Drum-type automatic frying device

By driving the roller to rotate and using the support to stabilize the support, the problems of inefficiency and safety hazards of traditional frying equipment are solved, automated and stable operation is achieved, and frying efficiency and equipment life are improved.

CN223157800UActive Publication Date: 2025-07-29王家林
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Patent Information

Application Number
CN202422377616.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-29
Publication Date
2025-07-29
Estimated Expiration
2034-09-29

AI Technical Summary

Technical Problem

Traditional frying equipment is inefficient, inconvenient to operate and has safety hazards. The roller is prone to shake at high temperature and high speed, affecting the frying effect and equipment life.

Method used

The drum is driven to rotate and the drum is stably supported in the frying furnace through the support. A variety of support forms are designed to adapt to different furnace types, combining partitions and scrapers to improve space utilization and rolling effect.

Benefits of technology

It realizes automatic frying, improves efficiency and safety, ensures stable operation of the drum, extends equipment life, reduces manual operation, and reduces health risks.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of food processing, in particular to a drum-type automatic frying device which comprises a base, a drum, a driver and a supporting piece, wherein a through hole is formed in the side wall of the drum; the end of the roller is rotatably connected with the base, and the driver is in transmission connection with the roller and provides driving force for rotation of the roller. A feeding and discharging structure is arranged on the roller; the supporting piece is arranged on the base, and the base is used for supporting the roller in a frying furnace through the supporting piece. According to the drum-type automatic frying device, automatic rotation of the drum is achieved through transmission connection of the driver and the drum, so that the automation level of the frying process is improved, and the requirement for manual intervention is reduced; meanwhile, through the arrangement of the supporting piece, stable operation of the roller in the frying furnace is ensured, and potential food safety hazards and equipment damage caused by instability are avoided.
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Description

Technical Field

[0001] The utility model relates to the field of food processing, and particularly relates to a drum-type automatic frying device. Background Art

[0002] Traditional frying equipment mainly exists in the form of manual operation or simple machinery, and has problems of low efficiency and inconvenient operation. For example, in a common frying pan, food ingredients need to be manually put into the pan and manually turned over, which not only has a large labor intensity, but also is difficult to control the frying degree, and it is easy to have the situation of over-frying or under-frying.

[0003] In existing drum-type automatic frying equipment, although it has developed towards a more automated and efficient direction, during the frying process, the drum needs to bear the dual actions of high temperature and high-speed rotation. Without appropriate supporting members, the drum may generate shaking or instability, affecting the frying effect and the service life of the equipment, and there is also a safety hazard that operators may be splashed by oil.

[0004] Therefore, there is an urgent need for an automatic frying device to replace manual operation. While improving work efficiency, it can ensure the stable operation of the drum in the frying furnace, avoid shaking and instability, ensure the personal safety of operators and the frying effect of food, and extend the service life of the equipment. Summary of the Invention

[0005] A drum-type automatic frying device provided by the utility model aims to solve the problems of large human consumption, low efficiency, low safety and short service life of the equipment in the traditional frying method. Through the linkage of the driver and the drum, the automatic rotation of the drum is realized, thereby improving the automation level of the frying process and reducing the need for manual intervention; at the same time, through the setting of the supporting member, the stable operation of the drum in the frying furnace is ensured, and the food safety hazards and equipment damage caused by instability are avoided.

[0006] In order to achieve the above object, the utility model adopts the following technical solutions:

[0007] A drum-type automatic frying device includes a base, a drum with through holes provided on the side wall, a driver and a supporting member; the end of the drum is rotatably connected to the base, the driver is in transmission connection with the drum and provides driving force for the rotation of the drum; a feeding and discharging structure is provided on the drum; the supporting member is provided on the base, and the base supports the drum in the frying furnace through the supporting member.

[0008] As a preference, the drum-type automatic frying device includes a base, and the one base is arranged at one end of the drum;

[0009] Alternatively, the drum-type automatic frying device includes two bases respectively disposed at two ends of the drum, and two end faces of the drum are rotatably connected to the two bases respectively.

[0010] As a preference, the support member at least includes one of a snap, a bracket and a support;

[0011] The snap is disposed on one side of the base, and its shape corresponds to the side wall of the frying furnace;

[0012] The bracket is disposed at the bottom of the base, and its size corresponds to the inner cavity of the frying furnace;

[0013] The support is disposed at the bottom of the base, and its shape corresponds to the bottom of the base.

[0014] As a preference, the support member and the base are of an integral structure.

[0015] As a preference, the drum-type automatic frying device further includes a handle disposed at the top or side of the base.

[0016] As a preference, the handle and the base are of an integral structure.

[0017] As a preference, the drum-type automatic frying device further includes a partition disposed in the inner cavity of the drum to divide the inner cavity of the drum into two chambers.

[0018] As a preference, the drum-type automatic frying device further includes a spacer disposed in the inner cavity of the drum to divide the drum into a plurality of sub-chambers.

[0019] As a preference, one end of the spacer is detachably connected to the inner wall of the drum, and the other end is movably connected to the partition.

[0020] As a preference, the spacer is detachably connected to the inner wall of the drum through a connecting device, and the connecting device includes a connecting member and a pre-pressed elastic member;

[0021] A receiving cavity is provided at the connection end of the spacer and the inner wall of the drum. One end of the pre-pressed elastic member is connected to the bottom of the receiving cavity, and the other end is connected to the connecting member, such that the connecting member can perform telescopic displacement in the receiving cavity of the spacer.

[0022] As a preference, the connecting member is a pin, and the pre-pressed elastic member is a spring.

[0023] As a preference, the spacer at least includes one of a vertical spacer and a horizontal spacer;

[0024] The vertical partition plates are arranged in the circumferential direction along the central axis of the drum;

[0025] The horizontal partition plates are arranged in the length direction of the drum.

[0026] As a preference, the drum-type automatic frying device further includes a scraping blade, and the scraping blade is fixedly arranged on the inner wall of the drum.

[0027] As a preference, the scraping blade and the drum are of an integral structure.

[0028] As a preference, the feeding and discharging structure includes a feeding and discharging port;

[0029] The feeding and discharging port is opened on the side wall of the drum, and a feeding and discharging door is covered at the feeding and discharging port, and the feeding and discharging door is movably installed on the side wall of the drum;

[0030] Alternatively, the feeding and discharging port is opened on the end face of the drum away from the driver.

[0031] As a preference, the driver is in transmission connection with the drum through a driving wheel and a driven wheel; an output shaft of the driver is connected with the driving wheel, the driving wheel is in transmission connection with the driven wheel, and the driven wheel is connected with the drum;

[0032] Alternatively, the output shaft of the driver is directly connected with the drum.

[0033] As a preference, both the driving wheel and the driven wheel are gears, and the driven wheel meshes with the driving wheel;

[0034] Alternatively, the driving wheel is in transmission connection with the driven wheel through a belt;

[0035] Alternatively, the driving wheel is in transmission connection with the driven wheel through a chain.

[0036] As a preference, the driver is installed on one side of the base, and the drum is installed on the other side of the base;

[0037] Alternatively, the driver is installed on the frying furnace, and the drum is arranged in the frying furnace.

[0038] As a preference, when the driver is installed on one side of the base, the housing of the driver and the base are of an integral structure.

[0039] Generally speaking, the utility model has the following advantages:

[0040] 1. Overall Structure Design: The roller is rotatably mounted on the frying furnace through a support member and driven to rotate by a drive system, reducing the need for manual operation, achieving uniform heating of fried foods, and improving frying efficiency and food quality.

[0041] 2. Base Configuration: The single-base or double-base design provides flexibility and can adapt to different working environments and space limitations. The single base can simplify the structure and reduce material costs; the double base can improve the overall stability of the equipment and prevent the equipment from shaking during the frying process.

[0042] 3. Support Member Design: Various forms of support members enhance the adaptability of the equipment. Different forms of support members such as buckles, brackets, or supports can better adapt to different models and specifications of frying furnaces, facilitating the installation and adjustment of the equipment, increasing the versatility and application range of the device, and ensuring that the roller can rotate stably in the frying furnace.

[0043] 4. Integration of Support Member and Base: Simplifies the assembly process. The integrated structure reduces the assembly steps, enhances the structural strength, reduces the risk of component loss, and also reduces the manufacturing cost and maintenance cost, improving the overall strength and durability of the equipment.

[0044] 5. Handle Design: Facilitates the operation and movement of the equipment, enables the operator to safely move or adjust the position of the device, improves the convenience of use, and enhances the user experience.

[0045] 6. Integration of Handle and Base: Enhances the firmness of the handle, avoids the problem of the handle loosening or falling off, and can extend the service life of the product.

[0046] 7. Partition Design: Divides the roller into two chambers, improving the space utilization rate. Different types or batches of foods can be processed simultaneously, avoiding the mixing of foods, and increasing the functional diversity of the equipment.

[0047] 8. Spacer Design: Further refines the space management of the inner cavity through spacers, enabling flexible adjustment of the space to accommodate foods of different sizes, increasing the flexibility and versatility of the equipment.

[0048] 9. Detachable Connection Design of Spacers: Enables the quick disassembly and assembly of spacers using a connection device, facilitating cleaning and replacement.

[0049] 10. Design of Different Types of Spacers: Meets the space requirements in different directions, improves the adaptability and efficiency of the equipment, optimizes space utilization, and increases production capacity.

[0050] 11. Scraper Design: The scraper helps to enhance the tumbling degree of foods, ensuring uniform processing of foods during the frying process.

[0051] 12. Integrating the scraping blade with the drum: Reduces the number of components, enhances the integrity of the structure, and reduces the risk of part loss.

[0052] 13. Feeding and discharging structure design: Through the design of the feeding and discharging doors and openings, it facilitates the control of food entry and exit, improving the safety and convenience of operation.

[0053] 14. Transmission design: Provides a flexible transmission method, reduces energy loss during power transmission, and improves energy utilization efficiency.

[0054] 15. Integrating the housing of the drive with the base: Reduces the equipment volume, saves installation space, and enhances the compactness and stability of the equipment. Description of the Drawings

[0055] Figure 1 Schematic structural diagram of the drum-type automatic frying device in Embodiment 1;

[0056] Figure 2 is Figure 1 sectional view of;

[0057] Figure 3 is Figure 2 partial enlarged schematic view at A of;

[0058] Figure 4 Schematic structural diagram of the buckle;

[0059] Figure 5 Schematic structural diagram of the drum in Embodiment 1;

[0060] Figure 6 Schematic structural diagram of the connecting device;

[0061] Figure 7 Schematic structural diagram of the drum-type automatic frying device in Embodiment 2;

[0062] Figure 8 is Figure 7 sectional view of;

[0063] Figure 9 is Figure 8 partial enlarged schematic view at B of;

[0064] Figure 10 is Figure 8 partial enlarged schematic view at C of;

[0065] Figure 11 Schematic structural diagram of the drum-type automatic frying device in Embodiment 3;

[0066] Figure 12 Schematic structural diagram of the bracket;

[0067] Figure 13 Schematic structural diagram of the drum-type automatic frying device of Embodiment 4;

[0068] Figure 14 Schematic structural diagram of the drum-type automatic frying device of Embodiment 5;

[0069] Figure 15 Schematic structural diagram of the support;

[0070] Figure 16 Schematic structural diagram of the drum-type automatic frying device of Embodiment 6;

[0071] Figure 17 Schematic structural diagram of the drum-type automatic frying device of Embodiment 7;

[0072] Figure 18 Schematic structural diagram of the drum-type automatic frying device of Embodiment 8;

[0073] Figure 19 Schematic structural diagram of the drum of Embodiment 9;

[0074] Figure 20 Schematic structural diagram of the drum of Embodiment 10;

[0075] Figure 21 Schematic structural diagram of the drum of Embodiment 11;

[0076] Figure 22 Schematic structural diagram of the drum-type automatic frying device of Embodiment 12;

[0077] Wherein: 1, frying furnace; 2, base; 3, drum; 4, driver; 5, deep groove ball bearing; 6, driving wheel; 7, driven wheel; 8, buckle; 9, bracket; 10, support; 11, feeding and discharging door; 12, through hole; 13, feeding and discharging port; 14, handle; 15, partition board; 16, vertical partition piece; 17, horizontal partition piece; 18, connecting piece; 19, preloading elastic piece; 20, scraping piece; 21, fastening bolt; 22, half-thread bolt; 23, sleeve. Detailed implementation manners

[0078] The present utility model will be further described in detail below in conjunction with the drawings and specific implementation manners.

[0079] Embodiment 1

[0080] As Figure 1As shown in the figure, a drum-type automatic frying device includes a base, a drum with through holes provided on its side wall, a driver, and a support member; the end of the drum is rotatably connected to the base, the driver is in transmission connection with the drum, and provides driving force for the rotation of the drum; a feeding and discharging structure is provided on the drum; the support member is provided on the base, and the base supports the drum in the frying furnace through the support member.

[0081] The drum-type automatic frying device includes a base, and the base is provided at one end of the drum.

[0082] In this embodiment, the driver is installed on one side of the base, the drum is installed on the other side of the base, and the output shaft of the driver passes through the base and is in transmission connection with the drum.

[0083] As Figure 2 and Figure 3 As shown in the figure, as a preferred embodiment, a deep groove ball bearing is provided at one end of the drum close to the driver, the deep groove ball bearing is fixedly installed at the center of the end face of the drum, and the end of the drum is rotatably connected to the base through a fastening bolt passing through the deep groove ball bearing.

[0084] As Figure 4 As shown in the figure, the support member includes a buckle, the buckle is provided on one side of the base, and its shape corresponds to the side wall of the frying furnace. Preferably, the support member and the base are of an integrated structure. In this embodiment, the buckle is provided on the side of the base facing the side wall of the frying furnace and is of an integrated structure with the base.

[0085] As a preferred embodiment, the drum-type automatic frying device further includes a handle, and the handle is provided on the top or side of the base. The provision of the handle facilitates grasping when moving the drum-type automatic frying device of the present invention. Preferably, the handle and the base are of an integrated structure.

[0086] As Figure 5As shown, as a preferred embodiment, the drum-type automatic frying device further includes a partition board, which is arranged in the inner cavity of the drum and divides the inner cavity of the drum into two chambers. The partition board divides the drum into left and right chambers. When frying food, different types of food can be placed in the two chambers respectively for frying at the same time, so as to avoid mixing of different types of food. In this embodiment, the bottom end of the partition board is fixedly connected to the inner wall of the bottom of the drum (the position opposite to the feeding and discharging port), the partition board passes through the central axis of the drum, the center line of the partition board coincides with the central axis of the drum, and the top end of the partition board is located in the middle of the feeding and discharging port, which is convenient for adding and taking out food on both sides of the partition board through the feeding and discharging port. Preferably, the partition board and the drum are of an integrated structure.

[0087] As a preferred embodiment, the drum-type automatic frying device further includes a spacer, which is arranged in the inner cavity of the drum and divides the drum into a plurality of sub-chambers.

[0088] Preferably, one end of the spacer is detachably connected to the inner wall of the drum, and the other end is movably connected to the partition board. The size of the sub-chamber can be flexibly adjusted to adapt to frying of food with different quantities and volumes.

[0089] As Figure 6 shown, specifically, the spacer is detachably connected to the inner wall of the drum through a connecting device, and the connecting device includes a connecting piece and a preloading elastic member; a receiving cavity is arranged at the connecting end of the spacer and the inner wall of the drum, one end of the preloading elastic member is connected to the bottom of the receiving cavity, and the other end is connected to the connecting piece, so that the connecting piece can perform telescopic displacement in the receiving cavity of the spacer. The connecting piece is a pin, and the preloading elastic member is a spring.

[0090] In this embodiment, the spacer includes vertical spacers, which are arranged along the circumferential direction of the central axis of the drum. Two vertical spacers are respectively placed in the left and right chambers, and the chambers are further divided into four sub-chambers. The inner ends (the ends close to the partition board) of the vertical spacers are hinged to the partition board, and a plurality of positioning holes are provided on the side wall of the drum. When the preloading elastic member is in a relaxed state, the outer end of the connecting piece extends out of the receiving cavity and engages with the positioning holes, and the outer ends (the ends close to the side wall of the drum) of the vertical spacers are fixed to the side wall of the drum; when the preloading elastic member is in a compressed state, the outer end of the connecting piece retracts into the receiving cavity, and the vertical spacers can be removed from the drum. Generally, the through holes on the side wall of the drum can also be directly used as positioning holes.

[0091] By rotating the vertical partition to the feeding and discharging opening, food can be added to or taken out from the sub-chambers located at the bottom of the drum through the feeding and discharging opening; by rotating the vertical partition to an appropriate position, food can be added to or taken out from the sub-chambers located at the top of the drum through the feeding and discharging opening. The vertical partition can also be rotated to a position overlapping with the partition plate, so as to remove the vertical partition from the discharging opening, thereby adapting to more types of frying operations.

[0092] The cross-section of the drum in this embodiment is circular.

[0093] The feeding and discharging structure includes a feeding and discharging opening; the feeding and discharging opening is provided on the side wall of the drum, and a feeding and discharging door is covered at the feeding and discharging opening, and the feeding and discharging door is movably installed on the side wall of the drum.

[0094] In order to prevent food from leaking out of the drum during frying, a feeding and discharging door that can be opened and closed is provided on the side wall of the drum to control the feeding and discharging of food. In order to make the oil inside and outside the drum circulate better, through holes can also be provided on the feeding and discharging door. In this embodiment, one end of the feeding and discharging door is hinged at the feeding and discharging opening, and the other end is a free end.

[0095] The driver is in transmission connection with the drum through a driving wheel and a driven wheel; the output shaft of the driver is connected to the driving wheel, the driving wheel is in transmission connection with the driven wheel, and the driven wheel is connected to the drum.

[0096] Specifically, the driving wheel is provided with a jack, the driving wheel is sleeved on the output shaft of the driver through the jack, and the driving wheel is fixed to the output shaft of the driver; one end face of the driven wheel is fixedly connected to the end face of the drum close to the driver by welding or screwing.

[0097] The driving wheel and the driven wheel in this embodiment are both gears, and the driven wheel meshes with the driving wheel.

[0098] Preferably, when the driver is installed on one side of the base, the housing of the driver and the base are of an integrated structure.

[0099] When frying food, place the drum-type automatic frying device of the present invention on a frying furnace and buckle it on the side wall of the frying furnace through a buckle, so as to stably support the drum-type automatic frying device of the present invention on the frying furnace, so that the drum is horizontally placed in the frying furnace, and the bottom of the drum is immersed in the oil liquid, and the axis of the drum is parallel to the oil liquid surface. Turn on the driver, the driving wheel rotates, drives the driven wheel and the drum to rotate, and thus drives the food placed in the drum to tumble.

[0100] Embodiment 2

[0101] As Figure 7 AndFigure 8 As shown in the figure, in this embodiment, the drum - type automatic frying device includes two bases, which are respectively arranged at both ends of the drum. The end faces of both ends of the drum are rotatably connected to the two bases respectively. The support member includes two buckles, and one buckle is arranged on each base. In this embodiment, the buckle is arranged on one side of the base facing the side wall of the frying furnace and is an integral structure with the base.

[0102] In this embodiment, the driver is installed on the frying furnace, the drum is arranged inside the frying furnace, and the output shaft of the driver passes through the furnace wall of the frying furnace and is in transmission connection with the drum.

[0103] As Figure 9 shown, as a preferred embodiment, a sleeve is arranged at one end of the drum close to the driver. The sleeve is fixedly installed at the center of the end face of the drum, and the end of the drum is rotatably connected to the base through a half - thread bolt passing through the sleeve.

[0104] As Figure 10 shown, at the end of the drum in this embodiment far from the driver, it is rotatably connected to the base far from the driver through a half - thread bolt passing through the drum.

[0105] Parts not mentioned in this embodiment are the same as those in Embodiment 1.

[0106] Embodiment 3

[0107] As Figure 11 shown, in this embodiment, the drum - type automatic frying device includes one base, and the one base is arranged at one end of the drum. The support member includes a bracket, and the bracket is arranged at the bottom of the base and has a size corresponding to the inner cavity of the frying furnace. Preferably, the bracket and the base are an integral structure.

[0108] As Figure 12 shown, in order to make the oil flow better up and down the bracket, through - slots can also be opened on the bracket.

[0109] Parts not mentioned in this embodiment are the same as those in Embodiment 1.

[0110] Embodiment 4

[0111] As Figure 13 shown, in this embodiment, the drum - type automatic frying device includes two bases, which are respectively arranged at both ends of the drum. The end faces of both ends of the drum are rotatably connected to the two bases respectively. The support member includes a bracket, and the two bases are respectively connected to both ends of the bracket. Preferably, the bracket and the two bases are an integral structure.

[0112] The parts not mentioned in this embodiment are the same as those in Embodiment III.

[0113] Embodiment V

[0114] As Figure 14 shown, in this embodiment, the drum - type automatic frying device includes two bases, the two bases are respectively arranged at both ends of the drum, and the end faces at both ends of the drum are rotatably connected to the two bases respectively. The supporting member includes two supports, and one support is arranged at the bottom of each base; As Figure 15 shown, the support is arranged at the bottom of the base, and its shape corresponds to the bottom of the base. Preferably, the support and the base are of an integral structure.

[0115] The parts not mentioned in this embodiment are the same as those in Embodiment I.

[0116] Embodiment VI

[0117] As Figure 16 shown, in this embodiment, the drum - type automatic frying device includes one base, and the one base is arranged at one end of the drum. The supporting member includes a buckle and a bracket. Preferably, the base, the buckle and the bracket are of an integral structure.

[0118] The parts not mentioned in this embodiment are the same as those in Embodiment III.

[0119] Embodiment VII

[0120] As Figure 17 shown, in this embodiment, the drum - type automatic frying device includes two bases, the two bases are respectively arranged at both ends of the drum, and the end faces at both ends of the drum are rotatably connected to the two bases respectively. The supporting member includes two buckles and a bracket. The two bases are respectively connected to both ends of the bracket, and one buckle is arranged on one side of each base away from the drum. Preferably, the two bases, the buckles and the bracket are of an integral structure.

[0121] The parts not mentioned in this embodiment are the same as those in Embodiment III.

[0122] Embodiment VIII

[0123] As Figure 18 shown, in this embodiment, the drum - type automatic frying device includes one base, and the one base is arranged at one end of the drum. The supporting member includes a buckle and a support, the support is arranged at the bottom of the base, and its shape corresponds to the bottom of the base. Preferably, the base, the buckle and the support are of an integral structure.

[0124] The parts not mentioned in this embodiment are the same as those in Embodiment I.

[0125] Example Nine

[0126] As Figure 19 shown, in this embodiment, the drum - type automatic frying device includes two bases, the two bases are respectively arranged at both ends of the drum, and the end faces at both ends of the drum are rotatably connected to the two bases respectively. The support member includes two buckles and two supports.

[0127] Parts not mentioned in this embodiment are the same as those in Example Eight.

[0128] Example Ten

[0129] As Figure 20 shown, in this embodiment, the partition includes a transverse partition; the transverse partition is arranged along the length direction of the drum, and the cross - sectional shape corresponds to the cross - sectional shape of the chamber. The cross - section of the chamber in this embodiment is semi - circular, and the cross - sectional shape of the transverse partition is semi - circular. The outer edge (the edge close to the side wall of the drum) of the transverse partition is fixed on the side wall of the drum by the connecting device, and the inner edge (the edge close to the partition) of the transverse partition abuts against the partition.

[0130] As a preferred embodiment, the drum - type automatic frying device further includes a scraping blade, and the scraping blade is fixedly arranged on the inner wall of the drum. Preferably, the scraping blade and the drum are of an integral structure. When frying food, the scraping blade rotates together with the drum, which can better drive the food in the drum to tumble.

[0131] Parts not mentioned in this embodiment are the same as those in Example One.

[0132] Example Eleven

[0133] As Figure 21 shown, the partition includes a vertical partition and a transverse partition, the vertical partition is arranged along the circumferential direction of the central axis of the drum; the transverse partition is arranged along the length direction of the drum, and the cross - sectional shape corresponds to the cross - sectional shape of the chamber. The cross - section of the chamber in this embodiment is semi - circular, and the cross - sectional shape of the transverse partition is semi - circular. The outer edge (the edge close to the side wall of the drum) of the transverse partition is fixed on the side wall of the drum by the connecting device, and the inner edge (the edge close to the partition) of the transverse partition abuts against the partition.

[0134] Parts not mentioned in this embodiment are the same as those in Example One.

[0135] Example Twelve

[0136] As Figure 22As shown, in this embodiment, the drum-type automatic frying device includes a base, which is disposed at one end of the drum. The drum is rotatably connected to the base. The output shaft of the driver is directly connected to the rotation center of the drum end surface, and the output shaft of the driver directly drives the drum to rotate through the drum end surface. The support member includes a buckle.

[0137] The discharge port is provided on the end surface of the roller away from the driver.

[0138] Preferably, the one base and the housing of the driver are an integrated structure.

[0139] The parts not mentioned in this embodiment are the same as those in the first embodiment.

[0140] In general, the device utilizes a drum design that automatically rotates via a driver, efficiently completing the frying process. This is particularly effective for hollow, lightweight foods, such as sesame balls and sweet potato balls, by effectively preventing the food from floating on the oil surface, ensuring even heating and sufficient expansion, significantly improving frying uniformity and efficiency. This device significantly reduces the laborious workload of manual operation, allowing operators to perform less physical labor, thereby improving production efficiency and safety. Furthermore, the design of the drum, supports, and drive system enables the drum to operate independently and can be easily removed from the fryer during downtime, allowing the fryer to be used for manual frying of other foods, thereby increasing its flexibility and utilization. Ultimately, this reduces the direct threat posed by high-temperature oil fumes to workers and mitigates the health risks associated with prolonged exposure, significantly improving the working environment in the frying industry.

[0141] In addition to the methods mentioned in the above embodiments, the driving wheel can also be connected to the driven wheel through a belt; or, the driving wheel can be connected to the driven wheel through a chain. These changes are all within the protection scope of the present invention.

[0142] The above-described embodiments merely represent several implementation methods of the present invention. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the present invention. It should be noted that a person skilled in the art would be able to make various modifications and improvements without departing from the concept of the present invention, and these modifications and improvements fall within the scope of protection of the present invention. Therefore, the scope of protection of the present invention shall be determined by the appended claims.

Claims

1. A drum-type automatic frying device, characterized in that: It includes a base, a drum with through holes provided on its side wall, a driver, and a support member; the end of the drum is rotatably connected to the base, the driver is in transmission connection with the drum and provides driving force for the rotation of the drum; a feeding and discharging structure is provided on the drum; the support member is provided on the base, and the base supports the drum in the frying furnace through the support member.

2. The drum-type automatic frying device according to claim 1, characterized in that: The drum-type automatic frying device includes a base, and the one base is provided at one end of the drum; Alternatively, the drum-type automatic frying device includes two bases, the two bases are respectively provided at both ends of the drum, and both end faces of the drum are rotatably connected to the two bases respectively.

3. The drum-type automatic frying device according to claim 2, wherein: The support member at least includes one of a buckle, a bracket, and a support. The buckle is provided on one side of the base, and its shape corresponds to the side wall of the frying furnace. The bracket is provided at the bottom of the base, and its size corresponds to the inner cavity of the frying furnace. The support is provided at the bottom of the base, and its shape corresponds to the bottom of the base.

4. A drum-type automatic frying device according to claim 1, characterized in that: The support member and the base are of an integrated structure.

5. A drum-type automatic frying device according to claim 1, characterized in that: The drum-type automatic frying device further includes a handle, and the handle is provided at the top or side of the base.

6. The drum-type automatic frying device according to claim 5, characterized in that: The handle and the base are of an integrated structure.

7. The drum-type automatic frying device according to claim 1, characterized in that: The drum-type automatic frying device further includes a partition, and the partition is provided in the inner cavity of the drum, dividing the inner cavity of the drum into two chambers.

8. The drum-type automatic frying device according to claim 7, characterized in that: The drum-type automatic frying device further includes a separator, and the separator is provided in the inner cavity of the drum, dividing the drum into multiple sub-chambers.

9. The drum-type automatic frying device according to claim 8, characterized in that: One end of the separator is detachably connected to the inner wall of the drum, and the other end is movably connected to the partition.

10. The drum-type automatic frying device according to claim 9, characterized in that: The separator is detachably connected to the inner wall of the drum through a connecting device, and the connecting device includes a connecting member and a pre-pressed elastic member; A receiving cavity is provided at the connecting end of the separator and the inner wall of the drum, one end of the pre-pressed elastic member is connected to the bottom of the receiving cavity, and the other end is connected to the connecting member, so that the connecting member can perform telescopic displacement in the receiving cavity of the separator.

11. A drum-type automatic frying device according to claim 10, characterized in that, The connecting member is a pin, and the pre-pressed elastic member is a spring.

12. A drum-type automatic frying device according to claim 8, characterized in that: The separator at least includes one of a vertical separator and a horizontal separator; The vertical separators are arranged along the circumferential direction of the central axis of the drum; The horizontal separators are arranged along the length direction of the drum.

13. A drum-type automatic frying device according to claim 1, characterized in that: The drum-type automatic frying device further includes a scraping blade, and the scraping blade is fixedly provided on the inner wall of the drum.

14. A drum-type automatic frying device according to claim 13, characterized in that: The scraping blade and the drum are of an integrated structure.

15. A drum-type automatic frying device according to claim 1, characterized in that: The feeding and discharging structure includes a feeding and discharging port; The feeding and discharging port is opened on the side wall of the drum, and a feeding and discharging door is covered at the feeding and discharging port, and the feeding and discharging door is movably installed on the side wall of the drum; Alternatively, the feeding and discharging port is opened on the end face of the drum far from the driver.

16. The drum-type automatic frying device according to claim 1, characterized in that: The driver is in transmission connection with the drum through a driving wheel and a driven wheel; the output shaft of the driver is connected to the driving wheel, the driving wheel is in transmission connection with the driven wheel, and the driven wheel is connected to the drum; Alternatively, the output shaft of the driver is directly connected to the drum.

17. A drum-type automatic frying device according to claim 16, characterized in that: Both the driving wheel and the driven wheel are gears, and the driven wheel meshes with the driving wheel; Alternatively, the driving wheel is drivingly connected to the driven wheel by a belt; Alternatively, the driving wheel is drivingly connected to the driven wheel by a chain.

18. The drum-type automatic frying device according to claim 1, characterized in that: The driver is installed on one side of the base, and the drum is installed on the other side of the base; Alternatively, the driver is installed on the frying furnace, and the drum is arranged inside the frying furnace.

19. A drum-type automatic frying device according to claim 18, characterized in that: When the driver is installed on one side of the base, the housing of the driver and the base are of an integral structure.