Burner and kitchen range with sound during stir-frying

By designing special flame outlets and stir-fry ejector tubes in the burner, turbulent flames and combustion sounds are generated, solving the problem of weak stir-frying experience in existing stoves and achieving a stronger sense of firepower and a better stir-frying experience.

CN223460457UActive Publication Date: 2025-10-21VATTI CORP LTD
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Patent Information

Application Number
CN202423007571.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-05
Publication Date
2025-10-21
Estimated Expiration
2034-12-05

AI Technical Summary

Technical Problem

When using existing stoves with stir-fry functions, it is difficult to visually observe the changes in firepower, resulting in a weak stir-fry experience.

Method used

Design a burner that produces a loud, audible burning sound, using a specially designed flame outlet and a whirring ejector tube to generate turbulent flames and a distinct burning sound, thus enhancing the perception of firepower.

Benefits of technology

Enhance the user's stir-frying experience with turbulent flames and burning sounds, providing a more intense perception of firepower.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a quick-frying sound burner and stove, the quick-frying sound burner comprises a furnace end, a quick-frying injection pipe is arranged in the furnace end, the top end of the quick-frying injection pipe protrudes outwards to form a fire outlet part, the fire outlet part is conical, and the top end of the quick-frying injection pipe is provided with an opening. A fire outlet hole communicated with the interior of the stir-frying injection pipe is formed in the side surface of the fire outlet part; the fire outlet holes are trapezoidal and extend upwards from inside to outside in an inclined mode. According to the combustor and the kitchen range with the sound during stir-frying, the stir-frying function is achieved, turbulent flames can be generated when the stir-frying function is operated, obvious combustion sound is generated, and a user has the effects that the fire power is higher, and the stir-frying experience feeling is higher.
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Description

TECHNICAL FIELD

[0001] The utility model relates to kitchen appliance technical field, especially a kind of burner and cooking utensil with loud sizzle. BACKGROUND

[0002] Recently, the rise of high-power cooking utensil brings new space for the development of gas stove industry, and also brings a series of new challenges. In order to meet the needs of users' sizzle, the market has appeared with one-key sizzle to improve the function of the stove. However, the existing stove with sizzle function, although it realizes the increase of sizzle load in function, but because the installation position of the stove is generally low, when the user uses the sizzle function, the change of firepower is difficult to observe intuitively, and there is a problem of weak sizzle experience.

[0003] Therefore, it is necessary to provide an improved technical solution for the above-mentioned deficiencies of the prior art. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a burner with loud sizzle, which has sizzle function and can produce turbulent flame and obvious combustion sound when running sizzle function, so that the user has the effect of more fierce firepower and stronger sizzle experience.

[0005] Another object of the utility model is to provide a cooking utensil, which comprises the above-mentioned burner with loud sizzle, and the burner can produce turbulent flame and obvious combustion sound when running sizzle function, so that the user has the effect of more fierce firepower and stronger sizzle experience.

[0006] In order to achieve the above-mentioned object, the utility model provides the following technical solution:

[0007] A burner with loud sizzle comprises a burner head, a sizzle injection pipe is arranged in the burner head, the top end of the sizzle injection pipe is outwardly protruded to form a fire outlet, the fire outlet is conical, and the side surface of the fire outlet is provided with a fire hole in communication with the inside of the sizzle injection pipe; the fire hole is trapezoidal and extends upwardly and outwardly from inside to outside.

[0008] According to one embodiment of the utility model, the number of fire holes is three, which are arranged at equal intervals around the axis of the sizzle injection pipe.

[0009] According to one embodiment of the utility model, each end angle of the fire hole is rounded.

[0010] According to one embodiment of the utility model, the top end of the fire outlet is provided with a baffle, and the diameter of the baffle is greater than the outer diameter of the bottom end of the fire outlet.

[0011] And / or, the bottom part of the sizzle injection pipe is provided with a plurality of injection holes arranged along the circumference of the sizzle injection pipe.

[0012] According to one embodiment of the utility model, the explosive stir-frying ejection pipe middle is equipped with annular support board.

[0013] According to one embodiment of the utility model, the furnace head inside is equipped with horizontal baffle, be equipped with mounting hole on baffle;The explosive stir-frying ejection pipe is worn in mounting hole, and support board is located above baffle.

[0014] According to one embodiment of the utility model, be equipped with sealing ring between support board and baffle;

[0015] And / or, the explosive stir-frying ejection pipe bottom connects explosive stir-frying gas path, and explosive stir-frying gas path is equipped with explosive stir-frying nozzle at the junction of explosive stir-frying ejection pipe.

[0016] According to one embodiment of the utility model, the baffle top extends upwards and is provided with an annular inner fire ring air channel, which surrounds the explosive stir-frying ejection pipe;The bottom of the inner fire ring air channel is provided with a passage hole communicating with the outside.

[0017] According to one embodiment of the utility model, the top of the inner fire ring air channel is provided with an annular inner fire cover;The inner side of the inner fire cover is provided with a downwardly inclined flow guide surface extending from the outside to the inside, and the outer side of the inner fire cover is provided with an upwardly extending annular stop edge;The fire outlet hole is higher than the bottom end of the flow guide surface.

[0018] The utility model also provides a kind of stove, including the explosive stir-frying sound combustor of above.

[0019] Compared with prior art, the advantages and beneficial effects of the utility model embodiment are:

[0020] The explosive stir-frying sound combustor and stove provided by the utility model embodiment have the explosive stir-frying ejection pipe in the furnace head, which is connected to the gas pipeline and the nozzle. In the non-explosive stir-frying state, the explosive stir-frying ejection pipe and the connected gas pipeline and nozzle do not work. When the user needs to explosive stir-fry, the explosive stir-frying function can be started, and at this time, the explosive stir-frying ejection pipe and the connected gas pipeline and nozzle work, which increases the load of the stove and meets the needs of the user for explosive stir-frying. At the same time, the fire outlet hole is designed in a special trapezoidal shape, which can obtain a larger gas outlet area under a limited diameter, and the gas outlet resistance is smaller, and the gas outlet speed is faster, which makes the flame produce a turbulent flow phenomenon similar to off-flame during combustion, and produces obvious combustion noise, so that when the explosive stir-frying function is started, the user has the effect of more fierce firepower and stronger explosive stir-frying experience. BRIEF DESCRIPTION OF DRAWINGS

[0021] The drawings constituting a part of the present application are used to provide further understanding of the present application, the schematic embodiments of the present application and the explanations thereof are used to explain the present application and do not constitute improper limitation on the present application. Among them:

[0022] Figure 1 A structural schematic view of the loud combustion burner provided by the embodiment of the present application is shown in the figure;

[0023] Figure 2 A sectional view of the loud combustion burner provided by the embodiment of the present application is shown in the figure;

[0024] Figure 3 A structural schematic view of the loud combustion burner provided by the embodiment of the present application is shown in the figure;

[0025] Figure 4 A sectional view of the loud combustion burner provided by the embodiment of the present application is shown in the figure;

[0026] Figure 5 An enlarged schematic view of the baffle provided by the embodiment of the present application is shown in the figure;

[0027] Figure 6 An enlarged schematic view of the inner fire cover provided by the embodiment of the present application is shown in the figure.

[0028] Explanation of the reference signs:

[0029] 1, furnace end; 11, baffle; 12, mounting hole; 13, sealing ring; 2, loud combustion injection pipe; 21, fire outlet; 22, fire hole; 23, baffle; 24, injection hole; 25, loud combustion gas path; 26, loud combustion nozzle; 27, support plate; 3, inner fire ring air channel; 31, passage hole; 32, inner fire cover; 321, flow guide surface; 322, annular baffle; 4, outer fire ring air channel; 41, outer fire cover. DETAILED DESCRIPTION

[0030] The present application will be described in detail below with reference to the drawings and in conjunction with embodiments. Each example is provided by way of explanation of the present application rather than limiting the present application. In fact, those skilled in the art will clearly understand that modifications and variations can be made in the present application without departing from the scope or spirit of the present application. For example, features shown as or described as part of one embodiment can be used in another embodiment to produce yet another embodiment. Therefore, it is expected that the present application includes such modifications and variations falling within the scope of the appended claims and their equivalents.

[0031] In the description of the utility model, "first", "second" and similar words do not represent any order, quantity or importance, but only distinguish different components, "include" or "contain" and similar words mean that the element or object appearing in front of the word covers the element or object listed after the word and its equivalent, and other elements or objects are not excluded, the orientation or positional relationship indicated by the terms "longitudinal", "transverse", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom" and the like is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the utility model and does not require the utility model to be constructed and operated in a particular orientation, therefore, it cannot be understood as a limitation on the utility model. The terms "connected", "connected", "provided" used in the utility model should be understood broadly, for example, it can be fixed connection, or detachable connection, it can be directly connected, or indirectly connected through an intermediate part, it can be wired electrical connection, wireless electrical connection, or wireless communication signal connection, for those skilled in the art, the specific meaning of the above terms can be understood according to the specific situation.

[0032] As Figure 1 , Figure 2 , Figure 3 , Figure 4 Indicated, the utility model discloses a loud combustion burner, including furnace head 1, the furnace head 1 is equipped with the loud cooking ejection pipe 2. In order to describe clearly, define Figure 1 The upper side is upper, and the lower side is lower. The top of the loud cooking ejection pipe 2 is outwardly convex to form a fire outlet 21, which is conical in shape and gradually decreases in diameter from bottom to top. The side of the fire outlet 21 is provided with a fire outlet hole 22 in communication with the inside of the loud cooking ejection pipe 2, which is trapezoidal and extends upward from inside to outside.

[0033] The utility model discloses a loud combustion burner, which is provided with a loud cooking ejection pipe 2 in the furnace head 1, which is connected to the gas pipeline and the nozzle. In the non-loud cooking state, the loud cooking ejection pipe 2 and its connected gas pipeline and nozzle do not work. When the user needs to cook, the loud cooking function can be started, at which time the loud cooking ejection pipe 2 and its connected gas pipeline and nozzle work, so that the load of the stove increases, meeting the needs of the user for loud cooking. At the same time, due to the special trapezoidal design of the fire outlet hole 22, it can obtain a larger gas outlet area under the limited diameter, and the gas outlet resistance is smaller, the gas outlet speed is faster, so that the flame produces a turbulent flow phenomenon similar to the flame when burning, and produces obvious combustion noise, so that when the loud cooking function is started, the user has the effect of more fierce firepower and stronger cooking experience.

[0034] As Figure 3As shown in the preferred embodiment of the utility model, the number of the fire outlet holes 22 is 3, which are arranged at equal intervals around the axis of the stir-frying injection pipe 2. By setting the number of the fire outlet holes 22 to 3, the gas outlet area and the uniformity of the flame can be taken into account. If the number of the fire outlet holes 22 is too small, the flame heating will be uneven. On the contrary, if the number of the fire outlet holes 22 is too large, the gas outlet area will be insufficient, affecting the flame combustion.

[0035] As shown in the preferred embodiment of the utility model, the number of the fire outlet holes 22 is 3, which are arranged at equal intervals around the axis of the stir-frying injection pipe 2. By setting the number of the fire outlet holes 22 to 3, the gas outlet area and the uniformity of the flame can be taken into account. If the number of the fire outlet holes 22 is too small, the flame heating will be uneven. On the contrary, if the number of the fire outlet holes 22 is too large, the gas outlet area will be insufficient, affecting the flame combustion. Figure 3

[0036] As shown in the preferred embodiment of the utility model, the number of the fire outlet holes 22 is 3, which are arranged at equal intervals around the axis of the stir-frying injection pipe 2. By setting the number of the fire outlet holes 22 to 3, the gas outlet area and the uniformity of the flame can be taken into account. If the number of the fire outlet holes 22 is too small, the flame heating will be uneven. On the contrary, if the number of the fire outlet holes 22 is too large, the gas outlet area will be insufficient, affecting the flame combustion. Figure 3 Figure 4 As shown in the preferred embodiment of the utility model, the number of the fire outlet holes 22 is 3, which are arranged at equal intervals around the axis of the stir-frying injection pipe 2. By setting the number of the fire outlet holes 22 to 3, the gas outlet area and the uniformity of the flame can be taken into account. If the number of the fire outlet holes 22 is too small, the flame heating will be uneven. On the contrary, if the number of the fire outlet holes 22 is too large, the gas outlet area will be insufficient, affecting the flame combustion.

[0037] As shown in the preferred embodiment of the utility model, the number of the fire outlet holes 22 is 3, which are arranged at equal intervals around the axis of the stir-frying injection pipe 2. By setting the number of the fire outlet holes 22 to 3, the gas outlet area and the uniformity of the flame can be taken into account. If the number of the fire outlet holes 22 is too small, the flame heating will be uneven. On the contrary, if the number of the fire outlet holes 22 is too large, the gas outlet area will be insufficient, affecting the flame combustion. Figure 3 Figure 4 As shown in the preferred embodiment of the utility model, the number of the fire outlet holes 22 is 3, which are arranged at equal intervals around the axis of the stir-frying injection pipe 2. By setting the number of the fire outlet holes 22 to 3, the gas outlet area and the uniformity of the flame can be taken into account. If the number of the fire outlet holes 22 is too small, the flame heating will be uneven. On the contrary, if the number of the fire outlet holes 22 is too large, the gas outlet area will be insufficient, affecting the flame combustion. Figure 2

[0038] As shown in the preferred embodiment of the utility model, the number of the fire outlet holes 22 is 3, which are arranged at equal intervals around the axis of the stir-frying injection pipe 2. By setting the number of the fire outlet holes 22 to 3, the gas outlet area and the uniformity of the flame can be taken into account. If the number of the fire outlet holes 22 is too small, the flame heating will be uneven. On the contrary, if the number of the fire outlet holes 22 is too large, the gas outlet area will be insufficient, affecting the flame combustion. Figure 2 Figure 5 Figure 6 ​​​​​​As shown, in one embodiment of the present invention, an annular support plate 27 is provided in the middle of the stir-fry ejector tube 2. Furthermore, a horizontal partition 11 is provided inside the burner head 1, and a mounting hole 12 is provided on the partition 11. The stir-fry ejector tube 2 is passed through the mounting hole 12, and the support plate 27 is located above the partition 11. Furthermore, a sealing ring 13 is provided between the support plate 27 and the partition 11 to prevent the liquid flowing from above from leaking from the mounting hole 12 to the bottom shell of the stove when overflow occurs during the cooking process. Furthermore, the stir-fry ejector tube 2 can be split into two parts, the upper part is integrated with the burner head 1, and the other part is interconnected with the nozzle.

[0039] like Figure 2 、 Figure 5 、 Figure 6 As shown, in one embodiment of the present invention, an annular inner fire ring air duct 3 is provided on the top of the partition 11, which extends upward. The inner fire ring air duct 3 surrounds the stir-fry ejector tube 2 and forms a gap with the stir-fry ejector tube 2. The bottom of the inner fire ring air duct 3 is provided with a channel hole 31 connected to the outside. When overflow occurs during the cooking process, the liquid flowing down from above can flow downward along the gap between the inner fire ring air duct 3 and the stir-fry ejector tube 2, and flow to the outside from the channel hole 31. In addition, secondary air can also enter the gap between the inner fire ring air duct 3 and the stir-fry ejector tube 2 from the channel hole 31, and flow upward to the fire outlet 22 to supply gas combustion, so that when users stir-fry in a pot, they can avoid the situation where stir-frying is difficult due to insufficient secondary air and stir-frying fails.

[0040] like Figure 2 、 Figure 5 、 Figure 6 As shown, in one embodiment of the present invention, an annular inner fire cover 32 is provided at the top of the inner fire ring airway 3. A guide surface 321 extending downwardly and slantingly from the outside to the inside is provided on the inner side of the inner fire cover 32, and an annular rib 322 extending upward is provided on the outer side of the inner fire cover 32. The fire outlet 22 is higher than the bottom end of the guide surface 321. In this embodiment, a certain height difference is designed between the fire outlet 22 and the inner fire cover 32, and the inner fire cover 32 is designed with a guide surface 321 to keep the stir-frying flame away from the surface of the inner fire cover 32, preventing it from burning the inner fire cover 32 and causing airflow deceleration, thereby ensuring more intense turbulence. In addition, when the stove overflows, the annular rib 322 of the inner fire cover 32 can block the liquid, causing it to flow toward the inside of the inner fire cover 32 and be quickly diverted along the guide surface 321, then flow downward along the gap between the inner fire ring airway 3 and the stir-frying ejector tube 2, and flow out through the channel hole 31.

[0041] like Figure 1 、 Figure 2As shown, in an embodiment of the present application, the furnace head 1 is further provided with an outer fire ring air channel 4, which is arranged around the inner fire ring air channel 3, and the outer fire ring air channel 4 is provided with an outer fire cover 41 at the top. In addition, the inner fire ring air channel 3 and the outer fire ring air channel 4 are respectively connected with respective ejector pipes and nozzles, which are prior art and will not be described in detail.

[0042] The utility model further provides a kind of stove, including the above-mentioned explosive stir-frying sound burner.The stove further include bottom shell, panel etc., which are prior art and will not be described in detail.The stove provided by the utility model embodiment has the following characteristics:

[0043] 1, the utility model can solve the problem that the current one-key explosive stir-frying product is not obvious and not intuitive in explosive stir-frying experience;

[0044] 2, the utility model can provide a kind of brand-new explosive stir-frying form, thought and scheme, can solve the problem that explosive stir-frying experience is not good, while bringing the new explosive stir-frying experience of more fierce firepower and more intuitive when explosive stir-frying.

[0045] 3, simultaneously, the utility model is designed with anti-overflow structure at the junction of explosive stir-frying ejector pipe and furnace head, to prevent the problem of water entering fire hole and bottom shell.

[0046] The above-mentioned is only preferred embodiment of the utility model, and is not used to limit the utility model, for the person skilled in the art, the utility model can have various changes and changes. Any modification, equivalent replacement, improvement etc. made within the spirit and principle of the utility model should be included in the protection scope of the utility model.

Claims

1. A sizzle sound producing burner, characterized by, The burner comprises a burner head (1), wherein a flash frying injection pipe (2) is arranged in the burner head (1), the top end of the flash frying injection pipe (2) is outwardly protruded to form a fire outlet (21), the fire outlet (21) is conical, and the side surface of the fire outlet (21) is provided with a fire outlet hole (22) in communication with the inside of the flash frying injection pipe (2); the fire outlet hole (22) is trapezoidal and extends upwardly and outwardly from inside to outside.

2. The sizzling audible burner of claim 1, wherein, The number of the fire outlet holes (22) is three, and the fire outlet holes (22) are arranged at equal intervals around the axis of the flash frying injection pipe (2).

3. The sizzling acoustic burner of claim 1 or 2, wherein, Each end angle of the fire outlet hole (22) is rounded.

4. The sizzling acoustic burner of claim 1 or 2, wherein, The top end of the fire outlet (21) is provided with a baffle (23), and the diameter of the baffle (23) is greater than the outer diameter of the bottom end of the fire outlet (21). The bottom of the flash frying injection pipe (2) is provided with a plurality of injection holes (24) arranged along the circumference of the flash frying injection pipe (2).

5. The sizzle sound burner of claim 1, wherein, The middle part of the flash frying injection pipe (2) is provided with an annular support plate (27).

6. The sizzle sound burner of claim 5, wherein, The inside of the burner head (1) is provided with a horizontal partition plate (11), the partition plate (11) is provided with a mounting hole (12), the flash frying injection pipe (2) is arranged in the mounting hole (12), and the support plate (27) is located above the partition plate (11).

7. The sizzle sound burner of claim 6, wherein, A sealing ring (13) is arranged between the support plate (27) and the partition plate (11). The bottom of the flash frying injection pipe (2) is connected with a flash frying gas path (25), the flash frying gas path (25) is provided with a flash frying nozzle (26) at the connection position with the flash frying injection pipe (2).

8. The sizzling acoustic burner of claim 6 or 7, wherein, The top part of the partition plate (11) is upwardly extended to form an annular inner fire ring air channel (3), the inner fire ring air channel (3) surrounds the flash frying injection pipe (2), and the bottom part of the inner fire ring air channel (3) is provided with a passage hole (31) in communication with the outside.

9. The sizzle sound burner of claim 8, wherein, The top part of the inner fire ring air channel (3) is provided with an annular inner fire cover (32), the inner side of the inner fire cover (32) is provided with a flow guide surface (321) extending downwardly and inwardly from outside to inside, the outer side of the inner fire cover (32) is provided with an annular baffle (322) extending upwardly, and the fire outlet hole (22) is higher than the bottom end of the flow guide surface (321).

10. A hob, characterized in that The burner comprises a flash frying sound burner according to any one of claims 1 to 9.