Fryer with filtering object collecting function
By setting up food conveyor belts and residue removal components in the fryer, efficient residue removal in the fryer is achieved, solving the problem that batter residue cannot be completely removed, and improving food safety and taste.
Patent Information
- Application Number
- CN202422705007.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-05
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2034-11-05
AI Technical Summary
During the frying process of existing fryers, the batter residue cannot be completely removed, resulting in the deterioration of the oil and affecting the taste and safety of the food.
A fryer is designed with a built-in food conveyor belt and slag removal assembly, including a baffle and a curved filter plate. The slag removal is achieved twice through the movement of the food conveyor belt. The baffle and arc filter plate are used to form a residue storage space, and the residue is collected and poured out as the conveyor belt moves.
Effectively remove floating residues in the fryer, improve residue removal efficiency, avoid the problem of residue adhering to food and deteriorating oil, and ensure food quality and safety.
Smart Images

Figure CN223262206U_ABST
Abstract
Description
Technical Field
[0001] The present application belongs to the technical field of food processing equipment, and in particular relates to a fryer with a function of collecting and filtering materials. Background Art
[0002] When preparing fried food, the food is coated with batter to form the food, which is then placed in a deep fryer (refer to the fryer manufactured by Shijiazhuang Derui Machinery Manufacturing Co., Ltd.). However, during the frying process, a small amount of batter coating the food can separate from the food and remain inside the fryer. This remaining batter cannot be removed from the fryer along with the finished food. This residual batter is then repeatedly fried in the fryer, forming a black residue. This black residue darkens the color of subsequent fried foods, affecting their taste and being unhealthy. Furthermore, this black residue can deteriorate the oil quality, increasing its acid value. In severe cases, it can accumulate and come into contact with the heating device, hindering heat conduction.
[0003] For example, the invention patent with publication number "CN201920950086.2" discloses an upper partition and a lower partition connected, and the top of the upper partition is bolted to an electromagnetic heater. The top of the box is placed on the top of the pot, and a mounting bracket with an inverted U-shaped cross-section is hinged to one side of the top of the box, and a stepper motor is bolted to the top center of the mounting bracket. In this utility model, cooking oil is placed inside the pot and heated by the electromagnetic heater. When frying, the food is placed inside the mesh basket and placed in the hot oil. During the frying process, the stepper motor is started, driving two stainless steel filter screens to rotate at the bottom end of the pot, which can filter food residues that fall into the cooking oil. The user regularly lifts the mounting bracket to take out the two stainless steel filter screens for cleaning, so that the fryer has a good oil filtering function and improves the frying quality.
[0004] Although the above-mentioned invention patent filters the residue, during the frying process, some residue will float in the oil and will not fall into the stainless steel filter, resulting in residue still remaining in the oil. Summary of the Invention
[0005] In view of this, it is necessary to provide a method for solving the problem of incomplete removal of residues during the oil pan removal process.
[0006] The solution to the technical problem described in this application is:
[0007] A fryer with a function of collecting filtered materials, comprising:
[0008] A fryer, wherein a food conveyor belt is provided in a cavity of the fryer, and the food conveyor belt is movable in the fryer for driving the food to move;
[0009] A slag removal assembly includes a baffle and a curved filter plate, one end of the baffle is fixedly connected to the food conveyor belt, the other end of the baffle is provided with a hinge, the hinge is hinged to one end of the curved filter plate, the other end of the curved filter plate is in contact with the food conveyor belt and is arranged in the direction of rotation of the food conveyor belt, the food conveyor belt, the baffle and the curved filter plate form a residue storage space.
[0010] Preferably, the hinge comprises a slot and a strip, the slot is provided at the other end of the baffle, the strip is provided at one end of the arc-shaped filter plate, and the slot and the strip are rotatably matched.
[0011] Preferably, a direction limiting plate is obliquely provided on the card slot, and the extending direction of the direction limiting plate is toward the rotation direction of the food conveyor belt, so as to limit the rotation angle of the arc filter plate.
[0012] Preferably, the arc-shaped filter plate is provided with a plurality of filter holes, and the apertures of the filter holes gradually become smaller along the direction of the hinge and the food conveyor belt.
[0013] Preferably, oil outlet areas are provided on both sides of the baffle, a plurality of oil outlet holes are opened in the oil outlet areas, and the aperture of the oil outlet holes is smaller than the aperture of the filter holes.
[0014] Preferably, the baffle and the arc-shaped filter plate are both made of stainless steel.
[0015] Preferably, a plurality of slag removal assemblies are arranged at equal intervals along the length direction of the food conveyor belt.
[0016] The present application adopts a technical solution of a fryer with a function of collecting and filtering materials to achieve the following beneficial effects:
[0017] The deslagging component can remove the residue floating in the edible oil in the fryer, and the deslagging component can pour out the residue in the residue storage space as the food conveyor belt moves, so as to facilitate use.
[0018] The deslagging component can move along with the food conveyor belt. When the food conveyor belt rotates a closed loop, the deslagging component performs two deslagging operations on the fryer, thereby improving the deslagging efficiency.
[0019] The deslagging assembly is only a baffle and an arc-shaped filter plate installed on the food conveyor belt, which will not increase the operating load of the fryer. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 This is a diagram of the apparatus of a fryer with the function of collecting filtered materials in this application.
[0021] Figure 2 This is a schematic diagram of the structure of the slag removal component in this application.
[0022] In the figure: fryer 10, food conveyor belt 101, slag removal assembly 20, baffle 201, hinge 2011, slot 2012, clamping strip 2013, direction limit plate 2014, oil outlet area 2015, oil outlet hole 2016, arc filter plate 202, filter hole 2021. DETAILED DESCRIPTION
[0023] In order to more clearly illustrate the technical solutions of the embodiments of the present application, a brief introduction to the drawings required for use in the embodiments will be given below. Obviously, the drawings described below are some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.
[0024] Please see Figures 1 to 2 , a frying pan with a function of collecting filtered materials, comprising:
[0025] A fryer 10, wherein a food conveyor belt 101 is provided in a cavity of the fryer 10, and the food conveyor belt 101 is movable in the fryer 10 for moving food;
[0026] The slag removal component 20 includes a baffle 201 and a curved filter plate 202. One end of the baffle 201 is fixedly connected to the food conveyor belt 101. The other end of the baffle 201 is provided with a hinge 2011. The hinge 2011 is hinged to one end of the curved filter plate 202. The other end of the curved filter plate 202 is in contact with the food conveyor belt 101 and is arranged in the direction of rotation of the food conveyor belt 101. The food conveyor belt 101, the baffle 201 and the curved filter plate 202 form a residue storage space.
[0027] The shape and composition of the fryer 10 can refer to the fryer 10 prepared by Shijiazhuang Derui Machinery Preparation Co., Ltd., edible oil is loaded into the fryer 10, and the food conveyor 101 forms a closed loop and can rotate in the fryer 10. When in use, food is placed on the food conveyor 101, and the edible oil is fried in the edible oil through the operation of the food conveyor 101. Thereafter, as the food conveyor 101 rotates, the fried food is removed from the edible oil, completing the food frying operation; and when the food conveyor 101 is set, the food conveyor 101 is set obliquely in the fryer 10, that is, the height of the outlet is higher than the height of the inlet. When the food reaches the outlet of the fryer 10, since the food conveyor 101 is set obliquely, the excess oil is drained back into the fryer 10 under the action of gravity and the flow force of the edible oil.
[0028] At this time, in order to remove the residue generated by the frying machine 10 during the frying process, a residue removal component 20 is set on the food conveyor belt 101 to prevent the residue from sticking to the fried food and causing turbidity in the cooking oil.
[0029] When setting, one end of the baffle 201 is fixedly connected to the food conveyor belt 101 and is vertically arranged on the food conveyor belt 101. The other end of the baffle 201 is provided with a hinge 2011. One end of the arc filter plate 202 is connected to the hinge 2011. The arc top filter plate is a quarter ellipse, that is, the arc filter plate 202 is buckled on the baffle 201. The residue storage space formed by the baffle 201 and the arc filter plate 202 is an arc-shaped filtering space, which is a quarter elliptical filtering space. When setting, the other end of the arc filter plate 202 is not fixedly connected to the food conveyor belt 101 and can be in contact with or not in contact with the food conveyor belt 101 as the position changes; at the same time, the two ends of the baffle 201 are connected to the two ends of the food conveyor belt 101, and the edge of the arc filter plate 202 is buckled on the baffle 201.
[0030] When in use, the slag removal component 20 moves with the movement of the food conveyor belt 101. First, the slag removal component 20 is located above the food conveyor belt 101. At this time, the residue storage space formed by the slag removal component 20 and the baffle 201 is in a closed state. At this time, the closed state is that the other end of the arc filter plate 202 is in contact with the food conveyor belt 101, and the first slag removal operation is performed. When the slag removal component 20 is transported to the corner with the food conveyor belt 101, the other end of the arc filter plate 202 slowly moves away from the food conveyor belt 101 and does not come into contact with it. At this time, most of the residues in the residue storage space are The residue will fall out from the gap between the arc filter plate 202 and the food conveyor belt 101; then as the food conveyor belt 101 rotates, the residue removal component 20 is located below the food conveyor belt 101, and under the action of gravity, the other end of the arc filter plate 202 is separated from the food conveyor belt 101. At this time, the residue that has not fallen out will fall into the residue storage space near the hinge 2011, and finally as the food conveyor belt 101 moves, and the residue removal component 20 performs a second residue removal operation during the process; the residue removal component 20 is again located above the food conveyor belt 101, realizing the circular motion and residue removal operation of the residue removal component 20.
[0031] The residue enters the residue storage space through the filter holes 2021 opened on the arc-shaped filter plate 202. At this time, since the baffle 201 is a solid plate, the residue will not leak out of the residue storage space.
[0032] The present application adopts a technical solution of a fryer with a function of collecting and filtering materials to achieve the following beneficial effects:
[0033] The deslagging assembly 20 can remove the residue floating in the edible oil in the fryer 10, and the deslagging assembly 20 can pour out the residue in the residue storage space as the food conveyor belt 101 moves, so as to facilitate use.
[0034] The deslagging assembly 20 can move along with the food conveyor belt 101. When the food conveyor belt 101 rotates a closed loop, the deslagging assembly 20 performs two deslagging operations on the fryer 10, thereby improving the deslagging efficiency.
[0035] The deslagging assembly 20 is merely a baffle 201 and an arc-shaped filter plate 202 installed on the food conveyor belt 101 , which does not increase the operating load of the fryer 10 .
[0036] Specifically, the hinge 2011 includes a slot 2012 and a strip 2013 . The slot 2012 is provided at the other end of the baffle 201 , and the strip 2013 is provided at one end of the arc filter plate 202 . The slot 2012 and the strip 2013 are rotatably matched.
[0037] When in use, the slot 2012 is provided at the other end of the baffle 201, and the clip strip 2013 is provided at one end of the arc filter plate 202, and the slot 2012 and the clip strip 2013 are rotatably matched to realize the function that the arc filter plate 202 can rotate. In this application, the function of the hinge 2011 is to connect the baffle 201 and the arc filter plate 202 and provide a way for the arc filter plate 202 to rotate. Of course, the form of the hinge 2011 is not limited to the scheme mentioned in this application, and other hinges 2011 can also be selected according to actual conditions.
[0038] In a preferred embodiment, a direction limiting plate 2014 is obliquely provided on the card slot 2012 , and the extending direction of the direction limiting plate 2014 is toward the rotation direction of the food conveyor belt 101 , so as to limit the rotation angle of the arc filter plate 202 .
[0039] In order to prevent the arc filter plate 202 from opening at an excessively large angle or from being unable to be retracted after opening (causing the arc filter plate 202 to be stuck at the outlet of the fryer 10, thereby preventing the food conveyor belt 101 from rotating and even causing damage to the fryer 10), a direction limiting plate 2014 is obliquely arranged on the card slot 2012, and the direction limiting plate 2014 can limit the opening angle of the arc filter plate 202.
[0040] In a preferred embodiment, a plurality of filter holes 2021 are provided on the arc-shaped filter plate 202 , and the apertures of the filter holes 2021 gradually decrease along the direction of the hinge 2011 and the food conveyor belt 101 .
[0041] The larger the volume of the residue, the closer it is to the surface of the cooking oil (because the larger the area, the greater the buoyancy). At this time, in order to prevent the residue collected in the residue storage space from flowing out of the filter hole 2021 (part of the residue will gather and agglomerate in the residue storage space, and thus slowly fall), and re-enter the cooking oil, and to facilitate the layered collection of the residue (common sense shows that the residue settled at the bottom becomes black and has a smaller particle size), when setting the filter hole 2021, the closer the filter hole 2021 is to the food conveyor belt 101, the smaller it is; at the same time, when the residue removal component 20 is located below the food conveyor belt 101, under the action of gravity, the residue is accumulated in the residue storage space (close to one end of the hinge 2011) in the form of blocks, and will not flow out of the filter hole 2021 and re-enter the cooking oil.
[0042] Preferably, oil outlet areas 2015 are provided on both sides of the baffle 201 , and a plurality of oil outlet holes 2016 are opened in the oil outlet area 2015 . The aperture of the oil outlet holes 2016 is smaller than the aperture of the filter hole 2021 .
[0043] The entire residue storage space in the fryer 10 is filled with cooking oil. Then, as the food conveyor 101 rotates, the residue removal assembly 20 moves to the outlet of the fryer 10. At this time, the food conveyor 101 is arranged at an angle, and the advantage of such an arrangement is that it is convenient for oil drainage. At this time, the cooking oil flows back into the fryer 10 from both sides of the baffle 201 at a relatively slow speed. In order to speed up the oil drainage in the present application, oil outlet areas 2015 are provided on both sides of the baffle 201. At this time, a plurality of oil outlet holes 2016 are provided in the oil outlet area 2015. During the oil drainage process, a part of the cooking oil flows back into the fryer 10 from both sides of the baffle 201, and the other part flows back into the fryer 10 from the oil outlet holes 2016, thereby improving the oil drainage efficiency. It should be clear that the residue cannot flow out from the oil outlet holes 2016.
[0044] In a preferred embodiment, the baffle 201 and the arc-shaped filter plate 202 are both made of stainless steel.
[0045] Since the temperature inside the fryer 10 is relatively high, the baffle 201 and the arc-shaped filter plate 202 are both made of stainless steel to avoid the generation of harmful substances under high temperature conditions. Stainless steel is more durable and easier to clean.
[0046] Furthermore, the food conveyor belt 101 is provided with a plurality of slag removal assemblies 20 equidistantly arranged along the length direction.
[0047] In order to improve the deslagging efficiency, a plurality of deslagging components 20 can be evenly spaced on the food conveyor belt 101. As the food conveyor belt 101 rotates, the residue in the fryer 10 is collected multiple times to achieve the purpose of deslagging.
[0048] The above disclosure is only a preferred embodiment of the present application, and it is certainly not intended to limit the scope of the rights of the present application. A person skilled in the art can understand that all or part of the processes of the above embodiments and equivalent changes made in accordance with the claims of the present application are still within the scope of the present application.
Claims
1. A fryer with a function of collecting filtered materials, characterized in that: include: A fryer, wherein a food conveyor belt is provided in a cavity of the fryer, and the food conveyor belt is movable in the fryer for driving the food to move; A slag removal assembly includes a baffle and a curved filter plate, one end of the baffle is fixedly connected to the food conveyor belt, the other end of the baffle is provided with a hinge, the hinge is hinged to one end of the curved filter plate, the other end of the curved filter plate is in contact with the food conveyor belt and is arranged in the direction of rotation of the food conveyor belt, the food conveyor belt, the baffle and the curved filter plate form a residue storage space.
2. The fryer with the function of collecting filtered materials according to claim 1, characterized in that: The hinge comprises a clamping slot and a clamping strip, wherein the clamping slot is arranged at the other end of the baffle, and the clamping strip is arranged at one end of the arc-shaped filter plate, and the clamping slot and the clamping strip are rotatably matched.
3. The fryer with the function of collecting filtered materials according to claim 2, characterized in that: A direction limiting plate is obliquely provided on the card slot, and the extending direction of the direction limiting plate is toward the rotation direction of the food conveyor belt, so as to limit the rotation angle of the arc filter plate.
4. The fryer with the function of collecting filtered materials according to claim 2, characterized in that: The arc-shaped filter plate is provided with a plurality of filter holes, and the diameters of the filter holes gradually decrease along the direction of the hinge and the food conveyor belt.
5. The fryer with the function of collecting filtered materials according to claim 4, characterized in that: Oil outlet areas are provided on both sides of the baffle, and a plurality of oil outlet holes are opened in the oil outlet areas. The aperture of the oil outlet holes is smaller than the aperture of the filter holes.
6. The fryer with the function of collecting filtered materials according to claim 1, characterized in that: The baffle and the arc-shaped filter plate are both made of stainless steel.
7. The fryer with the function of collecting filtered materials according to claim 1, characterized in that: The food conveyor belt is provided with a plurality of slag removal assemblies at equal intervals along the length direction.
Citation Information
Patent Citations
Fryer with oil filtering function
CN210227878U