A low-adhesion frying machine

Through the design of a low-adhesive frying machine, the food is divided by bubbles and spiral intervals, and the continuous frying of food is achieved by combining the limiting parts and moving plates, which solves the problem of adhesion and quality inconsistent frying food, and improves the frying efficiency and food quality.

CN115968919BActive Publication Date: 2025-07-22SHANDONG INST FOR FOOD & DRUG CONTROL
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Patent Information

Application Number
CN202310190882.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-02
Publication Date
2025-07-22
Estimated Expiration
2043-03-02

AI Technical Summary

Technical Problem

In the prior art, foods are prone to sticking when fried, and it is difficult to ensure consistency in the quality of frying, and the manual flip method is inefficient.

Method used

A low-adhesive frying processing machine is used to generate bubbles in the oil using a planar scroll plate and a bubble generator. The food is divided by spiral intervals, and the food is continuously fryed and detached with the limiting parts and moving plates. The oil circulation and heat exchange are used to reduce the oil temperature.

Benefits of technology

Effectively reduce food adhesions, ensure consistency of frying time, improve frying efficiency, reduce oil pollution and temperature fluctuations, and ensure food quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a low-adhesion frying machine, which comprises a moving frame and a housing with an open upper end. A rotating flat scroll plate is arranged in the inner cavity of the housing, and a driving member for driving the flat scroll plate to rotate is installed on the housing. A groove is arranged along the radial direction at the bottom side of the inner cavity of the housing, and an air pipe is arranged in the groove. One end of the air pipe penetrates through and extends to the outside of the groove, and the other end of the air pipe is installed with a bubble generator, and the bubble generator is located below the center of the flat scroll plate. The moving frame comprises a fixed frame installed on the housing, two rotating guide wheels are installed on the fixed frame, a rotating belt is installed between the guide wheels, a plurality of vertically moving limiting members are installed on the outer side of the rotating belt, and a guide plate is installed on the fixed frame. This low-adhesion frying machine separates foods during the frying process, reduces the adhesion between foods, and ensures the frying effect of foods.
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Description

Technical Field

[0001] The present invention relates to the technical field of food processing, and particularly to a low-adhesion frying machine. Background Art

[0002] When processing fried foods, the foods are put into heated edible oil, and the heat of the oil makes the surface temperature of the foods rise rapidly, the moisture vaporizes, and a dry hard shell is formed on the surface. Moreover, the heat of the oil transfers to the inside of the foods, and the internal temperature of the foods also gradually rises.

[0003] When frying foods such as twist dough sticks, spring rolls, and meatballs, if the feeding is concentrated, it is easy to cause the foods to pile up and stick to each other, making it difficult to disperse them, and it is easy to have problems such as some foods being under-fried and some foods being over-fried. In the prior art, the method of decentralized feeding and manual turning is often used for frying, and the manually separated foods close to each other are avoided from sticking. The timing of food turning and the frying time are judged according to manual experience, and it is difficult to ensure the consistency of the quality of fried foods. Summary of the Invention

[0004] The technical problem to be solved by the present invention is to overcome the existing defects and provide a low-adhesion frying machine, which divides the foods during the frying process, reduces the adhesion between the foods, ensures the frying effect of the foods, and the same frying time ensures the consistency of the quality of fried foods, and can effectively solve the problems in the background art.

[0005] To achieve the above object, the present invention provides the following technical solution: A low-adhesion frying machine includes a moving frame and a housing with an open upper end. A rotating flat scroll plate is provided in the inner cavity of the housing, and a driving member for driving the flat scroll plate to rotate is installed on the housing.

[0006] A groove is provided along the radial direction at the bottom side of the inner cavity of the housing. An air pipe is provided in the groove. One end of the air pipe penetrates and extends outside the groove, and the other end of the air pipe is installed with a bubble generator, and the bubble generator is located below the center of the flat scroll plate.

[0007] The moving frame includes a fixed frame installed on the housing. Two rotating guide wheels are installed on the fixed frame. A rotating belt is installed between the guide wheels. A plurality of vertically moving limiting members are installed on the outer side of the rotating belt, and a guide plate is installed on the fixed frame.

[0008] Wherein, the guide plate presses down the limiting members on one side of the rotating belt into the pitch intervals of the flat scroll plate.

[0009] The limiting member includes a moving plate. A guiding member is fixed on the rotating belt. The moving plate moves up and down along the guiding member. An elastic member for pushing the moving plate upward is installed between the moving plate and the guiding member. Two pressing plates are fixed in the vertical direction at the lower part of the moving plate.

[0010] As a preferred technical solution of the present invention, a rotating plate one is installed at the outer end of the planar scroll plate, and an elastic reset member one is installed on the planar scroll plate. The rotating plate one is in sliding fit with the inner wall of the housing.

[0011] A rotating plate two is installed on the inner wall of the housing. An elastic reset member two is installed on the housing. The rotating plate two is in sliding fit with the side surface of the planar scroll plate.

[0012] A connection hole two is opened at a position near the outer edge at the bottom side of the inner cavity of the housing. A connection hole one is opened at a position corresponding to the center of the planar scroll plate at the bottom side of the inner cavity of the housing. The connection hole one and the connection hole two are connected through a conduit.

[0013] As a preferred technical solution of the present invention, the groove is arranged along the radial direction of the planar scroll plate, and the groove is located within the horizontal projection of the planar scroll plate.

[0014] As a preferred technical solution of the present invention, a placing plate is installed on the side surface of the housing above the planar scroll plate. One end of the placing plate extends below one of the moving frames, and the placing plate is not below the guiding member.

[0015] As a preferred technical solution of the present invention, one end of the scraping rod is connected to the side surface of the placing plate, and the other end of the scraping rod extends into the space between the two pressing plates of one of the moving frames.

[0016] As a preferred technical solution of the present invention, the guiding member is a fixed block fixed on the rotating belt. A vertical clamping hole is opened on the moving plate. The fixed block and the vertical clamping hole are in sliding clamping connection.

[0017] As a preferred technical solution of the present invention, the elastic member is a spring, an elastic metal sheet or an elastic rubber for high-temperature food processing.

[0018] As a preferred technical solution of the present invention, the driving member is a hub motor. The hub motor is installed on the fixed frame, and the hub motor drives one of the guide wheels to rotate. An extension rod extends downward from the guide wheel above the center of the planar scroll plate, and the extension rod is connected to the planar scroll plate.

[0019] As a preferred technical solution of the present invention, the driving member is a reduction motor installed on the lower side of the housing. The output shaft of the reduction motor penetrates and extends into the housing. The output shaft of the reduction motor is connected to the planar scroll plate through a bracket.

[0020] As a preferred technical solution of the present invention, a heat source is installed at the bottom side of the housing.

[0021] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0022] 1. In the low-adhesion frying machine according to the example of the present invention, air is introduced into the bottom of the oil liquid to generate bubbles, and the bubbles in the oil liquid surge upward. On the one hand, the upward surge facilitates the food to enter the spiral pitch interval of the planar scroll plate and fall on the limiting member, realizing the segmentation of different fried foods in space position, avoiding adhesion between foods, and realizing continuous frying of foods; on the other hand, the upward surging oil liquid avoids the food from sinking to the bottom, facilitating the removal of the fried food from the oil liquid by the limiting member, and realizing oil control after the food is separated from the oil liquid.

[0023] 2. In the low-adhesion frying machine according to the example of the present invention, an oil cavity with a gradually decreasing volume is formed between the first rotating plate, the second rotating plate, the inner wall of the housing and the planar scroll plate. The liquid level of the oil liquid in the oil cavity continuously rises, and the oil liquid in the oil cavity enters the center of the planar scroll plate through the conduit under the action of the liquid level difference. The oil liquid entering the center of the planar scroll plate flows outward under the guidance of the planar scroll plate. On the one hand, the flowing oil liquid drives the food to fit on the moving plate, ensuring that the pressing plate drives the food to immerse in the oil liquid and drives the food to separate from the oil liquid; on the other hand, the oil liquid flow promotes the balance of the oil temperature in the housing, ensuring the frying effect of the food.

[0024] 3. In the low-adhesion frying machine according to the example of the present invention, the lower end of the planar scroll plate is slidably attached to the bottom side of the inner cavity of the housing. During the rotation of the planar scroll plate, the residues sinking to the bottom in the oil liquid are pushed into the groove. The oil liquid in the groove exchanges heat with the air flowing through the air pipe, reducing the temperature of the oil liquid in the groove, reducing the oxidation and pollution of the edible oil by the residues, and the air flowing through the air pipe is heated and then generates bubbles through the bubble generator. The bubbles have little influence on the temperature of the oil liquid, reducing the change of the oil liquid temperature to ensure the progress of food frying. Description of the Drawings

[0025] Figure 1 is a schematic structural diagram of one perspective of the present invention;

[0026] Figure 2 is a schematic structural diagram of another perspective of the present invention;

[0027] Figure 3 is a schematic structural diagram of another perspective of the present invention;

[0028] Figure 4 is a schematic structural diagram of another perspective of the present invention;

[0029] Figure 5 is Figure 4 an enlarged schematic diagram of the structure at A of

[0030] Figure 6 is Figure 4 An enlarged schematic view of the structure at position B;

[0031] Figure 7 is Figure 4 An enlarged schematic view of the structure at position C;

[0032] Figure 8 Another perspective structural schematic diagram of the present invention;

[0033] Figure 9 A structural schematic diagram of an embodiment of the mobile rack of the present invention;

[0034] Figure 10 A structural schematic diagram of the moving plate of the present invention;

[0035] Figure 11 A structural schematic diagram of another embodiment of the mobile rack of the present invention.

[0036] In the figure: 1 flat scroll plate, 2 housing, 3 mobile rack, 31 rotating belt, 32 guide wheel, 33 fixed rack, 34 moving plate, 35 guiding member, 36 elastic member, 37 pressing plate, 38 guide plate, 4 placing plate, 5 groove, 6 air pipe, 7 first connection hole, 8 first rotating plate, 9 second connection hole, 10 second rotating plate, 11 driving mechanism, 12 heat source, 13 conduit, 14 bubble generator. Specific embodiments

[0037] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0038] Embodiment 1:

[0039] Please refer to Figures 1-11 , this embodiment discloses a low-adhesion frying machine, including a mobile rack 3 and a cylindrical housing 2 with an open upper end. A rotating flat scroll plate 1 is provided inside the housing 2, and a driving member for driving the flat scroll plate 1 to rotate is installed on the housing 2.

[0040] A groove 5 is provided along the radial direction of the bottom side of the inner cavity of the housing 2. An air pipe 6 is provided in the groove 5. One end of the air pipe 6 penetrates and extends outside the groove 5. The other end of the air pipe 6 is installed with a bubble generator 14, and the bubble generator 14 is located below the center of the flat scroll plate 1. Preferably, the air pipe 6 is serpentinely arranged in the groove 5 along the length direction of the groove 5.

[0041] The moving frame 3 includes a fixed frame 33 installed on the housing 2. Two rotating guide wheels 32 are installed on the fixed frame 33. A rotating belt 31 is installed between the guide wheels 32. And one of the guide wheels 32 is located above the center of the flat spiral plate 1. A number of vertically moving limit members are installed on the outer side of the rotating belt 31. A guide plate 38 is installed on the fixed frame 33.

[0042] Among them, the guide plate 38 presses down the limit member on one side of the rotating belt 31 into the pitch interval of the flat spiral plate 1.

[0043] The limit member includes a moving plate 34. A guide member 35 is fixed on the rotating belt 31. The moving plate 34 moves up and down along the guide member 35. An elastic member 36 for pushing the moving plate 34 to move upward is installed between the moving plate 34 and the guide member 35. Two pressing plates 37 are fixed in the vertical direction at the lower part of the moving plate 34.

[0044] Further, the elastic member 36 is a spring, an elastic metal sheet, a gas spring or an elastic rubber for high-temperature food processing.

[0045] The guide member 35 is a flat plate with both ends upturned, and the height of both ends of the flat plate is greater than the maximum height after the moving plate 34 moves upward.

[0046] One end of the external air source and the air pipe 6 that does not set the bubble generator 14 are connected. The external air source is an air pump or a compressed air tank.

[0047] The bubble generator 14 is a closed metal shell, and a number of openings communicating its inside and outside are opened on the closed metal shell. The area of the openings is 0.3 - 3.0 mm².

[0048] The working process and principle of this embodiment are as follows:

[0049] The housing 2 is filled with heated oil. The driving member drives the flat spiral plate 1 to rotate in the housing 2, and the rotation direction of the flat spiral plate 1 is the same as the spiral direction of the flat spiral plate 1 from the outside to the inside, either clockwise or counterclockwise at the same time. During the rotation of the flat spiral plate 1, every time the flat spiral plate 1 rotates one circle, the moving plate 34 on the moving frame 3 that contacts the flat spiral plate 1 moves outward by a distance of one pitch interval.

[0050] During the rotation of the flat spiral plate 1, the flat spiral plate 1 pushes the moving plate 34 located in the pitch interval of the flat spiral plate 1 towards the inner wall direction of the housing 2, and the rotating belt 31 rotates synchronously with the moving plate 34. When the moving plate 34 moves to the center of the flat spiral plate 1 and continues to move with the rotating belt 31, the moving plate 34 moves downward under the guiding and pressing action of the guide member 35. And before the lower end of the moving plate 34 enters the pitch interval of the flat spiral plate 1, the pressing plate 37 located below the moving plate 34 has been immersed in the oil, and the pressing plate 37 located above the moving plate 34 has not been immersed in the oil.

[0051] An external air source generates bubbles in the center of the plane scroll plate 1 through the air pipe 6 and the bubble generator 14. Each time the plane scroll plate 1 rotates one circle, a food to be fried is placed in the center of the plane scroll plate 1 manually or mechanically, and the bubbles generate oil that surges upward. The rising oil makes the food approach the plane scroll plate 1 and prevents the food from sinking into the oil. The fried food enters the spiral pitch interval of the plane scroll plate 1 during the rotation of the plane scroll plate 1. At this time, the frying is located between the two pressure plates 37 of the movable plate 34. As the plane scroll plate 1 rotates, the movable plate 34 moves downward into the oil, and the two pressure plates 37 of the movable plate 34 move downward to drive the food to be immersed in the oil, thereby achieving food frying.

[0052] When the food approaches the inner wall of the housing 2, the movable plate 34 drives the food to separate from the oil through the pressing plate 37 and rotates to the other side of the rotating belt 31 to control the oil.

[0053] Preferably, the bubbles in the oil are caused to surge upward, which, on the one hand, facilitates the food to enter the spiral pitch interval of the plane scroll plate 1, and on the other hand, forms an upward flow to prevent the food from sinking to the bottom.

[0054] The fried food stays in the oil for the same amount of time, ensuring consistent quality of the food after frying.

[0055] The bubble generator 14 is provided with an installation opening communicating with the inside and outside thereof, and the installation opening is connected to one end of the air pipe 6 , and the air pipe 6 is preferably made of metal.

[0056] Preferably, the plane scroll plate 1, the shell 2, the moving plate 34 and the pressure plate 37 are all made of stainless steel.

[0057] Embodiment 2:

[0058] like Figure 4 , Figure 6 and Figure 7 As shown, this embodiment discloses a low-adhesion frying machine, and its structure is roughly the same as that of the first embodiment, except that a horizontally rotating rotating plate 8 is installed at the outer end of the plane scroll plate 1 of this embodiment, and an elastic reset member 1 is installed on the plane scroll plate 1, and the elastic reset member 1 enables the rotating plate 8 to maintain a sliding fit with the inner wall of the shell 2, and the elastic reset member 1 is a metal elastic sheet or a spring.

[0059] A rotating plate 2 10 is installed on the inner wall of the shell 2, and an elastic reset member 2 is installed on the shell 2. The elastic reset member 2 enables the rotating plate 2 10 to maintain sliding fit with the side of the plane scroll plate 1. The elastic reset member 2 is a metal elastic sheet or a spring.

[0060] A second connection hole 9 is provided at a position near the edge on the bottom side of the inner cavity of the housing 2, and a first connection hole 7 is provided at a position corresponding to the center of the planar scroll plate 1 on the bottom side of the inner cavity of the housing 2. The first connection hole 7 and the second connection hole 9 are connected by a conduit 13, and the conduit 13 is located outside the housing 2.

[0061] Furthermore, the lower ends of the planar scroll plate 1, the first rotating plate 8, and the second rotating plate 10 are all in sliding contact with the bottom side of the inner cavity of the housing 2, and the oil does not overflow the planar scroll plate 1, the first rotating plate 8, and the second rotating plate 10.

[0062] Furthermore, the groove 5 is arranged along the radial direction of the planar scroll plate 1, and the groove 5 is located within the horizontal projection of the planar scroll plate 1.

[0063] The working process and principle of this embodiment are as follows:

[0064] During the rotation of the planar scroll plate 1, the first rotating plate 8 is driven to rotate. An oil chamber with a gradually decreasing volume is formed between the first rotating plate 8, the second rotating plate 10, the inner wall of the housing 2, and the planar scroll plate 1. The liquid level of the oil in this oil chamber continuously rises. Under the action of the liquid level difference, the oil in this oil chamber enters the center of the planar scroll plate 1 through the conduit 13. The oil entering the center of the planar scroll plate 1 flows outward under the guidance of the planar scroll plate 1. On the one hand, the flowing oil drives the food to move on the fitting moving plate 34, ensuring that the pressing plate 37 drives the food to immerse in the oil and to separate from the oil. On the other hand, the flow of the oil promotes the balance of the oil temperature in the housing 2.

[0065] The lower end of the planar scroll plate 1 is in sliding contact with the bottom side of the inner cavity of the housing 2. During the rotation of the planar scroll plate 1, the residues sinking to the bottom in the oil are pushed into the groove 5. The oil in the groove 5 exchanges heat with the air flowing through the air pipe 6, reducing the temperature of the oil in the groove 5 and reducing the oxidation and pollution of the edible oil by the residues; and the air flowing through the air pipe 6 has little influence on the temperature of the oil after being heated and passing through the bubbles generated by the bubble generator 14, ensuring the frying of food.

[0066] In fried foods, the residues accumulated in the oil increase with the extension of the oil use time. The residues not only make the oil turbid, but also the oxidation of the residues will generate carcinogenic substances such as nitrosopyridine and alkanes.

[0067] When the first rotating plate 8 and the second rotating plate 10 contact and separate, another oil chamber is formed between the first rotating plate 8, the second rotating plate 10, the inner wall of the housing 2, and the planar scroll plate 1.

[0068] Embodiment Three:

[0069] As Figures 1-4As shown, this embodiment discloses a low-adhesion frying machine, whose structure is substantially the same as that of the first embodiment. The difference is that a placing plate 4 is installed on the housing 2 of this embodiment. One end of the placing plate 4 extends below the moving frame 3, and the placing plate 4 is not below the guiding member 35.

[0070] One end of the scraping rod is connected to the side of the placing plate 4, and the other end of the scraping rod extends into the two pressing plates 37 of one of the moving frames 3.

[0071] When the food for oil control supported by the pressing plate 37 on the moving plate 34 moves to the position corresponding to the placing plate 4, with the continuous rotation of the rotating belt 31, the scraping rod pushes the food onto the placing plate 4, realizing the collection of the food after frying and oil control.

[0072] Embodiment Four:

[0073] As Figure 9 and Figure 10 shown, this embodiment discloses a low-adhesion frying machine, whose structure is substantially the same as that of the first embodiment. The difference is that the guiding member 35 in this embodiment is a fixed block fixed on the rotating belt 31. A vertical clamping hole is formed on the moving plate 34, and the fixed block and the vertical clamping hole are slidably clamped, so that the moving plate 34 can only slide up and down. The two pressing plates 37 on the moving plate 34 complete the oil pressing and oil scooping of the food.

[0074] Or the guiding member 35 is a limiting clamping ring fixed on the rotating belt 31. A vertical perforation is provided on the limiting clamping ring, and the moving plate 34 passes through the vertical perforation of the limiting clamping buckle so that the moving plate 34 can only slide up and down.

[0075] Embodiment Five:

[0076] As Figure 11 shown, this embodiment discloses a low-adhesion frying machine, whose structure is substantially the same as that of the first embodiment. The difference is that the driving member in this embodiment is a hub motor. The hub motor is installed on the fixed frame 33, and the hub motor drives one of the guide wheels 32 to rotate. An extension rod extends downward from the guide wheel 32 above the center of the flat scroll spring plate 1, and the extension rod is connected to the flat scroll spring plate 1. The input end of the hub motor is electrically connected to the output end of an external control switch.

[0077] The hub motor drives the rotating belt 31 to rotate at a constant speed through the guide wheel 32, and drives the flat scroll spring plate 1 to rotate through the extension rod, realizing the synchronous rotation of the rotating belt 31 and the flat scroll spring plate 1.

[0078] The rotation axis of the spiral line where the flat scroll spring plate 1 is located coincides with the extension rod.

[0079] Embodiment Six:

[0080] AsFigure 3 and Figure 8 As shown, this embodiment discloses a low-adhesion frying machine, whose structure is substantially the same as that of the first embodiment. The difference is that in this embodiment, the driving member is a reduction motor installed on the lower side of the housing 2. The output shaft of the reduction motor penetrates and extends into the housing 2. An installation hole is provided at the position of the housing 2 corresponding to the output shaft of the reduction motor. A sealing bearing is provided in the installation hole, and the sealing bearing is installed on the output shaft of the reduction motor. The output shaft of the reduction motor is connected to the planar scroll spring 1 through a bracket.

[0081] The reduction motor used in the present invention is a common electronic component in the prior art, and its working mode and circuit structure are well-known technologies, so no further description will be given here.

[0082] The reduction motor drives the planar scroll spring 1 to rotate at a constant speed. During the rotation of the planar scroll spring 1, the rotation of the rotating belt 31 is realized by pushing the moving plate 34, and the cyclic rotation of the moving plate 34 is realized.

[0083] Preferably, the rotation axis of the spiral line where the planar scroll spring 1 is located coincides with the output shaft of the reduction motor.

[0084] Embodiment Seven:

[0085] As Figure 8 shown, this embodiment discloses a low-adhesion frying machine. On the basis of any one of the first to sixth embodiments, a heat source 12 is installed on the bottom side of the housing 2 in this embodiment, and the heat source 12 heats the oil liquid in the housing 2; the heat source 12 is a gas stove or an electric heating wire.

[0086] Since the relative movement of the first rotating plate 8 and the second rotating plate 10 causes the oil liquid near the inner wall of the housing 2 to flow into the center of the planar scroll spring 1 through the conduit 13 and then flow outward along the planar scroll spring 1, realizing the circulating flow of the oil liquid. Preferably, the heat source 12 non-uniformly heats the bottom side of the housing 2, which is applicable to heat sources of different sizes and volumes.

[0087] Preferably, the heat source 12 and the reduction motor are arranged at intervals to reduce the influence of the heat source on the reduction motor; the heat source 12 and the groove 5 are arranged at intervals to facilitate keeping the oil liquid in the groove 5 at a low temperature.

[0088] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A low-adhesion frying processing machine, characterized in that: It includes a moving frame (3) and a housing (2) with an open upper end. A rotating flat scroll plate (1) is provided in the inner cavity of the housing (2), and a driving member for driving the flat scroll plate (1) to rotate is installed on the housing (2). A groove (5) is provided along the radial direction on the bottom side of the inner cavity of the housing (2). An air pipe (6) is provided in the groove (5). One end of the air pipe (6) penetrates and extends outside the groove (5), and a bubble generator (14) is installed at the other end of the air pipe (6), and the bubble generator (14) is located below the center of the flat scroll plate (1). The moving frame (3) includes a fixed frame (33) installed on the housing (2). Two rotating guide wheels (32) are installed on the fixed frame (33). A rotating belt (31) is installed between the guide wheels (32). A number of vertically moving limit members are installed on the outer side of the rotating belt (31), and a guide plate (38) is installed on the fixed frame (33). Among them, the guide plate (38) presses down the limit member on one side of the rotating belt (31) into the pitch interval of the flat scroll plate (1). The limit member includes a moving plate (34). A guiding member (35) is fixed on the rotating belt (31). The moving plate (34) moves up and down along the guiding member (35). An elastic member (36) for pushing the moving plate (34) to move upward is installed between the moving plate (34) and the guiding member (35). Two pressing plates (37) are fixed in the vertical direction at the lower part of the moving plate (34).

2. The low-adhesion frying machine according to claim 1, wherein: A rotating rotating plate one (8) is installed at the outer end of the flat scroll plate (1), and an elastic reset member one is installed on the flat scroll plate (1). The rotating plate one (8) is slidably attached to the inner wall of the housing (2). A rotating rotating plate two (10) is installed on the inner wall of the housing (2). An elastic reset member two is installed on the housing (2), and the rotating plate two (10) is slidably attached to the side surface of the flat scroll plate (1). A connection hole two (9) is opened at a position near the outer edge on the bottom side of the inner cavity of the housing (2). A connection hole one (7) is opened at a position corresponding to the center of the flat scroll plate (1) on the bottom side of the inner cavity of the housing (2). The connection hole one (7) and the connection hole two (9) are connected by a conduit (13).

3. The low-adhesion frying machine according to claim 2, characterized in that: The groove (5) is arranged along the radial direction of the flat scroll plate (1), and the groove (5) is located within the horizontal projection of the flat scroll plate (1).

4. The low-adhesion frying machine according to claim 1, characterized in that: A placing plate (4) is installed on the side surface of the housing (2) above the flat scroll plate (1). One end of the placing plate (4) extends below one of the moving frames (3), and the placing plate (4) is not below the guiding member (35).

5. The low-adhesion frying machine according to claim 4, wherein: One end of a scraping rod is connected to the side surface of the placing plate (4), and the other end of the scraping rod extends between the two pressing plates (37) of one of the moving frames (3).

6. The low-adhesion frying machine according to claim 1, characterized in that: The guiding member (35) is a fixed block fixed on the rotating belt (31). A vertical clamping hole is opened on the moving plate (34), and the fixed block and the vertical clamping hole are slidably clamped.

7. The low-adhesion frying machine according to claim 1, wherein: The elastic member (36) is a spring, an elastic metal sheet or an elastic rubber for high-temperature food processing.

8. The low-adhesion frying machine according to claim 1, characterized in that: The driving member is a hub motor, the hub motor is installed on a fixing frame (33), and the hub motor drives one of the guide wheels (32) to rotate. An extension rod extends downward from the guide wheel (32) located above the center of the flat scroll plate (1), and the extension rod is connected to the flat scroll plate (1).

9. The low-adhesion frying machine according to claim 1, characterized in that: The driving member is a reduction motor installed on the lower side of the housing (2). The output shaft of the reduction motor penetrates and extends into the housing (2), and the output shaft of the reduction motor is connected to the flat scroll plate (1) through a bracket.

10. The low-adhesion frying machine according to claim 1, wherein: A heat source (12) is installed on the bottom side of the housing (2).

Citation Information

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