CN220152820U - Integrated kitchen - Google Patents

Integrated kitchen Download PDF

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Publication number
CN220152820U
CN220152820U CN202321628179.6U CN202321628179U CN220152820U CN 220152820 U CN220152820 U CN 220152820U CN 202321628179 U CN202321628179 U CN 202321628179U CN 220152820 U CN220152820 U CN 220152820U
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CN
China
Prior art keywords
heat dissipation
chassis
cooking utensils
integrated
gap
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Application number
CN202321628179.6U
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Chinese (zh)
Inventor
徐杰波
吴双柱
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Zhejiang Shuaikang Electric Stock Co Ltd
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Zhejiang Shuaikang Electric Stock Co Ltd
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Priority to CN202321628179.6U priority Critical patent/CN220152820U/en
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Abstract

The utility model provides an integrated kitchen, is in including steaming roast unit and setting steaming roast unit top's cooking utensils, steaming roast unit with have the installation clearance between the cooking utensils, the cooking utensils includes the cooking utensils casing, the cooking utensils casing includes chassis and lid are established panel on the chassis, the chassis with still be formed with the heat dissipation gap between the panel, the louvre has been seted up to the chassis, louvre department is provided with cooling fan, cooling fan will the steam in the installation clearance is inhaled in the cooking utensils casing and is passed through the heat dissipation gap is discharged the cooking utensils casing. Compared with the prior art, the technical scheme provided by the utility model has the following advantages: the novel heat-dissipating structure fully utilizes the existing structure, has ingenious design, simple structure, small number of parts, low cost, high heat-dissipating efficiency and low noise, and is convenient to produce and assemble.

Description

Integrated kitchen
Technical Field
The utility model relates to an integrated cooker.
Background
At present, an integrated kitchen has become a trend product in a household kitchen, and various combination modes are derived among various functional units of the integrated kitchen, wherein the combination mode of the kitchen range and the steaming and baking integrated machine is quite common. However, among the integrated kitchen products of the existing kitchen ranges combined with the steaming and baking integrated machine, there are few products capable of efficiently radiating heat for the steaming and baking integrated machine.
Although few manufacturers try to produce products which are used for efficiently radiating heat for the steaming and baking integrated machine, the structure is very complex, and the number of accessory parts is large.
For example, chinese patent publication No. CN214791268U entitled "embedded integrated oven" discloses: comprises a cooking device (3) with a box body (30) and a kitchen range (2) arranged on the cooking device (3), the kitchen range (2) comprises a kitchen range shell (20), the kitchen range shell (20) comprises a chassis (21) with an opening at the upper part and a panel (22) covered on the opening of the chassis (21), the rear side of the panel (22) is provided with an exhaust port (222), the kitchen range shell (20) is internally provided with a first heat dissipation channel (4) with a first heat dissipation fan (5), the air inlet of the first heat dissipation channel (4) is in fluid communication with a first air inlet hole (221) arranged on the front side of the panel (22), the air outlet of the first heat dissipation channel (4) is in fluid communication with the air inlet of the exhaust port (222), the first heat dissipation fan (5) is arranged on the air inlet of the first heat dissipation channel (4), the first heat dissipation fan (5) is provided with a first air inlet (511) arranged at the top and a second air inlet (512) arranged at the bottom, a first heat dissipation fan (511) is arranged at the bottom, a first heat dissipation channel (6) is arranged between the bottom surface of the chassis (21) and the box body (30), the heat dissipation channel (4) is provided with a heat dissipation interlayer (6) and the heat dissipation layer (61) is formed in the direction of the heat dissipation channel, the first fan air inlet (511) of the first heat dissipation fan (5) is in fluid communication with the first air inlet hole (221) on the panel (22), and the second fan air inlet (512) is in fluid communication with the air guide hole (211). In the technical scheme of the utility model, even though the second fan air inlet (512) of the first heat dissipation fan (5) is in fluid communication with the air guide opening (211) formed in the bottom wall of the chassis (21) so as to discharge heat in the heat dissipation interlayer (6), the first heat dissipation fan (5) is positioned in the first heat dissipation channel (4), and the air outlet of the first heat dissipation channel (4) is communicated with the air outlet (222) formed in the rear side of the panel (22), that is, the first heat dissipation channel (4) with a complex structure is required to be arranged to exhaust air to the air outlet (222) formed in the rear side of the panel (22), so that the number of components is increased, for example, the first heat dissipation channel (4) and the air outlet (222) are required to be arranged independently, the structure is more complicated, and the vibration of the first heat dissipation channel (4) caused by the air exhaust can increase the noise intensity.
For another example, chinese patent publication No. CN216079908U entitled integrated kitchen range with cooking device, discloses: the cooking device comprises a cooking device (1) with a box body (10) and a kitchen range (2) arranged on the cooking device (1), the kitchen range (2) comprises a kitchen range shell (20), the kitchen range shell (20) comprises a chassis (201) with an opening at the upper part and a panel (202) covered on the chassis (201), an exhaust window (2021) is formed on the rear side of the panel (202), an exhaust cavity (60) and a heat dissipation channel (50) are respectively arranged in the kitchen range shell (20) of the kitchen range (2), wherein the exhaust cavity (60) is provided with an air inlet (601) and an air outlet (602) which is in fluid communication with the exhaust window (2021), the heat dissipation channel (50) is provided with a heat dissipation fan (7), an air outlet port of the heat dissipation channel (50) is in fluid communication with the air inlet (601) of the exhaust cavity (60), a gap (3) is formed between the bottom surface of the chassis (201) of the kitchen range (2) and the top surface of the box body (10) of the cooking device (1), and the bottom wall of the kitchen range (201) is provided with the air inlet (2011) which is provided with the heat dissipation fan (2011) and the heat dissipation fan (2011) is further arranged below the air inlet (20119). The inner bottom surface of the chassis (201) is covered with an air deflector (5), the air deflector (5) and the inner bottom surface of the chassis (201) enclose the heat dissipation channel (50), and the heat dissipation fan (7) is arranged on an air inlet port of the heat dissipation channel (50). According to the technical scheme, although heat in a heat dissipation gap (3) formed between the bottom surface of the chassis (201) of the kitchen range (2) and the top surface of a box body (10) of the cooking device (1) can be discharged through a lower air inlet (2011) of a heat dissipation fan (7) arranged on the bottom wall of the chassis (201), an air outlet port of a heat dissipation channel (50) with the heat dissipation fan (7) can be discharged out of a kitchen range shell (20) through an air discharge cavity (60), the problems of redundancy of components and complex structure exist, and an air deflector (5) is covered on the inner bottom surface of the chassis (201) to form a heat dissipation channel (50), so that the space is obviously low and narrow, the flow of hot air flow is limited, and efficient heat removal cannot be achieved.
Disclosure of Invention
Aiming at the defects of the prior art, the utility model provides the integrated kitchen which fully utilizes the existing structure, has ingenious design, simple structure, small number of parts, convenient production and assembly, low cost, high heat dissipation efficiency and low noise.
The utility model mainly adopts the following technical scheme:
the utility model provides an integrated kitchen, is in including steaming roast unit and setting steaming roast unit top's cooking utensils, steaming roast unit with have the installation clearance between the cooking utensils, the cooking utensils includes the cooking utensils casing, the cooking utensils casing includes chassis and lid are established panel on the chassis, the chassis with still be formed with the heat dissipation gap between the panel, the louvre has been seted up to the chassis, louvre department is provided with cooling fan, cooling fan will the steam in the installation clearance is inhaled in the cooking utensils casing and is passed through the heat dissipation gap is discharged the cooking utensils casing.
The kitchen range further comprises a combustor, a partition plate is arranged in the kitchen range shell, the partition plate divides the space in the kitchen range shell into a front area and a rear area, the combustor is located in the range of the front area, and an air outlet of the heat dissipation fan is communicated with the heat dissipation gap through the rear area.
Wherein, the baffle extends in a straight line or in a bending shape in the kitchen range shell.
Wherein, the edge of baffle is formed with the installation turn-ups.
And a filler strip is clamped between the chassis and the panel, and the filler strip is in a shape and extends along the top edge of the chassis to form the heat dissipation gap.
Wherein, the bottom wall of the chassis is provided with a convex rib or a convex block at a position corresponding to the range of the rear area.
The cooling fan is located in the range of the front area, the partition plate is provided with a through hole, and an air outlet of the cooling fan penetrates through the through hole and is communicated with the rear area.
And the bottom wall of the chassis is also provided with positioning ribs, and the positioning ribs position the heat radiation fan.
The heat dissipation device further comprises a support bar, wherein the support bar is positioned behind the heat dissipation gap, and the whole support bar is in a long comb tooth shape.
According to the technical scheme of the utility model, the method has the following beneficial effects: the heat radiation fan sucks the hot air in the mounting gap into the cooker shell and discharges the hot air out of the cooker shell through the heat radiation gap, so that the structure of the existing components can be fully utilized, the production of redundant exhaust cavity and other components is avoided, the structural design is ingenious, and the cost is obviously reduced; the air supply of the burner is more stable and the combustion is more sufficient through the simply arranged partition plate component, and the air is not influenced by the exhaust of the air outlet of the heat radiation fan to the heat radiation gap through the rear area, so that favorable conditions are provided for high-speed exhaust and high-efficiency heat radiation; the bottom wall of the chassis is provided with convex ribs or bumps at the position corresponding to the rear area range, which can obviously improve the mechanical strength of the chassis and prevent unpleasant noise caused by vibration caused by high-speed exhaust.
Drawings
Fig. 1 is a schematic view of an integrated cooker.
FIG. 2 is a schematic view of the integrated cooktop structure after removing most of the accessories in the cooktop and opening the panel.
FIG. 3 is a schematic view of the back side of the integrated cooktop with some of the accessories and panels removed from the cooktop.
Fig. 4 is a bottom view schematically showing the structure of the cooking stove in fig. 3.
Fig. 5 is a schematic cross-sectional view of an integrated stove.
Fig. 6 is an enlarged view of a portion a in fig. 5.
The steam-baking unit 1, the kitchen range 2, the chassis 21, the heat dissipation holes 210, the convex ribs or bumps 211, the positioning ribs 212, the panel 22, the heat dissipation gap 23, the burner 24, the installation gap 3, the heat dissipation fan 4, the partition 5, the installation flange 50, the front area 51, the rear area 52, the 6 pad strips, the 7 support strips, the main frame 71 and the rack 72.
Detailed Description
The utility model is further elucidated below in connection with the accompanying drawings:
referring to fig. 1-6, an integrated kitchen comprises a steaming and baking unit 1 and a kitchen range 2 arranged above the steaming and baking unit 1, wherein an installation gap 3 is formed between the steaming and baking unit 1 and the kitchen range 2, the kitchen range 2 comprises a kitchen range shell, the kitchen range shell comprises a chassis 21 and a panel 22 covered on the chassis 21, a heat dissipation gap 23 is further formed between the chassis 21 and the panel 22, the chassis 21 is provided with a heat dissipation hole 210, a heat dissipation fan 4 is arranged at the heat dissipation hole 210, and the heat dissipation fan 4 sucks hot air in the installation gap 3 into the kitchen range shell and discharges the kitchen range shell through the heat dissipation gap 23. According to the utility model, the heat dissipation gap is arranged, so that the heat dissipation, even the exhaust and smoke discharging functions of the integrated kitchen steaming and baking unit can be realized by utilizing the existing structure of the kitchen range shell, and the additional air duct, the exhaust cavity and other accessory parts are not required to be arranged for exhausting and heat dissipation, so that the structure is simpler, the design is reasonable and ingenious, the number of parts is small, and the cost is low. In the utility model, the steaming and baking unit is generally arranged in a kitchen cabinet of a household kitchen, the kitchen range is arranged at the opening of the table top, the chassis is upwards opened and is provided with a turned edge, and the kitchen range is arranged on the upper surface of the edge of the opening of the table top through the turned edge. Preferably, a flange protrusion is formed on the flange of the chassis 21 corresponding to the heat dissipation slit 23 to support the rising panel 22, and the flange protrusion also plays a role of uniform air-out.
Referring to fig. 2, 3 and 5, the stove 2 further includes a burner 24, a partition 5 is disposed in the stove housing, the partition 5 divides the space in the stove housing into a front area 51 and a rear area 52, the burner 24 is located within the range of the front area 51, and an air outlet of the heat dissipation fan 4 is communicated with the heat dissipation gap 23 through the rear area 52. In the utility model, the arrangement of the partition plate is beneficial to isolating the air flow of the front area and the rear area, so that the flame of the burner in the range of the front area is stabilized, and the full combustion of fuel gas is ensured; the air flow in the front area is not influenced even if high-speed exhaust is carried out in the rear area, and favorable conditions are provided for realizing efficient heat dissipation.
Referring to fig. 2, 3 and 5, the partition 5 extends in a straight line or in a bent shape in the stove housing. Preferably, the partition 5 extends in a bent shape in the hob housing to accommodate the arrangement of other components in the hob housing.
Referring to fig. 2 and 3, the edge of the partition 5 is formed with a mounting flange 50. Preferably, the bottom end of the partition 5 forms a bottom end installation flange, and the bottom end installation flange is fixed on the chassis 21; the top end of the partition board 5 is provided with a top end installation flanging which is fixed on the panel 22; the partition plate 5 is formed with side mounting flanges on both side edges thereof, which are fixed to the side walls of the chassis 21. Preferably, the longitudinal section of the separator 5 is in a straightened Z shape, [ shape, i-shape, etc.
Referring to fig. 2, 3 and 5, a filler strip 6 is sandwiched between the chassis 21 and the panel 22, and the filler strip 6 extends along the top edge of the chassis 21 in a shape of as a whole to form a heat dissipation slit 23. In the present utility model, the filler strip is generally " -shaped" including, but not limited to, unsealed shapes, such as approximately C-shaped, in which at least one of the two ends (a start end and an end) that evolve on the basis of the "" word extends toward each other. Preferably, the mounting positions of the mounting flanges at the two side edges of the partition board 5 correspond to the positions of the starting end and the tail end of the gasket strip 5 respectively, so that the unsealed position of the gasket strip can be effectively ensured to be just separated by the partition board.
Referring to fig. 2-4, the bottom wall of the chassis 21 is formed with ribs or bumps 211 at positions corresponding to the extent of the rear region 52. In the utility model, the bottom wall of the chassis can improve the mechanical strength of the bottom wall of the chassis by forming the convex ribs or the convex blocks at the positions corresponding to the range of the rear area, and even if the air outlet of the cooling fan discharges high-speed air flow, the vibration of the bottom wall can not be induced.
Referring to fig. 2, 3 and 5, the heat dissipation fan 4 is located in the front area 51, the partition board 5 is provided with a through hole, and the air outlet of the heat dissipation fan 4 is communicated with the rear area 52 through the through hole. In the utility model, the heat radiation fan is positioned in the range of the front area, but the air outlet of the heat radiation fan extends into the penetrating opening to be communicated with the rear area, so that the heat radiation fan is positioned at the center as far as possible on one hand, and the heat generated by the steaming and baking unit is taken away to the maximum extent; on the other hand, the stroke of the hot air discharged from the heat dissipation gap after passing through the rear region can be shortened as much as possible, so that the depth of the rear region is compressed to enable the hot air to be discharged out of the kitchen range shell as soon as possible, and the heat dissipation efficiency is improved. In the present utility model, including but not limited to the case where the heat dissipating fan is actually located outside the cooktop shell, for example, mounted on the lower surface of the chassis. In the present utility model, the heat dissipation holes may be formed on the bottom wall of the chassis corresponding to the front area and the bottom wall of the chassis corresponding to the rear area, preferably, in order to shorten the stroke of the hot air and avoid affecting the operation of the burner 24 as much as possible, the partition plate 5 is disposed at a position that will compress the space of the rear area 52 as much as possible in consideration of the pressure bearing capacity of the partition plate 5, the bottom wall of the chassis 21, etc., so that the heat dissipation fan 4 is mostly located in the stove housing corresponding to the front area 51, and the air outlet of the heat dissipation fan 4 extends into the rear area 52 through the partition plate 5. Preferably, in order to enable the hot air in the installation gap 3 to enter the stove housing uniformly through the cooling fan 4, the cooling holes 210 are also provided with air inlet grids.
Referring to fig. 2, a positioning rib 212 is further formed on the bottom wall of the chassis 21, and the positioning rib 212 positions the cooling fan 4. The structural design can play a role in guiding and positioning when the cooling fan is installed, so that the cooling fan is prevented from shifting, and the stability of the component is improved.
Referring to fig. 2-6, the heat dissipation device further comprises a support bar 7, wherein the support bar 7 is positioned behind the heat dissipation gap 23, and the support bar 7 is in a long comb shape as a whole. Preferably, the long comb-shaped supporting bar 7 includes a backbone 71 and a rack 72, and the backbone 71 is formed with supporting protrusions to directly contact the panel 22; the racks 72 are bent to provide support in the space between the panel 22 and the countertop, and the bent racks 72 may also form a grid to facilitate more uniform discharge of hot gases.
While the foregoing has described with particularity of the utility model, it will be understood by those skilled in the art that various changes may be made without departing from the spirit and principles of the utility model, the scope of which is defined in the claims and their equivalents.

Claims (9)

1. The utility model provides an integrated kitchen, is in including steaming and baking unit and setting steaming and baking unit top's cooking utensils, steaming and baking unit with have the installation clearance between the cooking utensils, the cooking utensils includes the cooking utensils casing, the cooking utensils casing includes chassis and lid establish the panel on the chassis, its characterized in that: a heat dissipation gap is further formed between the chassis and the panel, a heat dissipation hole is formed in the chassis, a heat dissipation fan is arranged at the heat dissipation hole, and the heat dissipation fan sucks hot air in the mounting gap into the cooker shell and discharges the hot air out of the cooker shell through the heat dissipation gap.
2. The integrated stove of claim 1 wherein: the kitchen range further comprises a combustor, a partition plate is arranged in the kitchen range shell, the partition plate divides the space in the kitchen range shell into a front area and a rear area, the combustor is located in the range of the front area, and an air outlet of the heat dissipation fan is communicated with the heat dissipation gap through the rear area.
3. The integrated cooktop of claim 2, wherein: the partition plate extends in a straight line or in a bent shape in the cooker shell.
4. The integrated cooktop of claim 2, wherein: the edge of the partition board is provided with a mounting flanging.
5. The integrated cooktop according to any of claims 1 to 4, wherein: and a filler strip is clamped between the chassis and the panel, and the filler strip is in a shape and extends along the top edge of the chassis to form the heat dissipation gap.
6. The integrated cooktop according to any of claims 2 to 4, wherein: the bottom wall of the chassis is provided with a convex rib or a convex block at a position corresponding to the range of the rear area.
7. The integrated cooktop of claim 6, wherein: the cooling fan is located in the range of the front area, the partition plate is provided with a through hole, and an air outlet of the cooling fan penetrates through the through hole and is communicated with the rear area.
8. The integrated stove of claim 1 wherein: and a positioning rib is further formed on the bottom wall of the chassis and used for positioning the cooling fan.
9. The integrated stove of claim 1 wherein: the heat dissipation device further comprises a support bar, wherein the support bar is positioned behind the heat dissipation gap, and the whole support bar is in a long comb tooth shape.
CN202321628179.6U 2023-06-25 2023-06-25 Integrated kitchen Active CN220152820U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321628179.6U CN220152820U (en) 2023-06-25 2023-06-25 Integrated kitchen

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321628179.6U CN220152820U (en) 2023-06-25 2023-06-25 Integrated kitchen

Publications (1)

Publication Number Publication Date
CN220152820U true CN220152820U (en) 2023-12-08

Family

ID=89008008

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321628179.6U Active CN220152820U (en) 2023-06-25 2023-06-25 Integrated kitchen

Country Status (1)

Country Link
CN (1) CN220152820U (en)

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