Slicing and frying machine capable of easily discharging residues
By designing an easy-to-discharge slicing and frying machine, the problems of laborious manual slicing, tedious sludge cleaning, and unstable output have been solved. It achieves automatic slicing, stable output, and sludge cleaning at any time, reducing motor power and edible oil waste, and improving the convenience and safety of operation.
Patent Information
- Application Number
- CN202423044707.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-10
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-12-10
AI Technical Summary
Existing frying machines require manual slicing, which is laborious and poses safety hazards. Cleaning the sludge is tedious and wastes cooking oil. The output is unstable and requires high motor power.
An easy-to-discharge slicing and frying machine was designed, which includes a slicing device, a discharge device, and a slag removal device. It uses a rotary cutting blade to slice the slabs, a four-bar mechanism to discharge the slabs, and a solenoid valve to control the removal of slag. It has a simple structure and is easy to operate.
It achieves automatic slicing to reduce manual labor, stable output to reduce motor power, easy cleaning of sludge to reduce cooking oil waste, and convenient operation and maintenance of the whole machine.
Smart Images

Figure CN223515612U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of frying equipment, and specifically relates to an easy-slag-discharge type slice frying machine. BACKGROUND
[0002] Fried foods are deeply loved by the public because of their rich aroma and crisp taste, and often rank first in the snack sales list. The frying machine is a device that uses electricity, gas, oil, etc. as energy and edible oil as the main raw material to quickly shape, puff, mature, and dehydrate food, thereby completing the frying cooking of food.
[0003] The existing frying machine usually needs manual slicing and manual feeding. The manual slicing process is time-consuming and labor-intensive, and the manual feeding process is prone to cause hot oil splashing, causing burns to personnel and posing certain safety hazards. During the frying process, the edible oil will gradually produce oil residue deposits. If not removed in time, the repeated frying of oil residue at high temperature will accelerate the oxidation and deterioration of the edible oil, produce harmful substances and harm health. The existing frying machine generally does not have a device for removing the sediment, cannot clean the sediment while frying, and the sediment cleaning process is complicated, resulting in serious waste of edible oil.
[0004] Chinese patent CN221430043U discloses an automatic feeding frying machine, which comprises a frying pot, a feeding assembly, a stirring assembly, and a discharging assembly. The bottom of the frying pot is provided with a heating furnace, the outer side of the frying pot is provided with a fixing frame, and the inside of the frying pot is provided with a turnover pot. The feeding assembly comprises a rotating shaft one and a feeding hopper. The one end of the rotating shaft one is connected with a motor one, and the upper end of the feeding hopper is connected with the rotating shaft one. The stirring assembly comprises a horizontal plate, a stirring shaft, and stirring blades. The horizontal plate is located above the turnover pot. The upper end of the stirring shaft penetrates through the horizontal plate and is connected with a motor two. The lower end of the stirring shaft is connected with the bottom of the turnover pot through a vertical rod. The stirring blades are connected with one side of the stirring shaft. The discharging assembly comprises a rotating shaft two and a rocker. The one end of the rotating shaft two is connected with a motor three. The one end of the rocker is connected with the rotating shaft two, and the other end of the rocker is connected with the horizontal plate. The feeding assembly is used to feed the materials at one time, and the discharging assembly is used to collect the materials at one time, thereby achieving automatic feeding and discharging without affecting the taste of food.
[0005] The above-mentioned discharging is directly driven by the motor to rotate the rotating shaft two, which requires a large torque and a large power of the motor. Moreover, the discharging process is not stable, and the discharging position is not easy to control.
[0006] It can be seen that it is urgent to develop a new frying device that can slice, remove slag simply, discharge stably, has a simple structure, is easy to operate and maintain, and runs stably, in order to reduce the labor intensity, simplify the sediment cleaning operation, reduce the waste of edible oil, and improve the discharging stability. UTILITY MODEL CONTENTS
[0007] In view of the defects and shortcomings in the prior art, the easy-discharge type slice frying machine can slice raw materials, change the slice thickness, remove the accumulated sludge during the frying process and realize smooth discharging.
[0008] The easy-discharge type slice frying machine comprises an oil discharge port, a rack, a discharging device, a horizontal plate, a stirring device, a slicing device, a frying pot, a sludge discharge device and a control box.
[0009] The slicing device comprises a slicing motor base, a rotary slicing mechanism, a feeding mechanism, a slicing coupling, a slicing motor and a slicing protective cover.
[0010] The rotary slicing mechanism comprises a rotary slicing baffle, a rotary slicing blade, an adjusting knob, a rotary slicing knife seat, a rotary slicing shaft, a slicing bearing seat, a bevel gear set A and a slicing driving shaft. The rotary slicing baffle is located below the horizontal plate and is connected with the lower end of the rotary slicing shaft through the adjusting knob. The rotary slicing knife seat is arranged above the rotary slicing baffle, the upper segment of the rotary slicing knife seat is fixedly connected with the rotary slicing shaft, the lower segment of the rotary slicing knife seat is matched with the rotary slicing baffle and drives the rotary slicing baffle to rotate synchronously with the rotary slicing knife seat, and the rotary slicing knife seat is parallel to the cutting grooves on the rotary slicing baffle. The rotary slicing blade is installed on the lower surface of the rotary slicing knife seat. The rotary slicing shaft is installed on the horizontal plate through the slicing bearing seat, the lower segment of the rotary slicing shaft is matched with the rotary slicing baffle, the middle segment of the rotary slicing shaft is connected with the rotary slicing knife seat and drives the rotary slicing knife seat to rotate synchronously with the rotary slicing shaft, and the upper end of the rotary slicing shaft is connected with the bevel gear set A. The slicing driving shaft is connected with the bevel gear set A at one end and is connected with the slicing motor through the slicing coupling at the other end.
[0011] The adjustment knob is threaded to the lower end of the rotary cutting shaft, and the rotary cutting baffle abuts against the adjustment knob. By rotating the adjustment knob, the distance between the rotary cutting baffle and the rotary cutting blade is changed, thereby adjusting the slice thickness.
[0012] The shaft segment connecting the rotary cutting shaft and the rotary cutting tool holder is a prism.
[0013] The feeding mechanism includes a feeding box body, a compression spring, a feeding box cover, a compression rod, and a compression block; the feeding box body passes through the middle of the horizontal plate and is fixed to the horizontal plate; the feeding box cover is connected to the feeding box body by a hinge; the compression rod passes through the center of the feeding box cover, a compression spring is sleeved on the compression rod, and a compression block is installed at the end. When slicing, the compression spring pushes the compression block to push the material to slice.
[0014] The discharge device includes a drive motor base, a tilting protective cover, a drive motor, a tilting active rod, a tilting connecting rod, an active rotating shaft, a tilting driven rod, a tilting blast basket, a discharge plate, and a tilting rotating shaft. The drive motor base is mounted on the side of the frame. The drive motor is mounted on the drive motor base and connected to the active rotating shaft via a coupling. The active rotating shaft is mounted on one side of the top of the frame via a bearing seat. The tilting rotating shaft is parallel to the active rotating shaft and is mounted on the other side of the top of the frame via a bearing seat. The tilting active rod is connected to the active rotating shaft and moves with the active rotating shaft. The tilting action rod is equipped with a limit pin at its lower end to ensure that the tilting connecting rod can only rotate above the tilting action rod; the tilting driven rod is connected to the tilting shaft; the tilting connecting rod connects the tilting action rod and the tilting driven rod; there are two tilting action rods, two tilting connecting rods, and two tilting driven rods, symmetrically arranged at both ends of the action shaft to ensure structural stability and reliability; the tilting frying basket is located directly above the center of the fryer and is fixedly connected to the tilting driven rod, and a discharge plate is provided on the side of the tilting frying basket near the tilting shaft; the tilting protective cover is located outside the drive motor.
[0015] The slag discharging device comprises a slag discharging pipe, a slag discharging electromagnetic valve, a slag storage device, a slag falling electromagnetic valve, a slag falling pipe, a water injection port, a pressure relief pipe, a water tank, a water inlet electromagnetic valve and a water inlet pipe; the slag storage device is provided with mounting side plates on the front and rear sides and is mounted on the middle layer cross beam of the rack through the mounting side plates; the slag discharging pipe is arranged directly below the slag storage device and is provided with the slag discharging electromagnetic valve for controlling the on-off of the slag discharging pipe; the slag falling pipe is arranged directly above the slag storage device and is connected with the slag discharging port of the fryer, and the slag falls into the slag storage device through the slag discharging port and the slag falling pipe and is accumulated in the slag storage device, and the slag falling electromagnetic valve is arranged on the slag falling pipe; the water tank is mounted on the right side of the middle layer cross beam of the rack, is not airtight and is communicated with the atmosphere; the water injection port is arranged on the right side of the upper surface of the water tank; the water inlet pipe is arranged on the right side of the slag storage device, and the other end of the water inlet pipe is connected with the lower surface of the water tank; the water inlet electromagnetic valve is mounted on the horizontal section of the water inlet pipe; one end of the pressure relief pipe is arranged on the right side of the upper surface of the slag storage device, and the other end is connected with the left top of the water tank, and the pressure relief pipe, the slag storage device, the water inlet pipe and the water tank form a communicating vessel structure and play a pressure regulating role in the process of adding water to the slag storage device.
[0016] The oil frying machine has the advantages that: (1) the whole machine is provided with a slicing device, the slicing device utilizes the rotary motion of a rotary cutting blade to slice materials, uniform slicing can be realized, one machine can be used for multiple purposes, and the labor intensity of manual slicing is reduced; (2) the discharging device utilizes a four-link mechanism, the required torque in the discharging process is reduced, stable discharging is realized, the power of the motor is reduced, and the cost is reduced; (3) three electromagnetic valves are arranged in the slag discharging device to control the on-off of the pipelines, and the deposited oil slag can be discharged in the process of oil frying without affecting the oil frying process, and the slag can be discharged at any time; and (4) the oil frying machine has simple structure, is convenient to operate and maintain, and can realize the functions of slicing, oil frying, oil draining, discharging and cleaning the deposited slag at any time. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 is a general structure schematic view of the slicing oil frying machine of the present application;
[0018] Figure 2 is a slicing device structure schematic view of the slicing oil frying machine of the present application;
[0019] Figure 3 is a rotary cutting mechanism structure schematic view of the slicing oil frying machine of the present application;
[0020] Figure 4 is a rotary cutting mechanism sectional view of the slicing oil frying machine of the present application;
[0021] Figure 5 is a rotary cutting mechanism installation explosion schematic view of the slicing oil frying machine of the present application;
[0022] Figure 6is a feeding mechanism structure schematic view of the easy residue discharging type slice frying machine of the utility model;
[0023] Figure 7 is a discharging device structure schematic view (frying position) of the easy residue discharging type slice frying machine of the utility model;
[0024] Figure 8 is a discharging device structure schematic view (middle position) of the easy residue discharging type slice frying machine of the utility model;
[0025] Figure 9 is a discharging device structure schematic view (discharging position) of the easy residue discharging type slice frying machine of the utility model;
[0026] Figure 10 is a residue removing device structure schematic view of the easy residue discharging type slice frying machine of the utility model;
[0027] In the figure: 1 - oil discharge port, 2 - rack, 3 - discharging device, 4 - cross plate, 5 - stirring device, 6 - slicing device, 7 - frying pot, 8 - residue removing device, 9 - control box;30 - driving motor base, 31 - discharging protective cover, 32 - driving motor, 33 - tilting driving rod, 34 - tilting connecting rod, 35 - driving shaft, 36 - tilting driven rod, 37 - tilting frying basket, 38 - discharging plate, 39 - tilting shaft;60 - slicing motor base, 61 - rotary cutting mechanism, 62 - feeding mechanism, 63 - slicing coupling, 64 - slicing motor, 65 - slicing protective cover;80 - residue removing pipe, 81 - residue removing electromagnetic valve, 82 - residue storage device, 83 - residue dropping electromagnetic valve, 84 - residue dropping pipe, 85 - water injection port, 86 - pressure relief pipe, 87 - water tank, 88 - water inlet electromagnetic valve, 89 - water inlet pipe;610 - rotary cutting baffle, 611 - rotary cutting blade, 612 - adjusting knob, 613 - rotary cutting cutter seat, 614 - rotary cutting shaft, 615 - slicing bearing seat, 616 - bevel gear set A, 617 - slicing driving shaft;620 - feeding box body, 621 - extrusion spring, 622 - feeding box cover, 623 - extrusion rod, 624 - extrusion block. DETAILED DESCRIPTION
[0028] The utility model will be made further detailed explanation below combining with the drawings and examples. The example is only used for explaining the utility model, and is not the limitation to the utility model.
[0029] Referring to Figure 1The utility model provides an easy residue discharging type slice frying machine, including oil outlet 1, frame 2, discharge device 3, cross plate 4, stirring device 5, slicing device 6, frying pot 7, residue discharging device 8 and control box 9, discharge device 3 is installed at the top of frame 2, realizes the oil dripping and discharge of frying product, and cross plate 4 is installed above discharge device 3, is used to install stirring device 5 and slicing device 6, and when discharging, cross plate 4 and the stirring device 5 and slicing device 6 installed above it dump discharge together with discharge device 3, slicing device 6 is installed at the front side of the top of cross plate 4, realizes the slicing of potato, sweet potato and other root crops, stirring device 5 is installed at the back side of the top of cross plate 4, and the material is stirred during frying, to ensure that the material is fried evenly, frying pot 7 is installed in frame 2 below discharge device 3, is used to contain edible oil, and heating pipe is arranged in the inside of frying pot 7 close to the bottom end position, oil outlet 1 is arranged at the bottom end of the left side of frying pot 7, residue discharging device 8 is installed in the middle layer of frame 2 below frying pot 7 and is connected with frying pot 7, is used to discharge the accumulated sediment, control box 9 is installed at the left front end of the middle layer of frame 2, is used to control the each part of whole machine.
[0030] Referring to Figure 2 Said slicing device 6 includes slicing motor base 60, rotary cutting mechanism 61, feeding mechanism 62, slicing shaft coupling 63, slicing motor 64 and slicing protective cover 65, slicing motor 64 is installed at the front side of cross plate 4 through slicing motor base 60 and is connected with rotary cutting mechanism 61 through slicing shaft coupling 63, realizes the slicing function of potato, sweet potato and other root crops, and slicing protective cover 65 is arranged at the outside of slicing motor 64, rotary cutting mechanism 61 is installed on cross plate 4 through slicing bearing seat 615, feeding mechanism 62 is installed on cross plate 4.
[0031] Referring to Figures 3-5, the rotary cutting mechanism 61 includes a rotary cutting baffle 610, a rotary cutting blade 611, an adjusting knob 612, a rotary cutting seat 613, a rotary cutting shaft 614, a slicing bearing seat 615, a bevel gear set A 616 and a slicing driving shaft 617; the rotary cutting baffle 610 is located below the cross plate 4, is connected with the lower end of the rotary cutting shaft 614 through the adjusting knob 612, the position of the rotary cutting baffle 610 can be adjusted by rotating the adjusting knob 612, the distance between the rotary cutting baffle 610 and the rotary cutting blade 611 is controlled, the thickness of the slice is changed, two cutting grooves are uniformly arranged on the rotary cutting baffle 610, and an annular baffle is arranged at the edge to prevent material from splashing and causing waste; the rotary cutting seat 613 is arranged above the rotary cutting baffle 610, an upper segment is fixedly connected with the rotary cutting shaft 614, a lower segment is matched with the rotary cutting baffle 610 and drives the rotary cutting baffle 610 to rotate synchronously with the rotary cutting seat 613, and the rotary cutting seat 613 is parallel to the cutting grooves on the rotary cutting baffle 610; the rotary cutting blade 611 is installed on the lower surface of the rotary cutting seat 613, material is limited by the rotary cutting baffle 610, passes through the cutting grooves and contacts the rotary cutting blade 611, and slicing of the material is realized; the rotary cutting shaft 614 is installed on the cross plate 4 through the slicing bearing seat 615, the lower segment of the rotary cutting shaft 614 is matched with the rotary cutting baffle 610 in a gap, the middle segment is connected with the rotary cutting seat 613 and drives the rotary cutting seat 613 to rotate synchronously with the rotary cutting shaft 614, and the upper end is connected with the bevel gear set A 616; one end of the slicing driving shaft 617 is connected with the bevel gear set A 616, and the other end is connected with a slicing motor 64 through a slicing shaft coupling 63.
[0032] The adjusting knob 612 is threadedly connected with the lower end of the rotary cutting shaft 614, the rotary cutting baffle 610 abuts against the adjusting knob 612, the distance between the rotary cutting baffle 610 and the rotary cutting blade 611 is changed by rotating the adjusting knob 612, and therefore the thickness of the slice is adjusted.
[0033] The shaft segment, where the rotary cutting shaft 614 is connected with the rotary cutting seat 613, is a prism.
[0034] Referring to Figure 6 The feeding mechanism 62 includes a feeding box body 620, an extrusion spring 621, a feeding box cover 622, an extrusion rod 623 and an extrusion block 624; the feeding box body 620 penetrates through the middle part of the cross plate 4 and is fixed on the cross plate 4; the feeding box cover 622 is connected with the feeding box body 620 through a hinge; the extrusion rod 623 penetrates through the center of the feeding box cover 622, the extrusion rod 623 is sleeved with the extrusion spring 621, the tail end is provided with the extrusion block 624, the extrusion block 624 is pushed by the extrusion spring 621 during slicing, and the material is pushed to slice.
[0035] Referring to Figures 7-9The discharging device 3 comprises a driving motor base 30, a pouring protection cover 31, a driving motor 32, a pouring driving rod 33, a pouring connecting rod 34, a driving shaft 35, a pouring driven rod 36, a pouring basket 37, a discharging plate 38 and a pouring driven shaft 39. The driving motor base 30 is installed on the side of the frame 2. The driving motor 32 is installed on the driving motor base 30 and connected with the driving shaft 35 through a shaft coupling. The driving shaft 35 is installed on one side of the top end of the frame 2 through a bearing seat. The pouring driven shaft 39 is parallel to the driving shaft 35 and installed on the other side of the top end of the frame 2 through a bearing seat. The pouring driving rod 33 is connected with the driving shaft 35 and rotates with the driving shaft 35. A limit pin is arranged at the lower end of the pouring driving rod 33 to ensure that the pouring connecting rod 34 can only rotate above the pouring driving rod 33. The pouring driven rod 36 is connected with the pouring driven shaft 39. The length of the pouring driven rod 36 is greater than the distance from the pouring driven shaft 39 to the center of the pouring basket 37, so as to reduce the required torque during discharging. The pouring connecting rod 34 connects the pouring driving rod 33 and the pouring driven rod 36. The pouring connecting rod 34, the pouring driving rod 33, the pouring driven rod 36 and the frame form a four-bar mechanism. The lengths of the three rods are reasonably set so that the pouring connecting rod 34 can only rotate in the direction shown in the figure. The pouring driving rod 33, the pouring connecting rod 34 and the pouring driven rod 36 are all provided with two symmetrical structures arranged at the two ends of the driving shaft 35, so as to ensure the stability and reliability of the structure. The pouring basket 37 is arranged directly above the center of the frying pot 7 and used for containing fried materials. The pouring basket 37 has a circular table structure with a large upper end and a small lower end, so as not to interfere with the frying pot 7 during discharging. The pouring basket 37 is fixedly connected with the pouring driven rod 36 and rotates with the pouring driven rod 36. The discharging plate 38 is arranged on the side of the pouring basket 37 close to the pouring driven shaft 39. The pouring protection cover 31 is arranged outside the driving motor 32. Figure 8
[0036] Referring to Figure 10 , the residue discharging device 8 comprises a residue discharging pipe 80, a residue discharging electromagnetic valve 81, a residue storage 82, a residue falling electromagnetic valve 83, a residue falling pipe 84, a water injection port 85, a pressure relief pipe 86, a water tank 87, a water inlet electromagnetic valve 88 and a water inlet pipe 89; the residue storage 82 is provided with mounting side plates on the front and back sides and is mounted on the middle layer cross beam of the rack 2 through the mounting side plates; the residue discharging pipe 80 is arranged directly below the residue storage 82 and is provided with the residue discharging electromagnetic valve 81 for controlling the on-off of the residue discharging pipe, and the residue discharging electromagnetic valve 81 is a normally closed electromagnetic valve; the residue falling pipe 84 is arranged directly above the residue storage 82 and is connected with the residue discharging port of the fryer 7, the residue falls into the residue storage through the residue discharging port and the residue falling pipe and is accumulated, the residue falling pipe 84 is provided with the residue falling electromagnetic valve 83, and the residue falling electromagnetic valve 83 is a normally open electromagnetic valve; the water tank 87 is mounted on the right side of the middle layer cross beam of the rack 2, is not sealed and is communicated with the atmosphere, is provided with a liquid level meter on the water tank 87 for observing the water surface height in the water tank, and the water surface in the water tank 87 is not higher than the pressure relief pipe; the water injection port 85 is arranged on the right side of the upper surface of the water tank, and water is manually added to the water tank 87 through the water injection port 85; the water inlet pipe 89 is arranged on the right side of the residue storage 82, the other end of the water inlet pipe 89 is connected with the lower surface of the water tank 87, and the water inlet pipe 89 is used for adding water to the residue storage 82 after residue discharging; the water inlet electromagnetic valve 88 is mounted on the horizontal section of the water inlet pipe 89, and the water inlet electromagnetic valve 88 is a normally closed electromagnetic valve; one end of the pressure relief pipe 86 is arranged on the right side of the upper surface of the residue storage 82, the other end is connected with the left top of the water tank 87, and the pressure relief pipe 86, the residue storage 82, the water inlet pipe 89 and the water tank 87 form a communicating vessel, and the pressure relief pipe 86 plays a pressure regulating role in the process of adding water to the residue storage 82.
[0037] The working principle and use process of the utility model are as follows:
[0038] (1) before frying, the material is put into the feeding box 620, the water pipe is connected to the water injection port 85, the water tank 87 is filled with water, and then the water pipe is removed;
[0039] (2) the power is turned on, the water inlet electromagnetic valve 88 is opened through the control box 9, the residue storage 82 is filled with water, then the residue storage 82 is closed, the oil outlet 1 is kept closed, the edible oil is added to the fryer 7, and then the power is turned off;
[0040] (3) the slice device 6 is started through the control box 9, the rotary cutting mechanism 61 is driven to rotate by the slice motor 64, the rotation of the rotary cutting blade 611 is the main motion, the extrusion spring 621 is pushed by the elastic force of the extrusion spring 621, the material is moved downward as the feeding motion, the material slicing is realized, and the sliced material falls into the dumping fry basket 37 under the action of gravity, and the thickness of the slices can be changed by adjusting the rotary knob 612;
[0041] (4) the heating pipe is started to heat the edible oil through the control box 9, and the frying temperature can be changed through the control box 9;
[0042] (5) After starting heating, the stirring device 5 is started to stir the material by the control box 9 to ensure uniformity of frying, the normally open slag falling electromagnetic valve 83 is kept open during the frying process, and the generated slag is gathered into the slag storage device 82 through the slag falling pipe 84, and the normally closed slag discharge electromagnetic valve 81 and the water inlet electromagnetic valve 88 are kept closed during the frying process;
[0043] (6) After the frying is completed, the discharging device 3 is started through the control box 9, the driving motor 32 is started, the rotation speed, rotation direction and rotation time of the driving motor 32 are controlled by programming, the dumping driving rod 33 is rotated through the driving shaft 35, the dumping connecting rod 34 and the dumping driven rod 36 drive the dumping frying basket 37 to rotate around the dumping rotating shaft 39, the driving motor 32 is temporarily stopped when the dumping frying basket 37 is 3-5 cm away from the oil surface, and a certain time is kept to drain the excess oil in the product, then the driving motor 32 continues to rotate to the discharging position for discharging, and the discharging device 3 is reset after the discharging is completed;
[0044] (7) When the slag is discharged, the slag falling electromagnetic valve 83 is closed and the slag discharge electromagnetic valve 81 is opened through the control box 9, the slag and water in the slag storage device 82 are discharged, the water inlet electromagnetic valve 88 can be opened to flush and discharge the slag, the slag discharge electromagnetic valve 81 is closed after the slag discharge is completed, the water inlet electromagnetic valve 88 is opened to add water to the slag storage device 82, the water inlet electromagnetic valve 88 is closed after the water is filled, and the slag falling electromagnetic valve 83 is opened, and the slag discharge process is completed;
[0045] (8) Repeat steps 3-7 to complete multiple frying work;
[0046] (9) When cleaning, the switch of the oil outlet 1 electromagnetic valve is opened through the control box 9, the edible oil in the upper layer is discharged, water is added to the frying pot 7, the stirring device 5 is started to stir and clean, the slag discharge electromagnetic valve 81 is opened to discharge the residual slag and cleaning waste liquid, and the cleaning work is completed.
[0047] The above is only a preferred specific embodiment of the present application, the protection scope of the present application is not limited thereto, any skilled person in the technical field can obtain simple changes or equivalent replacements of the technical solutions within the technical range disclosed by the present application, which falls within the protection scope of the present application.
Claims
1. A slice fryer with easy dross removal, characterized in that: The frying machine is composed of an oil outlet (1), a frame (2), a discharging device (3), a cross plate (4), a stirring device (5), a slicing device (6), a frying pot (7), a residue discharging device (8) and a control box (9); the discharging device (3) is installed on the top of the frame (2), and the cross plate (4) is installed above the discharging device (3); the slicing device (6) is installed on the front side of the top of the cross plate (4), and the stirring device (5) is installed on the rear side of the top of the cross plate (4); the frying pot (7) is installed in the frame (2) below the discharging device (3); the oil outlet (1) is arranged at the bottom end on the left side of the frying pot (7); the residue discharging device (8) is installed in the middle layer of the frame (2) and is connected with the frying pot (7); and the control box (9) is installed at the left front end of the middle layer of the frame (2). The slicing device (6) comprises a rotary cutting mechanism (61), a feeding mechanism (62), a slicing shaft coupling (63) and a slicing motor (64); the rotary cutting mechanism (61) is connected with the slicing motor (64) through the slicing shaft coupling (63); and the feeding mechanism (62) is installed on the cross plate (4).
2. A slice fryer with easy slagging according to claim 1, characterized in that: The slicing device (6) is composed of a slicing motor base (60), a rotary cutting mechanism (61), a feeding mechanism (62), a slicing shaft coupling (63), a slicing motor (64) and a slicing protective cover (65); the slicing motor (64) is installed on the front side of the cross plate (4) through the slicing motor base (60) and is connected with the rotary cutting mechanism (61) through the slicing shaft coupling (63) and is provided with the slicing protective cover (65) on the outside; and the rotary cutting mechanism (61) is installed on the cross plate (4) through a slicing bearing base (615).
3. A slice fryer with easy slagging according to claim 2, characterized in that: The rotary cutting mechanism (61) is composed of a rotary cutting baffle (610), a rotary cutting blade (611), an adjusting knob (612), a rotary cutting seat (613), a rotary cutting shaft (614), a slicing bearing seat (615), a bevel gear set A (616) and a slicing driving shaft (617); the rotary cutting baffle (610) is located below the horizontal plate (4) and is connected with the lower end of the rotary cutting shaft (614) through the adjusting knob (612), and two cutting grooves are evenly arranged on the rotary cutting baffle (610); the rotary cutting seat (613) is arranged above the rotary cutting baffle (610), the upper segment is fixedly connected with the rotary cutting shaft (614), the lower segment is matched with the rotary cutting baffle (610) and drives the rotary cutting baffle (610) to rotate synchronously with the rotary cutting seat (613), and the rotary cutting seat (613) is parallel to the cutting grooves on the rotary cutting baffle (610); the rotary cutting blade (611) is installed on the lower surface of the rotary cutting seat (613); the rotary cutting shaft (614) is installed on the horizontal plate (4) through the slicing bearing seat (615), the lower segment of the rotary cutting shaft (614) is matched with the rotary cutting baffle (610) in a clearance fit mode, the middle segment is connected with the rotary cutting seat (613) and drives the rotary cutting seat (613) to rotate synchronously with the rotary cutting shaft (614), and the upper end is connected with the bevel gear set A (616); one end of the slicing driving shaft (617) is connected with the bevel gear set A (616), and the other end is connected with the slicing motor (64) through a slicing shaft coupling (63).
4. A slice fryer with easy slagging according to claim 3, characterized in that: The adjusting knob (612) is threadedly connected with the lower end of the rotary cutting shaft (614), the rotary cutting baffle (610) abuts against the adjusting knob (612), the distance between the rotary cutting baffle (610) and the rotary cutting blade (611) is changed by rotating the adjusting knob (612), and therefore the thickness of the slice is adjusted.
5. A slice fryer with easy slagging according to claim 3, characterized in that: The shaft segment, which is connected with the rotary cutting seat (613), of the rotary cutting shaft (614) is a prism.
6. A low residue slicing fryer as claimed in claim 2 wherein: The feeding mechanism (62) is composed of a feeding box body (620), an extrusion spring (621), a feeding box cover (622), an extrusion rod (623) and an extrusion block (624); the feeding box body (620) penetrates through the middle part of the horizontal plate (4) and is fixed on the horizontal plate (4); the feeding box cover (622) is connected with the feeding box body (620) through a hinge; the extrusion rod (623) penetrates through the center of the feeding box cover (622), the extrusion spring (621) is sleeved on the extrusion rod (623), and the extrusion block (624) is installed at the tail end of the extrusion rod (623).
7. A self-skimming slice fryer as claimed in claim 1 wherein: The discharge device (3) is composed of a driving motor base (30), a pouring protection cover (31), a driving motor (32), a pouring driving rod (33), a pouring connecting rod (34), a driving shaft (35), a pouring driven rod (36), a pouring basket (37), a discharge plate (38) and a pouring driven shaft (39). The driving motor base (30) is installed on the side of the rack (2). The driving motor (32) is installed on the driving motor base (30) and connected with the driving shaft (35) through a shaft coupling. The driving shaft (35) is installed on one side of the top end of the rack (2) through a bearing seat. The pouring driven shaft (39) is parallel to the driving shaft (35) and installed on the other side of the top end of the rack (2) through a bearing seat. The pouring driving rod (33) is connected with the driving shaft (35), and a limiting pin is arranged at the lower end of the pouring driving rod (33). The pouring driven rod (36) is connected with the pouring driven shaft (39). The pouring connecting rod (34) connects the pouring driving rod (33) and the pouring driven rod (36). The pouring driving rod (33), the pouring connecting rod (34) and the pouring driven rod (36) are all arranged in two and symmetrically arranged at both ends of the driving shaft (35). The pouring basket (37) is arranged in the center of the frying pan (7) and fixedly connected with the pouring driven rod (36). The discharge plate (38) is arranged on the side close to the pouring driven shaft (39) of the pouring basket (37). The pouring protection cover (31) is arranged outside the driving motor (32).
8. A self-skimming slice fryer as claimed in claim 1 wherein: The slag discharge device (8) is composed of a slag discharge pipe (80), a slag discharge electromagnetic valve (81), a slag storage device (82), a slag falling electromagnetic valve (83), a slag falling pipe (84), a water inlet (85), a pressure relief pipe (86), a water tank (87), a water inlet electromagnetic valve (88) and a water inlet pipe (89). The slag storage device (82) is provided with mounting side plates on the front and rear sides and mounted on the middle layer cross beam of the rack (2) through the mounting side plates. The slag discharge pipe (80) is arranged directly below the slag storage device (82) and provided with the slag discharge electromagnetic valve (81) mounted thereon. The slag falling pipe (84) is arranged directly above the slag storage device (82) and connected with the slag discharge port of the frying pan (7). The slag falling electromagnetic valve (83) is mounted on the slag falling pipe (84). The water tank (87) is mounted on the cross beam on the right side of the middle layer of the rack (2). The water inlet (85) is arranged on the right side of the upper surface of the water tank. The water inlet pipe (89) is arranged on the right side of the slag storage device (82), and the other end of the water inlet pipe (89) is connected with the lower surface of the water tank (87). The water inlet electromagnetic valve (88) is mounted on the horizontal section of the water inlet pipe (89). One end of the pressure relief pipe (86) is arranged on the right side of the upper surface of the slag storage device (82), and the other end is connected with the left top of the water tank (87).
Citation Information
Patent Citations
Automatic feeding frying machine
CN221430043U