CN212378010U - Integrated stove with double-layer energy-gathering stove frame and gas stove - Google Patents
Integrated stove with double-layer energy-gathering stove frame and gas stove Download PDFInfo
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- CN212378010U CN212378010U CN202021814733.6U CN202021814733U CN212378010U CN 212378010 U CN212378010 U CN 212378010U CN 202021814733 U CN202021814733 U CN 202021814733U CN 212378010 U CN212378010 U CN 212378010U
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Abstract
An integrated cooker and a gas cooker with a double-layer energy-gathering furnace frame are provided, the integrated cooker comprises a cooker and a smoke sucking and discharging device, the smoke sucking and discharging device comprises a fan, a smoke exhaust pipeline and an air suction opening, an air exhaust opening is arranged at a position close to the cooker, the cooker comprises a panel, a burner and a liquid bearing disc, the burner is arranged in an opening of the panel, the center of the liquid bearing disc is provided with an opening, the double-layer energy-gathering furnace frame is placed on the liquid bearing disc and comprises a furnace frame body, furnace frame positioning feet and a furnace frame pot positioning anti-slip support, the center of the furnace frame body is provided with the opening, the furnace frame body comprises a furnace frame upper layer and a furnace frame lower layer, the furnace frame upper layer is in a concave annular shape with an inner edge, the furnace frame upper layer and the furnace frame lower layer are connected with each other at the inner edge and the; the upper layer of the stove frame is connected with the stove frame cookware positioning anti-slip support, and the lower layer of the stove frame is connected with the stove frame positioning foot. The invention has the beneficial effects that: promote the air intake, reduce the diffusion heat transfer simultaneously, make full use of heat reaches more and gathers energy, the effect of lifting the thermal efficiency.
Description
Technical Field
The utility model relates to an integrated kitchen and gas-cooker of taking double-deck energy gathering furnace frame, the furnace frame on concretely relates to integrated kitchen and the gas cooking utensils.
Background
In recent years, with technological progress and development regarding products of integrated cookers, consumer demand for integrated cookers has also increased more and more. The stove frame is a support which is arranged on the stove and is arranged around the upper part of the burner and used for supporting a pot. The existing stove frame is only a simple support, and the heat of flame of a burner is greatly dissipated in a stove and surrounding space in a conduction, convection and radiation mode, so that not only is energy wasted, but also the problems of temperature rise of the stove, scalding hands of users and the like are caused.
Disclosure of Invention
The utility model discloses overcome prior art's above-mentioned shortcoming, provide an energy-conserving, improve user experience's area double-deck cooking utensils product that gathers can the furnace frame.
The utility model discloses an integrated kitchen of taking double-deck energy gathering stove frame, including cooking utensils and suction and exhaust device, suction and exhaust device includes fan, exhaust pipe and inlet scoop, and the air exit sets up in the position that is close to cooking utensils, cooking utensils include panel, combustor and liquid-bearing disc, the combustor sets up in the trompil of panel, the combustor passes through the gas pipe and connects the gas source, is equipped with some firearm and switch on the combustor; hold the central trompil of liquid dish, the lateral wall of combustor is connected to its inner fringe, outer fringe connection panel, its characterized in that:
the double-layer energy-gathering furnace frame is placed on the liquid bearing plate and comprises a furnace frame body, furnace frame positioning feet and a furnace frame pot positioning anti-slip support, a hole for mounting a burner is formed in the center of the furnace frame body, the furnace frame body comprises a furnace frame upper layer and a furnace frame lower layer, the inner edge of the furnace frame upper layer is in a concave annular shape, the furnace frame upper layer and the furnace frame lower layer are connected with each other at the inner edge and the outer edge, and a gap is formed between the furnace frame upper layer and the furnace frame lower layer to form a hollow interlayer; the upper layer of the stove frame is connected with the stove frame cookware positioning anti-slip support, and the lower layer of the stove frame is connected with the stove frame positioning foot.
Preferably, the lower layer of the furnace frame is in a circular ring shape with a concave inner edge.
Preferably, the bottom of the lower layer of the furnace frame is connected with a cylindrical heat-insulating energy-gathering ring, and the heat-insulating energy-gathering ring surrounds the opening.
Preferably, the wall surface of the heat-insulating energy-gathering ring is provided with a plurality of through holes or notches for supplementing air.
Preferably, the gap is filled with a heat insulation material.
The utility model discloses a gas stove with double-layer energy-gathering stove frame, which comprises a stove, wherein the stove comprises a panel, a burner and a liquid-bearing disc, the burner is arranged in an opening of the panel, the burner is connected with a gas source through a gas pipe, and the burner is provided with an igniter and a switch; hold the central trompil of liquid dish, the lateral wall of combustor is connected to its inner fringe, outer fringe connection panel, its characterized in that:
the double-layer energy-gathering furnace frame is placed on the liquid bearing plate and comprises a furnace frame body, furnace frame positioning feet and a furnace frame pot positioning anti-slip support, a hole for mounting a burner is formed in the center of the furnace frame body, the furnace frame body comprises a furnace frame upper layer and a furnace frame lower layer, the inner edge of the furnace frame upper layer is in a concave annular shape, the furnace frame upper layer and the furnace frame lower layer are connected with each other at the inner edge and the outer edge, and a gap is formed between the furnace frame upper layer and the furnace frame lower layer to form a hollow interlayer; the upper layer of the stove frame is connected with the stove frame cookware positioning anti-slip support, and the lower layer of the stove frame is connected with the stove frame positioning foot.
The utility model discloses a cooking utensils product has designed special double-deck energy gathering furnace frame, by furnace frame upper strata, furnace frame lower floor, thermal-insulated energy gathering ring, furnace frame location foot, furnace frame pan location antiskid pillar etc. and constitute. The upper layer structure and the lower layer structure of the stove frame are formed by concave circular rings, and the transition circular arcs reflect the outward radiation heat to the cookware again to play a role in energy collection; the upper layer and the lower layer are combined through a process to form a hollow interlayer, the hollow interlayer can reduce heat exchange between the upper layer of the furnace frame and the external low-temperature environment, heat loss is reduced, and heat efficiency is further improved. The hollow interlayer can also be provided with heat insulation cotton or similar heat insulation materials, so that the heat transfer of the upper layer and the lower layer is reduced, and the heat loss of the upper layer of the furnace frame can be reduced, so that the heat of combustion radiation diffusion can be better recovered and utilized.
The heat insulation and energy accumulation ring plays a role in blocking heat loss at the bottom, and the holes can be opened to increase air inlet quantity.
The stove frame positioning foot plays a role in supporting and fixing the stove frame, and the shape and the positioning point of the stove frame positioning foot can be determined according to the liquid bearing disc structure of the gas stove.
The stove rack cookware positioning anti-skid support column is used for supporting cookware, the inclination angle of the support column can be changed according to different cookware characteristics, and the transition surface of the support column can be provided with the grooves to enhance the anti-skid effect.
The utility model discloses mainly be applied to gas cooking utensils class kitchen appliance.
The heat efficiency of the gas cooker mainly depends on the design of the burner, and on the basis of the design and the shaping of the burner, the heat efficiency of the gas cooker is improved, and only the corresponding furnace frame can be relied on. The utility model discloses a cooperation of furnace frame and combustor will further promote the holistic thermal efficiency of gas cooking utensils. The utility model discloses can make full use of structural condition promote the air intake and make the gas fully burn to reduce the heat loss of burning, make the pan can be fully heated, just can fully discover the thermal efficiency of combustor.
The utility model discloses a structure molding promotes the air intake, reduces the diffusion heat transfer simultaneously, and the make full use of heat reaches and gathers more ability, the effect of lifting thermal efficiency.
The utility model has the advantages that: energy conservation, high heat efficiency and good user experience.
Drawings
Fig. 1a is an overall structure view of the integrated cooker of the present invention;
fig. 1b is a front view of the integrated cooker of the present invention;
fig. 1c is a top view of the integrated cooker of the present invention;
fig. 1d is a bottom view of the integrated cooker of the present invention;
fig. 1e is a left side view of the integrated cooker of the present invention;
fig. 1f is a right side view of the integrated cooker of the present invention;
fig. 1g is a structure diagram of the common gas stove according to the present invention;
fig. 2a is a schematic view of a general gas range according to the present invention;
fig. 2b is a front view of the gas range of the present invention;
fig. 2c is a front view of a general gas range according to the present invention;
fig. 2d is a side view of a general gas range according to the present invention;
fig. 2e is a structure diagram of the common gas stove according to the present invention;
fig. 3a is an overall structure diagram of the present invention.
Fig. 3b is a front view of the double-deck energy concentrating grate of the present invention.
Fig. 3c is a front view of the double layer energy concentrating grate of the present invention.
Fig. 3d is a left side view of the double-deck energy concentrating grate of the present invention.
Fig. 3e is a right side view of the double-deck energy concentrating grate of the present invention.
Figure 3f is a longitudinal section a-a of figure 3 a.
Fig. 4 is an exploded view of the present invention.
Detailed Description
The present invention will be further described with reference to the accompanying drawings.
With reference to the accompanying drawings:
the double-layer energy-gathering furnace frame 3 is placed on the liquid bearing disc 13, the double-layer energy-gathering furnace frame 3 comprises a furnace frame body 31, furnace frame positioning feet 32 and a furnace frame pot positioning anti-skidding support 33, a hole 315 for installing the combustor 12 is formed in the center of the furnace frame body 31, the furnace frame body 31 comprises a furnace frame upper layer 311 and a furnace frame lower layer 312, the furnace frame upper layer 311 is in a circular ring shape with a concave inner edge, the inner edge of the furnace frame upper layer 311 and the outer edge of the furnace frame lower layer 312 are connected with each other, a gap is formed between the furnace frame upper layer 311 and the furnace frame lower layer 312, and a hollow interlayer 313 is formed; the upper layer 311 of the stove frame is connected with the non-slip support 33 for positioning the cooker of the stove frame, and the lower layer 312 of the stove frame is connected with the locating foot 32 of the stove frame.
The lower shelf layer 312 is a ring shape with a concave inner edge. The bottom of the lower layer 312 of the furnace frame is connected with a cylindrical heat-insulating energy-gathering ring 314, and the heat-insulating energy-gathering ring 314 surrounds the outside of the opening 315.
The wall of the heat-insulating energy-gathering ring 314 is provided with a plurality of through holes or notches for supplementing air.
The hollow interlayer 313 can also be made of heat insulation cotton or similar heat insulation materials, so that the heat transfer between the upper layer and the lower layer is reduced, and the heat loss of the upper layer of the furnace frame can be reduced, so that the heat diffused by combustion radiation can be better recycled and utilized.
the double-layer energy-gathering furnace frame 3 is placed on the liquid bearing disc 13, the double-layer energy-gathering furnace frame 3 comprises a furnace frame body 31, furnace frame positioning feet 32 and a furnace frame pot positioning anti-skidding support 33, a hole 315 for installing the combustor 12 is formed in the center of the furnace frame body 31, the furnace frame body 31 comprises a furnace frame upper layer 311 and a furnace frame lower layer 312, the furnace frame upper layer 311 is in a circular ring shape with a concave inner edge, the inner edge of the furnace frame upper layer 311 and the outer edge of the furnace frame lower layer 312 are connected with each other, a gap is formed between the furnace frame upper layer 311 and the furnace frame lower layer 312, and a hollow interlayer 313 is formed; the upper layer 311 of the stove frame is connected with the non-slip support 33 for positioning the cooker of the stove frame, and the lower layer 312 of the stove frame is connected with the locating foot 32 of the stove frame.
The lower shelf layer 312 is a ring shape with a concave inner edge. The bottom of the lower layer 312 of the furnace frame is connected with a cylindrical heat-insulating energy-gathering ring 314, and the heat-insulating energy-gathering ring 314 surrounds the outside of the opening 315.
The wall of the heat-insulating energy-gathering ring 314 is provided with a plurality of through holes or notches for supplementing air.
The hollow interlayer 313 can also be made of heat insulation cotton or similar heat insulation materials, so that the heat transfer between the upper layer and the lower layer is reduced, and the heat loss of the upper layer of the furnace frame can be reduced, so that the heat diffused by combustion radiation can be better recycled and utilized.
The technical solutions of the present invention are clearly and completely described with reference to the accompanying drawings, and it is obvious that the described embodiments are some, not all embodiments of the present invention. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
In the description of the present invention, it should be noted that the directions or positional relationships indicated as the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., appear based on the directions or positional relationships shown in the drawings, and are only for convenience of description and simplification of description, but do not indicate or imply that the device or element referred to must have a specific direction, be constructed and operated in a specific direction, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first," "second," and "third" as appearing herein are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
In the description of the present invention, it is to be noted that, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "connected" should be interpreted broadly, e.g., as being either fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; 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 invention can be understood by those skilled in the art in specific situations, that is, the contents described in the embodiments of the present invention are only examples of the implementation forms of the present invention, the protection scope of the present invention should not be construed as being limited to the specific forms described in the embodiments, and the protection scope of the present invention also includes the equivalent technical means which can be conceived by those skilled in the art according to the inventive concept.
Claims (6)
1. An integrated stove with a double-layer energy-gathering stove frame comprises a stove (1) and a smoke sucking and discharging device (2), wherein the smoke sucking and discharging device (2) comprises a fan, a smoke exhaust pipeline and an air suction opening, the air exhaust opening is arranged at a position close to the stove (1), the stove (1) comprises a panel (11), a combustor (12) and a liquid bearing disc (13), the combustor (12) is arranged in an opening of the panel (11), the combustor (12) is connected with a gas source through a gas pipe, and an igniter and a switch are arranged on the combustor (12); the central trompil of liquid-bearing disk (13), the lateral wall of its inner edge connection combustor (12), outer fringe connection panel (11), its characterized in that:
a double-layer energy-gathering furnace frame (3) is placed on the liquid bearing disc (13), the double-layer energy-gathering furnace frame (3) comprises a furnace frame body (31), furnace frame positioning feet (32) and a furnace frame pot positioning anti-skidding support (33), an opening (315) for mounting a burner (12) is formed in the center of the furnace frame body (31), the furnace frame body (31) comprises a furnace frame upper layer (311) and a furnace frame lower layer (312), the furnace frame upper layer (311) is in a circular ring shape with a concave inner edge, the furnace frame upper layer (311) and the furnace frame lower layer (312) are connected with each other at the inner edge and the outer edge, a gap is formed between the furnace frame upper layer (311) and the furnace frame lower layer (312), and a hollow interlayer (313) is formed; the upper layer (311) of the stove frame is connected with the non-slip locating bracket (33) of the pot of the stove frame, and the lower layer (312) of the stove frame is connected with the locating foot (32) of the stove frame.
2. The integrated cooker with the double-layer energy-gathering furnace frame as claimed in claim 1, wherein: the lower layer (312) of the furnace frame is in a ring shape with a concave inner edge.
3. The integrated cooker with the double-layer energy-gathering furnace frame as claimed in claim 1, wherein: the bottom of the lower layer (312) of the furnace frame is connected with a cylindrical heat-insulating energy-gathering ring (314), and the heat-insulating energy-gathering ring (314) surrounds the outside of the opening (315).
4. The integrated cooker with the double-layer energy-gathering furnace frame as claimed in claim 1, wherein: the wall surface of the heat insulation energy gathering ring (314) is provided with a plurality of through holes or notches for supplementing air.
5. The integrated cooker with the double-layer energy-gathering furnace frame as claimed in claim 1, wherein: the gap is filled with heat insulation materials.
6. A gas stove with a double-layer energy-gathering stove frame comprises a stove (1), wherein the stove (1) comprises a panel (11), a combustor (12) and a liquid bearing disc (13), the combustor (12) is arranged in an opening of the panel (11), the combustor (12) is connected with a gas source through a gas pipe, and an igniter and a switch are arranged on the combustor (12); the central trompil of liquid-bearing disk (13), the lateral wall of its inner edge connection combustor (12), outer fringe connection panel (11), its characterized in that:
a double-layer energy-gathering furnace frame (3) is placed on the liquid bearing disc (13), the double-layer energy-gathering furnace frame (3) comprises a furnace frame body (31), furnace frame positioning feet (32) and a furnace frame pot positioning anti-skidding support (33), an opening (315) for mounting a burner (12) is formed in the center of the furnace frame body (31), the furnace frame body (31) comprises a furnace frame upper layer (311) and a furnace frame lower layer (312), the furnace frame upper layer (311) is in a circular ring shape with a concave inner edge, the furnace frame upper layer (311) and the furnace frame lower layer (312) are connected with each other at the inner edge and the outer edge, a gap is formed between the furnace frame upper layer (311) and the furnace frame lower layer (312), and a hollow interlayer (313) is formed; the upper layer (311) of the stove frame is connected with the non-slip locating bracket (33) of the pot of the stove frame, and the lower layer (312) of the stove frame is connected with the locating foot (32) of the stove frame.
Priority Applications (1)
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CN202021814733.6U CN212378010U (en) | 2020-08-26 | 2020-08-26 | Integrated stove with double-layer energy-gathering stove frame and gas stove |
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CN202021814733.6U CN212378010U (en) | 2020-08-26 | 2020-08-26 | Integrated stove with double-layer energy-gathering stove frame and gas stove |
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