A raw material conveying device for industrial food processing
Patent Information
- Application Number
- CN202510804068.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-17
- Publication Date
- 2026-09-01
- Estimated Expiration
- 2045-06-17
AI Technical Summary
[0003]目前,现有的分割后的肉类在通过输送带进行输送的过程中,由于分割后的肉类含有较多的油脂以及碎肉,因此输送过程中的输送带上容易残留较多的油脂,同时碎肉也会残留在输送带上,而当传送带上残留的较多的油脂以及碎肉,则会容易导致输送带上生长较多的细菌、霉菌等微生物,同时还会污染后续输送的肉类产品,尤其是不同批次或不同种类的肉类之间,则容易造成肉类在输送的过程中出现交叉污染的现象
[0023]1、本发明在进行使用时,通过在输送带本体上设有的喷淋涂抹件,从而在食品工业化加工用的肉类进行输送的过程中,能够对输送带本体进行预先涂抹清洗剂,使清洗剂附着在输送带本体上,使输送带本体上的油脂以及细小碎肉进行溶解,同时溶解油脂后的输送带本体通过冲洗机构进行充分的冲洗,且冲洗后,通过刮除擦拭机构,实现对输送带本体上残留的水渍进行充分往复擦除,且通过设有的烘干机构,实现对输送带本体进行烘干,进而保证输送带本在对肉类食品原料进行输送的过程中,使输送带本体处于清洁的状态,有效避免油脂残留造成对肉类进行输送时出现交叉污染的现象,进一步的提高肉类输送的效率;
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Figure CN120423258B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of raw material conveying technology for industrial food processing, specifically to a raw material conveying device for industrial food processing. Background Technology
[0002] In the process of industrial food processing, livestock and poultry raw materials, such as meat, are often transported. These raw materials usually need to be slaughtered and cut before being transported to the subsequent processing stage by conveying equipment.
[0003] Currently, in existing conveyor belt systems, the transport of cut meat often results in significant residue buildup due to the high fat and meat scrap content. This residue creates a breeding ground for bacteria, mold, and other microorganisms, which can contaminate subsequent meat products, especially different batches or types of meat, leading to cross-contamination during transport. Therefore, we propose a raw material conveying device for industrial food processing. Summary of the Invention
[0004] The purpose of this invention is to provide a raw material conveying device for industrial food processing to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a raw material conveying device for industrial food processing, comprising a conveyor belt body for conveying meat and a support frame for supporting the conveyor belt body, a processing shell provided below the support frame, a spray coating component provided at one end of the processing shell, the spray coating component being used to apply cleaning agent to the conveyor belt body, and a rinsing mechanism provided inside the processing shell for rinsing the cleaning agent on the conveyor belt body;
[0006] A scraping and wiping mechanism is provided on the outer side of the top of the processing shell. The scraping and wiping mechanism cooperates with the rinsing mechanism to scrape and wipe the cleaned conveyor belt body. A drying mechanism is provided on the other side of the scraping and wiping mechanism. While drying the conveyor belt body, the drying mechanism also detects the tension of the conveyor belt body.
[0007] Furthermore, the rinsing mechanism includes a top guide rod, a bottom guide rod, an upper rotating shaft, a lower rotating shaft, a cleaning brush, a synchronous drive component, and a water supply mechanism. Two top guide rods and two bottom guide rods are provided, and the two top guide rods and two bottom guide rods are used to guide the conveyor belt body.
[0008] The upper rotating shaft and the lower rotating shaft are provided in multiple ways. One end of each of the upper rotating shaft and the lower rotating shaft is rotatably connected inside the processing shell. The multiple upper rotating shafts and the multiple lower rotating shafts are respectively distributed on the upper and lower surfaces of the conveyor belt body passing through the processing shell.
[0009] The cleaning brushes are respectively mounted on the upper rotating shaft and the lower rotating shaft;
[0010] The other ends of the upper and lower rotating shafts are connected to a synchronous drive, which is installed on the outside of the processing shell. The water supply mechanism is used to provide clean water to the inside of the processing shell.
[0011] Furthermore, the synchronous drive component includes a synchronous shaft, a synchronous gear, a gear chain, a drive motor, a protective shell, a support shell, and a rotating component. Multiple synchronous shafts are provided, with one end of the upper rotating shaft and the lower rotating shaft respectively fixedly connected to their corresponding synchronous shafts. The synchronous gear is fixedly sleeved on the outside of the synchronous shaft. The gear chain is used to transmit power to the multiple synchronous gears. The protective shell is fixedly installed on the outside of the processing shell, and the drive motor is installed on the processing shell. The drive motor is used to drive one of the synchronous shafts.
[0012] The support shell is located outside the processing shell and is used to support the rotating component. The rotating component is connected to the scraping and wiping mechanism and, through the provided synchronous drive component, drives multiple upper and lower rotating shafts.
[0013] Furthermore, the rotating component includes a rotating shaft, a first rotating gear, a second rotating gear, a positioning shaft, a first helical gear, a second helical gear, and a synchronizing rod. One end of the rotating shaft is fixedly connected to one of the synchronizing gears, and the first rotating gear is fixedly sleeved on the outside of the rotating shaft. The second rotating gear meshes with the first rotating gear and is fixedly sleeved on the outside of the positioning shaft, which is rotatably connected to the protective shell. The other end of the positioning shaft is fixedly connected to the first helical gear, and the first helical gear meshes with the second helical gear. The synchronizing rod is rotatably connected to the support shell, and the other end of the synchronizing rod is connected to the scraping and wiping mechanism. Through the provided rotating component, the scraping and wiping mechanism is driven.
[0014] Furthermore, the scraping and wiping mechanism includes a moving frame, a reciprocating screw, a slide rod, a connecting cover, a connecting shaft, a wiping component, and an adjusting component. The moving frame is sleeved on the outside of the conveyor belt body. One end of the moving frame is threadedly connected to the reciprocating screw, and one end of the reciprocating screw is fixedly connected to the synchronizing rod. The other end of the moving frame is slidably sleeved on the outside of the slide rod, and the slide rod is fixedly installed on the outside of the processing shell.
[0015] Two connecting shafts are provided, and the two connecting shafts are respectively located on both sides of the moving frame. The connecting shafts are rotatably connected to the moving frame. The connecting cover is sleeved on the outside of the connecting shaft and is fixedly connected to the connecting shaft. The wiping component is set inside the connecting cover, and the two wiping components wipe and scrape the conveyor belt body that passes by. The adjusting component is installed on the moving frame and is used to synchronously adjust the two connecting shafts. Through the provided scraping and wiping mechanism, the conveyor belt body can be reciprocated and wiped.
[0016] Furthermore, the wiping component includes an unwinding shaft, a rewinding shaft, a reversing component, a contact shaft, and an oil-absorbing felt. The unwinding shaft and the rewinding shaft are rotatably connected to the connecting cover, and the reversing component is installed on one side of the connecting cover. The reversing component is used to synchronously reverse drive the unwinding shaft and the rewinding shaft.
[0017] The contact shaft is fixedly installed on the connecting cover. The two ends of the oil-absorbing felt are respectively wrapped around the outside of the unwinding shaft and the rewinding shaft. The contact shaft is used to guide the oil-absorbing felt so that the oil-absorbing felt can absorb and scrape off the grease on the surface of the conveyor belt body. Through the provided wiping parts, the conveyor belt body can be cleaned and then moved back and forth for wiping.
[0018] Furthermore, the adjusting component includes an electric push rod, a push frame, an extension plate, and a push support rod. The electric push rod is fixedly installed on one side of the moving frame, and its output end is fixedly connected to the push frame. There are two extension plates, which are respectively fixedly installed on the side of the push frame near the moving frame. There are two sets of push support rods, and one end of each set of push support rods is hinged to the adjacent extension plate through a hinge support. The other end of the push support rod is rotatably connected to the connecting cover through a hinge support. Through the provided adjusting component, the position of the two connecting covers can be adjusted.
[0019] Furthermore, the support frame is also provided with a guide rod assembly, which is used to guide the conveyor belt body. The guide rod assembly is located between the scraping and wiping mechanism and the drying mechanism. Through the provided guide rod assembly, the conveyor belt body can be stably moved between the scraping and wiping mechanism and the drying mechanism.
[0020] Furthermore, the drying mechanism includes a support frame, a drying component, limiting shafts, a detection component, and a lifting component. The support frame is sleeved on the outside of the conveyor belt body. The drying component is mounted on the support frame and dries the conveyor belt body passing through the support frame. There are four limiting shafts, which are distributed in pairs on the outside of the conveyor belt body. The detection component is located between two limiting shafts on the X-axis. The lifting component is mounted on the support frame and is used to support and connect the support frame. Through the provided drying mechanism, the function of drying the conveyor belt body is achieved.
[0021] Furthermore, the detection component includes a detection head, a connecting rod, a connecting sleeve, a connecting spring, and a pressure sensor. The detection head is hemispherical and slidably disposed on the outer side of the conveyor belt body surface. One end of the connecting rod is fixedly connected to the detection head. The connecting sleeve is fixedly installed inside the support frame and slidably sleeved on the outer side of the connecting rod. One end of the connecting spring is fixedly connected to the connecting rod, and the other end of the connecting spring is fixedly connected to the pressure sensor. The pressure sensor is fixedly installed inside the connecting sleeve. Through the provided detection component, the tension of the conveyor belt body is detected.
[0022] This invention has at least the following beneficial effects:
[0023] 1. In use, this invention utilizes a spray coating component on the conveyor belt body to pre-apply a cleaning agent during the conveying of meat for industrial food processing. The cleaning agent adheres to the conveyor belt body, dissolving grease and small pieces of meat. Simultaneously, the conveyor belt body, after the grease has dissolved, is thoroughly rinsed by a rinsing mechanism. Following rinsing, a scraping and wiping mechanism thoroughly removes any remaining water stains. A drying mechanism further dries the conveyor belt body, ensuring it remains clean during the transport of meat raw materials. This effectively prevents cross-contamination caused by grease residue during meat transport, further improving the efficiency of meat transport.
[0024] 2. The drying mechanism in this invention can not only fully dry the cleaned conveyor belt body, but also detect the tension of the conveyor belt body while drying, thereby ensuring that the conveyor belt body is in a taut state. Attached Figure Description
[0025] Figure 1 This is a schematic diagram of the overall structure of the present invention;
[0026] Figure 2 This is a side view of the overall structure of the present invention;
[0027] Figure 3 This is a schematic diagram of the conveyor belt body structure of the present invention;
[0028] Figure 4 This is a schematic diagram of the shell structure of the present invention;
[0029] Figure 5 This is a schematic diagram of the internal structure of the support shell of the present invention;
[0030] Figure 6 This is a schematic diagram of the rotating component structure of the present invention;
[0031] Figure 7 This is a schematic diagram of the rinsing mechanism of the present invention;
[0032] Figure 8 This is a schematic diagram of the movable frame structure of the present invention;
[0033] Figure 9 This is a side sectional view of the connecting cover structure of the present invention;
[0034] Figure 10 This is a schematic diagram of the reverse component structure of the present invention;
[0035] Figure 11 This is a schematic diagram of the support frame structure of the present invention;
[0036] Figure 12 This is a schematic diagram of the drying component structure of the present invention;
[0037] Figure 13 This is a schematic diagram of the detection element structure of the present invention;
[0038] Figure 14 For the present invention Figure 13 A magnified structural diagram of region A in the middle.
[0039] In the diagram: 1-Conveyor belt body; 2-Support frame; 3-Processing shell; 4-Spray coating component; 41-Reservoir tank; 42-Water pump; 43-Water pipe; 44-Atomizing nozzle; 5-Rinsing mechanism; 51-Top guide rod; 52-Bottom guide rod; 53-Upper rotating shaft; 54-Lower rotating shaft; 55-Cleaning brush; 56-Synchronous drive component; 561-Synchronous shaft; 562-Synchronous gear; 563-Gear chain; 564-Drive motor; 565-Anti-corrosion 566-Shell; 567-Support shell; 567-Rotating component; 5671-Rotating shaft; 5672-First rotating gear; 5673-Second rotating gear; 5674-Positioning shaft; 5675-First helical gear; 5676-Second helical gear; 5677-Synchronizing rod; 57-Water supply mechanism; 571-Liquid supply pump; 572-Infusion pump; 6-Scraping and wiping mechanism; 61-Moving frame; 62-Reciprocating screw; 63-Slide rod; 64-Connecting cover; 65- Connecting shaft; 66-wiping component; 661-unwinding shaft; 662-rewinding shaft; 663-reversing component; 6631-first rotating gear; 6632-second rotating gear; 6633-support shaft; 6634-third rotating gear; 6635-fourth rotating gear; 6636-synchronous belt; 6637-synchronous motor; 664-contact shaft; 665-oil-absorbing felt; 67-adjusting component; 671-electric push rod; 672-push frame; 673- Extension plate; 674-Push rod; 7-Drying mechanism; 71-Support frame; 72-Drying component; 721-Blower; 722-Heating box; 723-Air duct; 724-Blower hood; 73-Limit shaft; 74-Detection component; 741-Detection head; 742-Connecting rod; 743-Connecting sleeve; 744-Connecting spring; 745-Pressure sensor; 75-Lifting component; 751-Lifting push rod; 752-Lifting plate; 8-Guide rod assembly. Detailed Implementation
[0040] 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.
[0041] Example 1
[0042] Please see Figures 1 to 4 A raw material conveying device for industrial food processing includes a conveyor belt body 1 for conveying meat and a support frame 2 for supporting the conveyor belt body 1. A processing shell 3 is provided below the support frame 2, and a spray coating component 4 is provided at one end of the processing shell 3. The spray coating component 4 is used to apply cleaning agent to the conveyor belt body 1.
[0043] As a supplementary explanation, the spray coating component 4 includes a liquid storage tank 41, a water pump 42, a water pipe 43, and an atomizing nozzle 44. The liquid storage tank 41 is located below the support frame 2, and a cleaning agent is disposed inside the liquid storage tank 41. In this invention, the cleaning agent can be an alkaline cleaning agent (pH 44). 11-13) (Sodium hydroxide (2-5%) plus surfactant (1-2%)), or enzyme preparation (protease (0.5-1%), lipase (0.3-0.8%)), and water pump 42 is installed on storage tank 41, the input end of water pump 42 is connected to storage tank 41, and the output end of water pump 42 is connected to water pipe 43. Solenoid valve is also provided on water pipe 43. One end of water pipe 43 is connected to conversion pipe. There are two atomizing nozzles 44. The two atomizing nozzles 44 are respectively located on the outside of conveyor belt body 1. The two ends of conversion pipe are respectively connected to the two atomizing nozzles 44. At the same time, in order to make the conveyor belt body 1 located between the two atomizing nozzles 44, a conversion shaft is also provided on support frame 2 for conveying and guiding the conveyor belt body 1.
[0044] Specific implementation process: In this invention, two atomizing nozzles 44 are set on the outside of the conveyor belt body 1. That is, when the conveyor belt body 1 passes the two atomizing nozzles 44, the water pump 42 runs and the solenoid valve opens. The cleaning agent passes through the water pump 42 and the conversion pipe, and finally sprays out through the two atomizing nozzles 44. The two atomizing nozzles 44 spray the atomized cleaning agent evenly on the conveyor belt body 1 to dissolve the residual grease and small pieces of meat on the conveyor belt body 1.
[0045] Please see Figures 3 to 7 The processing shell 3 is equipped with a rinsing mechanism 5, which rinses the cleaning agent on the conveyor belt body 1. The rinsing mechanism 5 includes a top guide rod 51, a bottom guide rod 52, an upper rotating shaft 53, a lower rotating shaft 54, a cleaning brush 55, a synchronous drive component 56, and a water supply mechanism 57. There are two top guide rods 51 and two bottom guide rods 52. The two top guide rods 51 and the two bottom guide rods 52 are used to guide the conveyor belt body 1.
[0046] Multiple upper rotating shafts 53 and multiple lower rotating shafts 54 are provided. One end of each of the multiple upper rotating shafts 53 and multiple lower rotating shafts 54 is rotatably connected inside the processing shell 3. The multiple upper rotating shafts 53 and multiple lower rotating shafts 54 are respectively distributed on the upper and lower surfaces of the conveyor belt body 1 passing through the processing shell 3.
[0047] The cleaning brushes 55 are respectively installed on the upper rotating shaft 53 and the lower rotating shaft 54. In this invention, when the conveyor belt body 1 passes between multiple upper rotating shafts 53 and lower rotating shafts 54, the cleaning brushes 55 on the upper rotating shafts 53 and lower rotating shafts 54 rotate and clean the conveyor belt body 1.
[0048] The other ends of the upper rotating shaft 53 and the lower rotating shaft 54 are connected to the synchronous drive 56, which is installed on the outside of the processing shell 3. The water supply mechanism 57 is used to provide clean water to the inside of the processing shell 3.
[0049] As a supplementary explanation, the water supply mechanism 57 includes a supply pump 571 and a delivery pump 572. The input end of the supply pump 571 is connected to an external water tank, and the output end of the supply pump 571 is connected to the treatment shell 3. The input end of the delivery pump 572 is connected to the treatment shell 3, and the output end of the delivery pump 572 is connected to an external waste liquid collection tank. At the same time, the supply pump 571 and the delivery pump 572 in this invention are both existing water pumps 42, and the inflow rate of the water supplied by the supply pump 571 and the flow rate of the wastewater pumped out by the delivery pump 572 are the same.
[0050] When water is supplied to the inside of the treatment shell 3, clean water is introduced into the treatment shell 3 through the liquid supply pump 571. The cleaning brush 55 in the treatment shell 3 then washes the conveyor belt body 1 with the clean water, while the liquid pump 572 discharges the washed wastewater.
[0051] Please see Figures 5 to 7 The synchronous drive component 56 includes a synchronous shaft 561, a synchronous gear 562, a gear chain 563, a drive motor 564, a protective shell 565, a support shell 566, and a rotating component 567. Multiple synchronous shafts 561 are provided, and one end of the upper rotating shaft 53 and the lower rotating shaft 54 are respectively fixedly connected to the corresponding synchronous shaft 561. The synchronous gear 562 is fixedly sleeved on the outside of the synchronous shaft 561. The gear chain 563 is used to drive multiple synchronous gears 562. The protective shell 565 is fixedly installed on the outside of the processing shell 3, and the drive motor 564 is installed on the processing shell 3. The drive motor 564 is used to drive one of the synchronous shafts 561.
[0052] The support shell 566 is disposed on the outside of the processing shell 3, and the support shell 566 is used to support the rotating part 567, which is connected to the scraping and wiping mechanism 6.
[0053] The rotating component 567 includes a rotating shaft 5671, a first rotating gear 5672, a second rotating gear 5673, a positioning shaft 5674, a first helical gear 5675, a second helical gear 5676, and a synchronizing rod 5677. One end of the rotating shaft 5671 is fixedly connected to one of the synchronizing gears 562, and the first rotating gear 5672 is fixedly sleeved on the outside of the rotating shaft 5671. The second rotating gear 5673 meshes with the first rotating gear 5672 and is fixedly sleeved on the outside of the positioning shaft 5674. The positioning shaft 5674 is rotatably connected to the protective shell 565. The other end of the positioning shaft 5674 is fixedly connected to the first helical gear 5675, and the first helical gear 5675 meshes with the second helical gear 5676. The synchronizing rod 5677 is rotatably connected to the support shell 566, and the other end of the synchronizing rod 5677 is connected to the scraping and wiping mechanism 6.
[0054] Specific implementation process: In this invention, under the limiting action of the two sets of top guide rods 51 and bottom guide rods 52, the conveyor belt body 1 is stably conveyed and passes through the processing shell 3. At this time, the drive motor 564 runs, causing one of the synchronous shafts 561 to rotate. When one of the synchronous shafts 561 rotates, multiple synchronous shafts 561 are further rotated synchronously through the synchronous gear 562 and gear chain 563. When multiple synchronous shafts 561 rotate synchronously, multiple upper rotating shafts 53 and lower rotating shafts 54 rotate synchronously, thereby enabling multiple cleaning brushes 55 to rotate and clean the conveyor belt body 1. This further enables the clean water flow inside the processing shell 3 to fully clean and remove the dissolved grease on the conveyor belt body 1, and also clean and remove the meat scraps on the conveyor belt body 1.
[0055] Please see Figures 1 to 4 and Figures 8 to 10 A scraping and wiping mechanism 6 is provided on the outer side of the top of the processing shell 3. The scraping and wiping mechanism 6 cooperates with the rinsing mechanism 5 to scrape and wipe the cleaned conveyor belt body 1. A drying mechanism 7 is provided on the other side of the scraping and wiping mechanism 6. While the drying mechanism 7 dries the conveyor belt body 1, it also detects the tension of the conveyor belt body 1.
[0056] The scraping and wiping mechanism 6 includes a movable frame 61, a reciprocating screw 62, a slide rod 63, a connecting cover 64, a connecting shaft 65, a wiping component 66, and an adjusting component 67. The movable frame 61 is sleeved on the outside of the conveyor belt body 1. One end of the movable frame 61 is threadedly connected to the reciprocating screw 62, and one end of the reciprocating screw 62 is fixedly connected to the synchronizing rod 5677. The reciprocating screw 62 in this invention is an existing screw. Without changing the rotation direction of the main shaft, the screw rotation causes the side of the spiral groove to push the slider placed in the groove to make axial reciprocating motion. The reciprocating screw 62 in this invention is preferably model 2502. The other end of the movable frame 61 is slidably sleeved on the outside of the slide rod 63, and the slide rod 63 is fixedly installed on the outside of the processing shell 3.
[0057] Two connecting shafts 65 are provided, and the two connecting shafts 65 are respectively located on both sides of the moving frame 61. The connecting shafts 65 are rotatably connected to the moving frame 61. The connecting cover 64 is sleeved on the outside of the connecting shafts 65 and is fixedly connected to the connecting shafts 65. The wiping member 66 is disposed inside the connecting cover 64, and the two wiping members 66 wipe and scrape the conveyor belt body 1 that passes by. The adjusting member 67 is installed on the moving frame 61 and is used to synchronously adjust the two connecting shafts 65.
[0058] Please see Figures 8 to 10 The wiping component 66 includes an unwinding shaft 661, a take-up shaft 662, a reversing component 663, a contact shaft 664, and an oil-absorbing felt 665. The unwinding shaft 661 and the take-up shaft 662 are rotatably connected to the connecting cover 64, and the reversing component 663 is installed on one side of the connecting cover 64. The reversing component 663 is used to synchronously reverse drive the unwinding shaft 661 and the take-up shaft 662.
[0059] The contact shaft 664 is fixedly installed on the connecting cover 64. The two ends of the oil-absorbing felt 665 are respectively wrapped around the outside of the unwinding shaft 661 and the take-up shaft 662. The contact shaft 664 is used to guide the oil-absorbing felt 665 so that the oil-absorbing felt 665 can absorb and scrape off the grease on the surface of the conveyor belt body 1. At the same time, in this invention, the width of the oil-absorbing felt 665 is greater than the width of the conveyor belt body 1. In addition, a guide wheel can also be provided on the contact shaft 664 so that during the process of the oil-absorbing felt 665 moving and wiping the surface of the conveyor belt body 1, it can also move and wipe the sides of the conveyor belt body 1 thoroughly, thereby ensuring the cleanliness of the conveyor belt body 1.
[0060] Adjustment component 67 includes an electric push rod 671, a push frame 672, an extension plate 673, and a push support rod 674. The electric push rod 671 is fixedly installed on one side of the movable frame 61, and the output end of the electric push rod 671 is fixedly connected to the push frame 672. There are two extension plates 673, which are respectively fixedly installed on the side of the push frame 672 near the movable frame 61. There are two sets of push support rods 674, and one end of each set of push support rods 674 is hinged to the adjacent extension plate 673 through a hinge support, and the other end of the push support rod 674 is rotatably connected to the connecting cover 64 through a hinge support.
[0061] Specific implementation process: When one of the synchronous shafts 561 rotates, it drives the rotating shaft 5671 to rotate via the synchronous gear 562. Simultaneously, the rotating shaft 5671 rotates, which in turn drives the synchronous rod 5677 to rotate via the first rotating gear 5672, the second rotating gear 5673, the positioning shaft 5674, the first helical gear 5675, and the second helical gear 5676. Furthermore, the rotation of the synchronous rod 5677 further causes the reciprocating screw 62 to rotate, providing driving force to the moving frame 61. When the moving frame 61 is limited by the sliding rod 63 on the other side, the moving frame 61 moves back and forth relative to the conveyor belt body 1. When the moving frame 61 moves towards the processing shell 3, the two sets of take-up shafts 662 and unwind shafts 661 rotate synchronously. At the same time, through the two contact shafts 664, the oil-absorbing felt 665 wipes and moves relative to the conveyor belt body 1, so that the oil-absorbing felt 665 wipes the conveyor belt body 1 and moves to scrape away the residual dirt on the conveyor belt body 1. And while scraping, it does not affect the conveying of the conveyor belt body 1.
[0062] Simultaneously, when the moving frame 61 moves in the opposite direction along the processing shell 3, the electric push rod 671 operates, causing the pushing frame 672 to move away from the moving frame 61. The pushing frame 672 then drives the two connecting covers 64 to rotate around the axis of the connecting shaft 65 via two sets of pushing support rods 674. At this time, the oil-absorbing felt 665 at the contact shaft 664 deviates from the surface of the conveyor belt body 1 until the moving frame 61 moves to the farthest distance away from the processing shell 3. Then, the two sets of contact shafts 664 drive the oil-absorbing felt 665 to contact the surface of the conveyor belt body 1 again and move along the conveyor belt body 1 again. In this invention, the moving speed of the moving frame 61 is preferably twice the conveying speed of the conveyor belt body 1, thereby ensuring that the conveyor belt body 1 is thoroughly scraped and cleaned.
[0063] Please see Figures 3 to 4The support frame 2 is also equipped with a guide rod assembly 8, which is used to guide the conveyor belt body 1. The guide rod assembly 8 is located between the scraping and wiping mechanism 6 and the drying mechanism 7, and the guide rod assembly 8 ensures the guiding function of the conveyor belt body 1.
[0064] Please see Figures 11 to 14 The drying mechanism 7 includes a support frame 71, a drying component 72, a limiting shaft 73, a detection component 74, and a lifting component 75. The support frame 71 is sleeved on the outside of the conveyor belt body 1. The drying component 72 is set on the support frame 71 and dries the conveyor belt body 1 that passes through the support frame 71. There are four limiting shafts 73, which are distributed in pairs on the outside of the conveyor belt body 1. The detection component 74 is set between two limiting shafts 73 on the X-axis. The lifting component 75 is installed on the support frame 2 and is used to support and connect the support frame 71.
[0065] As a supplementary explanation, the drying component 72 includes a blower 721, a heating box 722, an air duct 723, and a blower hood 724. The blower 721 is installed on one side of the support frame 71, and the output end of the blower 721 is connected to the heating box 722. There are two air ducts 723. One end of the air duct 723 is connected to the heating box 722, and the other end of the air duct 723 is connected to the blower hood 724. The blower hood 724 is provided with multiple air outlets on one side corresponding to the outside of the conveyor belt body 1. The cleaned and wiped conveyor belt body is further dried through the two blower hoods 724.
[0066] The detection component 74 includes a detection head 741, a connecting rod 742, a connecting sleeve 743, a connecting spring 744, and a pressure sensor 745. The detection head 741 is hemispherical and is slidably disposed on the outer side of the surface of the conveyor belt body 1. One end of the connecting rod 742 is fixedly connected to the detection head 741. The connecting sleeve 743 is fixedly installed inside the support frame 71 and is slidably sleeved on the outer side of the connecting rod 742. One end of the connecting spring 744 is fixedly connected to the connecting rod 742, and the other end of the connecting spring 744 is fixedly connected to the pressure sensor 745. The pressure sensor 745 is fixedly installed inside the connecting sleeve 743.
[0067] As a supplementary explanation, the lifting component 75 includes a lifting push rod 751 and a lifting plate 752. The lifting push rod 751 is fixedly installed on the support frame 2, and the output end of the lifting push rod 751 is fixedly connected to the lifting plate 752. One end of the lifting plate 752 is fixedly connected to the support frame 71.
[0068] Specific implementation process: When the conveyor belt body 1 passes the support frame 71, the drying component 72 dries the conveyor belt body 1. At the same time, the two detection heads 741 detect the tension of the conveyor belt body 1. When the tension of the conveyor belt body 1 becomes loose, the electric push rod 671 runs, thereby causing the support frame 71 to move the conveyor belt body 1 up or down, thereby achieving the effect of tightening the conveyor belt body 1.
[0069] Example 2
[0070] Please see Figures 9 to 10 Embodiment 2 further supplements the description of the reversing component 663 in Embodiment 1. Specifically, the reversing component 663 includes a first rotating gear 6631, a second rotating gear 6632, a support shaft 6633, a third rotating gear 6634, a fourth rotating gear 6635, a synchronous belt 6636, and a synchronous motor 6637. The first rotating gear 6631 is fixedly sleeved on the outside of one end of the take-up shaft 662, and the first rotating gear 6631 and the second rotating gear 6632 are meshed together. The support shaft 6634... 33 is rotatably connected to the connecting cover 64, and the second rotating gear 6632 is fixedly sleeved on the outside of the support shaft 6633. The third rotating gear 6634 is fixedly sleeved on the support shaft 6633, and the third rotating gear 6634 is connected to the fourth rotating gear 6635 through the synchronous belt 6636. The fourth rotating gear 6635 is fixedly sleeved on the outside of one end of the unwinding shaft 661. The synchronous motor 6637 is mounted on the connecting cover 64 and is used to drive the unwinding shaft 661.
[0071] Furthermore, when the unwinding shaft 661 and the take-up shaft 662 are driven, the synchronous motor 6637 operates, causing the unwinding shaft 661 to rotate. While the unwinding shaft 661 rotates, the support shaft 6633 rotates synchronously through the transmission action of the fourth rotating gear 6635, the third rotating gear 6634, and the synchronous belt 6636. The second rotating gear 6632 on the support shaft 6633 drives the first rotating gear 6631 to rotate in the opposite direction, causing the take-up shaft 662 to rotate in the opposite direction and at the same speed as the unwinding shaft 661. This allows the unwinding shaft 661 to unwind the oil-absorbing felt 665 on it, while the take-up shaft 662 rewinds the wiped oil-absorbing felt 665.
[0072] 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.
[0073] 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. A raw material conveying device for industrial food processing, comprising a conveyor belt body (1) for conveying meat and a support frame (2) for supporting the conveyor belt body (1), characterized in that: The support frame (2) is provided with a processing shell (3) below it. One end of the processing shell (3) is provided with a spray applicator (4). The spray applicator (4) is used to apply cleaning agent to the conveyor belt body (1). The processing shell (3) is provided with a rinsing mechanism (5) inside it. The rinsing mechanism (5) rinses the cleaning agent on the conveyor belt body (1). The outer side of the top of the processing shell (3) is provided with a scraping and wiping mechanism (6), and the scraping and wiping mechanism (6) cooperates with the rinsing mechanism (5) to scrape and wipe the cleaned conveyor belt body (1). The other side of the scraping and wiping mechanism (6) is provided with a drying mechanism (7), and the drying mechanism (7) dries the conveyor belt body (1) while detecting the tension of the conveyor belt body (1). The rinsing mechanism (5) includes a top guide rod (51), a bottom guide rod (52), an upper rotating shaft (53), a lower rotating shaft (54), a cleaning brush (55), a synchronous drive component (56), and a water supply mechanism (57). The synchronous drive component (56) includes a synchronous shaft (561), a synchronous gear (562), a gear chain (563), a drive motor (564), a protective shell (565), a support shell (566), and a rotating component (567). The rotating component (567) includes a rotating shaft (5671), a first rotating gear (5672), a second rotating gear (5673), a positioning shaft (5674), a first helical gear (5675), a second helical gear (5676), and a synchronizing rod (5677). One end of the rotating shaft (5671) is fixedly connected to one of the synchronizing gears (562), and the first rotating gear (5672) is fixedly sleeved on the outside of the rotating shaft (5671). The second rotating gear (5673) is connected to the first rotating gear (5674). 5672) meshing connection, the second rotating gear (5673) is fixedly sleeved on the outside of the positioning shaft (5674), and the positioning shaft (5674) is rotatably connected to the protective shell (565). The other end of the positioning shaft (5674) is fixedly connected to the first helical gear (5675), and the first helical gear (5675) is meshed with the second helical gear (5676). The synchronizing rod (5677) is rotatably connected to the support shell (566), and the other end of the synchronizing rod (5677) is connected to the scraping and wiping mechanism (6). The scraping and wiping mechanism (6) includes a moving frame (61), a reciprocating screw (62), a slide rod (63), a connecting cover (64), a connecting shaft (65), a wiping component (66), and an adjusting component (67). The moving frame (61) is sleeved on the outside of the conveyor belt body (1). One end of the moving frame (61) is threadedly connected to the reciprocating screw (62). One end of the reciprocating screw (62) is fixedly connected to the synchronizing rod (5677). The other end of the moving frame (61) is slidably sleeved on the outside of the slide rod (63), and the slide rod (63) is fixedly installed on the outside of the processing shell (3). Two connecting shafts (65) are provided, and the two connecting shafts (65) are located on both sides of the moving frame (61). The connecting shafts (65) are rotatably connected to the moving frame (61). The connecting cover (64) is sleeved on the outside of the connecting shafts (65) and the connecting cover (64) is fixedly connected to the connecting shafts (65). The wiping member (66) is set inside the connecting cover (64), and the two wiping members (66) wipe and scrape the conveyor belt body (1) that passes through each other. The adjusting member (67) is installed on the moving frame (61), and the adjusting member (67) is used to synchronously adjust the two connecting shafts (65).
2. The raw material conveying device for industrial food processing according to claim 1, characterized in that: Two top guide rods (51) and two bottom guide rods (52) are provided respectively, and the two top guide rods (51) and the two bottom guide rods (52) are used to guide the conveyor belt body (1); The upper rotating shaft (53) and the lower rotating shaft (54) are provided in multiple ways. One end of each of the upper rotating shaft (53) and the lower rotating shaft (54) is rotatably connected to the inside of the processing shell (3). The multiple upper rotating shafts (53) and the multiple lower rotating shafts (54) are respectively distributed on the upper and lower surfaces of the conveyor belt body (1) passing through the processing shell (3). The cleaning brushes (55) are respectively mounted on the upper rotating shaft (53) and the lower rotating shaft (54); The other ends of the upper rotating shaft (53) and the lower rotating shaft (54) are connected to the synchronous drive (56), which is installed on the outside of the processing shell (3). The water supply mechanism (57) is used to provide clean water to the inside of the processing shell (3).
3. The raw material conveying device for industrial food processing according to claim 2, characterized in that: The synchronous shaft (561) is provided in multiple ways, and one end of the upper rotating shaft (53) and the lower rotating shaft (54) are respectively fixedly connected to the corresponding synchronous shaft (561). The synchronous gear (562) is fixedly sleeved on the outside of the synchronous shaft (561). The gear chain (563) is used to drive the multiple synchronous gears (562). The protective shell (565) is fixedly installed on the outside of the processing shell (3), and the drive motor (564) is installed on the processing shell (3). The drive motor (564) is used to drive one of the synchronous shafts (561). The support shell (566) is disposed outside the processing shell (3), and the support shell (566) is used to support the rotating part (567), which is connected to the scraping and wiping mechanism (6).
4. The raw material conveying device for industrial food processing according to claim 3, characterized in that: The wiping component (66) includes an unwinding shaft (661), a winding shaft (662), a reversing component (663), a contact shaft (664), and an oil-absorbing felt (665). The unwinding shaft (661) and the winding shaft (662) are rotatably connected to the connecting cover (64). The reversing component (663) is installed on one side of the connecting cover (64) and is used to synchronously reverse drive the unwinding shaft (661) and the winding shaft (662). The contact shaft (664) is fixedly installed on the connecting cover (64). The two ends of the oil-absorbing felt (665) are respectively wrapped around the outside of the unwinding shaft (661) and the winding shaft (662). The contact shaft (664) is used to guide the oil-absorbing felt (665) so that the oil-absorbing felt (665) absorbs and scrapes off the grease on the surface of the conveyor belt body (1).
5. The raw material conveying device for industrial food processing according to claim 4, characterized in that: The adjusting component (67) includes an electric push rod (671), a push frame (672), an extension plate (673), and a push support rod (674). The electric push rod (671) is fixedly installed on one side of the moving frame (61), and the output end of the electric push rod (671) is fixedly connected to the push frame (672). There are two extension plates (673), and the two extension plates (673) are respectively fixedly installed on the side of the push frame (672) near the moving frame (61). There are two sets of push support rods (674), and one end of each set of push support rods (674) is hinged to the adjacent extension plate (673) through a hinge support. The other end of the push support rod (674) is rotatably connected to the connecting cover (64) through a hinge support.
6. The raw material conveying device for industrial food processing according to claim 1, characterized in that: The support frame (2) is also provided with a guide rod assembly (8), which is used to guide the conveyor belt body (1). The guide rod assembly (8) is located between the scraping and wiping mechanism (6) and the drying mechanism (7).
7. A raw material conveying device for industrial food processing according to claim 6, characterized in that: The drying mechanism (7) includes a support frame (71), a drying component (72), a limiting shaft (73), a detection component (74), and a lifting component (75). The support frame (71) is sleeved on the outside of the conveyor belt body (1). The drying component (72) is set on the support frame (71) and dries the conveyor belt body (1) passing through the support frame (71). There are four limiting shafts (73), which are distributed in pairs on the outside of the conveyor belt body (1). The detection component (74) is set between two limiting shafts (73) on the X-axis. The lifting component (75) is installed on the support frame (2) and is used to support and connect the support frame (71).
8. A raw material conveying device for industrial food processing according to claim 7, characterized in that: The detection component (74) includes a detection head (741), a connecting rod (742), a connecting sleeve (743), a connecting spring (744), and a pressure sensor (745). The detection head (741) is hemispherical and is slidably disposed on the outer side of the surface of the conveyor belt body (1). One end of the connecting rod (742) is fixedly connected to the detection head (741). The connecting sleeve (743) is fixedly installed inside the support frame (71) and is slidably sleeved on the outer side of the connecting rod (742). One end of the connecting spring (744) is fixedly connected to the connecting rod (742), and the other end of the connecting spring (744) is fixedly connected to the pressure sensor (745). The pressure sensor (745) is fixedly installed inside the connecting sleeve (743).
Citation Information
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