Splicing type double frying barrel

By designing a rotatable partition in the double-frying barrel, the problem of easy loss or contamination of partitions in the prior art is solved, and convenient mode switching and high hygiene and safety are achieved.

CN222982911UActive Publication Date: 2025-06-17ZHEJIANG TIANXI KITCHEN APPLIANCE CO LTD
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Patent Information

Application Number
CN202421945507.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-12
Publication Date
2025-06-17
Estimated Expiration
2034-08-12

AI Technical Summary

Technical Problem

The existing splicable air fryer needs to be disassembled during splicing, which causes the partition to be easily lost or contaminated, causing sanitary risks.

Method used

A rotatable double-frying barrel is designed. By setting a rotatable partition on the left and right barrels, the partition rotates to the horizontal direction and enters the corresponding barrel in a single cavity mode, and rotates to the vertical direction to form a side wall in a dual cavity mode, avoiding the disassembly of the partition.

Benefits of technology

The mode switching of double-frying barrels is achieved without disassembling the partition, avoiding the loss and pollution of partitions, and improving the convenience of use and hygiene and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of cooking utensils, particularly provides a double frying barrel capable of being spliced, and aims to solve the problem that a partition plate is easy to lose or pollute due to the fact that the partition plate needs to be detached when the frying barrel is spliced in the prior art. The double frying barrels comprise a left barrel body and a right barrel body; the double frying barrels comprise a single-cavity mode and a double-cavity mode; a right notch is formed in the left can body, and a right partition plate is rotationally arranged on the right notch. A left notch is formed in the right can body, and a left partition plate is rotationally arranged on the left notch. When the dual-cavity mode of the dual-frying barrel is switched into the single-cavity mode, the right partition plate rotates to the horizontal direction and is located in the left barrel body, and the left partition plate rotates to the horizontal direction and is located in the right barrel body; therefore, the problem that the left partition plate and the right partition plate are lost or polluted due to misplacement is avoided.
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Description

Technical Field

[0001] The utility model belongs to the technical field of cooking utensils, and in particular relates to a double frying barrel that can be spliced. Background Art

[0002] The current splicable air fryer is realized by splicing two independent frying barrels into one frying barrel. However, the independent frying barrels all include complete side walls (i.e., including the front side wall, the rear side wall, the left side wall and the right side wall). In order to realize the splicing of the two frying barrels, it is necessary to design the side walls of the two frying barrels on the side close to each other into a detachable partition to ensure that the two cooking chambers are combined into one cooking chamber. However, this design easily leads to the disassembled partition being misplaced and lost, and then the subsequent spliced ​​frying barrels cannot be restored into two frying barrels. In addition, the misplaced partitions are also prone to contamination of the external environment, causing health hazards. Utility Model Content

[0003] The utility model provides a double frying barrel that can be spliced, aiming to solve the problem in the prior art that when the frying barrels are spliced, the partitions need to be disassembled, which causes the partitions to be easily lost or contaminated.

[0004] In order to solve the above technical problems, the technical solution adopted by the utility model is:

[0005] The utility model provides a double frying barrel that can be spliced, the double frying barrel comprises a left barrel body and a right barrel body; the double frying barrel comprises a single-cavity mode and a double-cavity mode; when the double frying barrel is in the single-cavity mode, the left barrel body and the right barrel body are spliced ​​together; when the double frying barrel is in the double-cavity mode, the left barrel body and the right barrel body are independent of each other;

[0006] A right notch is provided on the left barrel body near the joint, and a right partition is rotatably provided on the right notch; a left notch is provided on the right barrel body near the joint, and a left partition is rotatably provided on the left notch;

[0007] When the double frying vat is switched from the double-chamber mode to the single-chamber mode, the right partition rotates to a horizontal direction and is located in the left barrel body, and the left partition rotates to a horizontal direction and is located in the right barrel body;

[0008] When the double frying barrel is switched from the single-cavity mode to the double-cavity mode, the right partition rotates to a vertical direction and forms a right side wall of the left barrel body, and the left partition rotates to a vertical direction and forms a left side wall of the right barrel body.

[0009] A further solution: a connectable double frying barrel further includes a baffle positioning assembly and a baffle rotating assembly;

[0010] The right partition is arranged at the right notch through the partition positioning component and the partition rotating component; the left partition is arranged at the left notch through the partition positioning component and the partition rotating component.

[0011] Based on the above solution, the partition positioning component positions the right partition and the left partition, enabling the left partition and the right partition to be arranged in the vertical direction, so that the double frying barrels achieve the double-chamber mode. The partition rotating component enables the right partition and the left partition to rotate, enabling the left partition and the right partition to switch between the horizontal direction and the vertical direction, thereby realizing the switching of the double frying barrels between the single-chamber mode and the double-chamber mode.

[0012] A further solution: The partition positioning component includes a positioning block and a positioning groove;

[0013] For the left barrel body, the positioning blocks arranged vertically are respectively provided on the inner walls at the front and rear ends of the right notch, and the positioning grooves arranged longitudinally and corresponding to the positioning blocks are respectively provided at the front and rear ends of the right partition; when the double frying barrels are in the double-chamber mode, the right partition blocks the right notch, and the positioning blocks are clamped in the positioning grooves;

[0014] For the right barrel body, the positioning blocks arranged vertically are respectively provided on the inner walls at the front and rear ends of the left notch, and the positioning grooves arranged longitudinally and corresponding to the positioning blocks are respectively provided at the front and rear ends of the left partition; when the double frying barrels are in the double-chamber mode, the left partition blocks the left notch, and the positioning blocks are clamped in the positioning grooves.

[0015] Based on the above solution, the positioning blocks being clamped in the positioning grooves not only play a positioning role but also improve the stability of the left partition and the right partition when arranged in the vertical direction. In addition, the structures of the positioning blocks and the positioning grooves are relatively simple, and the process manufacturing is relatively simple.

[0016] A further solution: The partition rotating component includes a rotating shaft and a rotating hole;

[0017] For the left barrel body, the rotating shafts are respectively provided at the bottoms of the inner walls at the front and rear ends of the right notch, and the rotating holes corresponding to the rotating shafts are respectively provided at the bottoms of the front and rear ends of the right partition; the rotating shafts are inserted into the rotating holes, the right partition is arranged at the right notch, and the right partition switches between the vertical direction and the horizontal direction;

[0018] For the right barrel body, rotating shafts are respectively provided at the bottoms of the inner walls at the front and rear ends of the left notch, and rotating holes corresponding to the rotating shafts are respectively provided at the bottoms of the front and rear ends of the left partition; the rotating shafts are inserted into the rotating holes, the left partition is arranged at the left notch, and the left partition switches between the vertical direction and the horizontal direction.

[0019] Based on the above solution, the rotation of the left partition and the right partition can be realized by inserting the rotating shaft into the knob hole, and the structure is simple.

[0020] Further solution: Connecting parts are provided at the bottoms of the right notch and the left notch;

[0021] When the double frying barrel is in the single cavity mode, the left barrel body and the right barrel body are connected together through the connecting part and fixed together through the fixed pin sleeve.

[0022] Further solution: A sliding groove is provided at the connecting part of the right notch, and a sliding rail is provided at the connecting part of the left notch; or a sliding rail is provided at the connecting part of the right notch, and a sliding groove is provided at the connecting part of the left notch;

[0023] When the left barrel body and the right barrel body are spliced together, the sliding rail is slidably arranged in the sliding groove.

[0024] Based on the above solution, the cooperation between the sliding rail and the sliding groove has good guiding performance, making the connection between the left barrel body and the right barrel body smoother.

[0025] Further solution: The fixed pin sleeve is U-shaped and includes a bottom sleeve and two side sleeves arranged at the front and rear ends of the bottom sleeve;

[0026] A limiting protrusion is provided on one side of the connecting part of the right notch close to the inside of the left barrel body, and a limiting protrusion is provided on one side of the connecting part of the left notch close to the inside of the right barrel body,

[0027] A slot is provided on the bottom sleeve, and limiting grooves corresponding to the limiting protrusions are provided on both sides of the slot;

[0028] When the double frying barrel is in the single cavity mode and both the right partition and the left partition are in the horizontal direction, the fixed pin sleeve is arranged at the splicing part between the left barrel body and the right barrel body, the connecting parts of the left notch and the right notch are spliced together and inserted into the slot on the bottom sleeve, and the limiting protrusions are inserted into the limiting grooves on the bottom sleeve.

[0029] Based on the above solution, the bottom sleeve ensures a more stable connection between the bottoms of the left barrel body and the right barrel body, and avoids the separation of the bottoms of the left barrel body and the right barrel body when using the single cavity mode.

[0030] A further solution: two rows of vertical guide grooves are provided on the two side sleeves;

[0031] The inner walls at the front and rear ends of the right notch are respectively provided with vertically arranged positioning blocks, and the inner walls at the front and rear ends of the left notch are respectively provided with vertically arranged positioning blocks;

[0032] When the double frying barrel is in single-cavity mode, the positioning block on the front inner wall of the right notch and the positioning block on the front inner wall of the left notch are respectively inserted into the guide groove on the side sleeve at the front end; the positioning block on the rear inner wall of the right notch and the positioning block on the rear inner wall of the left notch are respectively inserted into the guide groove on the side sleeve at the rear end.

[0033] Based on the above solution, the side sleeve ensures that the connection between the side walls of the left barrel body and the right barrel body is more stable, thereby preventing the side walls of the left barrel body and the right barrel body from being separated when using the single-chamber mode.

[0034] A further solution: a detachable grill is provided at the bottom of the left barrel and the bottom of the right barrel;

[0035] When the double frying tub is in single-cavity mode, the left partition plate and the right partition plate are both located below the grill.

[0036] Based on the above scheme, since in the single-cavity mode, the right partition and the left partition rotate to the bottom of the corresponding barrel body, causing the bottom of the double frying barrel to be uneven, a baking net is added in this scheme, and the baking net is located above the left partition and the right partition, so that in the single-cavity mode, the bottom of the double frying barrel is guaranteed to be flat, which is convenient for placing food.

[0037] A further solution: the left barrel body and the right barrel body are both drawer-type frying barrels, the front sides of the left barrel body and the right barrel body are both provided with front panels, and each of the front panels is provided with a handle.

[0038] Based on the above solution, the handle makes it convenient for the user to take the left barrel body and the right barrel body.

[0039] The beneficial effects of the utility model are:

[0040] The utility model is designed with rotatable right and left partitions. When the double frying barrel is in the single-cavity mode, the right partition is rotated to a horizontal direction and located in the left barrel body, and the left partition is rotated to a horizontal direction and located in the right barrel body. Compared with the solution of disassembling the partitions in the prior art, the utility model does not disassemble the left and right partitions, thereby preventing the partitions from being lost or contaminated due to being placed randomly.

[0041] In addition, when the double frying barrels are in the double - cavity mode, rotate the right partition to the vertical direction to form the right side wall of the left barrel body, so that the left barrel body has a complete side wall and encloses an independent cooking cavity; rotate the right partition to the vertical direction to form the right side wall of the left barrel body, so that the right barrel body also has a complete side wall and encloses an independent cooking cavity. BRIEF DESCRIPTION OF THE DRAWINGS

[0042] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for use in the embodiments. It should be understood that the following drawings only show some embodiments of the present invention, and therefore should not be regarded as limiting the scope. For those of ordinary skill in the art, without creative efforts, other related drawings can also be obtained based on these drawings.

[0043] Figure 1 is a schematic structural view of the double frying barrels of the present invention in the single - cavity mode;

[0044] Figure 2 is a schematic structural view of the double frying barrels of the present invention in the double - cavity mode;

[0045] Figure 3 is a schematic structural view of the right notch and the left notch of the present invention;

[0046] Figure 4 is Figure 3 an enlarged structural view of part A in

[0047] Figure 5 is a schematic structural view of the right partition and the left partition of the present invention;

[0048] Figure 6 is a schematic structural view of the fixed pin sleeve of the present invention;

[0049] Figure 7 is a schematic structural view of the double frying barrels of the present invention in the single - cavity mode and equipped with the front panel and the grill.

[0050] Explanation of the reference numerals in the figures:

[0051] 1 - left barrel body; 11 - right notch; 12 - right partition; 2 - right barrel body; 21 - left notch; 22 - left partition; 3 - positioning block; 4 - positioning groove; 5 - rotating shaft; 6 - rotating hole; 7 - connecting part; 71 - sliding groove; 72 - sliding rail; 73 - limiting protrusion; 8 - fixed pin sleeve; 81 - bottom sleeve; 811 - slot; 812 - limiting groove; 82 - side sleeve; 821 - guiding groove; 9 - front panel; 91 - handle; 10 - grill. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0052] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model in conjunction with the accompanying drawings in the embodiments of the present utility model. It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative efforts belong to the protection scope of the present utility model.

[0053] As Figure 1 and Figure 2 shown, this embodiment provides a splicable double frying barrel, and the double frying barrel includes a left barrel body 1 and a right barrel body 2; the double frying barrel includes a single - chamber mode and a double - chamber mode; when the double frying barrel is in the single - chamber mode, the left barrel body 1 and the right barrel body 2 are spliced together; when the double frying barrel is in the double - chamber mode, the left barrel body 1 and the right barrel body 2 are independent of each other;

[0054] A right notch 11 is provided on the left barrel body 1 near the splicing position, and a right partition 12 is rotatably arranged on the right notch 11; a left notch 21 is provided on the right barrel body 2 near the splicing position, and a left partition 22 is rotatably arranged on the left notch 21;

[0055] When the double frying barrel is switched from the double - chamber mode to the single - chamber mode, the right partition 12 rotates to the horizontal direction and is located inside the left barrel body 1, and the left partition 22 rotates to the horizontal direction and is located inside the right barrel body 2;

[0056] When the double frying barrel is switched from the single - chamber mode to the double - chamber mode, the right partition 12 rotates to the vertical direction and forms the right side wall of the left barrel body 1, and the left partition 22 rotates to the vertical direction and forms the left side wall of the right barrel body 2.

[0057] It should be noted that: the single - chamber mode means that the double frying barrel has only one cooking chamber. The double - chamber mode means that the double frying barrel has two independent cooking chambers, and the two cooking chambers are separated by the right partition 12 and the left partition 22.

[0058] The surface area of the right partition 12 is smaller than the bottom area of the left barrel body 1, and the surface area of the left partition 22 is smaller than the bottom area of the right barrel body 2, so that when the double frying barrel is in the single - chamber mode, the right partition 12 can be located in the left barrel body 1, and the left partition 22 can be located in the right barrel body 2.

[0059] In addition, as Figure 7 shown, both the left barrel body 1 and the right barrel body 2 are drawer - type barrel bodies, front panels 9 are provided on the front sides of both the left barrel body 1 and the right barrel body 1, and a handle 91 is provided on each front panel 9.

[0060] The handle 91 includes a mounting portion and a handgrip portion; the mounting portion is used to mount the handle 91 on the front panel 9; the handgrip portion extends downward relative to the mounting portion, and there is a gap between the handgrip portion and the front panel 9.

[0061] Based on the above solution, a splicable double frying barrel further includes a partition positioning assembly and a partition rotating assembly;

[0062] The right partition 12 is arranged at the right notch 11 through the partition positioning assembly and the partition rotating assembly; the left partition 22 is arranged at the left notch 21 through the partition positioning assembly and the partition rotating assembly. Among them, the partition positioning assembly is used to position the right partition 12 and the left partition 22 in the vertical direction when the double frying barrel is in the double-chamber mode. The partition rotating assembly is used to enable the right partition 12 and the left partition 22 to rotate from the vertical direction to the horizontal direction, or from the horizontal direction to the vertical direction.

[0063] A further solution for the partition positioning assembly is as Figures 3 - 5 shown, the partition positioning assembly includes a positioning block 3 and a positioning groove 4;

[0064] For the left barrel body 1, the positioning blocks 3 are respectively arranged on the inner walls of the front and rear ends of the right notch 11 in a vertical arrangement, and the positioning grooves 4 which are arranged longitudinally and correspond to the positioning blocks 3 are respectively arranged at the front and rear ends of the right partition 12; when the double frying barrel is in the double-chamber mode, the right partition 12 blocks the right notch 11, and the positioning block 3 is clamped in the positioning groove 4;

[0065] For the right barrel body 2, the positioning blocks 3 are respectively arranged on the inner walls of the front and rear ends of the left notch 21 in a vertical arrangement, and the positioning grooves 4 which are arranged longitudinally and correspond to the positioning blocks 3 are respectively arranged at the front and rear ends of the left partition 22; when the double frying barrel is in the double-chamber mode, the left partition 22 blocks the left notch 21, and the positioning block 3 is clamped in the positioning groove 4.

[0066] Specifically, the right notch 11 faces right, and the left notch 21 faces left; the front ends of the right notch 11 and the left notch 21 are the ends close to the front panel 9, and the rear ends of the right notch 11 and the left notch 21 are the ends far from the front panel 9.

[0067] In this embodiment, as Figure 4As shown, there are three positioning blocks 3 at the front and rear ends of the right notch 11 and three positioning blocks 3 at the front and rear ends of the left notch 21, and the positioning blocks 3 are strip-shaped; the number of the positioning slots 4 corresponds to the number of the positioning blocks 3, and the shape of the positioning slots 4 corresponds to the shape of the positioning blocks 3.

[0068] It should be noted that: the number and shape of the positioning blocks 3 are not limited to the above cases and can also be other solutions. For example: the positioning blocks 3 at the front and rear ends of the right notch 11 and the positioning blocks 3 at the front and rear ends of the left notch 21 can be set to two or four, etc., and the number of the positioning slots 4 corresponds to the number of the positioning blocks 3; the shape of the positioning blocks 3 can be cylindrical, etc., and then the shape of the positioning slots 4 is semi-cylindrical.

[0069] A further solution for the partition rotation assembly is as follows Figures 3 - 5 As shown, the partition rotation assembly includes a rotating shaft 5 and a rotating hole 6;

[0070] For the left barrel body 1, rotating shafts 5 are respectively provided at the bottoms of the inner walls at the front and rear ends of the right notch 11, and rotating holes 6 corresponding to the rotating shafts 5 are respectively provided at the bottoms of the front and rear ends of the right partition 12; the rotating shafts 5 are inserted into the rotating holes 6, the right partition 12 is arranged at the right notch 11, and the right partition 12 switches between the vertical direction and the horizontal direction;

[0071] For the right barrel body 2, rotating shafts 5 are respectively provided at the bottoms of the inner walls at the front and rear ends of the left notch 21, and rotating holes 6 corresponding to the rotating shafts 5 are respectively provided at the bottoms of the front and rear ends of the left partition 22; the rotating shafts 5 are inserted into the rotating holes 6, the left partition 22 is arranged at the left notch 21, and the left partition 22 switches between the vertical direction and the horizontal direction.

[0072] On the basis of the above solution, as shown in Figure 2 and Figure 3 As shown, connecting parts 7 are provided at the bottoms of the right notch 11 and the left notch 21;

[0073] When the double-frying barrel is in the single-chamber mode, the left barrel body 1 and the right barrel body 2 are connected together through the connecting part 7 and fixed together through a fixed pin sleeve 8.

[0074] Specifically, the connecting part 7 of the right notch 11 is provided with a sliding groove 71, and the connecting part 7 of the left notch 21 is provided with a sliding rail 72; or the connecting part 7 of the right notch 11 is provided with a sliding rail 72, and the connecting part 7 of the left notch 21 is provided with a sliding groove 71. In this embodiment, the connecting part 7 of the right notch 11 is provided with a sliding groove 71, and the connecting part 7 of the left notch 21 is provided with a sliding rail 72;

[0075] When the left barrel body 1 and the right barrel body 2 are spliced together, the slide rail 72 is slidably arranged in the chute 71. That is, when the left barrel body 1 and the right barrel body 2 are spliced, the initial positioning and connection are first carried out through the chute 71 and the slide rail 72.

[0076] A further solution for the fixed pin sleeve 8 is as follows: Figure 6 As shown, the fixed pin sleeve 8 is U-shaped, including a bottom sleeve 81 and two side sleeves 82 arranged at the front and rear ends of the bottom sleeve 81; the two side sleeves 82 are both perpendicular to the bottom sleeve 81;

[0077] To fix the bottom of the spliced left barrel body 1 and right barrel body 2 by the bottom sleeve 81, the following solutions can be adopted but are not limited to:

[0078] On the connecting part 7 of the right notch 11, a limiting protrusion 73 is arranged on the side close to the inside of the left barrel body 1, and on the connecting part 7 of the left notch 21, a limiting protrusion 73 is arranged on the side close to the inside of the right barrel body 2.

[0079] The bottom sleeve 81 is provided with a slot 811 and limiting grooves 812 located on both sides of the slot 811 and corresponding to the limiting protrusions 73.

[0080] Among them, the number of the limiting protrusions 73 on each connecting part 7 can be set according to specific situations; for example: the number of the limiting protrusions 73 on each connecting part 7 can be set to three, four or five, etc.; in this embodiment, the number of the limiting protrusions 73 on each connecting part 7 is four and is arranged along the direction of the corresponding connecting part 7.

[0081] The number of the limiting grooves 812 corresponds one-to-one to the number of the limiting protrusions 73.

[0082] As Figure 4 and Figure 6 shown, when the double-frying barrel is in a single-chamber mode and both the right partition 12 and the left partition 22 are in the horizontal direction, the fixed pin sleeve 8 is arranged at the splicing place between the left barrel body 1 and the right barrel body 2, the connecting part 7 of the left notch 21 and the connecting part 7 of the right notch 11 are spliced together and inserted into the slot 811 on the bottom sleeve 81, and the limiting protrusion 73 is inserted into the limiting groove 812 on the bottom sleeve 81.

[0083] To fix the side walls of the spliced left barrel body 1 and right barrel body 2 by the side sleeves 82, the following solutions can be adopted but are not limited to:

[0084] Both of the two side sleeves 82 are provided with two columns of vertical guiding grooves 821.

[0085] Positioning blocks 3 arranged vertically are respectively provided on the inner walls at the front and rear ends of the right notch 11, and positioning blocks 3 arranged vertically are respectively provided on the inner walls at the front and rear ends of the left notch 21;

[0086] As Figure 4 and Figure 6 shown, when the double frying barrel is in the single - cavity mode, the positioning blocks 3 on the front - end inner wall of the right notch 11 and the positioning blocks 3 on the front - end inner wall of the left notch 21 are respectively inserted into the guiding grooves 821 on the side sleeve 82 located at the front end; the positioning blocks 3 on the rear - end inner wall of the right notch 11 and the positioning blocks 3 on the rear - end inner wall of the left notch 21 are respectively inserted into the guiding grooves 821 on the side sleeve 82 located at the rear end.

[0087] On the basis of the above - mentioned solution, as Figure 7 shown, detachable grills 10 are provided at the bottoms of both the left barrel body 1 and the right barrel body 2;

[0088] When the double frying barrel is in the single - cavity mode, the left partition 22 and the right partition 12 are both located below the grill 10.

[0089] Wherein, the shape of the grill 10 corresponds to the shapes of the bottoms of the left barrel body 1 and the right barrel body 2 to ensure that the grill 10 can be set flat and completely within the left barrel body 1 and the right barrel body 2.

[0090] The working principle of the present utility model will be further described below:

[0091] When the double frying barrel is in the double - cavity mode, for the left barrel body 1, the positioning block 3 on the right notch 11 is clamped in the positioning groove 4 on the right partition 12, the rotating shaft 5 on the right notch 11 is arranged in the rotating hole 6 on the right partition 12, and the right partition 12 is arranged vertically to block the right notch 11; for the right barrel body 2, the positioning block 3 on the left notch 21 is clamped in the positioning groove 4 on the left partition 22, the rotating shaft 5 on the left notch 21 is arranged in the rotating hole 6 on the left partition 22, and the left partition 22 is arranged vertically to block the left notch 21.

[0092] When the double frying barrel is switched from the double-chamber mode to the single-chamber mode, first slide the slide rail 72 on the connecting portion 7 of the right barrel body 2 into the chute 71 on the connecting portion 7 of the left barrel body 1, then rotate the right partition 12 so that the right partition 12 fits against the bottom of the left barrel body 1, rotate the left partition 22 so that the left partition 22 fits against the bottom of the right barrel body 2, and finally set the fixed pin sleeve 8 at the splicing position of the left barrel body 1 and the right barrel body 2. Among them, the connecting portions 7 of the left notch 21 and the right notch 11 are spliced together and inserted into the slot 811 on the bottom sleeve 81, and the limiting protrusion 73 is inserted into the limiting groove 812 on the bottom sleeve 81. The positioning blocks 3 on the inner wall of the front end of the right notch 11 and the positioning blocks 3 on the inner wall of the front end of the left notch 21 are respectively inserted into the guiding grooves 821 on the side sleeve 82 located at the front end; the positioning blocks 3 on the inner wall of the rear end of the right notch 11 and the positioning blocks 3 on the inner wall of the rear end of the left notch 21 are respectively inserted into the guiding grooves 821 on the side sleeve 82 located at the rear end.

[0093] The present utility model is not limited to the above optional embodiments. On the premise of not conflicting with each other, the various solutions can be arbitrarily combined; anyone can obtain other various forms of products under the inspiration of the present utility model. However, no matter what changes are made in its shape or structure, as long as the technical solutions fall within the scope defined by the claims of the present utility model, they all fall within the protection scope of the present utility model.

Claims

1. A double frying barrel that can be spliced, characterized by: The double frying barrel comprises a left barrel body and a right barrel body; the double frying barrel comprises a single-cavity mode and a double-cavity mode; when the double frying barrel is in the single-cavity mode, the left barrel body and the right barrel body are spliced ​​together; when the double frying barrel is in the double-cavity mode, the left barrel body and the right barrel body are independent of each other; A right notch is provided on the left barrel body near the joint, and a right partition is rotatably provided on the right notch; a left notch is provided on the right barrel body near the joint, and a left partition is rotatably provided on the left notch; When the double frying vat is switched from the double-chamber mode to the single-chamber mode, the right partition rotates to a horizontal direction and is located in the left barrel body, and the left partition rotates to a horizontal direction and is located in the right barrel body; When the double frying barrel is switched from the single-cavity mode to the double-cavity mode, the right partition rotates to a vertical direction and forms a right side wall of the left barrel body, and the left partition rotates to a vertical direction and forms a left side wall of the right barrel body.

2. The connectable double frying barrel according to claim 1, characterized in that: Also included are a partition positioning assembly and a partition rotating assembly; The right partition is arranged at the right notch through the partition positioning assembly and the partition rotating assembly; the left partition is arranged at the left notch through the partition positioning assembly and the partition rotating assembly.

3. The connectable double frying barrel according to claim 2, characterized in that: The partition plate positioning assembly includes a positioning block and a positioning groove; For the left barrel body, the inner walls at the front and rear ends of the right notch are respectively provided with the positioning blocks arranged vertically, and the front and rear ends of the right partition are respectively provided with positioning grooves arranged longitudinally and corresponding to the positioning blocks; when the double frying barrel is in the double-cavity mode, the right partition blocks the right notch, and the positioning blocks are clamped in the positioning grooves; For the right barrel body, the inner walls at the front and rear ends of the left notch are respectively provided with vertically arranged positioning blocks, and the front and rear ends of the left partition are respectively provided with longitudinally arranged positioning grooves corresponding to the positioning blocks; when the double frying barrel is in the double-cavity mode, the left partition blocks the left notch, and the positioning blocks are snapped into the positioning grooves.

4. The connectable double frying barrel according to claim 2, characterized in that: The partition rotating assembly includes a rotating shaft and a rotating hole; For the left barrel, the bottom of the inner wall at both ends of the right notch is provided with the rotating shaft, and the bottom of the front and rear ends of the right partition is provided with a rotating hole corresponding to the rotating shaft; the rotating shaft is inserted into the rotating hole, the right partition is arranged at the right notch, and the right partition switches between the vertical direction and the horizontal direction; For the right barrel body, the bottom of the inner walls at the front and rear ends of the left notch are respectively provided with the rotating shaft, and the bottom of the front and rear ends of the left partition are respectively provided with rotating holes corresponding to the rotating shaft; the rotating shaft is inserted into the rotating hole, the left partition is arranged at the left notch, and the left partition switches between the vertical direction and the horizontal direction.

5. The connectable double frying barrel according to claim 1, characterized in that: The bottoms of the right notch and the left notch are both provided with connecting parts; When the double frying barrel is in the single-cavity mode, the left barrel body and the right barrel body are connected together through the connecting portion and fixed together through a fixing latch sleeve.

6. The connectable double frying barrel according to claim 5, characterized in that: The connecting part of the right notch is provided with a slide groove, and the connecting part of the left notch is provided with a slide rail; or the connecting part of the right notch is provided with a slide rail, and the connecting part of the left notch is provided with a slide groove; When the left barrel body and the right barrel body are spliced ​​together, the slide rail is slidably arranged in the slide groove.

7. The connectable double frying barrel according to claim 5, characterized in that: The fixed latch sleeve is U-shaped, comprising a bottom sleeve and two side sleeves arranged at the front and rear ends of the bottom sleeve; A limiting protrusion is provided on the connecting portion of the right notch on one side close to the inside of the left barrel body, and a limiting protrusion is provided on the connecting portion of the left notch on one side close to the inside of the right barrel body. The bottom sleeve is provided with a slot, and limiting grooves located on both sides of the slot and corresponding to the limiting protrusions; When the double frying barrel is in single-cavity mode, and the right partition and the left partition are both located in a horizontal direction, the fixed latch sleeve is arranged at the joint between the left barrel body and the right barrel body, the connecting portion of the left notch and the connecting portion of the right notch are spliced ​​together and inserted into the slot on the bottom sleeve, and the limiting protrusion is inserted into the limiting groove on the bottom sleeve.

8. The connectable double frying barrel according to claim 7, characterized in that: Two rows of vertical guide grooves are provided on the two side sleeves; The inner walls at the front and rear ends of the right notch are respectively provided with vertically arranged positioning blocks, and the inner walls at the front and rear ends of the left notch are respectively provided with vertically arranged positioning blocks; When the double frying barrel is in single-cavity mode, the positioning block on the front inner wall of the right notch and the positioning block on the front inner wall of the left notch are respectively inserted into the guide groove on the side sleeve at the front end; the positioning block on the rear inner wall of the right notch and the positioning block on the rear inner wall of the left notch are respectively inserted into the guide groove on the side sleeve at the rear end.

9. The connectable double frying barrel according to claim 1, characterized in that: The bottom of the left barrel and the bottom of the right barrel are both provided with a detachable grill; When the double frying tub is in single-cavity mode, the left partition plate and the right partition plate are both located below the grill.

10. The connectable double frying barrel according to claim 1, characterized in that: The left barrel body and the right barrel body are both drawer-type frying barrels. The front sides of the left barrel body and the right barrel body are both provided with front panels, and each of the front panels is provided with a handle.