An antibacterial and oil-resistant conveyor belt for food processing

By designing a double-layer plate and carrier plate structure on the conveyor belt, combined with spray and scraping cleaning, the problems of food accumulation and oil and water cleaning are solved, the replacement cost is reduced, and the practicality and convenience of food processing conveyor belts are improved.

CN120364369BActive Publication Date: 2026-01-06JIANGSU BOSHUN BELTING CO LTD
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Patent Information

Application Number
CN202510611690.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-05-13
Publication Date
2026-01-06
Estimated Expiration
2045-05-13

AI Technical Summary

Technical Problem

Existing antibacterial and oil-resistant conveyor belts have problems such as food accumulation and breakage during food processing, difficulty in cleaning oil and water leading to mold and damage, and high overall replacement costs.

Method used

An antibacterial and oil-resistant conveyor belt was designed, which includes a conveying mechanism, a feeding mechanism, a spraying mechanism, and a cleaning mechanism. It achieves uniform feeding, spray cleaning, and scraping cleaning through the contact and separation of the double-layer plate and the carrier plate, and supports individual replacement of damaged parts.

Benefits of technology

It achieves uniform food feeding, prevents breakage and spoilage, reduces cleaning and replacement costs, and improves the practicality and convenience of the conveyor belt.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses an antibacterial and oil-resistant conveying belt for food processing and relates to the technical field of conveying belts, which comprises a sewage pool, transmission mechanisms symmetrically arranged on the top side of the sewage pool and used for providing power during the transmission of processed food, a transmission mechanism arranged on the bottom side of each transmission mechanism and used for synchronously moving the two transmission mechanisms, and a discharging mechanism arranged on the side of the two transmission mechanisms close to each other and used for loading and uniformly discharging the processed food during the transmission of the processed food. The antibacterial and oil-resistant conveying belt is provided with double-layer plates, a loading plate and a transmission belt, and can realize the transmission and discharging process of the processed food through the contact and separation of the double-layer plates and the loading plate during the transmission process of the transmission belt, thereby realizing the uniform discharging process through the separation of the double-layer plates and the loading plate to prevent the processed food from being broken or deteriorated, synchronously cleaning the front and back surfaces in contact with the processed food, and replacing the single loading plate or the double-layer plates.
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Description

Technical Field

[0001] This invention relates to the field of conveyor belt technology, specifically to an antibacterial and oil-resistant conveyor belt for food processing. Background Technology

[0002] Conveyor belts, also known as transport belts, are rubber, fiber, and metal composite products used in belt conveyors to carry and transport materials. Conveyor belts made from polyurethane can be used as food conveyor belts, with a suitable color and no odor. Chinese Patent Publication No. CN113353538B discloses an antibacterial and easy-to-clean food-grade conveyor belt, including a conveyor belt body. The conveyor belt body further includes a central layer, a filling layer, and a first adhesive layer. Filling layers are provided on both sides of the central layer. A corrosion-resistant layer is provided on the upper surface of the filling layer of the central layer. The upper surface of the corrosion-resistant layer is adhered to the first adhesive layer, and the upper surface of the first adhesive layer is adhered to the antibacterial layer. This design has the advantages of preventing permanent deformation of the conveyor belt, reducing the overall thickness of the conveyor belt, lowering the hardness of the conveyor belt, and preventing any impact on the belt's flexibility and operability.

[0003] In the aforementioned prior art, during the conveying of processed food, the antibacterial and oil-resistant conveyor belt, after changing direction at its farthest point, discharges the food under its own weight. This process presents the following problems: 1. Discharging at a fixed point causes food accumulation, posing a risk of breakage and spoilage; 2. When conveying oily or watery processed foods such as raw pork, the oil and water flow down the conveyor belt to its back side, which is difficult to clean, and long-term accumulation can lead to mold growth and damage; 3. Because the conveyor belt is integrally molded, if one area becomes moldy or damaged, the entire conveyor belt needs to be replaced, increasing operating costs. Therefore, we propose an antibacterial and oil-resistant conveyor belt for food processing. Summary of the Invention

[0004] The purpose of this invention is to provide an antibacterial and oil-resistant conveyor belt for food processing, so as to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention provides the following technical solution: an antibacterial and oil-resistant conveyor belt for food processing, comprising a sewage tank, and further comprising: a transmission mechanism symmetrically arranged on the top side of the sewage tank for providing power during food processing; a transmission mechanism for synchronizing the movement of the two transmission mechanisms installed on the bottom side of the two transmission mechanisms; and a feeding mechanism for bearing load and uniformly discharging food during food processing on the side of the two transmission mechanisms close to each other. During food processing, the food is placed in the center of the feeding mechanism along with a hanger or feeding channel. The transmission mechanism is started, and the two transmission mechanisms drive the food on the feeding mechanism to be conveyed. During the conveying process, oily water from processed food such as raw pork will drip onto the feeding mechanism and be collected and cleaned in the sewage tank. After being conveyed to the target position, the transmission mechanism continues to move, causing the feeding mechanism to separate, and continuously discharging during the separation process, thereby achieving uniform discharging and preventing accumulation.

[0006] A spraying mechanism is symmetrically arranged on both sides of the outer wall of the sewage tank for spraying and cleaning the bottom side of the components on the feeding mechanism. The top side of the spraying mechanism is equipped with a cleaning mechanism for scraping and cleaning the top side of the components on the feeding mechanism during spraying. When the components of the feeding mechanism are separated and return, they will pass through the spraying mechanism. The spraying mechanism sprays detergent from the bottom side of the components. At the same time as the detergent is sprayed, the cleaning mechanism moves automatically under the transmission power of the transmission mechanism to scrape and clean the surface of the feeding mechanism after the food is loaded, thereby realizing the function of cleaning both the top and bottom sides of the components at the same time.

[0007] A plug-in mechanism is installed between the feeding mechanism and the conveying mechanism for the individual replacement of feeding mechanism components. By setting up the plug-in mechanism, it is possible to easily replace the feeding mechanism components when they become moldy or damaged, thereby reducing replacement costs and improving the practicality of the antibacterial and oil-resistant conveyor belt.

[0008] Preferably, the two transmission mechanisms include two transmission frames, which are respectively installed on both sides of the sewage tank. Each transmission frame is equipped with a support roller, and a main wheel and a driven wheel are rotatably installed at both ends of each transmission frame. The same transmission belt is rotatably connected to the main wheel and driven wheel on the same side of the sewage tank. Each transmission frame has a limit groove, and multiple sliding plates are slidably installed in each of the two limit grooves. A connecting plate is installed on the sliding plate, and the sliding plate is installed on the transmission belt. A motor is installed on the transmission frame on one side of the sewage tank, and the main shaft of the motor is installed on the main wheel. When the motor is started, the motor rotates and drives the main wheel on one side to rotate. The rotation of the main wheel on one side causes the main wheel on the other side to rotate synchronously through the transmission mechanism, so that the two transmission mechanisms move simultaneously. During the movement, when the main wheel rotates, the transmission belt is driven to rotate through the cooperation of the driven wheel. The rotation of the transmission belt causes the sliding plate to slide in the limit groove. The sliding of the sliding plate causes the connecting plate to slide along the movement trajectory of the transmission belt.

[0009] Preferably, the feeding mechanism includes a double-layer plate located between two conveyor frames. A feeding port is provided on the double-layer plate, and a carrier plate is movably installed between the layers of the double-layer plate. A scraper is installed on the top side of the double-layer plate. Both the scraper and the carrier plate are in contact with the double-layer plate. During food processing, the double-layer plate and the scraper contact and engage with the double-layer plate, which moves with the other side of the conveyor belt, causing the processed food to fall onto the double-layer plate and be supported by the carrier plate. Upon reaching the target position, i.e., the farthest point of the conveyor belt rotation, the conveyor belt returns, causing the double-layer plate to separate from the carrier plate and the scraper. During this separation, a uniform feeding process is achieved through the feeding port on the double-layer plate. During this process, the scraper pushes the processed food on the surface of the double-layer plate, preventing the processed food from clogging the feeding port, further improving the practicality and ease of use of the structure.

[0010] Preferably, the spraying mechanism includes a straight pipe located at the bottom of the sewage tank. A pump is installed on the straight pipe, and a connecting pipe is installed on the straight pipe, connecting the straight pipe and the connecting pipe. A cleaning box is installed on the connecting pipe and mounted on a transmission frame. A through groove is opened on the side of the cleaning box for the carrier plate and the double-layer plate to pass through. A spray head is installed on the bottom of the cleaning box and connects to the connecting pipe. A return pipe is installed on the side wall of the cleaning box and mounted on the sewage tank. During the separation of the double-layer plate and the carrier plate, the double-layer plate... The shelves and carrier plates pass through cleaning boxes on both sides of the sewage tank. When they reach the cleaning boxes, detergent is pumped into the straight pipe. The detergent then enters the spray head through the connecting pipe and is sprayed into the cleaning box, adhering to the oil and water on the carrier plate, scraper, and double-layer plate surfaces. The detergent that falls from the spray accumulates in the cleaning box and then flows back into the sewage tank through the return pipe, adhering to the oil and water in the sewage tank. After spraying, the cleaning source at the straight pipe is replaced with disinfectant and clean water, respectively, thus achieving the antibacterial and degreasing process.

[0011] Preferably, the cleaning mechanism includes a rotating roller mounted on a driven wheel. A movable sleeve is movably fitted onto the rotating roller, and a connecting rotating plate is rotatably mounted on the movable sleeve. A T-shaped slide is rotatably mounted on the connecting rotating plate. A T-shaped groove is provided on the side wall of the cleaning box, and the T-shaped slide is slidably installed in the T-shaped groove. A hanging plate is installed on the T-shaped slide, a hanging rod is installed on the hanging plate, a placement plate is installed on the hanging rod, and a scraper is installed on the placement plate. When the driven wheel rotates with the conveyor belt, it drives the rotating roller to rotate. The rotation of the rotating roller drives the movable sleeve to slide back and forth on the rotating roller. During the sliding of the movable sleeve, it drives the connecting rotating plate to rotate on the T-shaped slide. During this process, it drives the T-shaped slide to slide back and forth in the T-shaped groove, thereby driving the hanging plate, hanging rod, placement plate, and scraper on the placement plate to slide back and forth synchronously. The scraper scrapes the surfaces of the double-layer plate and carrier plate that come into contact with the processed food, preventing residual processed food from adhering, and further improving the practicality and scientific nature of the structure.

[0012] Preferably, the rotating roller is provided with a cross sliding arc groove, and a drive shaft block is installed on the inner wall of the movable sleeve. The drive shaft block is slidably installed in the cross sliding arc groove. Through the cooperation and restriction between the cross sliding arc groove and the drive shaft block, the rotating roller rotates and drives the drive shaft block to slide in the cross sliding arc groove, thereby causing the movable sleeve to slide back and forth on the rotating roller.

[0013] Preferably, both ends of the connecting plate are provided with rotating holes, and rotating shaft blocks are rotatably installed in both rotating holes. One rotating shaft block is installed on a T-shaped slide, and a connecting seat is installed on the other rotating shaft block. A limiting slide rod is slidably installed on the connecting seat. The limiting slide rod is installed on the transmission frame and restricts the movement of the connecting seat. The connecting seat can only slide on the limiting slide rod. Through the cooperation of the rotating holes and rotating shaft blocks, the connecting plate can only rotate on the T-shaped slide and the connecting seat.

[0014] Preferably, the insertion mechanism includes a guard plate, an insertion plate on the guard plate, a square groove on the connecting plate, the insertion plate being movably installed in the square groove, a through hole on the insertion plate, a pin being slidably installed on the connecting plate, the pin being adapted to the through hole, a pressure plate being installed on the pin, a double-layer plate being installed on one side of the guard plate of the sewage tank, and a scraper and a carrier plate being installed on the guard plate of the other side of the sewage tank. When replacing the carrier plate or the double-layer plate, by pulling the pressure plate, the pressure plate causes the pin to disengage from the through hole on the insertion plate, thus allowing the insertion plate to be pulled out, thereby realizing the replacement of the individual carrier plate or the double-layer plate.

[0015] Preferably, a spring is movably sleeved on the pin, with one end of the spring mounted on the pressure plate and the other end mounted on the connecting plate. By setting the spring, the structure is reset under the action of the spring's restoring force when the pressure plate is released, which further improves the automation level of the structure.

[0016] Preferably, the transmission mechanism includes a transmission gear and a follower gear, which are respectively mounted on the bottom side of the main rotating wheels on both sides. The same chain is movably sleeved on the transmission gear and the follower gear, and the chain meshes with the transmission gear and the follower gear. When the main rotating wheel on one side moves with the motor, it drives the transmission gear or follower gear on that side to rotate, thereby realizing the synchronous rotation process of the main rotating wheel on the other side.

[0017] Compared with the prior art, the beneficial effects of the present invention are:

[0018] This invention, through the arrangement of double-layer plates, carrier plates, and conveyor belts, enables the transmission and feeding of food during the conveyor belt process by the contact and separation of the double-layer plates and carrier plates. This process achieves uniform feeding through the separation of the double-layer plates and carrier plates, preventing the processed food from breaking or spoiling.

[0019] This invention, through the design of a cleaning box, spray head, scraper, etc., enables the thorough cleaning of both sides of the double-layer board and carrier board by spraying during the return process after separation. Furthermore, the surface in contact with the processed food is scraped by the scraper during the spraying process to prevent food residue from being left behind.

[0020] This invention, through the arrangement of a protective plate, a plug-in plate, a pin, etc., allows for the replacement of a single carrier plate or a double-layer plate when the carrier plate or double-layer plate is replaced. By pulling the pressure plate, the pressure plate causes the pin to disengage from the through hole on the plug-in plate, thus enabling the plug-in plate to be pulled out. Attached Figure Description

[0021] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0022] Figure 2 This is a schematic diagram of the connecting pipe of the present invention;

[0023] Figure 3 This is a partial cross-sectional view of the transmission frame of the present invention;

[0024] Figure 4 This is a schematic diagram of the structure of the double-layer plate of the present invention;

[0025] Figure 5 This is a schematic diagram of the carrier plate of the present invention;

[0026] Figure 6 This is a schematic diagram of the plug-in board of the present invention;

[0027] Figure 7 This is a schematic diagram of the structure of the roller of the present invention;

[0028] Figure 8 This is a schematic diagram of the connecting plate structure of the present invention;

[0029] Figure 9 This is a schematic diagram of the cleaning box of the present invention;

[0030] Figure 10 This is a schematic diagram of the structure of the placement plate of the present invention.

[0031] In the diagram: 1. Sewage tank; 2. Conveying mechanism; 201. Conveying frame; 202. Support roller; 203. Main roller; 204. Driven roller; 205. Conveyor belt; 206. Limiting chute; 207. Slide plate; 208. Connecting plate; 3. Feeding mechanism; 301. Double-layer plate; 302. Feeding port; 303. Carrier plate; 304. Scraper; 4. Spraying mechanism; 401. Straight pipe; 402. Connecting pipe; 403. Cleaning box; 404. Spray head; 405. Pump; 406. Return pipe; 5. Cleaning mechanism; 501. Rotating roller; 502. Movable sleeve; 503. Connecting plate; 504. T-shaped slide; 505. T-shaped slide groove; 506. Hanging plate; 507. Hanging rod; 508. Placement plate; 509. Scraper; 510. Drive shaft block; 511. Cross sliding arc groove; 512. Rotating hole; 513. Rotating shaft block; 514. Connecting seat; 6. Plug-in mechanism; 601. Guard plate; 602. Square groove; 603. Plug-in plate; 604. Through hole; 605. Pin; 606. Pressure plate; 607. Spring; 7. Transmission mechanism; 701. Transmission gear; 702. Follower gear; 703. Chain. Detailed Implementation

[0032] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0033] Please see Figures 1-10 The diagram shows an antibacterial and oil-resistant conveyor belt for food processing, including a sewage tank 1; it also includes: a transmission mechanism 2 symmetrically arranged on the top side of the sewage tank 1 to provide power during food processing; a transmission mechanism 7 installed on the bottom side of the two transmission mechanisms 2 to synchronize their movement; and a feeding mechanism 3 arranged on the side of the two transmission mechanisms 2 that is close to each other to load and uniformly distribute the food during processing. During food processing, the food is placed in the center of the feeding mechanism 3 along with a hanger or feeding channel. The transmission mechanism 2 is started, and the two transmission mechanisms 2 on both sides drive the food on the feeding mechanism 3 to be conveyed. During the conveying process, the oil and water of the food, such as raw pork, will drip from the feeding mechanism 3 into the sewage tank 1 for collection and cleaning. After being conveyed to the target position, the transmission mechanism 2 continues to move, causing the feeding mechanism 3 to separate, and the feeding continues during the separation process, thereby achieving uniform feeding and preventing accumulation.

[0034] A spraying mechanism 4 is symmetrically arranged on both sides of the outer wall of the sewage tank 1 to spray and clean the bottom side of the components on the feeding mechanism 3. A cleaning mechanism 5 is provided on the top side of the spraying mechanism 4 to scrape and clean the top side of the components on the feeding mechanism 3 during spraying. When the components of the feeding mechanism 3 are separated and return, they will pass through the spraying mechanism 4. The spraying mechanism 4 sprays detergent from the bottom side of the components. At the same time as the detergent is sprayed, the cleaning mechanism 5 moves automatically under the transmission power of the transmission mechanism 2 to scrape and clean the surface of the feeding mechanism 3 after the food is loaded, thereby realizing the function of cleaning both the top and bottom sides of the components at the same time.

[0035] A plug-in mechanism 6 is installed between the feeding mechanism 3 and the transmission mechanism 2 for the individual replacement of components of the feeding mechanism 3. The plug-in mechanism 6 enables convenient individual replacement of components of the feeding mechanism 3 when they become moldy or damaged, reducing replacement costs and improving the practicality of the antibacterial and oil-resistant transmission belt.

[0036] Reference Figures 1-6 In this embodiment of the invention, the two transmission mechanisms 2 include two transmission frames 201, which are respectively installed on both sides of the sewage tank 1. Support rollers 202 are installed on each of the two transmission frames 201. A main rotating wheel 203 and a driven wheel 204 are rotatably installed at both ends of each transmission frame 201. The same transmission belt 205 is rotatably connected to the main rotating wheel 203 and the driven wheel 204 on the same side of the sewage tank 1. Limiting grooves 206 are provided on each of the two transmission frames 201. Multiple sliding plates 207 are slidably installed in each of the two limiting grooves 206. Connecting plates 208 are installed on the sliding plates 207, which are mounted on the transmission belt 205. The sewage tank... A motor 209 is installed on one side of the transmission frame 201. The main shaft of the motor 209 is installed on the main rotating wheel 203. When the motor 209 is started, the motor 209 rotates and drives the main rotating wheel 203 on one side to rotate. The rotation of the main rotating wheel 203 on one side causes the main rotating wheel 203 on the other side to rotate synchronously through the transmission mechanism 7, so that the transmission mechanisms 2 on both sides move at the same time. During the movement, when the main rotating wheel 203 rotates, the driven wheel 204 restricts and drives the transmission belt 205 to rotate. The rotation of the transmission belt 205 drives the slide plate 207 to slide in the limiting slide groove 206. The sliding of the slide plate 207 drives the connecting plate 208 to slide along the movement trajectory of the transmission belt 205.

[0037] Reference Figures 1-5In this embodiment of the invention, the feeding mechanism 3 includes a double-layer plate 301 located between two conveyor frames 201. A feeding port 302 is provided on the double-layer plate 301. A carrier plate 303 is movably installed between the layers of the double-layer plate 301. A scraper 304 is installed on the top side of the double-layer plate 301. Both the scraper 304 and the carrier plate 303 are in contact with the double-layer plate 301. During the conveying and processing of food, the double-layer plate 301 and the scraper 304 contact and engage with the double-layer plate 301, which moves with the other side of the conveyor belt 205, thereby enabling… The processed food falls onto the double-layer plate 301 and is carried by the carrier plate 303. After reaching the target position, that is, when the conveyor belt 205 reaches the farthest point of rotation, the conveyor belt 205 returns, causing the double-layer plate 301 to separate from the carrier plate 303 and the scraper 304. During the separation process, the food is evenly fed through the feeding port 302 on the double-layer plate 301. During this process, the scraper 304 pushes the processed food on the surface of the double-layer plate 301 to prevent the processed food from blocking the feeding port 302, further improving the practicality and ease of use of the structure.

[0038] Reference Figures 1-2 In this embodiment of the invention, the spraying mechanism 4 includes a straight pipe 401 located at the bottom of the sewage tank 1. A pump 405 is installed on the straight pipe 401, and a connecting pipe 402 is installed on the straight pipe 401, connecting the straight pipe 401 and the connecting pipe 402. A cleaning box 403 is installed on the connecting pipe 402, and the cleaning box 403 is installed on the transmission frame 201. A through groove is opened on the side of the cleaning box 403 for the carrier plate 303 and the double-layer plate 301 to pass through. A spray head 404 is installed on the bottom side of the cleaning box 403, and the spray head 404 is connected to the connecting pipe 402. A return pipe 406 is installed on the side wall of the cleaning box 403, and the return pipe 406 is installed on the sewage tank 1. During the separation of plates 303, the double-layer plate 301 and the carrier plate 303 pass through the cleaning boxes 403 on both sides of the sewage tank 1. When they reach the cleaning box 403, the detergent is pumped into the straight pipe 401 by the pump 405. The detergent enters the spray head 404 through the connecting pipe 402 and is sprayed into the cleaning box 402. This adheres to the oil and water on the surface of the carrier plate 303, scraper 304 and double-layer plate 301 in the spray box 403. The detergent that falls off the spray accumulates in the cleaning box 403 and then enters the sewage tank 1 through the return pipe 406 to adhere to the oil and water in the sewage tank 1. After spraying, the cleaning source at the straight pipe 401 is replaced with disinfectant and clean water, respectively, thereby achieving the process of antibacterial and oil removal.

[0039] Reference Figures 1-10In this embodiment of the invention, the cleaning mechanism 5 includes a rotating roller 501, which is mounted on a driven wheel 204. A movable sleeve 502 is movably sleeved on the rotating roller 501. A connecting rotating plate 503 is rotatably mounted on the movable sleeve 502. A T-shaped slide block 504 is rotatably mounted on the connecting rotating plate 503. A T-shaped groove 505 is provided on the side wall of the cleaning box 403. The T-shaped slide block 504 is slidably mounted in the T-shaped groove 505. A hanging plate 506 is mounted on the T-shaped slide block 504. A hanging rod 507 is mounted on the hanging plate 506. A placement plate 508 is mounted on the hanging rod 507. A scraper 509 is mounted on the placement plate 508. The driven wheel 204 moves with the conveyor belt. During the rotation of 205, the rotating roller 501 is driven to rotate. The rotation of the rotating roller 501 causes the movable sleeve 502 to slide back and forth on the rotating roller 501. During the sliding of the movable sleeve 502, the connecting rotating plate 503 is driven to rotate on the T-shaped slide block 504. During this process, the T-shaped slide block 504 is driven to slide back and forth in the T-shaped slide groove 505, thereby driving the hanging plate 506, the hanging rod 507, the placement plate 508 and the scraper 509 on the placement plate 508 to slide back and forth synchronously. The scraper 509 scrapes the surfaces of the double-layer plate 301 and the carrier plate 303 that are in contact with the processed food to prevent residual processed food from adhering, further improving the practicality and scientific nature of the structure.

[0040] Reference Figures 1-10 In this embodiment of the invention, a cross-shaped sliding arc groove 511 is provided on the rotating roller 501, and a transmission shaft block 510 is installed on the inner wall of the movable sleeve 502. The transmission shaft block 510 is slidably installed in the cross-shaped sliding arc groove 511. Through the cooperation and restriction between the cross-shaped sliding arc groove 511 and the transmission shaft block 510, the rotating roller 501 rotates and drives the transmission shaft block 510 to slide in the cross-shaped sliding arc groove 511, thereby causing the movable sleeve 502 to slide back and forth on the rotating roller 501.

[0041] Reference Figures 1-10 In this embodiment of the invention, both ends of the connecting plate 503 are provided with rotating holes 512, and rotating shaft blocks 513 are rotatably installed in both rotating holes 512. One rotating shaft block 513 is installed on a T-shaped slide block 504, and a connecting seat 514 is installed on the other rotating shaft block 513. A limiting slide rod 515 is slidably installed on the connecting seat 514. The limiting slide rod 515 is installed on the transmission frame 201. The limiting slide rod 515 restricts the movement of the connecting seat 514. The connecting seat 514 can only slide on the limiting slide rod 515. Through the cooperation and restriction of the rotating holes 512 and the rotating shaft blocks 513, the connecting plate 503 can and can only rotate on the T-shaped slide block 504 and the connecting seat 514.

[0042] Reference Figures 1-6In this embodiment of the invention, the insertion mechanism 6 includes a protective plate 601, an insertion plate 603 on the protective plate 601, a square groove 602 on the connecting plate 208, the insertion plate 603 being movably installed in the square groove 602, a through hole 604 on the insertion plate 603, a pin 605 slidably installed on the connecting plate 208, the pin 605 being adapted to the through hole 604, a pressure plate 606 being installed on the pin 605, a double-layer plate 301 being installed on the protective plate 601 on one side of the sewage tank 1, and a scraper 304 and a carrier plate 303 being installed on the protective plate 601 on the other side of the sewage tank 1. When replacing the carrier plate 303 or the double-layer plate 301, by pulling the pressure plate 606, the pressure plate 606 causes the pin 605 to disengage from the through hole 604 on the insertion plate 603, thus enabling the replacement of the carrier plate 303 or the double-layer plate 301 individually.

[0043] Reference Figures 1-6 In this embodiment of the invention, a spring 607 is movably sleeved on the pin 605. One end of the spring 607 is mounted on the pressure plate 606, and the other end of the spring 607 is mounted on the connecting plate 208. By setting the spring 607, when the pressure plate 606 is released, the structure is driven to reset under the action of the reset elastic force of the spring 607, which further improves the automation level of the structure.

[0044] Reference Figures 1-2 In this embodiment of the invention, the transmission mechanism 7 includes a transmission gear 701 and a follower gear 702. The transmission gear 701 and the follower gear 702 are respectively installed on the bottom side of the main rotating wheel 203 on both sides. The same chain 703 is movably sleeved on the transmission gear 701 and the follower gear 702. The chain 703 meshes with the transmission gear 701 and the follower gear 702. When the main rotating wheel 203 on one side moves with the motor 209, it drives the transmission gear 701 or the follower gear 702 on the same side to rotate, thereby realizing the synchronous rotation process of the main rotating wheel 203 on the other side.

[0045] Working Principle: When in use, the motor 209 is started, causing the main wheel 203 on one side of the conveyor frame 201 of the sewage tank 1 to rotate. This causes the conveyor belt 205 on the same side to rotate reciprocally. Through the transmission of the chain 703, the conveyor belt 205 on the other side rotates synchronously according to the same principle. During the reciprocating rotation of the conveyor belts 205 on both sides, the double-layer plates 301 and the carrier plate 303 on both sides, when passing the side where the two conveyor belts 201 approach each other, insert the carrier plate 303 onto the double-layer plate 301 for convenient carrying and transporting processed food. During this process, oil and water droplets from processed foods such as raw pork fall into the sewage tank 1 for collection and cleaning. After reaching the target transport position, the conveyor belt 205 reaches its furthest point of rotation and continues to rotate, driving the double-layer plates 301 and the carrier plate 303 to gradually move towards each other. The material gradually separates until it is completely out of contact, and is discharged through the discharge port 302 during the separation process to achieve uniform material discharge and prevent accumulation. After the transfer is completed, when the double-layer plate 301 and the carrier plate 303 pass through the cleaning box 403, the pump 405 is started to pump in detergent, disinfectant and clean water in sequence. The carrier plate 303 and the double-layer plate 301 are degreased and sterilized through the spray head 404. During the spraying process, the rotating roller 501 on the driven wheel 204 drives the scraper 509 to scrape and clean the contact surface between the double-layer plate 301 and the carrier plate 303 and the processed food, preventing the residue of processed food. This further improves the ease of use and practicality of the structure. During the spraying process, the spray liquid accumulated in the cleaning box 403 will enter the sewage tank 1 through the return pipe 406 to clean the oil and water in the sewage tank 1 at the same time.

[0046] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0047] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An antibacterial, oil-resistant conveyor belt for food processing comprising: The sewage pool is characterized in that further comprising: The transmission mechanism symmetrically arranged on the top side of the sewage pool is used to provide power when the processed food is transported, the bottom side of the two transmission mechanisms is provided with a transmission mechanism used to make the two transmission mechanisms move synchronously, and the side close to each other of the two transmission mechanisms is provided with a discharging mechanism used to carry and uniformly discharge when the processed food is transported; The spraying mechanism symmetrically arranged on the outer wall of the sewage pool is used to spray and clean the bottom side of the components on the discharging mechanism, and the top side of the spraying mechanism is provided with a cleaning mechanism used to scrape and clean the top side of the components on the discharging mechanism. The plug-in mechanism arranged between the discharging mechanism and the transmission mechanism is used to replace the components of the discharging mechanism. The two transmission mechanisms include two transmission frames, the two transmission frames are respectively arranged on the two sides of the sewage pool, the two transmission frames are respectively provided with supporting rollers, the two ends of the two transmission frames are respectively provided with main rotating wheels and driven wheels, the same transmission belt is rotatably sleeved on the main rotating wheels and the driven wheels on the same side of the sewage pool, the two transmission frames are respectively provided with limiting sliding grooves, a plurality of sliding plates are slidably arranged in the limiting sliding grooves, the sliding plates are provided with connecting plates, and the sliding plates are arranged on the transmission belt. The discharging mechanism includes a double-layer plate, the double-layer plate is arranged between the two transmission frames, the double-layer plate is provided with a discharging port, the double-layer plate is provided with a carrier plate movably arranged between the layers, and the double-layer plate is provided with a scraper plate on the top side.

2. The antibacterial and oil resistant conveyor belt for food processing according to claim 1, characterized in that: The spraying mechanism includes a straight pipe, the straight pipe is arranged on the bottom side of the sewage pool, the straight pipe is provided with a pump, the straight pipe is provided with a connecting pipe, the straight pipe and the connecting pipe are communicated, the connecting pipe is provided with a cleaning box, the cleaning box is arranged on the transmission frame, the cleaning box is provided with a through groove for the carrier plate and the double-layer plate, the cleaning box is provided with a spraying head on the bottom side, the spraying head and the connecting pipe are communicated, the cleaning box is provided with a return pipe on the side wall, and the return pipe is arranged on the sewage pool.

3. The antibacterial and oil resistant conveyor belt for food processing according to claim 2, characterized in that: The cleaning mechanism includes a rotating roller, the rotating roller is arranged on the driven wheel, the rotating roller is movably sleeved with a movable sleeve, the movable sleeve is rotatably provided with a connecting rotating plate, the connecting rotating plate is rotatably provided with a T-shaped sliding seat, the cleaning box is provided with a T-shaped sliding groove on the side wall, the T-shaped sliding seat is slidably arranged in the T-shaped sliding groove, the T-shaped sliding seat is provided with a hanging plate, the hanging plate is provided with a hanging rod, the hanging rod is provided with a placing plate, and the placing plate is provided with a scraper brush.

4. The antibacterial and oil resistant conveyor belt for food processing according to claim 3, characterized in that: The rotating roller is provided with a cross sliding arc groove, the inner wall of the movable sleeve is provided with a transmission shaft block, and the transmission shaft block is slidably arranged in the cross sliding arc groove.

5. The antibacterial and oil resistant conveyor belt for food processing according to claim 4, characterized in that: The two ends of the connecting rotating plate are provided with rotating holes, the rotating shaft blocks are rotatably arranged in the rotating holes, one side of the rotating shaft blocks is arranged on the T-shaped sliding seat, the other side of the rotating shaft blocks is provided with a connecting seat, the connecting seat is slidably provided with a limiting sliding rod, and the limiting sliding rod is arranged on the transmission frame.

6. The antibacterial and oil resistant conveyor belt for food processing according to claim 5, characterized in that: The plug-in mechanism comprises a guard plate, a plug-in plate on the guard plate, a square slot formed on the connecting plate, the plug-in plate movably installed in the square slot, a through hole formed on the plug-in plate, a pin shaft slidably installed on the connecting plate, the pin shaft matched with the through hole, a pressing plate installed on the pin shaft, a double-layer plate installed on the guard plate on one side of the sewage pool, and a scraper and a carrier plate installed on the guard plate on the other side of the sewage pool.

7. The antibacterial and oil resistant conveyor belt for food processing according to claim 6, characterized in that: A spring is movably sleeved on the pin shaft, one end of the spring is installed on the pressing plate, and the other end of the spring is installed on the connecting plate.

8. The antibacterial and oil resistant conveyor belt for food processing according to claim 7, characterized in that: The transmission mechanism comprises a transmission gear and a follow-up gear, the transmission gear and the follow-up gear are respectively installed on the bottom sides of the two main rotating wheels, and the same chain is movably sleeved on the transmission gear and the follow-up gear, and the chain is engaged on the transmission gear and the follow-up gear.

Citation Information

Patent Citations

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