CN211903000U - Energy-saving ring of stove and gas stove - Google Patents

Energy-saving ring of stove and gas stove Download PDF

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Publication number
CN211903000U
CN211903000U CN202020272696.4U CN202020272696U CN211903000U CN 211903000 U CN211903000 U CN 211903000U CN 202020272696 U CN202020272696 U CN 202020272696U CN 211903000 U CN211903000 U CN 211903000U
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China
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ring
energy
cooking
saving
wall
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海明璋
卢钦超
马楠
张青鹏
侯翠翠
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BEIJING PUBLIC UTILITY RESEARCH INSTITUTE
Beijing Beiran Huaneng Technology Development Co ltd
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BEIJING PUBLIC UTILITY RESEARCH INSTITUTE
Beijing Beiran Huaneng Technology Development Co ltd
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Abstract

The embodiment of the utility model provides an energy-conserving circle of cooking utensils and gas-cooker relates to top of a kitchen range technical field, and main aim at improves the heat utilization ratio of gas-cooker. The energy-conserving circle of cooking utensils includes: the energy-saving ring body comprises a diversion ring extending towards the first direction and a diversion ring extending towards the second direction; the inner diameter of the diversion ring is gradually enlarged, the inner wall of the diversion ring is sunken towards one side of the inner wall of the diversion ring to form an airflow guiding arc, and the diversion ring is arranged towards the stove and serves as an air introducing opening; the inner diameter of the guide ring is gradually reduced, the inner wall of the guide ring is sunken towards one side of the outer wall of the guide ring to form a heat reflection arc, and the guide ring is arranged back to the stove and serves as a waste gas discharge port. The air and the burnt waste gas are completely isolated, so that the burnt waste gas cannot pollute the sucked air, the content of oxygen in the sucked air is ensured not to be reduced, and the combustion efficiency of the cooker is improved.

Description

Energy-saving ring of stove and gas stove
Technical Field
The embodiment of the utility model provides a relate to top of a kitchen range technical field, especially relate to an energy-conserving circle of cooking utensils and gas-cooker.
Background
In a conventional gas range, a supporter for supporting a pot is provided on a cooking top, the pot may be supported on the supporter, and a flame combustion area is defined between the pot and the cooking top. In the ignition cooking operation, part of heat in the flame combustion area can be emitted towards the periphery of the cooker, so that the heat utilization efficiency of the gas stove is poor.
In order to improve the heat utilization efficiency of the gas stove, a gas energy-saving device is generally adopted in the market as an energy-gathering ring cover, a cookware is supported on a support, the bottom of the energy-gathering ring cover is supported on a cooking bench, the top of the energy-gathering ring cover is used as an air inlet, and the energy-gathering ring cover is covered on the periphery of a flame combustion area, so that the heat in the flame combustion area can be prevented from overflowing greatly, and the heat utilization efficiency of the gas stove is improved.
However, for a gas stove with high power, the oxygen consumption in the combustion process is high, and for an energy-gathering ring cover with a middle-air inlet structure in the prior art, the air inlet amount is low, so that the gas stove cannot realize sufficient combustion.
SUMMERY OF THE UTILITY MODEL
In view of this, the embodiment of the utility model provides an energy-conserving circle of cooking utensils and gas-cooker, main aim at improves the heat utilization ratio of gas-cooker.
In order to achieve the above object, the embodiment of the present invention mainly provides the following technical solutions:
on the one hand, the embodiment of the utility model provides a cooking utensils energy-conserving circle, include:
the energy-saving ring body comprises a diversion ring extending towards a first direction and a diversion ring extending towards a second direction, wherein the second direction is the opposite direction of the first direction; wherein
In the extending direction of the first direction, the inner diameter of the flow guide ring is gradually enlarged, the inner wall of the flow guide ring is sunken towards one side of the inner wall of the flow guide ring to form an airflow guide arc, and the flow guide ring is used for being arranged towards a cooker and serves as an air inlet;
in the direction that the second direction extends, the internal diameter of water conservancy diversion ring reduces gradually, the inner wall of water conservancy diversion ring is towards water conservancy diversion ring's outer wall one side is sunken, forms heat reflection arc, water conservancy diversion ring is used for setting up dorsad the cooking utensils, as exhaust-gas discharge mouth.
The embodiment of the utility model provides an aim and solve its technical problem still can adopt following technical measure to further realize.
Optionally, in the energy-saving ring for a kitchen range, a plurality of hearth support embedding openings are formed in the periphery of the end of the flow guiding ring.
Optionally, the energy-saving ring of the cooking utensil further comprises:
a plurality of first pan brace tables set up with encircleing the a week of water conservancy diversion ring tip, and protrusion in water conservancy diversion ring tip, a plurality of first pan brace tables encircle the pan supporting ring subassembly that forms first diameter.
Optionally, the energy-saving ring of the cooking stove comprises a first cooker supporting table arranged at the end of the hearth support embedded opening.
Optionally, the energy-saving ring of the cooking utensil further comprises:
a plurality of second pan supporting platforms set up with encircleing the a week of water conservancy diversion ring inner wall, a plurality of second pan supporting platforms encircle the pan supporting ring subassembly that forms the second diameter, the second diameter is less than first diameter.
Optionally, the energy-conserving circle of cooking utensils, wherein the second pan supporting bench includes first stabilizer blade, second stabilizer blade and roof, the first end of first stabilizer blade support in the first side that the top of a kitchen range support inlayed the mouth, the first end of second stabilizer blade support in the second side that the top of a kitchen range support inlayed the mouth, the first end of roof is connected the second end of first stabilizer blade, the second end of roof is connected the second end of second stabilizer blade.
Optionally, in the cooktop ring, a first end of the top plate is connected to the first area of the second end of the first support leg, and a second end of the top plate is connected to the first area of the second end of the second support leg;
an opening is formed between a second area of the second end of the first supporting leg and a second area of the second end of the second supporting leg, and the opening is located between the top plate and the first pot supporting table.
Optionally, in the energy-saving ring for a cooking stove, a reinforcing rib extends towards the outer circumferential direction of the flow guiding ring at the edge of the embedding opening of the cooking bench support.
Optionally, the energy-saving ring of the cooking utensil is formed by integrally molding the energy-saving ring body.
On the other hand, the embodiment of the utility model provides a gas stove, include:
a cooking stove, wherein a cooking bench bracket is arranged on the table top of the cooking stove;
in the energy-saving ring of the cooker, the cooking bench support is embedded into the embedding opening of the cooking bench support, so that the drainage ring of the energy-saving ring of the cooker is suspended and supported on the table top of the cooker, and an air inlet is formed between the drainage ring and the table top.
Borrow by above-mentioned technical scheme, the utility model discloses technical scheme provides an energy-conserving circle of cooking utensils and gas-cooker has following advantage at least:
the utility model provides an in the embodiment, the inner wall orientation of the diversion ring of energy-conserving ring body the inner wall one side of diversion ring is sunken, forms the air current and guides the arc, introduces the mouth as the air, and the inner wall orientation of the diversion ring of energy-conserving ring body the outer wall one side of diversion ring is sunken, forms heat reflection arc, as exhaust-gas discharge mouth. For the energy-conserving circle of last air inlet structure among the prior art, the embodiment of this application, when cooking utensils were lighted, the gas was burnt in the cooking utensils top of a kitchen range department of drainage ring terminal, and burning waste gas passes through the gap discharge of water conservancy diversion ring and pan, can make in this process in the drainage ring internal pressure drop produce the negative pressure, and the air is followed the drainage ring lower limb and is inhaled the drainage ring with the gap department of cooking utensils mesa. The air flow guide arc of the guide ring can pressurize and accelerate the inflow air, thereby improving the air supply amount. At the cooking range at the tail end of the drainage ring, gas and air are mixed and combusted, and then the combusted waste gas is discharged through a gap between the diversion ring and the cooking range. Due to the improvement of the air supply quantity, the combustion is more sufficient, and the combustion efficiency is improved. Meanwhile, as the guide ring adopts the inward-concave heat reflection arc, the heat generated by combustion is reflected by the guide ring towards the center of the arc surface in the direction of the pot, so that the heat efficiency of the cooker is improved. Moreover, because the energy-saving ring of the cooker forms a one-way airflow channel (the air inlet is separated from the exhaust port of the waste gas), the air and the waste gas after combustion are completely separated, the combustion waste gas cannot pollute the sucked air, the content of oxygen in the sucked air is ensured not to be reduced, and the combustion efficiency of the cooker is improved.
The above description is only an overview of the technical solutions of the present invention, and in order to make the technical means of the embodiments of the present invention clearer and can be implemented according to the content of the description, the following detailed description is made with reference to the preferred embodiments of the present invention and accompanying drawings.
Drawings
Various other advantages and benefits will become apparent to those of ordinary skill in the art upon reading the following detailed description of the preferred embodiments. The drawings are only for purposes of illustrating the preferred embodiments and are not to be construed as limiting the invention. Also, like reference numerals are used to refer to like parts throughout the drawings. In the drawings:
fig. 1 is a schematic structural view of an energy-saving ring of a cooking utensil provided by an embodiment of the present invention;
fig. 2 is a schematic structural view of a cross-sectional view of a first section line of an energy-saving ring of a cooking utensil provided by an embodiment of the present invention;
fig. 3 is a schematic structural view of a cross-sectional view of a second section line of an energy-saving ring of a cooking utensil provided by an embodiment of the present invention;
fig. 4 is a schematic structural view of a cooker energy-saving ring provided by an embodiment of the present invention applied to a first cooker;
fig. 5 is an airflow schematic diagram of the energy-saving ring of the cooking utensil provided by the embodiment of the invention applied to the first pot;
fig. 6 is a schematic structural view of an energy-saving ring of a cooking utensil provided by an embodiment of the present invention applied to a second pot;
fig. 7 is an airflow schematic diagram of the energy-saving ring of the cooking utensil provided by the embodiment of the invention applied to a second pot;
fig. 8 is a schematic structural view of a cooker energy-saving ring provided by an embodiment of the present invention applied to a third cooker;
fig. 9 is an airflow schematic diagram of a third cooker to which an energy-saving ring of a cooker provided by an embodiment of the present invention is applied.
Detailed Description
To further illustrate the technical means and effects of the present invention for achieving the objectives of the embodiments of the present invention, the following detailed description will be made with reference to the accompanying drawings and preferred embodiments for the energy-saving ring of the cooking stove and the gas stove, and the detailed implementation, structure, features and effects thereof according to the embodiments of the present invention. In the following description, different "one embodiment" or "an embodiment" refers to not necessarily the same embodiment. Furthermore, the particular features, structures, or characteristics may be combined in any suitable manner in one or more embodiments.
Fig. 1 to fig. 3 show an embodiment of an energy-saving ring of a cooking stove, please refer to fig. 1 to fig. 3, an embodiment of the present invention provides an energy-saving ring of a cooking stove, which can be applied to a cooking stove, and the energy-saving ring of a cooking stove includes: energy-conserving ring body.
The energy-saving ring body comprises a flow guide ring 10 extending towards a first direction X and a flow guide ring 20 extending towards a second direction Y, wherein the second direction Y is the opposite direction of the first direction X; in the extending direction of the first direction X, the inner diameter of the flow guide ring 10 gradually expands, the inner wall of the flow guide ring 10 is recessed toward one side of the inner wall of the flow guide ring to form an airflow guide arc, and the flow guide ring 10 is arranged toward a stove and serves as an air inlet; in the direction that second direction Y extends, the internal diameter of water conservancy diversion ring 20 reduces gradually, the inner wall of water conservancy diversion ring 20 is towards the outer wall one side of water conservancy diversion ring 20 is sunken, forms the heat reflection arc, water conservancy diversion ring 20 is used for setting up dorsad the cooking utensils, as exhaust-gas discharge mouth.
The utility model provides an in the embodiment, the inner wall orientation of the diversion ring of energy-conserving ring body the inner wall one side of diversion ring is sunken, forms the air current and guides the arc, introduces the mouth as the air, and the inner wall orientation of the diversion ring of energy-conserving ring body the outer wall one side of diversion ring is sunken, forms heat reflection arc, as exhaust-gas discharge mouth. For the energy-conserving circle of last air inlet structure among the prior art, the embodiment of this application, when cooking utensils were lighted, the gas was burnt in the cooking utensils top of a kitchen range department of drainage ring terminal, and burning waste gas passes through the gap discharge of water conservancy diversion ring and pan, can make in this process in the drainage ring internal pressure drop produce the negative pressure, and the air is followed the drainage ring lower limb and is inhaled the drainage ring with the gap department of cooking utensils mesa. The air flow guide arc of the guide ring can pressurize and accelerate the inflow air, thereby improving the air supply amount. At the cooking range at the tail end of the drainage ring, gas and air are mixed and combusted, and then the combusted waste gas is discharged through a gap between the diversion ring and the cooking range. Due to the improvement of the air supply quantity, the combustion is more sufficient, and the combustion efficiency is improved. Meanwhile, as the guide ring adopts the inward-concave heat reflection arc, the heat generated by combustion is reflected by the guide ring towards the center of the arc surface in the direction of the pot, so that the heat efficiency of the cooker is improved. Moreover, because the energy-saving ring of the cooker forms a one-way airflow channel (the air inlet is separated from the exhaust port of the waste gas), the air and the waste gas after combustion are completely separated, the combustion waste gas cannot pollute the sucked air, the content of oxygen in the sucked air is ensured not to be reduced, and the combustion efficiency of the cooker is improved.
The diversion ring 10 is coaxial with the diversion ring 20, and may be an energy-saving ring body forming an integral structure, the diversion ring 20 extends from the approximate middle position of the energy-saving ring body towards the first direction X, and the diversion ring 10 extends from the approximate middle position of the energy-saving ring body towards the second direction Y. In actual use, the energy-saving ring of the stove is arranged on the table top of the stove, and an air inlet is formed between the drainage ring and the table top. Generally, a top support is arranged on the top surface of the kitchen range, in some embodiments, a plurality of top support embedding openings 30 are arranged around the end portion of the drainage ring 10, the top support is embedded into the top support embedding openings 30, and the top support supports the energy-saving ring body, so that the drainage ring of the energy-saving ring of the kitchen range is suspended on the top surface of the kitchen range. The shape of the hearth support embedding opening 30 may be V-shaped or U-shaped, and the hearth support embedding opening 30 may extend from the drainage ring 10 to the flow guide ring 20, which is not limited in this embodiment.
The shape of the cooktop bracket has a variety, and in some embodiments, the cooktop bracket can also serve as a support portion for a pot supported on the cooktop bracket with a gap between the pot and the deflector ring to form a waste gas discharge port. The utility model provides an in some embodiments, still include: a plurality of first pan supporting platforms 40, a plurality of first pan supporting platforms 40 set up with encircleing the a week of water conservancy diversion ring 20 tip, and protrusion in water conservancy diversion ring 20 tip, a plurality of first pan supporting platforms 40 encircle the pan supporting ring subassembly that forms first diameter. Referring to fig. 4 to 5, the cookware G1 with a diameter larger than the first diameter may be placed on the plurality of first cookware support bases 40, and a gap may be left between the cookware G1 and the deflector ring to form a waste gas discharge port due to the plurality of first cookware support bases 40 protruding from the end of the deflector ring.
Because the design that the hearth support embedded opening exists on the energy-saving ring body, the structural strength of the energy-saving ring body is low, and after the energy-saving ring body passes through a high-temperature environment, the energy-saving ring body is easy to crack at the position of the hearth support embedded opening. The utility model provides an in some embodiments the top of a kitchen range support inlays the edge of entry 30, to the peripheral direction of drainage ring 10 extends there is strengthening rib 31, first pan supporting bench 40 set up in the top of a kitchen range support inlays the tip of entry 30, energy-conserving ring body integrated into one piece, wherein, strengthening rib 31 is located the periphery of drainage ring 10, and first pan supporting bench 40 can be located the interior week of drainage ring 20 to through the energy-conserving circle of integrated into one piece technology preparation cooking utensils, thereby the intensity of the energy-conserving circle of improvement cooking utensils that can be great. Of course, in the embodiment, the reinforcing rib 31 extends toward the outer circumferential direction of the guide ring 31, the first pot supporting base 40 is provided at the end of the cooktop rack fitting opening 30, and the energy-saving ring body is integrally formed, or the three may be separately implemented.
In order to satisfy the adaptability of multiple size pan, foretell cooking utensils energy-conserving circle still includes: a plurality of second pan supporting platforms 50, a plurality of second pan supporting platforms 50 set up with encircleing the a week of water conservancy diversion ring 20 inner wall, a plurality of second pan supporting platforms 50 encircle the pan supporting ring subassembly that forms the second diameter, the second diameter is less than first diameter. Referring to fig. 6 to 7, the cookware G2 with a diameter smaller than the first diameter and larger than the second diameter can be placed on the second cookware support stands 50, and since the outer diameter of the cookware G2 is smaller than the first diameter, a gap can be left between the cookware G2 and the deflector ring to form a waste gas discharge port. Referring to fig. 8 to 9, the cookware G3 with the bottom outer diameter smaller than the first diameter and larger than the second diameter and the top outer diameter larger than the first diameter can be placed on the plurality of second cookware support tables 50, and since the outer diameter of the bottom of the cookware G3 is smaller than the first diameter, a gap can be left between the cookware G3 and the baffle ring to form the exhaust outlet.
In a specific implementation, in order to further improve the strength of the energy-saving ring of the cooking range, the second pot supporting table 50 includes a first supporting leg 51, a second supporting leg 52 and a top plate 53, a first end of the first supporting leg 51 is supported on a first side of the cooking range support insertion opening 30, a first end of the second supporting leg 52 is supported on a second side of the cooking range support insertion opening 30, a first end of the top plate 53 is connected to a second end of the first supporting leg 51, and a second end of the top plate 53 is connected to a second end of the second supporting leg 52. Wherein, the top plate 53 is used as a support for supporting a pot, and since the second pot supporting table 50 is connected to the first side and the second side of the cooking bench support embedded opening 30 at the same time (the first side of the cooking bench support embedded opening is opposite to the second side of the cooking bench support embedded opening), it is possible to enhance the strength of the cooking bench support embedded opening 30.
In some embodiments, a first end of the top plate 53 connects to a first region of the second end of the first leg 51, and a second end of the top plate 53 connects to a first region of the second end of the second leg 52; an opening 54 is formed between the second area 51a of the second end of the first leg 51 and the second area 52a of the second end of the second leg 52, and the opening 54 is located between the top plate 53 and the first pot support table 40. In this implementation, compare in the first region and the second region that the first end of roof connects the second end of first stabilizer blade, the roof second end connects the first region and the second region of the second end of second stabilizer blade, in this implementation, reserve and leave the opening, can regard the opening as the blow vent of an air current when the energy-conserving circle of cooking utensils forms unidirectional air current passageway, when expanding the adaptability of different size cookers, strengthening the energy-conserving circle intensity of cooking utensils, the air current flow rate that can also better keep the energy-conserving circle of cooking utensils to form unidirectional air current passageway.
Based on the aforesaid the utility model provides an energy-conserving circle of cooking utensils, the utility model discloses a gas-cooker that an embodiment provided, include: cooking utensils and cooking utensils energy-saving circle.
A cooking bench support is arranged on the table top of the cooking range. The energy-saving ring body comprises a diversion ring extending towards a first direction and a diversion ring extending towards a second direction, wherein the second direction is opposite to the first direction; in the extending direction of the first direction, the inner diameter of the flow guide ring is gradually enlarged, the inner wall of the flow guide ring is sunken towards one side of the inner wall of the flow guide ring to form an airflow guide arc, and the flow guide ring is used for being arranged towards a cooker and serves as an air inlet; in the direction that the second direction extends, the internal diameter of water conservancy diversion ring reduces gradually, the inner wall of water conservancy diversion ring is towards water conservancy diversion ring's outer wall one side is sunken, forms heat reflection arc, water conservancy diversion ring is used for setting up dorsad the cooking utensils, as exhaust-gas discharge mouth. A plurality of hearth support embedding openings are formed in the periphery of the end part of the drainage ring.
The cooking bench support is embedded into the cooking bench support embedding opening, so that the drainage ring of the cooking stove energy-saving ring is suspended and supported on the table top of the cooking stove, and an air inlet is formed between the drainage ring and the table top.
The utility model provides an in the embodiment, the energy-conserving circle of cooking utensils drainage ring unsettled support in the mesa of cooking utensils the drainage ring with form into the wind gap between the mesa. The inner wall of the diversion ring of the energy-saving ring body is sunken towards one side of the inner wall of the diversion ring to form an airflow guide arc serving as an air inlet, and the inner wall of the diversion ring of the energy-saving ring body is sunken towards one side of the outer wall of the diversion ring to form a heat reflection arc serving as a waste gas discharge outlet. For the energy-conserving circle of last air inlet structure among the prior art, the embodiment of this application, when cooking utensils were lighted, the gas was burnt in the cooking utensils top of a kitchen range department of drainage ring terminal, and burning waste gas passes through the gap discharge of water conservancy diversion ring and pan, can make in this process in the drainage ring internal pressure drop produce the negative pressure, and the air is followed the drainage ring lower limb and is inhaled the drainage ring with the gap department of cooking utensils mesa. The air flow guide arc of the guide ring can pressurize and accelerate the inflow air, thereby improving the air supply amount. At the cooking range at the tail end of the drainage ring, gas and air are mixed and combusted, and then the combusted waste gas is discharged through a gap between the diversion ring and the cooking range. Due to the improvement of the air supply quantity, the combustion is more sufficient, and the combustion efficiency is improved. Meanwhile, as the guide ring adopts the inward-concave heat reflection arc, the heat generated by combustion is reflected by the guide ring towards the center of the arc surface in the direction of the pot, so that the heat efficiency of the cooker is improved. And because the energy-saving ring of the cooking utensils forms a unidirectional airflow channel (the air intake port is separated from the exhaust port of the waste gas), the air and the burnt waste gas are completely separated, the burnt waste gas can not pollute the sucked air, the content of oxygen in the sucked air can not be reduced, and the combustion efficiency of the gas stove is improved.
Specifically, the energy-saving ring of the cooking utensil provided in the embodiment can be directly adopted, and the specific implementation structure can refer to the relevant contents described in the energy-saving ring of the cooking utensil of the embodiment, and is not described herein again.
In the foregoing embodiments, the descriptions of the respective embodiments have respective emphasis, and for parts that are not described in detail in a certain embodiment, reference may be made to related descriptions of other embodiments.
It will be appreciated that the relevant features of the devices described above may be referred to one another. In addition, "first", "second", and the like in the above embodiments are for distinguishing the embodiments, and do not represent merits of the embodiments.
In the description provided herein, numerous specific details are set forth. It is understood, however, that embodiments of the invention may be practiced without these specific details. In some instances, well-known structures and techniques have not been shown in detail in order not to obscure an understanding of this description.
Similarly, it should be appreciated that in the foregoing description of exemplary embodiments of the invention, various features of the invention are sometimes grouped together in a single embodiment, figure, or description thereof for the purpose of streamlining the disclosure and aiding in the understanding of one or more of the various inventive aspects. However, the disclosed apparatus should not be construed to reflect the intent as follows: rather, the invention as claimed requires more features than are expressly recited in each claim. Rather, as the following claims reflect, inventive aspects lie in less than all features of a single foregoing disclosed embodiment. Thus, the claims following the detailed description are hereby expressly incorporated into this detailed description, with each claim standing on its own as a separate embodiment of this invention.
Those skilled in the art will appreciate that the components of the apparatus of the embodiments may be adapted and arranged in one or more arrangements different from the embodiments. The components of the embodiments may be combined into one component and, in addition, they may be divided into a plurality of sub-components. All of the features disclosed in this specification (including any accompanying claims, abstract and drawings), and all of the components of any apparatus so disclosed, may be combined in any combination, except combinations where at least some of such features are mutually exclusive. Each feature disclosed in this specification (including any accompanying claims, abstract and drawings) may be replaced by alternative features serving the same, equivalent or similar purpose, unless expressly stated otherwise.
Furthermore, those skilled in the art will appreciate that while some embodiments described herein include some features included in other embodiments, rather than other features, combinations of features of different embodiments are meant to be within the scope of the invention and form different embodiments. For example, in the following claims, any of the claimed embodiments may be used in any combination. The various component embodiments of the present invention may be implemented in hardware, or in a combination thereof.
It should be noted that the above-mentioned embodiments illustrate rather than limit the invention, and that those skilled in the art will be able to design alternative embodiments without departing from the scope of the appended claims. In the claims, any reference signs placed between parentheses shall not be construed as limiting the claim. The word "comprising" does not exclude the presence of elements or components not listed in a claim. The word "a" or "an" preceding a component or element does not exclude the presence of a plurality of such components or elements. The present invention can be implemented with the aid of a device comprising a number of different components. In the claims enumerating several means, several of these means may be embodied by one and the same item. The usage of the words first, second and third, etcetera do not indicate any ordering. These words may be interpreted as names.
The above description is only a preferred embodiment of the present invention, and is not intended to limit the present invention in any way, and any simple modification, equivalent change and modification made by the technical spirit of the present invention to the above embodiments are all within the scope of the technical solution of the present invention.

Claims (10)

1. An energy-saving ring of a cooker is characterized by comprising:
the energy-saving ring body comprises a diversion ring extending towards a first direction and a diversion ring extending towards a second direction, wherein the second direction is the opposite direction of the first direction; wherein
In the extending direction of the first direction, the inner diameter of the flow guide ring is gradually enlarged, the inner wall of the flow guide ring is sunken towards one side of the inner wall of the flow guide ring to form an airflow guide arc, and the flow guide ring is used for being arranged towards a cooker and serves as an air inlet;
in the direction that the second direction extends, the internal diameter of water conservancy diversion ring reduces gradually, the inner wall of water conservancy diversion ring is towards water conservancy diversion ring's outer wall one side is sunken, forms heat reflection arc, water conservancy diversion ring is used for setting up dorsad the cooking utensils, as exhaust-gas discharge mouth.
2. The cooking range energy-saving ring as set forth in claim 1,
a plurality of hearth support embedding openings are formed in the periphery of the end part of the drainage ring.
3. The cooktop economizer ring of claim 2, further comprising:
a plurality of first pan brace tables set up with encircleing the a week of water conservancy diversion ring tip, and protrusion in water conservancy diversion ring tip, a plurality of first pan brace tables encircle the pan supporting ring subassembly that forms first diameter.
4. The cooking range energy-saving ring as set forth in claim 3,
first pan brace table set up in the tip that the top of a kitchen range support inlayed the mouth.
5. The cooktop economizer ring of claim 3, further comprising:
a plurality of second pan supporting platforms set up with encircleing the a week of water conservancy diversion ring inner wall, a plurality of second pan supporting platforms encircle the pan supporting ring subassembly that forms the second diameter, the second diameter is less than first diameter.
6. The cooking range energy-saving ring as claimed in claim 5,
the second pan supporting table comprises a first supporting leg, a second supporting leg and a top plate, wherein the first end of the first supporting leg is supported on the first side of the hearth support embedded opening, the first end of the second supporting leg is supported on the second side of the hearth support embedded opening, the first end of the top plate is connected with the second end of the first supporting leg, and the second end of the top plate is connected with the second end of the second supporting leg.
7. The cooking range energy-saving ring as claimed in claim 6,
the first end of the top plate is connected with the first area of the second end of the first supporting leg, and the second end of the top plate is connected with the first area of the second end of the second supporting leg;
an opening is formed between a second area of the second end of the first supporting leg and a second area of the second end of the second supporting leg, and the opening is located between the top plate and the first pot supporting table.
8. The cooking range energy-saving ring as claimed in claim 2,
and reinforcing ribs extend towards the peripheral direction of the flow guide ring at the edge of the embedded opening of the cooking bench support.
9. The cooking range energy-saving ring as set forth in any one of claims 1 to 8,
the energy-saving ring body is integrally formed.
10. A gas range, comprising:
a cooking stove, wherein a cooking bench bracket is arranged on the table top of the cooking stove;
the range energy-saving ring of any one of claims 2 to 9, wherein the top bracket is embedded into the top bracket embedding opening, so that a flow guide ring of the range energy-saving ring is suspended and supported on a table top of the range, and an air inlet is formed between the flow guide ring and the table top.
CN202020272696.4U 2020-03-06 2020-03-06 Energy-saving ring of stove and gas stove Active CN211903000U (en)

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Application Number Priority Date Filing Date Title
CN202020272696.4U CN211903000U (en) 2020-03-06 2020-03-06 Energy-saving ring of stove and gas stove

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Application Number Priority Date Filing Date Title
CN202020272696.4U CN211903000U (en) 2020-03-06 2020-03-06 Energy-saving ring of stove and gas stove

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CN211903000U true CN211903000U (en) 2020-11-10

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112503606A (en) * 2020-11-19 2021-03-16 嘉禾县大强铸造有限公司 Energy-saving gas safety device against wind

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112503606A (en) * 2020-11-19 2021-03-16 嘉禾县大强铸造有限公司 Energy-saving gas safety device against wind

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