Rapid cleaning method for edible oil processing raw materials
By designing a rapid cleaning device for edible oil processing raw materials, and utilizing intermittent feeding, spraying, and stirring mechanisms, the problem of accumulation during the cleaning process of edible oil raw materials was solved, thus improving cleaning efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- 黄秋艳
- Filing Date
- 2023-05-10
- Publication Date
- 2026-04-17
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In existing technologies, raw materials for edible oil processing tend to accumulate during the cleaning process, resulting in slow cleaning speed and low efficiency.
Design a rapid cleaning device for edible oil processing raw materials, including a support mechanism, a sealing mechanism, a feeding mechanism, a guiding mechanism, a spraying mechanism, and a stirring mechanism. By controlling the angle of the chamber, intermittent feeding, spraying cleaning, and stirring actions, the device can achieve rapid dispersion and comprehensive cleaning of materials.
It effectively avoids material accumulation, improves cleaning efficiency, ensures rapid contact between cleaning water and materials, and achieves comprehensive and rapid cleaning of raw materials for edible oil processing.
Smart Images

Figure CN121869753A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of edible oil processing, and more particularly to a method for rapidly cleaning raw materials for edible oil processing. Background Technology
[0002] Edible oil, also known as cooking oil, refers to animal or vegetable fats used in food preparation. It is liquid at room temperature. Due to factors such as raw material source, processing technology, and quality, most common edible oils are vegetable oils, including rapeseed oil, peanut oil, hemp seed oil, corn oil, olive oil, camellia oil, palm oil, sunflower seed oil, soybean oil, sesame oil, flaxseed oil, grapeseed oil, walnut oil, peony seed oil, and so on.
[0003] In existing technologies, the raw material cleaning process for edible oil processing often involves directly using a stirring rod for stirring and cleaning. However, due to their own gravity, the raw materials for edible oil processing tend to accumulate at the bottom. During stirring, the raw materials at the bottom are squeezed and difficult to be shaken and cleaned due to the accumulation of the raw materials above, resulting in a slow cleaning speed and reduced efficiency. Summary of the Invention
[0004] The purpose of this invention is to address the shortcomings of existing technologies where materials tend to accumulate and are difficult to clean, and to propose a rapid cleaning method for edible oil processing raw materials.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] A rapid cleaning method for edible oil processing raw materials is designed. This method is implemented using a rapid cleaning device for edible oil processing raw materials. The device includes a housing, a support mechanism, a sealing mechanism, a feeding mechanism, a guiding mechanism, a spraying mechanism, and a stirring mechanism. The support mechanism is installed at the bottom of the housing to support it. The sealing mechanism is installed on one side of the housing. The feeding mechanism is installed at the top of the housing. The guiding mechanism is installed inside the housing. The spraying mechanism is installed inside the housing to clean the materials. The stirring mechanism is installed inside the housing to agitate the materials. The rapid cleaning method for edible oil processing raw materials includes the following steps:
[0007] S1: Control the support mechanism to adjust the angle of the box, and then seal the box through the sealing mechanism;
[0008] S2: The material is then introduced into the box through the feeding mechanism. The feeding mechanism can intermittently restrict the material from entering the box, thereby avoiding the accumulation of too much material inside the box due to continuous feeding, which makes it difficult to clean.
[0009] S3: Then the material is evenly dispersed by the material guiding mechanism, and then the material is cleaned by spraying water by the spraying mechanism. This allows the cleaning water to come into rapid contact with all the materials to achieve cleaning.
[0010] S4: Finally, the material is stirred by the stirring mechanism, and the washing water washes the stirred material, thereby achieving a comprehensive and rapid cleaning of the material.
[0011] Furthermore, the support mechanism includes a base plate, a support seat, a mounting seat, and a cylinder; the support seat is fixedly installed at one end of the top of the base plate and is hinged to the housing; the mounting seat is fixedly installed at the other end of the top of the base plate; the cylinder is hinged to the inner side of the mounting seat and the output end of the cylinder is hinged to the housing.
[0012] Furthermore, the sealing mechanism includes a mounting plate, a sealing gasket, and several fixing bolts; the mounting plate is fixedly connected to the housing by the fixing bolts, the sealing gasket is fixedly installed on the inner side of the mounting plate, and the mounting plate has mounting holes.
[0013] Furthermore, the feeding mechanism includes a feeding hopper, a guide seat, a reciprocating screw, a slider, a guide rod, and a baffle plate; the feeding hopper is fixedly installed on the top of the housing and communicates with the interior of the housing; the guide seat is fixedly installed on the inner side of the feeding hopper; the guide rod passes through the side wall of the housing and is slidably connected to the housing; the baffle plate is fixedly installed on one end of the guide rod and slides along the bottom of the guide seat; the slider is fixedly installed on the other end of the guide rod; the reciprocating screw is rotatably installed on the top of the housing; the reciprocating screw passes through the bottom end of the slider and is threadedly connected to the slider.
[0014] Furthermore, the material guiding mechanism includes a hollow shaft, a material guiding cylinder, and several guide rollers; the hollow shaft passes through the housing and is rotatably connected to the housing, one end of the material guiding cylinder is fixedly connected to the end of the hollow shaft, and several guide rollers are rotatably installed at the bottom of the housing, the material guiding cylinder is in contact with the guide rollers and is rotatably connected to the guide rollers, and several material holes are opened on the material guiding cylinder, and the several material holes are evenly distributed on the material guiding cylinder.
[0015] Furthermore, the spraying mechanism includes two connecting plates, a rotating shaft, two water guide pipes, several nozzles, a connecting conduit, a water inlet pipe, and a mounting bracket; the two water guide pipes are fixedly installed in parallel between the two connecting plates; the rotating shaft passes through the hollow shaft and the housing and is rotatably connected to the housing; the several nozzles are evenly fixedly installed on the corresponding nozzles; the water inlet pipe passes through the connecting plate and is fixedly connected to the connecting plate; the water inlet pipe is connected to the two water guide pipes through a connecting conduit; one end of the mounting bracket is fixedly connected to the corresponding connecting plate; and the other end of the mounting bracket is fixedly connected to the water inlet pipe.
[0016] Furthermore, the stirring mechanism includes an internal gear ring, a central gear, several traveling gears, several stirring shafts, and several stirring rods; the internal gear ring is fixedly installed at one end of the inner side of the guide cylinder, the central gear is fixedly installed at one end of the rotating shaft, several stirring shafts are rotatably installed inside the guide cylinder and can slide along the inner wall of the guide cylinder, several stirring rods are uniformly fixedly installed on the corresponding stirring shafts, several traveling gears are fixedly installed at the ends of the corresponding stirring shafts, and several traveling gears mesh with the internal gear ring and the central gear and are located between the gear ring and the central gear.
[0017] Furthermore, the drive mechanism includes a bracket, a motor, a first gear, and a second gear; the bracket is fixedly installed on the outside of the housing, the motor is fixedly installed on the bracket, the first gear is fixedly installed on the output shaft of the motor, and the second gear is fixedly installed on one end of the rotating shaft and meshes with the first gear.
[0018] Furthermore, the drive mechanism also includes a gear ring and a third gear; the gear ring is fixedly mounted on one end of the hollow shaft, and the third gear is fixedly mounted on the output shaft of the motor and meshes with the gear ring.
[0019] Furthermore, a second pulley is fixedly installed on the output shaft of the motor, and a first pulley is fixedly installed on one end of the reciprocating screw. The first pulley and the second pulley are connected by belt drive.
[0020] The beneficial effects are:
[0021] 1. By driving the reciprocating screw to rotate, the slider can move back and forth periodically along the reciprocating screw, thereby causing the guide rod to drive the baffle plate to slide back and forth. This allows a certain amount of material to be periodically introduced into the box, thus avoiding the problem of excessive material accumulation inside the box due to continuous feeding, which makes it difficult to clean.
[0022] 2. The material enters the inside of the guide cylinder through the material hole, and drives the hollow shaft to rotate the guide cylinder, which in turn throws the material out and disperses it to different areas of the guide cylinder, thus effectively avoiding the problem of material accumulation.
[0023] 3. Cleaning water is introduced through the inlet pipe, then introduced into the two guide pipes through the connecting conduit, and then sprayed out through all the nozzles. At the same time, the rotating shaft is driven to rotate, which causes the connecting plate to drive the guide pipes to rotate circumferentially. This causes the nozzles to rotate synchronously along the rotating shaft, so that the sprayed water jet can quickly come into contact with all the materials, greatly improving the cleaning efficiency.
[0024] 4. When the rotating shaft rotates, it will drive the central gear to rotate. The traveling gear meshes with the internal gear ring and the central gear, which causes all the traveling gears to revolve around the central gear. At the same time, the rotation of the traveling gears drives the corresponding stirring shaft to rotate, which causes all the stirring rods to rotate around the stirring shaft. This achieves the stirring of the material, allowing the material accumulated inside to come into contact with the washing water for cleaning, which further improves the cleaning efficiency of the material. Attached Figure Description
[0025] Figure 1 This is a schematic diagram of the structure of the present invention;
[0026] Figure 2 This is a schematic diagram of the support mechanism of the present invention;
[0027] Figure 3 This is a schematic diagram of the sealing mechanism of the present invention;
[0028] Figure 4 This is a schematic diagram of the feeding mechanism of the present invention;
[0029] Figure 5 This is a schematic diagram of the material guiding mechanism of the present invention;
[0030] Figure 6 This is a schematic diagram of the internal structure of the feed tube of the present invention;
[0031] Figure 7 This is a schematic diagram of the spray mechanism of the present invention;
[0032] Figure 8 This is a schematic diagram of the stirring mechanism of the present invention;
[0033] Figure 9 This is a schematic diagram of the drive mechanism of the present invention.
[0034] In the diagram: 1. Box body; 2. Support mechanism; 21. Base plate; 22. Support seat; 23. Mounting seat; 24. Cylinder; 3. Sealing mechanism; 3. Mounting plate; 31. Sealing gasket; 32. Fixing bolt; 33. Mounting hole; 34. Feeding mechanism; 4. Feeding hopper; 41. Guide seat; 42. Reciprocating screw; 43. Slider; 44. Guide rod; 45. Baffle plate; 46. First pulley; 47. Guide mechanism; 5. Hollow shaft; 51. Guide cylinder; 52. Material hole; 53. Guide roller; 54. Spraying mechanism; 6. Connecting plate; 61. Rotating shaft; 62. Water pipe; 63. Nozzle; 64. Connecting guide pipe; 65. Water inlet pipe; 66. Mounting frame; 67. Stirring mechanism; 7. Internal gear ring; 71. Central gear; 72. Traveling gear; 73. Stirring shaft; 74. Stirring rod; 75. Drive mechanism; 8. Bracket; 81. Motor; 82. First gear; 83. Second gear; 84. Gear ring; 85. Third gear; 86. Second pulley; 87. Detailed Implementation
[0035] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention.
[0036] Example 1:
[0037] Reference Figure 1-4 A method for rapidly cleaning edible oil processing raw materials is disclosed. This method utilizes a rapid cleaning device for edible oil processing raw materials, comprising a housing 1, a support mechanism 2, a sealing mechanism 3, a feeding mechanism 4, a guiding mechanism 5, a spraying mechanism 6, and a stirring mechanism 7. The support mechanism 2 is installed at the bottom of the housing 1 to support it; the sealing mechanism 3 is installed on one side of the housing 1; the feeding mechanism 4 is installed at the top of the housing 1; the guiding mechanism 5 is installed inside the housing 1; the spraying mechanism 6 is installed inside the housing 1 to clean the materials; and the stirring mechanism 7 is installed inside the housing 1 to agitate the materials. The rapid cleaning method for edible oil processing raw materials includes the following steps:
[0038] S1: Control the support mechanism 2 to adjust the angle of the box 1, and then seal the box 1 through the sealing mechanism 3;
[0039] S2: The material is then introduced into the box 1 through the feeding mechanism 4. The feeding mechanism 4 can intermittently restrict the material from entering the box 1, thereby avoiding the accumulation of too much material inside the box 1 due to continuous feeding, which would make it difficult to clean.
[0040] S3: Then the material is evenly dispersed by the material guiding mechanism 5, and then the material is sprayed with water by the spraying mechanism 6 to clean it. This allows the cleaning water to come into rapid contact with all the materials to achieve cleaning.
[0041] S4: Finally, the material is stirred by the stirring mechanism 7, and the washing water washes the stirred material, thereby achieving a comprehensive and rapid cleaning of the material.
[0042] The support mechanism 2 includes a base plate 21, a support seat 22, a mounting seat 23, and a cylinder 24. The support seat 22 is fixedly installed at one end of the top of the base plate 21 and is hinged to the box body 1. The mounting seat 23 is fixedly installed at the other end of the top of the base plate 21. The cylinder 24 is hinged to the inside of the mounting seat 23 and the output end of the cylinder 24 is hinged to the box body 1. Before operation, the cylinder 24 is controlled to keep the entire box body 1 flat. After the cleaning operation is completed, the cylinder 24 is controlled again to tilt the entire box body 1, so as to facilitate the discharge of the cleaned material.
[0043] The sealing mechanism 3 includes a mounting plate 31, a sealing gasket 32, and several fixing bolts 33. The mounting plate 31 is fixedly connected to the housing 1 by the fixing bolts 33, and the sealing gasket 32 is fixedly installed on the inner side of the mounting plate 31. The mounting plate 31 has mounting holes 34. During operation, the mounting plate 31 is fixedly connected to the housing 1 by the fixing bolts 33, and the sealing gasket 32 can seal the outlet to prevent material from overflowing during the cleaning process. After the cleaning work is completed, the fixing bolts 33 are removed to take out the mounting plate 31, which makes it convenient to export the material inside the housing 1 and also facilitates the cleaning of the inside of the housing 1.
[0044] The feeding mechanism 4 includes a feeding hopper 41, a guide seat 42, a reciprocating screw 43, a slider 44, a guide rod 45, and a baffle plate 46. The feeding hopper 41 is fixedly installed on the top of the housing 1 and communicates with the interior of the housing 1. The guide seat 42 is fixedly installed on the inner side of the feeding hopper 41. The guide rod 45 passes through the side wall of the housing 1 and is slidably connected to the housing 1. The baffle plate 46 is fixedly installed on one end of the guide rod 45 and slides along the bottom of the guide seat 42. The slider 44 is fixedly installed on the other end of the guide rod 45. The reciprocating screw 43 is rotatably installed on the top of the housing 1 and passes through the bottom end of the slider 44 and is threadedly connected to the slider 44.
[0045] During feeding, the material is introduced into the feed hopper 41 and then into the housing 1 through the guide seat 42. The reciprocating screw 43 is driven to rotate, causing the slider 44 to move back and forth periodically along the screw. This causes the guide rod 45 to drive the baffle plate 46 to slide back and forth. When the baffle plate 46 moves to the outlet end of the guide seat 42, it prevents the material from entering the housing 1. When the baffle plate 46 disengages from the outlet end of the guide seat 42, the material can continue to be introduced into the housing 1. This cycle allows a certain amount of material to be periodically introduced into the housing 1, thus avoiding the problem of excessive material accumulation inside the housing 1 due to continuous feeding, which makes cleaning difficult.
[0046] Example 2:
[0047] Reference Figure 1-7In another preferred embodiment of the present invention, the difference from embodiment 1 is that the guiding mechanism 5 includes a hollow shaft 51, a guiding cylinder 52, and several guiding rollers 54; the hollow shaft 51 passes through the box body 1 and is rotatably connected to the box body 1, one end of the guiding cylinder 52 is fixedly connected to the end of the hollow shaft 51, and several guiding rollers 54 are rotatably installed at the bottom end of the box body 1, the guiding cylinder 52 is in contact with the guiding rollers 54 and is in rolling connection with the guiding rollers 54, and several material holes 53 are opened on the guiding cylinder 52, which are evenly distributed on the guiding cylinder 52; after the material is introduced into the box body 1, it falls onto the guiding cylinder 52, and the material enters the interior of the guiding cylinder 52 through the material holes 53, driving the hollow shaft 51 to make the guiding cylinder 52 rotate, thereby causing the guiding cylinder 52 to throw the material away and scatter it to different areas of the guiding cylinder 52, which can effectively avoid the problem of material accumulation;
[0048] The spraying mechanism 6 includes two connecting plates 61, a rotating shaft 62, two water guide pipes 63, several nozzles 64, a connecting conduit 65, a water inlet pipe 66, and a mounting bracket 67. The two water guide pipes 63 are fixedly installed in parallel between the two connecting plates 61. The rotating shaft 62 passes through the hollow shaft 51 and the housing 1 and is rotatably connected to the housing 1. Several nozzles 64 are evenly fixedly installed on the corresponding nozzles 64. The water inlet pipe 66 passes through the connecting plate 61 and is fixedly connected to the connecting plate 61. The water inlet pipe 66 is connected to the two water guide pipes 63 through the connecting conduit 65. One end of the mounting bracket 67 is fixedly connected to the corresponding connecting plate 61, and the other end of the mounting bracket 67 is fixedly connected to the water inlet pipe 66.
[0049] Working principle: During feeding, the material is introduced into the feed hopper 41 and then into the housing 1 through the guide seat 42. The reciprocating screw 43 is driven to rotate, causing the slider 44 to move back and forth periodically along the screw. This causes the guide rod 45 to drive the baffle plate 46 to slide back and forth. When the baffle plate 46 moves to the outlet end of the guide seat 42, it prevents the material from entering the housing 1. When the baffle plate 46 disengages from the outlet end of the guide seat 42, the material can continue to be introduced into the housing 1. This cycle is repeated to periodically introduce a certain amount of material into the housing 1.
[0050] After being fed into the box 1, the material falls onto the guide cylinder 52. The material enters the guide cylinder 52 through the material hole 53, driving the hollow shaft 51 to rotate the guide cylinder 52. This causes the guide cylinder 52 to throw the material outwards and scatter it to different areas of the guide cylinder 52.
[0051] During cleaning, cleaning water is introduced through the inlet pipe 66, then introduced into the two guide pipes 63 through the connecting conduit 65, and then sprayed out through all the nozzles 64. At the same time, the rotating shaft 62 is driven to rotate, which causes the connecting plate 61 to drive the guide pipes 63 to rotate circumferentially. This causes the nozzles 64 to rotate synchronously along the rotating shaft 62, so that the sprayed water jet can quickly come into contact with all the materials, greatly improving the cleaning efficiency.
[0052] Example 3:
[0053] Reference Figure 1-9 As another preferred embodiment of the present invention, the difference from Embodiment 1 or Embodiment 2 is that the stirring mechanism 7 includes an internal gear ring 71, a central gear 72, a plurality of traveling gears 73, a plurality of stirring shafts 74, and a plurality of stirring rods 75; the internal gear ring 71 is fixedly installed at one end of the inner side of the guide cylinder 52, the central gear 72 is fixedly installed at one end of the rotating shaft 62, the plurality of stirring shafts 74 are all rotatably installed inside the guide cylinder 52 and can slide along the inner wall of the guide cylinder 52, the plurality of stirring rods 75 are uniformly fixedly installed on the corresponding stirring shafts 74, the plurality of traveling gears 73 are fixedly installed at the ends of the corresponding stirring shafts 74, and the plurality of traveling gears 74 are fixedly installed on the inner side of the guide cylinder 52. Gear 73 meshes with both the internal gear ring 71 and the central gear 72, and is located between the gear ring 71 and the central gear 72. When the rotating shaft 62 rotates, it drives the central gear 72 to rotate. The traveling gear 73 meshes with both the internal gear ring 71 and the central gear 72, which causes all the traveling gears 73 to revolve around the central gear 72. At the same time, the rotation of the traveling gears 73 drives the corresponding stirring shaft 74 to rotate, which causes all the stirring rods 75 to rotate circumferentially around the stirring shaft 74. This achieves the agitation of the material, allowing the material accumulated inside to come into contact with the washing water for cleaning, which further improves the cleaning efficiency of the material.
[0054] The drive mechanism 8 includes a bracket 81, a motor 82, a first gear 83, a second gear 84, a gear ring 85, and a third gear 86. The bracket 81 is fixedly installed on the outside of the housing 1, the motor 82 is fixedly installed on the bracket 81, the first gear 83 is fixedly installed on the output shaft of the motor 82, the second gear 84 is fixedly installed on one end of the rotating shaft 62 and meshes with the first gear 83, the gear ring 85 is fixedly installed on one end of the hollow shaft 51, and the third gear 86 is fixedly installed on the output shaft of the motor 82 and meshes with the gear ring 85. A second pulley 87 is also fixedly installed on the output shaft of the motor 82, and a first pulley 47 is fixedly installed on one end of the lead screw 43. The first pulley 47 and the second pulley 87 are connected by a belt drive.
[0055] During operation, starting the motor 82 causes the first pulley 47 to rotate, which in turn causes the second pulley 87 to drive the reciprocating screw 43 to rotate. This causes the slider 44 to move back and forth periodically along the reciprocating screw 43, which in turn causes the guide rod 45 to drive the baffle plate 46 to slide back and forth. When the baffle plate 46 moves to the outlet end of the guide seat 42, it can prevent material from entering the box 1. When the baffle plate 46 disengages from the outlet end of the guide seat 42, the material can continue to be introduced into the box 1. This cycle can periodically introduce a certain amount of material into the box 1, thereby avoiding the problem of excessive material accumulation inside the box 1 due to continuous feeding, which makes it difficult to clean.
[0056] The motor 82 also drives the third gear 86 to rotate, which causes the gear ring 85 to drive the hollow shaft 51 to rotate the guide cylinder 52. This causes the guide cylinder 52 to throw the material away and scatter it to different areas of the guide cylinder 52, which can effectively avoid the problem of material accumulation.
[0057] The motor 82 simultaneously drives the first gear 83 to rotate, which in turn causes the second gear 84 to drive the rotating shaft 62 to rotate. This causes the connecting plate 61 to drive the water guide pipe 63 to rotate circumferentially, which in turn causes the nozzle 64 to rotate synchronously along the rotating shaft 62. This allows the sprayed water column to quickly contact all the materials. When the rotating shaft 62 rotates, it drives the central gear 72 to rotate. The traveling gear 73 meshes with the internal gear ring 71 and the central gear 72, which causes all the traveling gears 73 to revolve around the central gear 72. At the same time, the rotation of the traveling gears 73 drives the corresponding stirring shaft 74 to rotate, which causes all the stirring rods 75 to rotate circumferentially along the stirring shaft 74. This agitates the materials, allowing the accumulated materials to come into contact with the cleaning water for cleaning.
Claims
1. A method for rapid cleaning of an edible oil processing feedstock, characterized by, The rapid cleaning method for edible oil processing raw materials is achieved through a rapid cleaning device for edible oil processing raw materials. The rapid cleaning device for edible oil processing raw materials includes a box (1), a support mechanism (2), a sealing mechanism (3), a feeding mechanism (4), a guiding mechanism (5), a spraying mechanism (6), and a stirring mechanism (7). The support mechanism (2) is installed at the bottom of the box (1) to support the box (1). The sealing mechanism (3) is installed on one side of the box (1). The feeding mechanism (4) is installed at the top of the box (1). The guiding mechanism (5) is installed inside the box (1). The spraying mechanism (6) is installed inside the box (1) to clean the materials. The stirring mechanism (7) is installed inside the box (1) to agitate the materials. The rapid cleaning method for edible oil processing raw materials includes the following steps: S1: Control the support mechanism (2) to adjust the angle of the box (1), and then seal the box (1) through the sealing mechanism (3); S2: The material is then introduced into the box (1) through the feeding mechanism (4). The feeding mechanism (4) can intermittently restrict the material from entering the box (1), thereby avoiding the continuous feeding that causes too much material to accumulate inside the box (1) and make it difficult to clean. S3: Then the material is evenly dispersed by the material guiding mechanism (5), and then the material is sprayed with water by the spraying mechanism (6) to clean it. This allows the cleaning water to come into rapid contact with all the materials to achieve cleaning. S4: Finally, the material is stirred by the stirring mechanism (7), and the stirring water is used to clean the stirred material, thereby achieving a comprehensive and rapid cleaning of the material.
2. The rapid cleaning method for edible oil processing raw materials according to claim 1, characterized in that, The support mechanism (2) includes a base plate (21), a support seat (22), a mounting seat (23), and a cylinder (24).
3. The rapid cleaning method for edible oil processing raw materials according to claim 2, characterized in that, The support base (22) is fixedly installed at one end of the top of the base plate (21). The support base (22) is hinged to the housing (1). The mounting base (23) is fixedly installed at the other end of the top of the base plate (21). The cylinder (24) is hinged to the inside of the mounting base (23). The output end of the cylinder (24) is hinged to the housing (1). The sealing mechanism (3) includes a mounting plate (31), a sealing gasket (32), and several fixing bolts (33); the mounting plate (31) is fixedly connected to the housing (1) by the fixing bolts (33), the sealing gasket (32) is fixedly installed on the inner side of the mounting plate (31), and the mounting plate (31) has mounting holes (34); the feeding mechanism (4) includes a feeding hopper (41), a guide seat (42), a reciprocating screw (43), a slider (44), a guide rod (45), and a baffle plate (46); the feeding hopper (41) is fixedly installed on the top of the housing (1). And communicates with the inside of the box (1), the guide seat (42) is fixedly installed on the inside of the feed hopper (41), the guide rod (45) passes through the side wall of the box (1) and is slidably connected to the box (1), the baffle plate (46) is fixedly installed on one end of the guide rod (45) and slides along the bottom of the guide seat (42), the slider (44) is fixedly installed on the other end of the guide rod (45), the reciprocating screw (43) is rotatably installed on the top of the box (1), the reciprocating screw (43) passes through the bottom end of the slider (44) and is threadedly connected to the slider (44); The material guiding mechanism (5) includes a hollow shaft (51), a material guiding cylinder (52), and several guide rollers (54); the hollow shaft (51) passes through the box body (1) and is rotatably connected to the box body (1); one end of the material guiding cylinder (52) is fixedly connected to the end of the hollow shaft (51); several guide rollers (54) are rotatably installed at the bottom end of the box body (1); the material guiding cylinder (52) is in contact with the guide rollers (54) and is rotatably connected to the guide rollers (54); The spraying mechanism (6) includes two connecting plates (61), a rotating shaft (62), two water guide pipes (63), several nozzles (64), a connecting conduit (65), an inlet pipe (66), and a mounting bracket (67). The two water guide pipes (63) are fixedly installed in parallel between the two connecting plates (61). The rotating shaft (62) passes through the hollow shaft (51) and the housing (1) and is rotatably connected to the housing (1). The several nozzles (64) are evenly fixedly installed on the corresponding nozzles (64). The inlet pipe (66) passes through the connecting plate (61) and is fixedly connected to the connecting plate (61). The inlet pipe (66) is connected to the two water guide pipes (63) through the connecting conduit (65).
4. The rapid cleaning method for edible oil processing raw materials according to claim 3, characterized in that, The feed tube (52) has a plurality of feed holes (53) evenly distributed on the feed tube (52).
5. The rapid cleaning method for edible oil processing raw materials according to claim 4, characterized in that, One end of the mounting bracket (67) is fixedly connected to the corresponding connecting plate (61), and the other end of the mounting bracket (67) is fixedly connected to the water inlet pipe (66).
6. The rapid cleaning method for edible oil processing raw materials according to claim 5, characterized in that, The stirring mechanism (7) includes an internal gear ring (71), a central gear (72), several traveling gears (73), several stirring shafts (74), and several stirring rods (75); the internal gear ring (71) is fixedly installed at one end of the inner side of the guide cylinder (52), the central gear (72) is fixedly installed at one end of the rotating shaft (62), several stirring shafts (74) are rotatably installed inside the guide cylinder (52) and can slide along the inner wall of the guide cylinder (52), several stirring rods (75) are evenly fixedly installed on the corresponding stirring shafts (74), several traveling gears (73) are fixedly installed at the ends of the corresponding stirring shafts (74), and several traveling gears (73) mesh with the internal gear ring (71) and the central gear (72) and are located between the gear ring (71) and the central gear (72); The drive mechanism (8) includes a bracket (81), a motor (82), a first gear (83), and a second gear (84); the bracket (81) is fixedly installed on the outside of the housing (1), the motor (82) is fixedly installed on the bracket (81), the first gear (83) is fixedly installed on the output shaft of the motor (82), and the second gear (84) is fixedly installed on one end of the rotating shaft (62) and meshes with the first gear (83).
7. The rapid cleaning method for edible oil processing raw materials according to claim 6, characterized in that, The drive mechanism (8) also includes a gear ring (85) and a third gear (86); the gear ring (85) is fixedly installed at one end of the hollow shaft (51), and the third gear (86) is fixedly installed on the output shaft of the motor (82) and meshes with the gear ring (85).
8. The rapid cleaning method for edible oil processing raw materials according to claim 7, characterized in that, A second pulley (87) is also fixedly installed on the output shaft of the motor (82), and a first pulley (47) is fixedly installed on one end of the reciprocating screw (43). The first pulley (47) and the second pulley (87) are connected by belt drive.