CN216876053U - Integrated kitchen with top heated air circulation oven - Google Patents

Integrated kitchen with top heated air circulation oven Download PDF

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Publication number
CN216876053U
CN216876053U CN202123312982.2U CN202123312982U CN216876053U CN 216876053 U CN216876053 U CN 216876053U CN 202123312982 U CN202123312982 U CN 202123312982U CN 216876053 U CN216876053 U CN 216876053U
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China
Prior art keywords
heat dissipation
inner container
air
oven
fan
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CN202123312982.2U
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Chinese (zh)
Inventor
俞涤锋
吕刚
张校豪
张祥程
邢双喜
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Bigdipper Smart Electric Appliance Co Ltd
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Bigdipper Smart Electric Appliance Co Ltd
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Abstract

The utility model relates to an integrated cooker with a top heated air circulation oven, comprising: the oven comprises a frame, and an air box assembly and an oven assembly which are arranged in the frame; the oven assembly includes: the hot air circulating fan is arranged on the inner container; the inner container is a box body with a forward opening; the box door is hinged to the front side of the inner container to open or close the opening; the hot air circulating fan is arranged on the top shell of the inner container; the hot air circulating fan comprises a motor and a fan; the motor is in driving connection with the fan and is positioned above the top shell of the inner container; the fan is positioned below the top shell of the inner container; the heat dissipation air duct is arranged above the inner container and is provided with a hollow heat dissipation cavity. The integrated stove with the top hot air circulation oven provided by the utility model solves the problem of heat dissipation of the circulating fan by arranging the accommodating cavity on the heat dissipation channel.

Description

Integrated kitchen with top heated air circulation oven
Technical Field
The utility model belongs to the technical field of cooking appliances, and particularly relates to an integrated stove with a top hot air circulation oven.
Background
The current integrated kitchen that possesses oven (or evaporate roast integrative) function, the range hood bellows module of integrated kitchen is installed at the rear side of oven module usually, has reduced the oven module in the ascending installation space in front and back direction, and this just makes the homogeneity heated air circulation fan of guaranteeing oven inner chamber temperature field hardly install at the inner chamber rear side, and consequently the heated air circulation fan of oven module installs at the left and right both sides of inner chamber on the integrated kitchen is many. When the heated air circulation fan is arranged at the top of the inner cavity, the oven module is provided with the installation areas of the stove module and the electric control module, so that higher requirements are provided for the heat dissipation structure of the heated air circulation fan.
SUMMERY OF THE UTILITY MODEL
Technical problem to be solved
Aiming at the existing technical problems, the utility model provides an integrated stove with a top hot air circulation oven, which solves the problem of heat dissipation of a circulating fan by arranging an accommodating cavity on a heat dissipation channel.
(II) technical scheme
In order to achieve the purpose, the utility model adopts the main technical scheme that:
an integrated cooker with a top heated air circulation oven comprising: the oven comprises a frame, and an air box assembly and an oven assembly which are arranged in the frame;
the oven assembly includes: the hot air circulating fan is arranged on the inner container;
the inner container is a box body with a forward opening;
the box door is hinged to the front side of the inner container to open or close the opening;
the hot air circulating fan is arranged on the top shell of the inner container;
the hot air circulating fan comprises a motor and a fan;
the motor is in driving connection with the fan and is positioned above the top shell of the inner container;
the fan is positioned below the top shell of the inner container;
the heat dissipation air channel is arranged above the inner container and is provided with a hollow heat dissipation cavity;
the front end of the heat dissipation cavity is provided with an air inlet corresponding to the box door;
the rear end of the heat dissipation cavity is provided with an air outlet communicated with the inner cavity of the air box assembly;
an accommodating cavity is further formed in the outer side of the heat dissipation air duct;
the accommodating cavity is used for accommodating part or all of the motor.
Preferably, the heat dissipation duct includes: an upper case and a lower case;
the upper shell and the lower shell are combined to form a hollow heat dissipation cavity;
the middle part of the lower shell is provided with a circular wall extending towards the upper shell;
the annular wall encloses the hollow accommodating cavity.
Preferably, the annular wall is connected to the lower surface of the upper shell to form the accommodating cavity with a downward opening, and the opening corresponds to the motor.
Preferably, a plurality of heat dissipation holes are formed in the part of the upper shell, which is located in the accommodating cavity.
Preferably, the middle part of the upper shell is provided with a window opposite to the annular wall;
the annular wall is connected to the edge of the window to form the accommodating cavity which is communicated up and down.
Preferably, the bottom end of the annular wall is closed;
the accommodating cavity is a groove directly formed on the lower shell;
the bottom end of the groove is abutted to the upper shell or arranged at intervals.
Preferably, the annular wall is further provided with a bleed port.
Preferably, the number of the heat dissipation air ducts is two, and the two heat dissipation air ducts are respectively arranged on two sides of the hot air circulating fan.
Preferably, one side of the heat dissipation air duct, which faces the hot air circulation fan, is provided with an air guide hole.
Preferably, an exhaust member is inserted into the air outlet;
an exhaust channel which is communicated with the front and the back is arranged in the exhaust piece;
one end of the exhaust piece is inserted into the air outlet, and the other end of the exhaust piece is movably inserted into the air box assembly.
(III) advantageous effects
The utility model has the beneficial effects that: the integrated cooker with the top hot air circulation oven provided by the utility model has the following beneficial effects:
the heat dissipation problem of the circulating fan is solved by arranging the accommodating cavity on the heat dissipation channel.
Drawings
Fig. 1 is a complete machine view of an integrated oven range with a top hot air circulation oven in the integrated oven range provided by the utility model;
fig. 2 is an exploded view of an integrated oven range with a top heated air circulation oven according to the present invention;
FIG. 3 is a structural view of an oven in an integrated cooker with a top hot air circulation oven provided by the present invention;
fig. 4 is a sectional view of an integrated cooker in an integrated cooker having a top hot air circulation oven provided by the present invention;
FIG. 5 is an enlarged partial cross-sectional view of a cooking chamber with a drainage structure and an oven integrated with a range according to the present invention;
FIG. 6 is an exploded view of an integrated cooktop oven with a top heated air circulation oven according to the present invention;
FIG. 7 is a diagram of an example of a heat dissipation air duct in an integrated oven with a top hot air circulation oven according to the present invention;
fig. 8 is a sectional view of a first example of a heat dissipation air duct in an integrated cooker with a top hot air circulation oven according to the present invention;
FIG. 9 is an exploded view of a heat dissipating air duct according to an embodiment of the present invention in an integrated cooking stove having a top heated air circulation oven;
FIG. 10 is an exploded view of an exemplary two heat dissipation air ducts in an integrated oven with a top heated air circulation oven according to the present invention;
FIG. 11 is an exploded view of an example two heat dissipation air ducts in an integrated oven with a top heated air circulation oven according to the present invention;
fig. 12 is an overall view of an example four-oven in an integrated cooker with a top hot air circulation oven provided by the present invention;
fig. 13 is an exploded view of an example four heat dissipation paths in an integrated cooker having a top heated air circulation oven provided by the present invention.
[ description of reference ]
1: a frame;
2: a bellows assembly; 201: a lateral opening of the bellows; 202: a smoke inlet; 203: a smoke exhaust port;
3: an oven;
31: an inner container; 311: a top shell;
32: a box door;
33: a heat radiation fan; 331: a motor; 332: a fan;
34: a heat dissipation air duct; 340: a heat dissipation cavity; 3401: an air inlet; 3402: gas outlet: 341: an upper shell; 3410: a window; 342: a lower case; 3421: bottom wall: 3422: an annular wall; 34221: a priming port; 3423: a side wall; 34231: an air vent; 343: an accommodating chamber;
35: an exhaust member; 350: an exhaust passage;
36: a support frame;
4: a machine head; 5: a kitchen range.
Detailed Description
For the purpose of better explaining the present invention and to facilitate understanding, the present invention will be described in detail by way of specific embodiments with reference to the accompanying drawings.
As shown in fig. 1-13: the embodiment discloses an integrated kitchen with top heated air circulation oven includes: a frame 1, and a wind box assembly 2 and an oven assembly 3 which are arranged in the frame 1.
It should be noted that: this frame 1 also includes: a support frame 36; the support frame 36 here serves to support the bellows assembly 2 and the oven assembly 3.
In detail, the oven assembly 3 comprises: the inner container 31, the door 32, the hot air circulating fan 33 and the heat dissipation air duct 34; the inner container 31 is a box body with a forward opening; the door 32 is hinged to the front side of the inner container 31 to open or close the opening; the hot air circulating fan 33 is arranged on the top shell 311 of the inner container 31; the hot air circulation fan 33 includes a motor 331 and a fan 332; the motor is in driving connection with the fan and is positioned above the top shell of the inner container; the fan 332 is positioned below the top shell 311 of the inner container 31; the heat dissipation air duct 34 is disposed above the inner container 31 and has a hollow heat dissipation chamber 340.
The front end of the heat dissipation cavity 340 is provided with an air inlet 3401 corresponding to the box door 32; the rear end of the heat dissipation cavity 340 is provided with an air outlet 3402 communicated with the inner cavity of the air box assembly 2; an accommodating cavity 343 is further arranged outside the heat dissipation air duct 34; the accommodating cavity is used for accommodating part or all of the motor 331.
The receiving chamber 343 provides a physical space for the motor 331 provided with the heated air circulation fan 33 at the top of the inner container 31.
In this embodiment, the heat dissipation air duct 34 includes: an upper case 341 and a lower case 342; the upper shell and the lower shell are combined to form a hollow heat dissipation cavity 340; an annular wall 3422 extending towards the upper shell 341 is formed in the middle of the lower shell 342; the annular wall 3422 encloses the hollow accommodating cavity 343.
Implementing one step: the annular wall 3422 in this embodiment is connected to the lower surface of the upper shell 341 to form the accommodating cavity 343 with an opening facing downward, and the opening corresponds to the motor 331.
The accommodating cavity 343 is of a structure with a closed upper end and an open lower end; the connection is preferably an abutment, but can also be welded, glued, screwed or riveted.
A plurality of heat dissipation holes 3411 are formed in a portion of the upper case 341 in the accommodating cavity 343.
The heat radiation holes 3411 can enhance the heat radiation effect.
Example two: the middle of the upper shell 341 in this embodiment is provided with a window 3410 opposite to the annular wall 3422; the annular wall 3422 is connected to the edge of the window 3410 to form the receiving cavity 343 which is through from top to bottom.
Specifically, the accommodating cavity 343 is an up-and-down through structure; the connection is preferably an abutment, but can also be welded, glued, screwed or riveted.
Example three: the bottom end of the annular wall 3422 is closed as described in this embodiment; the accommodating cavity 343 is a groove directly formed on the lower shell 342; the bottom end of the groove abuts against the upper shell 341, or is arranged at intervals.
The annular wall 3422 is further provided with an air-bleed port 34221.
Example four: in this embodiment, two heat dissipation air ducts 34 are provided, and are respectively disposed on two sides of the heated air circulation fan 33. One side of the heat dissipation air duct 34 facing the heated air circulation fan 33 is provided with an air entraining hole 34231.
An exhaust member 35 is inserted into the air outlet 3402 in the embodiment; an exhaust channel 350 which is communicated with the front and the rear is formed in the exhaust member 35; one end of the exhaust member 35 is inserted into the air outlet 3402, and the other end is movably inserted into the air box assembly 2.
Bellows subassembly 2 in this embodiment has hollow bellows inner chamber, install centrifugal fan in it, the upper end of bellows subassembly 2 is opened there is the smoke inlet 202 with aircraft nose 4 intercommunication, the side is opened there is exhaust port 203, bellows side opening 201 has been seted up to one side relative with heat dissipation wind channel 34, the exhaust member 35 activity of 34 rear ends in the heat dissipation wind channel is inserted and is located bellows side opening 201, bellows inner chamber 20 is the negative pressure state when centrifugal fan operates, the air of 2 inner chambers of door can be extracted to the air inlet 3401 of heat dissipation wind channel 34, make the air from upwards passing the door body down realize the door body cooling.
An accommodating cavity 343 for accommodating the circulating fan motor 331 is formed in the middle of the heat dissipation air duct 34, the heat dissipation of the motor can enter the heat dissipation air duct 34 through a heat exchange mode, a hole can be formed in the heat dissipation air duct 34 towards the wall surface of the motor 331, and hot air around the motor is sucked away by means of negative pressure in the heat dissipation air duct 34, so that heat dissipation is realized.
The technical principles of the present invention have been described above in connection with specific embodiments, which are intended to explain the principles of the present invention and should not be construed as limiting the scope of the present invention in any way. Based on the explanations herein, those skilled in the art will be able to conceive of other embodiments of the utility model without inventive step, which shall fall within the scope of the utility model.

Claims (10)

1. An integrated cooker with a top heated air circulation oven, comprising: the oven comprises a frame, and an air box assembly and an oven assembly which are arranged in the frame;
the oven assembly includes: the hot air circulating fan is arranged on the inner container;
the inner container is a box body with a forward opening;
the box door is hinged to the front side of the inner container to open or close the opening;
the hot air circulating fan is arranged on the top shell of the inner container;
the hot air circulating fan comprises a motor and a fan;
the motor is in driving connection with the fan and is positioned above the top shell of the inner container;
the fan is positioned below the top shell of the inner container;
the heat dissipation air duct is arranged above the inner container and is provided with a hollow heat dissipation cavity;
the front end of the heat dissipation cavity is provided with an air inlet corresponding to the box door;
the rear end of the heat dissipation cavity is provided with an air outlet communicated with the inner cavity of the air box assembly;
an accommodating cavity is further formed in the outer side of the heat dissipation air duct;
the accommodating cavity is used for accommodating part or all of the motor.
2. The integrated cooker according to claim 1,
the heat dissipation air duct includes: an upper case and a lower case;
the upper shell and the lower shell are combined to form a hollow heat dissipation cavity;
the middle part of the lower shell is provided with a circular wall extending towards the upper shell;
the annular wall encloses the hollow accommodating cavity.
3. The integrated cooker according to claim 2,
the annular wall is connected to the lower surface of the upper shell to form the accommodating cavity with the opening facing downwards, and the opening corresponds to the motor.
4. The integrated cooker according to claim 3,
the upper shell is provided with a plurality of heat dissipation holes in the accommodating cavity.
5. The integrated cooker according to claim 2,
the middle part of the upper shell is provided with a window opposite to the annular wall;
the annular wall is connected to the edge of the window to form the accommodating cavity which is communicated up and down.
6. The integrated cooker according to claim 2,
the bottom end of the annular wall is closed;
the accommodating cavity is a groove directly formed on the lower shell;
the bottom end of the groove is abutted to the upper shell or arranged at intervals.
7. The integrated cooker according to claim 2,
and the annular wall is also provided with an air-entraining port.
8. The integrated cooker according to claim 1, wherein the number of the heat dissipation air ducts is two, and the two heat dissipation air ducts are respectively arranged on two sides of the hot air circulating fan.
9. The integrated cooker according to claim 8,
and one side of the heat dissipation air duct, which faces the hot air circulating fan, is provided with an air guide hole.
10. The integrated cooker according to claim 1,
an exhaust part is inserted into the air outlet;
an exhaust channel which is communicated with the front and the back is arranged in the exhaust piece;
one end of the exhaust piece is inserted into the air outlet, and the other end of the exhaust piece is movably inserted into the air box assembly.
CN202123312982.2U 2021-12-27 2021-12-27 Integrated kitchen with top heated air circulation oven Active CN216876053U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123312982.2U CN216876053U (en) 2021-12-27 2021-12-27 Integrated kitchen with top heated air circulation oven

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123312982.2U CN216876053U (en) 2021-12-27 2021-12-27 Integrated kitchen with top heated air circulation oven

Publications (1)

Publication Number Publication Date
CN216876053U true CN216876053U (en) 2022-07-05

Family

ID=82208187

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123312982.2U Active CN216876053U (en) 2021-12-27 2021-12-27 Integrated kitchen with top heated air circulation oven

Country Status (1)

Country Link
CN (1) CN216876053U (en)

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