a stabilizing bracket (301), a stabilizing pin (302), and a helical spring A (303); there are two stabilizing brackets (301) in total, and the two stabilizing brackets (301) are fixedly installed at the bottoms of the two triangular mounting plates (201); there are two stabilizing pins (302) in total, and the two stabilizing pins (302) are slidably installed on the two stabilizing brackets (301) and the two triangular mounting plates (201); the tops of the two stabilizing pins (302) are provided with rounded corners, and the tops of the two stabilizing pins (302) are inserted into the two lower stabilizing slots (2021); there are two helical springs A (303) in total, and the two helical springs A (303) are sleeved on the outside of the two stabilizing pins (302).
6. The raw material conveying device for food processing according to claim 4, wherein The cleaning mechanism (400) includes: a water storage housing (401), a sewage discharge cover (402), a U-shaped drainage frame (403), and a circular guiding shaft (404); the water storage housing (401) is fixedly installed at the bottom of the conveyor belt (100); the sewage discharge cover (402) is fixedly installed at the bottom of the water storage housing (401); the U-shaped drainage frame (403) is fixedly installed at the bottom of the sewage discharge cover (402); there are two circular guiding shafts (404) in total, and the two circular guiding shafts (404) are slidably installed on the U-shaped drainage frame (403).
7. An apparatus for transporting raw materials used in food processing according to claim 6, wherein The cleaning mechanism (400) further includes: a movable sealing plate (405), a helical spring B (406), and a triangular force-bearing plate (407); the movable sealing plate (405) is fixedly installed at the tops of the two circular guiding shafts (404), and the bottom of the movable sealing plate (405) is of an inclined surface structure, and the bottom of the movable sealing plate (405) is in contact with the water storage housing (401); there are two helical springs B (406) in total, and the two helical springs B (406) are sleeved on the outside of the two circular guiding shafts (404), and the two helical springs B (406) are located between the U-shaped drainage frame (403) and the movable sealing plate (405); there are two triangular force-bearing plates (407) in total, and the two triangular force-bearing plates (407) are fixedly installed at the tops of the movable sealing plate (405), and the tops of the two triangular force-bearing plates (407) are in contact with the bottoms of the two mounting plates (203).
8. A raw material conveying device for food processing according to claim 6, characterized in that The feeding mechanism (500) includes: a material storage housing (501), an intermittent feeding plate (502), and a linear electric cylinder (503); the material storage housing (501) is fixedly installed at the top of the conveyor belt (100); there are two intermittent feeding plates (502) in total, and the two intermittent feeding plates (502) are slidably installed on the material storage housing (501); there are two linear electric cylinders (503) in total, and the two linear electric cylinders (503) are fixedly installed on the front and rear sides of the conveyor belt (100).
9. The raw material conveying device for food processing according to claim 8, characterized in that, The feeding mechanism (500) further includes: a multi-functional rack (504) and a circular cleaning rod (505); there are two multi-functional racks (504) in total, and the two multi-functional racks (504) are fixedly installed on the output shafts of the two linear electric cylinders (503), and the inner sides of the two multi-functional racks (504) are also fixedly connected to the two intermittent feeding plates (502); there are four circular cleaning rods (505) in total, and the four circular cleaning rods (505) are fixedly installed on the inner sides of the two multi-functional racks (504), and the four circular cleaning rods (505) are also slidably connected to the water storage housing (401).
10. A method for transporting raw materials for food processing, using a raw material transporting device for food processing as described in claim 8, characterized in that, The steps are as follows: 1). Fix the water outlet end of the external pure water water pipe in the water storage housing (401), and then fixedly connect the sewage discharge pipe to the sewage discharge hood (402); 2). Pour the food raw materials to be transported into the storage housing (501), and then start the motors on the conveyor belt (100) and the two linear electric cylinders (503); 3). When it is necessary to replace the cleaning sponge (205), start the two servo motors (208) to make the circular connecting shaft (202) rotate half a turn; 4). After the food raw materials are transported, turn off the motors on the conveyor belt (100) and the two linear electric cylinders (503).