CN215687074U - Fryer pot subassembly and cooking utensil - Google Patents

Fryer pot subassembly and cooking utensil Download PDF

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Publication number
CN215687074U
CN215687074U CN202122048632.3U CN202122048632U CN215687074U CN 215687074 U CN215687074 U CN 215687074U CN 202122048632 U CN202122048632 U CN 202122048632U CN 215687074 U CN215687074 U CN 215687074U
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China
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unit
bottom heating
pot body
assembly
coupling
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CN202122048632.3U
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Chinese (zh)
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李家航
李建
史庭飞
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Zhejiang Shaoxing Supor Domestic Electrical Appliance Co Ltd
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Zhejiang Shaoxing Supor Domestic Electrical Appliance Co Ltd
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Abstract

The present disclosure provides a fryer assembly and a cooking appliance, the fryer assembly comprising a pot body, a food support net and a bottom heating assembly, the pot body having a pot body inner cavity, the side wall of the pot body being provided with mounting through holes, the food support net being arranged in the pot body inner cavity; the bottom heating assembly is arranged in the inner cavity of the pot body, the bottom heating assembly is arranged between the food supporting net and the bottom wall of the pot body, the bottom heating assembly is provided with a coupling end, and the coupling end of the bottom heating assembly is arranged in the mounting through hole, so that the coupling end of the bottom heating assembly is exposed out of the pot body. The bottom heating assembly is positioned below the food support net such that heat generated by the bottom heating assembly can be radiated directly onto the food for heating the food.

Description

Fryer pot subassembly and cooking utensil
Technical Field
The utility model belongs to the technical field of kitchen appliance, especially, relate to a fryer subassembly and cooking utensil.
Background
The cooking utensil can be used as a modern popular kitchen ware and can be used for making delicious food. The cooking utensil generally comprises a pot body, an upper cover covered on the pot body and a food supporting net component arranged in the pot body, wherein a motor, a fan blade and a heating tube component are arranged in the upper cover. When the food supporting net is used, the motor drives the fan blades to rotate so as to blow hot air into the food supporting net component, and the surface of food can form a golden and crisp surface layer due to the specially-made grains arranged in the food supporting net.
At present, the existing cooking utensil can not heat food uniformly, for example, when the food to be cooked is large in volume, the upper part of the food is generally baked, but the lower part of the food is not baked, and when the lower part of the food is baked, the food positioned at the upper part may be burnt or gelatinized to influence the eating.
SUMMERY OF THE UTILITY MODEL
It is a primary object of the present disclosure to provide a fryer assembly and cooking appliance to heat food more evenly.
In view of the above purpose, the present disclosure provides the following technical solutions:
in one aspect of the present disclosure, a fryer assembly is provided, comprising a pot body, a food support net and a bottom heating assembly, wherein the pot body has a pot body inner cavity, a side wall of the pot body is provided with a mounting through hole, and the food support net is arranged in the pot body inner cavity; the bottom heating assembly is arranged in the inner cavity of the pot body, the bottom heating assembly is arranged between the food supporting net and the bottom wall of the pot body, the bottom heating assembly is provided with a coupling end, and the coupling end is arranged in the mounting through hole and is exposed outside the pot body.
So set up, set up bottom heating element in the below of food supporting net, can make the heat direct radiation that bottom heating element produced to food on to heat food.
The fryer assembly further comprises a connecting assembly, the connecting assembly comprises a first connecting unit and a second connecting unit which are detachably connected with each other, the first connecting unit and the second connecting unit are respectively fixed to the coupling end of the bottom heating assembly and the mounting through hole, the second connecting unit is provided with a middle through hole, and the coupling end of the bottom heating assembly can be clamped in the middle through hole and protrudes out of the outer side of the middle through hole. So set up, through first linkage unit and the cooperation of second linkage unit, realize being connected in dismantling of bottom heating element and the pot body, further improved bottom heating element's dismouting convenience.
Optionally, one of the first connecting unit and the second connecting unit is provided with a groove, and the other is provided with a convex column matched with the groove, and the convex column can be clamped in the groove. So set up, insert the recess through the projection on, can improve the stability of being connected of bottom heating element and pot body to bottom heating element's connection reliability can be improved.
Specifically, first connecting element includes first unit body, the recess set up in the edge of first unit body on the periphery wall of the circumference both sides of the pot body, second connecting element includes the mounting, the middle part through-hole set up in the middle part of mounting and with first unit body matches, the projection slidable set up in on the mounting, and can stretch into in the recess. The connecting assembly provided by the disclosure has the advantages of simple structure, low manufacturing cost, compact structure and small occupied volume.
Further, the protruding column is arranged on the outer side of the pot body, the first connecting unit further comprises a stopping convex portion, and the stopping convex portion is arranged on the inner side of the pot body and protrudes from the peripheral wall of the first unit body. So set up, through the cooperation of projection and backstop convex part, make second coupling unit can set up on the pot body steadily, improved second coupling unit's connection reliability.
According to another exemplary embodiment of the present disclosure, the fixing member has an inner cavity, the convex pillar is partially disposed in the inner cavity, a convex pillar limiting portion is protrusively disposed on an outer peripheral wall of the convex pillar, and the convex pillar limiting portion is located in the inner cavity and stops on a cavity wall of the inner cavity. So set up, can restrict the stroke of projection, prevent that projection and mounting from breaking away from to coupling assembling's connection reliability has further been improved.
Optionally, for the purpose that the protruding column can automatically reset, the second connection unit further comprises a return spring, the return spring is sleeved on the periphery of the inner end of the cavity of the protruding column, and two ends of the return spring respectively abut against the cavity wall of the inner cavity and one side, facing the inner end of the cavity, of the protruding column limiting portion. So set up, under reset spring's effect, the projection can automatic re-setting to coupling assembling's convenience has been improved.
Further, the connection assembly further comprises a sealing member disposed between the first connection unit and the second connection unit. Thus, the sealing performance of the fryer assembly is improved.
Optionally, the sealing element comprises a sealing element body, the sealing element body is annular, a fixing clamping groove is formed in the outer ring of the sealing element body, the fixing clamping groove wraps the edge of the mounting through hole, and the sealing element is pressed between the first unit body and the fixing element. So set up, improved coupling assembling's leakproofness, it is excessive to prevent that bottom heating element's heat from the gap between first linkage unit and the pot body.
Specifically, be provided with on the mounting and hold the annular of sealing member, the cross section of annular is the U type, the opening orientation of annular first unit body, the sealing member inlays to be located in the annular. So, through setting up the sealing member in the annular, improved the connection stability of sealing member to coupling assembling's connection reliability has further been improved.
Further, an inner ring side of the seal member is flush with an opening of the ring groove, or the inner ring side of the seal member protrudes toward the first unit body with respect to the opening of the ring groove; and/or an annular convex strip extending along the circumferential direction of the sealing element is arranged on the side wall of the sealing element facing the first unit body. So set up, increased the area of contact between sealing member and the first unit body, further improved coupling assembling's leakproofness.
According to the food supporting net, the distance is arranged between the bottom wall heating assembly and the food supporting net, so that the food supporting net is prevented from being in direct contact with the bottom heating assembly to cause overhigh local temperature of food, and the taste of the food is prevented from being influenced. Bottom heating element with be provided with the interval between the diapire of the pot body, so set up, reserved certain oil storage space in pot body inner chamber, avoid bottom heating element to dip in the hot water juice or the grease in the oil storage space to bottom heating element's operational reliability has been improved.
In another aspect of the present disclosure, a cooking appliance is provided, the cooking appliance includes a body and a fryer assembly as described above, the body has an inner accommodating cavity, the fryer assembly is disposed in the inner accommodating cavity, a coupling member is fixed on a side wall of the body, a coupling end of the coupling member is horizontally disposed toward the inner accommodating cavity, a mounting through hole of the pot body is opposite to the coupling member so that the coupling member can be electrically coupled with the bottom heating assembly, the body includes a top heating assembly disposed above the inner accommodating cavity. . So set up, top heating element and bottom heating element in this disclosure can cooperate to make the inside food that holds the intracavity be heated more evenly, thereby improved the taste of food.
Drawings
The above and/or other objects and advantages of the present disclosure will become more apparent from the following description of the embodiments taken in conjunction with the accompanying drawings, in which:
fig. 1 is a longitudinal sectional view of a cooking appliance provided in an exemplary embodiment of the present disclosure.
Fig. 2 is a partially enlarged view of the structure in circle I of fig. 1.
Fig. 3 is a bottom view of a transverse cross-sectional view of the cooking appliance of fig. 1.
Fig. 4 is a partially enlarged view of the structure in the J-turn in fig. 3.
FIG. 5 is a longitudinal cross-sectional view of the pan body assembly of FIG. 1.
FIG. 6 is an exploded view of the pan body assembly of FIG. 5.
Fig. 7 is an exploded view of the bottom heating assembly and the second coupling unit of fig. 6.
Fig. 8 is a structural view of the sealing member of fig. 7.
Fig. 9 is a structural view of the stud of fig. 7.
Description of reference numerals:
10. a body; 11. A machine body top cover;
12. an interior receiving cavity;
20. a pan body; 21. A handle;
30. a food support net; 40. A bottom heating assembly;
51. a first connecting unit; 52. A second connection unit;
53. a seal member;
111. a motor; 112. A top heating assembly;
113. a fan blade; 134. A coupling member;
301. an oil leak hole; 401. A heating section;
511. a first unit body; 512. A stopper projection;
513. a groove;
521. a fixing member; 522. A convex column;
523. a return spring; 524. A rear cover;
525. a side cover; 526. A convex column limiting part;
5211. a middle through hole; 5212. A convex column through hole;
531. a seal body; 532. Fixing the clamping groove;
533. an annular rib; 5221. The inner end of the cavity;
5222. the outer end of the cavity.
Detailed Description
Example embodiments will now be described more fully with reference to the accompanying drawings. However, it should not be understood that the aspects of the present disclosure are limited to the embodiments set forth herein. The same reference numerals in the drawings denote the same or similar structures, and thus their detailed description will be omitted.
Referring to fig. 1 to 6, in one aspect of the present disclosure, there is provided a cooking appliance, which may include a body 10 and a pot assembly, the body 10 may have an internal receiving cavity 12, a sidewall of the body 10 may be provided with an opening, and the internal receiving cavity 12 may communicate with the outside through the opening. Through which the pan body assembly may be inserted into inner receiving cavity 12, for example, but not limited to, the pan body assembly may be inserted horizontally into inner receiving cavity 12. It is understood that the internal receiving chamber 12 may be formed as a cooking chamber.
The utility model discloses an exemplary embodiment, pot body subassembly can include pot body 20, food supporting mesh 30 and bottom heating element 40, and pot body 20 can have a pot body inner chamber, and food can be put in this pot body inner chamber in order to cook, and further, food supporting mesh 30 can set up in this pot body inner chamber to be used for supporting food, so that the soup that food produced in the culinary art process or grease and food separation, thereby can promote the taste of food.
It will be appreciated that food support net 30 may be a cylindrical fry basket or a dish-like support plate. Further, oil leakage holes 301 may be formed on the bottom wall of the food supporting net 30, so that liquid oil generated during cooking of the food in the food supporting net 30 can be dropped into the pot body 20 through the oil leakage holes 301.
Bottom heating element 40 may be disposed in the inner cavity of the pot body for heating food in pot body 20, optionally, bottom heating element 40 may be disposed between food supporting net 30 and the bottom of pot body 20, i.e., may be located below food supporting net 30, so that heat generated by bottom heating element 40 is directly radiated to food to heat food. By way of example, the bottom heating assembly 40 may be a heating tube, for example, but not limited to, a heating tube bend may be formed into the bottom heating assembly 40.
Specifically, in one aspect of the present disclosure, a fryer assembly is provided, comprising a pot body 20, a food support net 30 and a bottom heating assembly 40, wherein the pot body 20 has a pot body inner cavity, a side wall of the pot body 20 is provided with a mounting through hole, and the food support net 30 is arranged in the pot body inner cavity; the bottom heating component 40 is arranged in the inner cavity of the pot body, the bottom heating component 40 is arranged between the food supporting net 30 and the bottom of the pot body 20, the bottom heating component 40 is provided with a coupling end, and the coupling end of the bottom heating component 40 is arranged in the mounting through hole, so that the coupling end is exposed out of the outer side of the pot body. It is understood that pan body 20 can have an inner pan body cavity and that the space outside the inner pan body cavity can be the outside of the pan body.
As an example, bottom heating element 40 can slide horizontally, and the coupling end of bottom heating element 40 can be inserted into the mounting through hole to be connected with pot body 20 in a matching manner, so that the convenience of dismounting and mounting bottom heating element 40 is improved. In addition, the coupling end of bottom heating element 40 protrudes outside of pan body 20 to facilitate an electrical coupling with coupling element 134.
Further, the machine body 10 may include a top heating assembly 112, the top heating assembly 112 may be disposed on the top of the machine body 10, so that the top heating assembly 112 is located above the fryer assembly, and the bottom heating assembly 40 may cooperate with the top heating assembly 112 to heat the food together, so that the food may be heated more uniformly, and the taste of the food may be improved.
Specifically, with reference to fig. 1, the machine body 10 may include a motor 111, a fan 113, and a top heating assembly 112, wherein the fan 113 may be fixed on an output shaft of the motor 111 to drive the fan 113 to rotate under the driving of the motor 111, so that the hot air generated by the top heating assembly 112 and the bottom heating assembly 40 may be blown onto the food to heat the food.
As an example, the top heating assembly 112 may be disposed below the fan blades 113, but is not limited thereto. Still further, the top heating assembly 112 may be disposed above the interior receiving cavity, i.e., the top heating assembly 112 may be positioned above the food support net 30.
In order to further improve the safety of the cooking appliance, the machine body 10 may further include a machine body top cover 11, and the motor 111, the fan blade 113 and the top heating element 112 are all covered in the machine body top cover 11, so as to prevent a user from touching any one of the motor 111, the fan blade 113 and the top heating element 112 to cause accidental injury, thereby improving the safety of the cooking appliance.
Further, a coupling member 134 may be fixed to a side wall of the body 10, and a coupling end of the coupling member 134 may be horizontally disposed toward the inner receiving cavity, and in correspondence with this, the bottom heating assembly 40 may be horizontally slid so that the coupling end of the bottom heating assembly 13 is electrically coupled with the coupling end of the coupling member 134. Bottom heating element 40 can the horizontal slip, and the coupling end of bottom heating element 40 can insert in the mounting hole to be connected with the cooperation of pot body 20, improved bottom heating element 40's dismouting convenience. Bottom heating element 40 can horizontal slip and insert in the installation through-hole to be connected with the cooperation of pot body 20, improved bottom heating element 40's dismouting convenience.
In addition, the coupling end of bottom heating element 40 protrudes outside of pan body 20 to facilitate electrical coupling with coupling element 134. The cooking utensil that this disclosure provided can be the air fryer, and this air fryer can drawer type structure, and pot body 20 can be inserted into inside horizontally and hold the chamber promptly, is provided with coupling piece 134 on the lateral wall of organism 10, and the coupling end of coupling piece 134 holds the chamber horizontal setting towards inside, so in the in-process of pot body 20 horizontal migration, the coupling end of bottom heating assembly 40 can with the coupling end electric coupling of this coupling piece 134, so improved cooking utensil's convenience in use.
In order to keep the bottom heating assembly 40 clean and facilitate cleaning, the fryer assembly may further include a connecting assembly, the connecting assembly may include a first connecting unit 51 and a second connecting unit 52 detachably coupled to each other, the first connecting unit 51 and the second connecting unit 52 are respectively fixed to the bottom heating assembly 40 and the pot body 20, one of the first connecting unit 51 and the second connecting unit 52 is provided with a recess 513, the other one is provided with a protrusion 522 matched with the recess 513, and the protrusion 522 may be horizontally inserted into the recess 513.
So set up, include coupling assembling through frying the pot subassembly, and be fixed in on bottom heating element 40 and the pot body 20 respectively with first coupling unit 51 and second coupling unit 52 to improved bottom heating element 40's the convenience of connection, made bottom heating element 40 make things convenient for the dismouting, in order to clean. Further, by providing a groove 513 on one of the first and second coupling units 51 and 52 and a boss 522 matching the groove 513 on the other, the bottom heating assembly 40 can be coupled to the pot body 20 with the boss 522 inserted into the groove 513. The convex column 522 is inserted into the groove 513, so that the connection stability of the bottom heating assembly 40 and the pot body 20 can be improved, and the connection reliability of the bottom heating assembly 40 can be improved.
Further, the bottom heating assembly 40 may include a heating portion 401, and the heating portion 401 may be used for heating, for example, but not limited to, the heating portion 401 may be a heating pipe, or a heating plate. As an example, in the present embodiment, the heating portion 401 is formed by bending a heating pipe, and a coupling end of the heating portion 401 may be fixed to the first connection unit 51.
Referring to fig. 7, the coupling assembly may include a first coupling unit 51 and a second coupling unit 52 detachably coupled to each other, and the first coupling unit 51 and the second coupling unit 52 are fixed to the heating part 401 and the pot body 20, respectively, so that the heating part 401 can be coupled to the pot body 20 with the first coupling unit 51 mated with the second coupling unit 52. Specifically, one of the first and second connection units 51 and 52 may be provided with a groove 513, and the other one thereof is provided with a boss 522 matched with the groove 513, and the boss 522 may be selectively inserted into the groove 513, so that the first connection unit 51 may be selectively connected to the second connection unit 52.
With reference to fig. 4 and fig. 7, the recess 513 is disposed on the first connection unit 51, and the protrusion 522 is disposed on the second connection unit 52.
Specifically, the first connection unit 51 may include a first unit body 511, the first unit body 511 may be fixed to a coupling end of the heating part 401, and the recess 513 may be disposed on an outer circumferential wall of the first unit body 511, for example, but not limited to, the recess 513 may be disposed on both sides of the first unit body 511 in a width direction. The second connection unit 52 may include a fixing member 521, the fixing member 521 may be fixed on the pot body 20, a middle through hole 5211 for the first unit body 511 to be inserted into may be disposed in the middle of the fixing member 521, and the protrusion 522 may be slidably disposed on the fixing member 521 and may be clamped in the groove 513. So set up, coupling assembling's simple structure connects reliably, can reduce the manufacturing cost of frying pan subassembly on the one hand, and on the other hand also can improve coupling assembling's connection reliability.
Referring to fig. 4, 7 and 9, the fixing member 521 may have an inner cavity, the protruding pillar 522 may be partially disposed in the inner cavity, an outer circumferential wall of the protruding pillar 522 may be protrusively disposed with a protruding pillar position limiting portion 526, and the protruding pillar position limiting portion 526 may be located in the inner cavity and stop on a cavity wall of the inner cavity.
Specifically, the boss 522 may include a boss body and a boss stopper 526 fixed to an outer circumferential wall of the boss body, the boss stopper 526 may be protruded and extended along a circumferential direction of the boss body, the boss 522 located at one side of the boss stopper 526 may be a cavity inner end 5221, the cavity inner end 5221 may be accommodated within the internal cavity, the boss 522 located at the other side of the boss stopper 526 may be a cavity outer end 5222, and the cavity outer end 5222 may be located outside the internal cavity.
Optionally, the protruding column 522 may be a cylinder, the protruding column limiting portion 526 may be a circular ring, a protruding column through hole 5212 is provided on the hole wall of the middle through hole 5211, the protruding column through hole 5212 may be a circular hole, and the diameter of the protruding column through hole 5212 is smaller than the outer diameter of the protruding column limiting portion 526, and the diameter of the protruding column through hole 5212 is not smaller than the diameter of the protruding column body, thereby enabling the cavity outer end 5222 to penetrate out from the protruding column through hole 5212 and be stopped on the cavity wall of the internal cavity through the protruding column limiting portion 526, i.e., the axial moving stroke of the protruding column 522 may be limited by the protruding column limiting portion 526. That is, the outer end 5222 of the cavity can be inserted into the groove 513 such that the post 522 is snap-fit into the groove 513.
In order to enable the protruding column 522 to automatically reset, the second connection unit 52 may further include a return spring 523, the return spring 523 may be sleeved on the periphery of the inner end 5221 of the cavity of the protruding column 522, and two ends of the return spring 523 may respectively abut against the cavity wall of the internal cavity and one side of the protruding column limiting portion 526 facing the inner end of the cavity.
With continued reference to fig. 4 and 7, the return spring 523 may be disposed in the internal cavity of the fixing member 521 and sleeved on the inner end 5221 of the cavity, the return spring 523 may be in a compressed state, and two ends of the return spring 523 may respectively abut against the cavity wall of the internal cavity and one side of the convex column limiting portion 526 facing the internal cavity. As an example, one convex pillar 522 is respectively disposed at both sides of the fixing member 521 along the circumferential direction of the fryer assembly, that is, both sides of the fixing member 521 in the width direction are respectively provided with the convex pillars 522, and the two convex pillars 522 are symmetrically disposed, and a return spring 523 is respectively disposed on each convex pillar 522 to keep the convex pillar 522 positioned in the groove 513 during the operation of the first connecting unit 51, thereby improving the connection reliability of the connection assembly.
Referring to fig. 4, 7 and 8, in order to connect the second connection unit 52, a mounting through hole may be provided on a sidewall of the pot body 20, and the second connection unit 52 may be received in the mounting through hole. Optionally, to prevent heat within fryer pot 20 from escaping through the gap between the mounting through-hole and first coupling unit 51, fryer assembly may further include a seal 53 compressed between first unit body 511 and fryer pot 20 to improve the sealing of fryer assembly, for example and without limitation, seal 53 may be annular. Specifically, the sealing member 53 may include a sealing member body 531, a fixing groove 532 is disposed on an outer circumferential wall of the sealing member body 531, and the fixing groove 532 may be clamped on a side wall of the mounting through hole of the pot body 20. Alternatively, the sealing member 53 may be made of a silicone material, but not limited thereto.
In order to further improve the connection stability of the sealing member 53, the fixing member 521 is provided with a U-shaped ring groove capable of accommodating the sealing member 53, so that the sealing member 53 is not easily separated from the U-shaped ring groove, thereby improving the connection stability of the sealing member 53. To further improve the sealing effect of the seal 53, the opening of the U-shaped ring groove is directed toward the first unit body 511, the inner ring side of the seal 53 may be flush with the opening of the U-shaped ring groove, or the inner ring side of the seal 53 may protrude toward the first unit body 511 with respect to the opening of the U-shaped ring groove. With this arrangement, the inner ring side of the seal 53 can be brought into sufficient contact with the first unit body 511, thereby improving the sealing effect of the seal 53.
Referring to fig. 8, optionally, an annular rib 533 extending in the circumferential direction of the seal 53 is provided on a side wall of the seal 53 facing the first unit body 511. With this arrangement, the contact area between the seal 53 and the first unit body 511 can be further increased, thereby further improving the sealability of the connection assembly.
In an exemplary embodiment of the present disclosure, the fryer assembly further includes a connecting assembly including a first connecting unit 51 and a second connecting unit 52 detachably coupled to each other, the first connecting unit 51 and the second connecting unit 52 are respectively fixed to the coupling end and the mounting through hole of the bottom heating assembly 40, the second connecting unit 52 has a middle through hole 5211, and the coupling end of the bottom heating assembly 40 can be fastened to the middle through hole 5211 and protrude outside the middle through hole 5211. So set up, through the cooperation of first coupling unit 51 and second coupling unit 52, realize being connected in dismantling of bottom heating element 40 and pot body 20, further improved bottom heating element 40's dismouting convenience.
Optionally, one of the first connection unit 51 and the second connection unit 52 is provided with a groove 513, and the other one of the first connection unit 51 and the second connection unit 52 is provided with a convex pillar 522 matched with the groove 513, and the convex pillar 522 can be clamped in the groove 513. So set up, insert on recess 513 through projection 522, can improve bottom heating element 40 and pot body 20's stability of being connected to bottom heating element 40's connection reliability can be improved.
Specifically, the first connection unit 51 includes a first unit body 511, the groove 513 is disposed on the outer circumferential wall of the first unit body 511 along both sides of the circumferential direction of the pot body 20, the second connection unit 52 includes a fixing member 521, a middle through hole 5211 is disposed in the middle of the fixing member 521 and is matched with the first unit body 511, and the protrusion 522 is slidably disposed on the fixing member 521 and can extend into the groove 513. The connecting assembly provided by the disclosure has the advantages of simple structure, low manufacturing cost, compact structure and small occupied volume.
Further, the boss 522 is disposed at an outer side of the pot body 20, and the first connection unit 51 further includes a stopping protrusion 512, and the stopping protrusion 512 is disposed at an inner side of the pot body 20 and protrudes from an outer circumferential wall of the first unit body 511. With such an arrangement, the second connection unit 52 can be stably disposed on the pot body 20 by the cooperation of the protruding column 522 and the stopping protruding portion 512, so that the connection reliability of the second connection unit 52 is improved.
Referring to fig. 9, in another exemplary embodiment of the present disclosure, the fixing member 521 has an inner cavity, the protruding pillar 522 is partially disposed in the inner cavity, a protruding pillar position-limiting portion 526 is disposed on an outer circumferential wall of the protruding pillar 522, and the protruding pillar position-limiting portion 526 is located in the inner cavity and stops on a cavity wall of the inner cavity. So set up, can restrict the stroke of projection 522, prevent that projection 522 and mounting 521 from breaking away from to coupling assembling's connection reliability has further been improved.
Optionally, in order to enable the protruding column 522 to automatically reset, the second connection unit 52 further includes a return spring 523, the return spring 523 is sleeved on the periphery of the inner end 5221 of the cavity of the protruding column 522, and two ends of the return spring 523 respectively abut against the cavity wall of the inner cavity and one side of the protruding column limiting portion 526 facing the inner end 5221 of the cavity. So set up, under reset spring 523's effect, projection 522 can automatic re-setting to coupling assembling's convenience has been improved.
Further, the connection assembly further includes a sealing element 53, the sealing element 53 includes a sealing element body 531, the sealing element body 531 is annular, a fixing clamping groove 532 is arranged on an outer ring of the sealing element body 531, the fixing clamping groove 532 is wrapped on the edge of the installation through hole, and the sealing element 53 is compressed between the first unit body 511 and the fixing element 521. By such arrangement, the sealing performance of the connecting assembly is improved, and the heat of the bottom heating assembly 40 is prevented from overflowing through the gap between the first connecting unit 51 and the pot body 20.
Specifically, the fixing member 521 is provided with a ring groove capable of accommodating the sealing member 53, the cross section of the ring groove is U-shaped, an opening of the ring groove faces the first unit body 511, and the sealing member 53 is embedded in the ring groove. Thus, by disposing the sealing member 53 in the ring groove, the connection stability of the sealing member 53 is improved, thereby further improving the connection reliability of the connection assembly.
Further, the inner ring side of the seal 53 is flush with the opening of the ring groove, or the inner ring side of the seal 53 protrudes toward the first unit body 511 with respect to the opening of the ring groove; and/or, an annular convex strip 533 extending along the circumferential direction of the sealing member 53 is provided on the side wall of the sealing member 53 facing the first unit body 511. With this arrangement, the contact area between the sealing member 53 and the first unit body 511 is increased, and the sealing property of the connection assembly is further improved.
With continued reference to the figures, the bottom heating element 40 is spaced from the food support web 30 to prevent the food support web 30 from directly contacting the bottom heating element 40, which may cause the local temperature of the food to be too high, thereby affecting the taste of the food. The bottom heating assembly 40 is provided with a space with the bottom wall of the pot body 20, a certain oil storage space is reserved in the inner cavity of the pot body, the bottom heating assembly 40 is prevented from being immersed into soup or grease in the oil storage space, and therefore the operation reliability of the bottom heating assembly 40 is improved.
Optionally, the cooking utensil further comprises a body 10 and a top heating assembly 112, the body 10 has an inner accommodating cavity 12, a coupling member 134 is fixed on a side wall of the body 10, a coupling end of the coupling member 134 is horizontally arranged towards the inner accommodating cavity 12, the pot body 20 is arranged in the inner accommodating cavity 12, a mounting through hole of the pot body 20 is opposite to the coupling member 134 so that the coupling member 134 can be electrically coupled with the bottom heating assembly 40, and the top heating assembly 112 is arranged above the inner accommodating cavity 12. So configured, the top heating element 112 and the bottom heating element 40 of the present disclosure can cooperate to heat the food inside the inner cavity 12 more uniformly, thereby improving the taste of the food.
In the description of the present disclosure, it is to be understood that the terms "center", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like indicate orientations or positional relationships based on those shown in the drawings, and are only for convenience in describing and simplifying the disclosure, and do not indicate or imply that the referred device or element must have a specific orientation, be constructed in a specific orientation, and be operated, and thus, should not be construed as limiting the disclosure.
The terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of the present disclosure, "a plurality" means two or more unless otherwise specified.
In the description of the present disclosure, it is to be noted that, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, e.g., as meaning either a fixed connection, a removable connection, or an integral connection; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present disclosure can be understood in specific instances by those of ordinary skill in the art.
The described features, structures, or characteristics of the disclosure may be combined in any suitable manner in one or more embodiments. In the above description, numerous specific details are provided to give a thorough understanding of embodiments of the disclosure. One skilled in the relevant art will recognize, however, that the subject matter of the present disclosure can be practiced without one or more of the specific details, or with other methods, components, materials, and so forth. In other instances, well-known structures, materials, or operations are not shown or described in detail to avoid obscuring aspects of the disclosure.

Claims (13)

1. A fryer assembly, characterized in that, fryer assembly includes:
a pot body (20) which is provided with a pot body inner cavity, the side wall of the pot body (20) is provided with a mounting through hole,
the food supporting net (30) is arranged in the inner cavity of the pot body;
bottom heating element (40), arrange in the internal chamber of pot body, bottom heating element (40) set up in food supporting network (30) with between the diapire of the pot body (20), bottom heating element (40) have the coupling end, the coupling end of bottom heating element (40) install in the mounting hole, make bottom heating element's coupling end expose the pot body (20) outside.
2. The fryer assembly of claim 1, further comprising a connecting assembly including a first connecting unit (51) and a second connecting unit (52) which are detachable from each other, the first connecting unit (51) and the second connecting unit (52) being fixed to the coupling end of the bottom heating assembly (40) and the mounting through hole, respectively, the second connecting unit (52) having a central through hole (5211), the coupling end of the bottom heating assembly (40) being capable of being snapped into the central through hole (5211).
3. Fryer assembly according to claim 2, characterised in that one of said first connection unit (51) and said second connection unit (52) is provided with a recess (513) and the other with a stud (522) matching said recess (513), said stud (522) being able to be lodged in said recess (513).
4. The fryer assembly of claim 3, wherein the first coupling unit (51) includes a first unit body (511), the recess (513) is provided on the outer circumferential wall of the first unit body (511) along both circumferential sides of the pot (20), the second coupling unit (52) includes a fixing member (522), the central through hole (5211) is provided in the middle of the fixing member (522) and is matched with the first unit body (511), and the boss (522) is slidably provided on the fixing member (522) and can protrude into the recess (513).
5. Fryer assembly according to claim 4, characterised in that said stud (522) is arranged on the outside of said pan (20), said first connection unit (51) further comprising a stop protrusion (512), said stop protrusion (512) being arranged protruding from the peripheral wall of said first unit body (511) and being arranged on the inside of said pan (20).
6. Fryer assembly according to claim 4, characterised in that said fixing element (521) has an internal cavity in which said stud (522) is partially arranged, the peripheral wall of said stud (522) being provided, projecting therefrom, with a stud-limiting portion (526), said stud-limiting portion (526) being located inside said internal cavity and stopping on the wall of said internal cavity.
7. The fryer assembly of claim 6, wherein the second connecting unit (52) further comprises a return spring (523), the return spring (523) is sleeved on the periphery of the inner cavity end (5221) of the stud (522), and two ends of the return spring (523) respectively abut against the cavity wall of the inner cavity and one side of the stud limiting portion (526) facing the inner cavity end (5221).
8. Fryer assembly according to any one of claims 4 to 7, characterised in that a seal (53) is provided between said first connection unit (41) and said second connection unit (42).
9. The fryer assembly according to claim 8, wherein the sealing member (53) comprises a sealing member body (531), the sealing member body (531) is annular, a fixing clamping groove (532) is formed in the outer ring of the sealing member body (531), the fixing clamping groove (532) is wrapped on the edge of the installation through hole, and the sealing member (53) is compressed between the first unit body (511) and the fixing member (521).
10. Fryer assembly according to claim 9, characterised in that said fixing element (521) is provided with a ring groove able to receive said sealing element (53), said ring groove being U-shaped in cross section, said ring groove opening towards said first unit body (511), said sealing element (53) being embedded in said ring groove.
11. Fryer assembly according to claim 10, characterised in that the inner annular side of said seal (53) is flush with the opening of said ring groove or the inner annular side of said seal (53) protrudes towards said first unit body (511) with respect to the opening of said ring groove; and/or the like, and/or,
an annular convex strip (533) extending along the circumferential direction of the sealing piece (53) is arranged on the side wall of the sealing piece (53) facing the first unit body (511).
12. Fryer assembly according to claim 1, characterised in that a spacing is provided between said bottom heating assembly (40) and said food supporting grid (30) and/or a spacing is provided between said bottom heating assembly (40) and the bottom wall of said pan (20).
13. A cooking appliance, characterized in that it comprises a body (10) and a fryer assembly according to any one of claims 1 to 12, the body (10) having an internal housing cavity (12), the fryer assembly being disposed in the internal housing cavity (12), a coupling element (134) being fixed on a side wall of the body (10), a coupling end of the coupling element (134) being horizontally disposed towards the internal housing cavity (12), a mounting through hole of the pan body (20) being opposite to the coupling element (134) to enable the coupling element (134) to be electrically coupled with the bottom heating assembly (40), the body (10) comprising a top heating assembly (112), the top heating assembly (112) being disposed above the internal housing cavity (12).
CN202122048632.3U 2021-08-27 2021-08-27 Fryer pot subassembly and cooking utensil Active CN215687074U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122048632.3U CN215687074U (en) 2021-08-27 2021-08-27 Fryer pot subassembly and cooking utensil

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122048632.3U CN215687074U (en) 2021-08-27 2021-08-27 Fryer pot subassembly and cooking utensil

Publications (1)

Publication Number Publication Date
CN215687074U true CN215687074U (en) 2022-02-01

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122048632.3U Active CN215687074U (en) 2021-08-27 2021-08-27 Fryer pot subassembly and cooking utensil

Country Status (1)

Country Link
CN (1) CN215687074U (en)

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