Remote conveying device with fried food oil filtering function

By setting up multiple oil filter channels and slag cleaning components on the fried food conveying device, the problem of difficulty in cleaning the oil filter holes of the conveying device is solved, and the oil filtering effect and filtration efficiency are improved.

CN120207906AInactive Publication Date: 2025-06-27SHIYAN JIUKANG FOODSTUFF CO LTD
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Patent Information

Application Number
CN202510648650.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-20
Publication Date
2025-06-27
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

It is difficult to clean the oil filter holes of the existing fried food conveying devices, which affects the oil filtering effect.

Method used

A remote conveying device is designed, including providing a plurality of oil filter channels on the conveying device and a plurality of slag cleaning components on the rack. The slag cleaning assembly can slide on the arcuate track, approaching or away from the slag filter channel, clean up blocked oil slag and keep the oil slag filter channel unobstructed.

Benefits of technology

Through this device, the oil filtering effect of the conveying device is improved, ensuring that the oil filtering channel remains unobstructed at all times, and the filtration efficiency of fried food is enhanced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a remote conveying device with a fried food oil filtering function. The remote conveying device comprises a rack, a conveying device, a plurality of residue removing assemblies and an oil collecting tank. A plurality of arc-shaped rails are arranged on the rack; the conveying device is arranged on the rack; the conveying device is provided with a plurality of oil filtering channels; the conveying device is used for conveying fried food; the plurality of slag removal assemblies are respectively arranged on the arc-shaped track in a sliding manner; the plurality of slag removing assemblies are in one-to-one correspondence with the plurality of oil filtering channels; the oil collecting tank is arranged on the rack; the oil collecting tank is located below the conveying device. The oil residue discharging device has the technical effects that oil residue falling is facilitated, and the oil residue and oil discharging effect is improved.
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Description

Technical Field

[0001] The present application relates to the technical field of remote conveying devices with the function of filtering oil from fried foods, and in particular to a remote conveying device with the function of filtering oil from fried foods. Background Art

[0002] With the development of society, traditional handmade foods can no longer meet the requirements of people for the quantity of food demanded; the progress of industrial food processing is getting faster and faster.

[0003] For the industrial production of fried foods; currently, most conveyor belts for conveying fried foods have the function of filtering oil, and mostly adopt the method of opening holes in the conveyor belt and setting a filter screen below the conveyor belt to separate oil residues; the filter screen needs to be cleaned separately. However, the oil filtering holes on the conveyor belt are also prone to blockage, affecting the oil filtering effect.

[0004] Patent (CN202420225242.X) discloses a fried separation conveying device, which filters fried foods by setting oil leakage holes on the conveyor belt; by setting a bottom plate and setting a top needle on the bottom plate to clean the oil leakage holes; however, the oil residues falling on the conveyor belt will fall on the cylinder that drives the bottom plate to slide, affecting the operation of the cylinder.

[0005] Regarding the above related technologies, the inventor believes that there are defects in the difficulty of cleaning the oil filtering holes of the fried food conveying device, which affects the oil filtering effect. Summary of the Invention

[0006] In order to solve the above technical problems, the present application provides a remote conveying device with the function of filtering oil from fried foods.

[0007] A remote conveying device with the function of filtering oil from fried foods provided by the present application adopts the following technical solutions: A remote conveying device with the function of filtering oil from fried foods includes: A frame; a plurality of arc-shaped tracks are opened on the frame; A conveying device, arranged on the frame; the conveying device has a plurality of oil filtering channels; the conveying device is used for conveying fried foods; A plurality of slag cleaning components, a plurality of the slag cleaning components are respectively slidably arranged on the arc-shaped tracks; a plurality of the slag cleaning components respectively correspond to a plurality of the oil filtering channels one by one; An oil collecting tank, arranged on the frame; the oil collecting tank is located below the conveying device.

[0008] By adopting the above technical scheme, a plurality of oil filtering channels are opened on the conveying device, so that the oil and oil residue on the fried food can fall from the oil filtering channels and drop into the oil collecting box below; by arranging a plurality of residue cleaning components on the frame, the residue cleaning components constantly approach or move away from the residue filtering channels, and the oil residue blocked in the residue filtering channels can be effectively cleaned, so that the oil filtering channels are always kept unobstructed, thereby improving the oil filtering effect of the conveying device; the residue cleaning components can slide on the arc track, so that the residue cleaning components will not block the oil residue and oil from falling after moving downward, thereby improving the filtering efficiency of the oil residue and oil.

[0009] Preferably, the conveying device comprises: A plurality of first rotating shafts are rotatably disposed on the frame and are evenly arranged along the conveying direction of the fried food; A plurality of conveying rollers are coaxially fixed on the plurality of first rotating shafts respectively; and the oil filtering channel is provided between adjacent conveying rollers.

[0010] By adopting the above technical scheme, a plurality of first rotating shafts are arranged on the frame, and a conveying roller is coaxially fixed on the first rotating shaft; the conveying roller can play the role of conveying oily residue food when rotating; the current oil filtering method of opening oil filtering holes on the conveyor belt has a bearing surface for receiving fried food between adjacent oil filtering holes, and oily residue is easily accumulated on the bearing surface, which must be cleaned manually from time to time, which is time-consuming and labor-intensive, and also affects the oil filtering effect; however, through the oil filtering channel formed between adjacent conveying rollers, there is no bearing surface for receiving oily residue food, which is more effective in facilitating the falling of smaller oily residue, thereby improving the removal effect of oily residue and oil.

[0011] Preferably, the conveying roller is provided with a shifting block; the slag cleaning assembly comprises: An arc plate is slidably arranged on the arc track; the arc plate is in contact with the bottom surface of the conveying roller; the top of the arc plate is located in the oil filter channel; a receiving unit is arranged on the arc plate; the shifting block is in contact with the receiving unit; the receiving unit has an elastic degree of freedom to move along the circumference of the conveying roller; A first elastic member has one end connected to the arc plate and the other end connected to the frame; the first elastic member is used to push the arc plate away from the oil filter channel.

[0012] By adopting the above technical solution, an arc plate is arranged under the conveying roller. On the one hand, the arc plate can move into the oil filter channel to clean the oil filter channel and improve the oil filtering effect; on the other hand, the arc plate can also scrape the oil residue adhering to the surface of the conveying roller to the receiving component, so that the surface of the conveying roller is kept clean at all times, and dust and grease in the air are prevented from continuously accumulating on the surface of the conveying roller, thereby improving the quality of fried food; the first elastic member can push the arc plate to reset after the shifting block loses contact with the receiving unit, so that the arc plate continuously reciprocates, thereby improving the cleaning efficiency of the oil residue.

[0013] Preferably, the receiving unit includes: A brake block, slidably arranged on the arc-shaped plate and having an elastic degree of freedom to move radially along the conveying roller; one end of the top of the brake block has a guiding arc surface; A receiving block, one end of which abuts against the dial block, the middle part of which is hinged on the arc-shaped plate, and the other end of which abuts against the brake block; A failure block, arranged on the frame; the failure block abuts against the guiding arc surface.

[0014] By adopting the above technical solution, a brake block is arranged on the arc-shaped plate. When the dial block pushes the receiving block, the receiving block can be normally pushed and drive the arc-shaped plate to move; the guiding arc surface on the brake block cooperates with the failure block on the frame. After the failure block presses down the brake block, the receiving block can rotate normally, so that the dial block and the receiving block are separated, preventing the arc-shaped plate from rotating along with the conveying roller; and cooperating with the first elastic member, the arc-shaped plate makes a reciprocating motion continuously, effectively cleaning the oil filtering channel and the conveying roller.

[0015] Preferably, a plurality of dredging needles are arranged at the top end of the arc-shaped plate; the plurality of dredging needles are uniformly arranged along the length direction of the arc-shaped plate.

[0016] By adopting the above technical solution, the plurality of dredging needles can push the accumulated oil residues apart, avoiding the arc-shaped plate from pushing the oil residues onto the fried foods being conveyed when entering the oil filtering channel, and ensuring that the oil residues stably fall from the oil filtering channel to the receiving assembly.

[0017] Preferably, the lower end of the oil collecting tank has an opening; a receiving assembly is arranged below the oil collecting tank; the receiving assembly includes: A separation cylinder, rotatably arranged on the frame; a plurality of receiving grooves are formed on the circumferential side wall of the separation cylinder, and the plurality of receiving grooves are respectively evenly distributed along the circumference of the separation cylinder; any one of the receiving grooves corresponds to the opening at the lower end of the oil collecting tank; An oil storage bin, arranged on the frame; the side wall of the oil storage bin is attached to the side wall of the separation cylinder; an oil inlet is formed on the oil storage bin; any one of the receiving grooves corresponds to the oil inlet; A filter screen, arranged at the oil inlet; A plurality of oil pressing plates, respectively slidably arranged in the plurality of receiving grooves along the radial direction of the separation cylinder; A filter residue bin, arranged on the frame; the filter residue bin is located below the separation cylinder.

[0018] By adopting the above technical solution, the oil collecting tank can gather the oil residues and oil dropping from above; by arranging a rotating separation cylinder at the lower opening of the oil collecting tank and providing a plurality of accommodating grooves in the separation cylinder, the mixture of oil residues and oil in the oil collecting tank can enter the accommodating grooves; by arranging an oil pressing plate in the accommodating groove and cooperating with the filter screen at the oil inlet of the oil storage bin, the oil in the oil residues is pressed into the oil storage bin; the slidably arranged oil pressing plate can also push the oil residues after frying to the filter residue bin, achieving the effect of separating oil and oil residues, improving the utilization rate of oil residues and avoiding waste of oil; the oil pressing plate can scrape the oil residues on the side wall of the accommodating groove into the filter residue bin, keeping the accommodating cavity clean.

[0019] Preferably, an annular track is arranged on the frame; the annular track has a first protrusion and a second protrusion protruding outward; the first protrusion and the second protrusion correspond to the oil storage bin and the filter residue bin respectively; the oil pressing plate is connected with a driving rod; a slider is arranged on the driving rod; the slider is located in the annular track.

[0020] By adopting the above technical solution, an annular track is arranged on the frame and a slider is arranged on the oil pressing plate. When the separation cylinder rotates, the slider slides in the annular track, and by arranging the first protrusion and the second protrusion on the annular track, the oil pressing plate can automatically move when passing by the oil storage bin and the filter residue bin; the smoothness of the equipment operation is improved.

[0021] Preferably, the remote conveying device with the function of filtering oil from fried food further includes a driving assembly, and the driving assembly includes: A gear coaxially arranged on the separation cylinder; A second rotating shaft rotatably arranged on the frame; a driving tooth is arranged on the second rotating shaft; the driving tooth abuts or disengages from the teeth of the gear; A motor arranged on the frame; the power output end of the motor is coaxially connected with the second rotating shaft; the motor is used to drive the second rotating shaft to rotate.

[0022] By adopting the above technical solution, a gear is coaxially arranged on the separation cylinder and a driving tooth is arranged on the second rotating shaft. After the motor drives the second rotating shaft to rotate, the separation cylinder is intermittently driven to rotate, so that the accommodating cavity can sufficiently receive the oil residues; and sufficient oil pressing time is provided, and the oil in the oil residues can be fully pressed into the oil storage bin; the oil collection efficiency is improved.

[0023] Preferably, a sprocket is coaxially arranged at the end of the first rotating shaft; a chain is wound around a plurality of the sprockets; a first belt pulley is also coaxially and fixedly arranged at the end of any one of the first rotating shafts; a second belt pulley is coaxially and fixedly arranged on the second rotating shaft; the first belt pulley and the second belt pulley are connected by a belt.

[0024] By adopting the above technical solution, a sprocket is arranged on the first rotating shaft, and multiple sprockets are connected by a chain; by arranging a first pulley on the first rotating shaft and a second pulley on the second rotating shaft, when the motor rotates, it can drive the separation cylinder and multiple transmission rollers to rotate simultaneously; ensuring that each component of the equipment moves synchronously; enabling the smooth connection between the oil filtering process and the oil residue separation process.

[0025] Preferably, a cleaning bin is provided on the frame; the oil storage bin, the filter residue bin and the cleaning bin are arranged in sequence along the rotation direction of the separation cylinder; a cleaning brush is rotatably arranged in the cleaning bin, and the cleaning brush abuts against the plate surface of the oil pressing plate; the annular track further has a third protrusion; the third protrusion corresponds to the cleaning bin.

[0026] By adopting the above technical solution, after the oil pressing plate sends the filter residue into the filter residue bin, a small amount of oil residue is likely to adhere to the surface of the oil pressing plate; therefore, a cleaning bin is provided, and the oil residue on the oil pressing plate is cleared into the cleaning bin by the cleaning brush.

[0027] In summary, the present application includes at least one of the following beneficial technical effects: 1. By adopting the above technical solution, a plurality of oil filtering channels are opened on the conveying device, facilitating the oil and oil residue on the fried food to fall from the oil filtering channels and drop into the oil collecting tank below; by arranging a plurality of slag cleaning components on the frame, the slag cleaning components continuously approach or move away from the filter residue channel, effectively cleaning the blocked oil residue in the filter residue channel, keeping the oil filtering channel unblocked at all times, improving the oil filtering effect of the conveying device; the slag cleaning components can slide on the arc track, so that the slag cleaning components will not block the falling of oil residue and oil after moving down, improving the filtering efficiency of oil residue and oil.

[0028] 2. The oil collecting tank can gather the oil residue and oil falling from above; by arranging a rotating separation cylinder at the lower opening of the oil collecting tank and opening a plurality of receiving grooves in the separation cylinder, the mixture of oil residue and oil in the oil collecting tank enters the receiving grooves; by arranging an oil pressing plate in the receiving groove and cooperating with the filter screen at the oil inlet of the oil storage bin, the oil in the oil residue is pressed into the oil storage bin; the slidably arranged oil pressing plate can also push the oil residue after frying to the filter residue bin, achieving the effect of separating oil and oil residue, improving the utilization rate of oil residue and avoiding waste of oil; the oil pressing plate can scrape the oil residue on the side wall of the receiving groove into the filter residue bin, keeping the receiving cavity clean. Description of the Drawings

[0029] Figure 1 is a schematic diagram of a remote conveying device with the function of filtering oil from fried food.

[0030] Figure 2 is a schematic structural diagram of the conveying device in the embodiment.

[0031] Figure 3 is Figure 2 A partial enlarged view of B in

[0032] Figure 4 is a schematic structural view of the arc-shaped plate in the embodiment.

[0033] Figure 5 is Figure 4 A partial enlarged view of C in

[0034] Figure 6 is a schematic structural view of the interior of the separation cylinder in the embodiment.

[0035] Figure 7 is a schematic structural view of the receiving assembly in the embodiment.

[0036] Figure 8 is Figure 1 A partial enlarged view of A in

[0037] Explanation of reference numerals: 1. Frame; 11. Arc-shaped track; 12. Fixed shaft; 13. Driving plate; 131. Ring track; 1311. First protrusion; 1312. Second protrusion; 1313. Third protrusion; 2. Conveying device; 21. Oil filtering channel; 22. First rotating shaft; 222. Sprocket; 223. First pulley; 23. Conveying roller; 231. Poking block; 3. Slag cleaning assembly; 31. Arc-shaped plate; 311. Unclogging needle; 32. Receiving unit; 321. Braking block; 322. Receiving block; 323. Failure block; 3231. Guide arc surface; 3232. Second elastic member; 33. First elastic member; 4. Oil collecting tank; 5. Receiving assembly; 51. Separation cylinder; 511. Accommodating groove; 512. Third rotating shaft; 52. Oil storage bin; 53. Filter screen; 54. Oil pressing plate; 541. Driving rod; 542. Slide block; 55. Filter residue bin; 56. Cleaning bin; 561. Fourth rotating shaft; 5611. Fourth pulley; 562. Cleaning brush; 6. Driving assembly; 61. Gear; 62. Second rotating shaft; 621. Driving tooth; 622. Second pulley; 623. Third pulley; 63. Motor. Detailed implementation manners

[0038] The following is a further detailed description of the present application in conjunction with the attached Figure 1-8 drawings.

[0039] The embodiment of the present application discloses a remote conveying device with a function of filtering oil for fried foods. Refer to Figure 1, A remote conveying device with the function of filtering oil from fried food includes a frame 1, a conveying device 2, a plurality of slag cleaning components 3 and an oil collecting tank 4. The conveying device 2 includes a plurality of first rotating shafts 22 and a plurality of conveying rollers 23; the plurality of first rotating shafts 22 are respectively rotatably arranged on the frame 1 and are uniformly arranged along the conveying direction of the fried food; a sprocket 222 is coaxially provided at the end of the first rotating shaft 22; a chain is wound around the plurality of sprockets 222; after driving one first rotating shaft 22 to rotate, through the cooperation of the chain and the sprocket 222, other first rotating shafts 22 can be driven to rotate synchronously; the plurality of conveying rollers 23 are respectively coaxially fixed on the plurality of first rotating shafts 22; there is an oil filtering channel 21 between adjacent conveying rollers 23; a plurality of arc-shaped tracks 11 are formed on the frame 1; the plurality of slag cleaning components 3 are respectively slidably arranged on the arc-shaped tracks 11; the plurality of slag cleaning components 3 respectively correspond to the plurality of oil filtering channels 21 one by one; the oil collecting tank 4 is arranged on the frame 1 and is located below the conveying device 2; the oil collecting tank 4 is funnel-shaped, which is convenient for oil residues and oil to gather at the lower opening.

[0040] Refer to Figures 2 to 5The slag cleaning assembly 3 includes an arc plate 31, a first elastic member 33 and a receiving unit 32; the arc plate 31 is slidably arranged on the arc track 11; the arc plate 31 is in contact with the bottom surface of the conveying roller 23; a plurality of dredging needles 311 are arranged at the top of the arc plate 31, and the plurality of dredging needles 311 are evenly arranged along the length direction of the arc plate 31; after the arc plate 31 moves upward, the plurality of dredging needles 311 are located in the oil filter channel 21, and the dredging needles 311 can dredge the blocked oil filter channel 21, thereby improving the oil The receiving unit 32 includes a brake block 321, a receiving block 322 and a failure block 323; the brake block 321 is set on the arc plate 31 along the radial sliding of the conveying roller 23, and a second elastic member 3232 is connected between the brake block 321 and the arc plate 31. The second elastic member 3232 is a spring that can push the brake block 321 to move toward the conveying roller 23; one end of the top of the brake block 321 has a guide arc surface 3231; the conveying roller 23 is provided with a shift block 231 ; One end of the receiving block 322 abuts against the shifting block 231, the middle part is hinged on the arc plate 31, and the other end abuts against the brake block 321; when the shifting block 231 shifts one end of the receiving block 322, the other end of the receiving block 322 abuts against the brake block 321, so that the shifting block 231 pushes the receiving block 322, thereby driving the arc plate 31 to move; the failure block 323 is set on the frame 1; when the dredging needle 311 enters the oil filter channel 21, the failure block 323 and the guide arc surface of the brake block 321 3231 abuts; the brake block 321 is pressed down, and the receiving block 322 loses the limit of the failure block 323 and rotates, so that the shift block 231 and the receiving block 322 are out of contact; one end of the first elastic member 33 is connected to the arc plate 31, and the other end is connected to the frame 1; the first elastic member 33 is used to push the arc plate 31 away from the oil filter channel 21; the first elastic member 33 is a spring; the first elastic member 33 can be set in the arc track 11 to prevent the first elastic member 33 from deviating when being squeezed.

[0041] See also Figures 6 to 7, the receiving assembly 5 includes a separation cylinder 51, an oil storage bin 52, a filter screen 53, a filter residue bin 55 and a plurality of oil pressing plates 54; the separation cylinder 51 is rotatably arranged on the frame 1; a plurality of receiving grooves 511 are formed on the circumferential side wall of the separation cylinder 51, and the plurality of receiving grooves 511 are evenly distributed along the circumference of the separation cylinder 51; the lower end of the oil collecting tank 4 has an opening, and any one of the receiving grooves 511 corresponds to the opening at the lower end of the oil collecting tank 4; specifically, after the separation cylinder 51 rotates, the receiving groove 511 at the uppermost position corresponds to the opening at the lower end of the oil collecting tank 4, so that the oil residue in the oil collecting tank 4 can enter the receiving groove 511; the oil storage bin 52 is arranged on the frame 1; the side wall of the oil storage bin 52 is attached to the side wall of the separation cylinder 51; an oil inlet is formed on the oil storage bin 52; any one of the receiving grooves 511 corresponds to the oil inlet; specifically, taking the separation cylinder 51 rotating forward and the oil storage bin 52 being arranged on the right side of the separation cylinder 51 as an example; when the separation cylinder 51 rotates, there is a receiving groove 511 on the right side corresponding to and communicating with the oil inlet; the filter screen 53 is arranged at the oil inlet; the plurality of oil pressing plates 54 are respectively slidably arranged in the plurality of receiving grooves 511 along the radial direction of the separation cylinder 51; a fixed shaft 12 is arranged on the frame 1, and a receiving cavity is formed in the separation cylinder 51; the end of the fixed shaft 12 axially penetrates the separation cylinder 51 and extends into the receiving cavity; a driving plate 13 is arranged at the end of the fixed shaft 12; an annular track 131 is arranged on the driving plate 13; the annular track 131 has a first protruding part 1311 and a second protruding part 1312 protruding outward; the first protruding part 1311 and the second protruding part 1312 respectively correspond to the oil storage bin 52 and the filter residue bin 55; the oil pressing plate 54 is connected with a driving rod 541; a slider 542 is arranged on the driving rod 541; the slider 542 is located in the annular track 131; the filter residue bin 55 is arranged on the frame 1; the filter residue bin 55 is located below the separation cylinder 51.

[0042] A cleaning bin 56 is arranged on the frame 1; the oil storage bin 52, the filter residue bin 55 and the cleaning bin 56 are arranged in sequence along the rotation direction of the separation cylinder 51; a cleaning brush 562 is rotatably arranged in the cleaning bin 56, a third belt pulley 623 is arranged on the second rotating shaft 62, and the cleaning brush 562 is rotatably arranged on the cleaning bin 56 through a fourth rotating shaft 561; a fourth belt pulley 5611 is coaxially fixed on the fourth rotating shaft 561; the third belt pulley 623 and the fourth belt pulley 5611 are connected by a belt; the cleaning brush 562 abuts against the plate surface of the oil pressing plate 54; the annular track 131 further has a third protruding part 1313; the third protruding part 1313 corresponds to the cleaning bin 56.

[0043] It should be noted that the setting position of the oil storage bin 52 is related to the rotation direction of the separation cylinder 51. When the separation cylinder 51 rotates forward, the oil storage bin 52 is arranged on the right side of the separation cylinder 51; otherwise, it is arranged on the left side of the separation cylinder 51.

[0044] Refer to Figure 1 and Figure 8, the driving component 6 includes a gear 61, a second rotating shaft 62 and a motor 63; the gear 61 is coaxially arranged on the separation cylinder 51; the second rotating shaft 62 is rotatably arranged on the frame 1; a driving tooth 621 is provided on the second rotating shaft 62; the driving tooth 621 abuts or disengages from the teeth of the gear 61; the motor 63 is arranged on the frame 1; the power output end of the motor 63 is coaxially connected to the second rotating shaft 62; the motor 63 is used to drive the second rotating shaft 62 to rotate; a first pulley 223 is coaxially and fixedly provided at the end of any first rotating shaft 22; a second pulley 622 is coaxially and fixedly provided on the second rotating shaft 62; the first pulley 223 and the second pulley 622 are connected by a belt.

[0045] Specifically, one end of the separation cylinder 51 is coaxially connected with a third rotating shaft 512, and the third rotating shaft 512 is rotatably arranged on the frame 1; the gear 61 is coaxially and fixedly arranged on the third rotating shaft 512.

[0046] The working principle of a remote conveying device with a function of filtering oil from fried food in this application is as follows: Start the motor 63 to drive the second rotating shaft 62 to rotate. The second rotating shaft 62 drives the first rotating shaft 22 to rotate through a belt, so that the oil residue food can move under the action of a plurality of conveying rollers 23; when the first rotating shaft 22 rotates, the dial 231 pushes one end of the receiving block 322, and the other end of the receiving block 322 abuts against the brake block 321. The brake block 321 can prevent the receiving block 322 from rotating, so that the dial 231 can push and drive the arc plate 31 to move along the lower surface of the conveying roller 23 into the oil filtering channel 21; it is convenient for a plurality of dredging needles 311 on the top of the arc plate 31 to dredge the oil filtering channel 21; when the dredging needles 311 are located in the oil filtering channel 21, the failure block 323 on the frame 1 contacts the arc-shaped guide surface provided on the brake block 321. As the arc plate 31 moves, the failure block 323 presses the brake block 321, so that the brake block 321 disengages from the receiving block 322, and the receiving block 322 rotates and moves away from the dial 231; then under the action of the first elastic member 33, the arc plate 31 resets, and the brake block 321 resets under the action of the second elastic member 3232.

[0047] The oil residue on the oil residue food falls downward from the oil filter channel 21 into the oil collecting box 4, and finally enters the receiving groove 511 from the lower opening of the oil collecting box 4; when the second rotating shaft 62 rotates, the driving tooth 621 drives the gear 61 to rotate, thereby rotating the separation cylinder 51, so that the uppermost receiving groove 511 moves toward the oil storage bin 52, and finally communicates with the oil inlet; at this time, the slider 542 located at the oil inlet is located at the first protrusion 1311, so that the oil pressing plate 54 pushes the oil residue to move toward the filter screen 53, and under the squeezing of the filter screen 53 of the oil pressing plate 54, the oil in the oil residue is squeezed into the oil storage bin bin 52; when the separation cylinder 51 rotates here, the oil pressing plate 54 is reset under the guidance of the circular track 131, until it moves to the filter residue bin 55, under the action of the second protrusion 1312, the oil pressing plate 54 pushes the filter residue after the oil is squeezed into the filter residue bin 55, and the oil and oil residue are stored separately; after the separation cylinder 51 rotates here, the oil pressing plate 54 is reset under the guidance of the circular track 131, until it moves to the filter residue bin 55, under the action of the third protrusion 1313, the oil pressing plate 54 abuts against the cleaning brush, and the cleaning brush scrapes the oil residue on the oil pressing plate 54 into the cleaning bin 56.

[0048] When the second rotating shaft 62 rotates, the fourth rotating shaft 561 is driven to rotate through the third belt pulley 623 and the fourth belt pulley 5611, so that the cleaning brush rotates to wipe off the oil residue on the oil pressing plate 54.

[0049] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereto. Therefore, any equivalent changes made according to the structure, shape, and principle of the present application should be included in the protection scope of the present application.

Claims

1. A remote conveying device with oil filtering function for fried food, characterized in that: include: A frame (1); a plurality of arc-shaped tracks (11) are provided on the frame (1); A conveying device (2) is arranged on the frame (1); the conveying device (2) has a plurality of oil filtering channels (21); the conveying device (2) is used to convey fried food; A plurality of slag cleaning components (3), wherein the plurality of slag cleaning components (3) are respectively slidably arranged on the arc-shaped track (11); the plurality of slag cleaning components (3) respectively correspond one-to-one to the plurality of oil filter channels (21); An oil collecting tank (4) is arranged on the frame (1); the oil collecting tank (4) is located below the conveying device (2).

2. The remote transport device with oil filtering function for fried food according to claim 1, characterized in that: The conveying device (2) comprises: A plurality of first rotating shafts (22) are rotatably disposed on the frame (1) and are evenly arranged along the conveying direction of the fried food; A plurality of conveying rollers (23) are coaxially fixed on the plurality of first rotating shafts (22), respectively; and the oil filtering channels (21) are provided between adjacent conveying rollers (23).

3. The remote conveying device with oil filtering function for fried food according to claim 2, characterized in that: The conveying roller (23) is provided with a shifting block (231); the slag cleaning component (3) comprises: An arc plate (31) is slidably arranged on the arc track (11); the arc plate (31) is in contact with the bottom surface of the conveying roller (23); the top end of the arc plate (31) is located in the oil filter channel (21); a receiving unit (32) is provided on the arc plate (31); the shifting block (231) is in contact with the receiving unit (32); the receiving unit (32) has an elastic degree of freedom to move along the circumferential direction of the conveying roller (23); A first elastic member (33) has one end connected to the arc-shaped plate (31) and the other end connected to the frame (1); the first elastic member (33) is used to push the arc-shaped plate (31) away from the oil filter channel (21).

4. The remote conveying device with oil filtering function for fried food according to claim 3, characterized in that: The receiving unit (32) comprises: A brake block (321) is slidably arranged on the arc-shaped plate (31) and has an elastic degree of freedom to move radially along the conveying roller (23); one end of the top of the brake block (321) has a guide arc surface (3231); A receiving block (322), one end of which is in contact with the shifting block (231), a middle portion of which is hinged on the arc-shaped plate (31), and the other end of which is in contact with the braking block (321); The failure block (323) is arranged on the frame (1); the failure block (323) abuts against the guide cambered surface (3231).

5. The remote conveying device with oil filtering function for fried food according to claim 3, characterized in that: A plurality of dredging needles (311) are provided at the top end of the arc-shaped plate (31); the plurality of dredging needles (311) are evenly arranged along the length direction of the arc-shaped plate (31).

6. The remote transport device with oil filtering function for fried food according to claim 2, characterized in that: The oil collecting tank (4) has an opening at the lower end; a receiving assembly (5) is provided under the oil collecting tank (4); the receiving assembly (5) comprises: A separation cylinder (51) is rotatably arranged on the frame (1); a plurality of receiving grooves (511) are provided on the circumferential side wall of the separation cylinder (51), and the plurality of receiving grooves (511) are evenly distributed along the circumference of the separation cylinder (51); any of the receiving grooves (511) corresponds to an opening at the lower end of the oil collecting tank (4); An oil storage bin (52) is arranged on the frame (1); a side wall of the oil storage bin (52) is in contact with a side wall of the separation cylinder (51); an oil inlet is provided on the oil storage bin (52); any one of the containing grooves (511) corresponds to the oil inlet; A filter screen (53) is arranged at the oil inlet; A plurality of oil pressing plates (54) are respectively slidably disposed in the plurality of accommodating grooves (511) along the radial direction of the separation cylinder (51); A filter residue bin (55) is arranged on the frame (1); the filter residue bin (55) is located below the separation cylinder (51).

7. The remote conveying device with oil filtering function for fried food according to claim 6, characterized in that: The frame (1) is provided with an annular track (131); the annular track (131) has a first protrusion (1311) and a second protrusion (1312) protruding outward; the first protrusion (1311) and the second protrusion (1312) respectively correspond to the oil storage bin (52) and the filter residue bin (55); the oil pressing plate (54) is connected with a driving rod (541); a sliding block (542) is provided on the driving rod (541); the sliding block (542) is located in the annular track (131).

8. The remote transport device with fried food oil filtering function according to claim 6, characterized in that: The remote conveying device with the fried food oil filtering function further comprises a driving assembly (6), wherein the driving assembly (6) comprises: a gear (61) coaxially arranged on the separation cylinder (51); A second rotating shaft (62) is rotatably disposed on the frame (1); a driving tooth (621) is disposed on the second rotating shaft (62); the driving tooth (621) is in contact with or out of contact with the gear teeth of the gear (61); The motor (63) is arranged on the frame (1); the power output end of the motor (63) is coaxially connected to the second rotating shaft (62); and the motor (63) is used to drive the second rotating shaft (62) to rotate.

9. The remote conveying device with oil filtering function for fried food according to claim 8, characterized in that: A sprocket (222) is coaxially provided at the end of the first rotating shaft (22); a chain is provided around the plurality of sprockets (222); a first belt pulley (223) is coaxially fixedly provided at the end of any of the first rotating shafts (22); a second belt pulley (622) is coaxially fixedly provided on the second rotating shaft (62); the first belt pulley (223) and the second belt pulley (622) are connected via a belt.

10. The remote transport device with oil filtering function for fried food according to claim 7, characterized in that: The frame (1) is provided with a cleaning bin (56); the oil storage bin (52), the filter residue bin (55) and the cleaning bin (56) are arranged in sequence along the rotation direction of the separation barrel (51); a cleaning brush (562) is rotatably arranged in the cleaning bin (56), and the cleaning brush (562) abuts against the plate surface of the oil pressing plate (54); the annular track (131) further has a third protrusion (1313); the third protrusion (1313) corresponds to the cleaning bin (56).

Citation Information

Patent Citations

  • Oil residue separating and conveying device

    CN222292680U