WO2018076166A1 - 一种高效能空气炸锅 - Google Patents
一种高效能空气炸锅 Download PDFInfo
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- WO2018076166A1 WO2018076166A1 PCT/CN2016/103199 CN2016103199W WO2018076166A1 WO 2018076166 A1 WO2018076166 A1 WO 2018076166A1 CN 2016103199 W CN2016103199 W CN 2016103199W WO 2018076166 A1 WO2018076166 A1 WO 2018076166A1
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47J—KITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
- A47J37/00—Baking; Roasting; Grilling; Frying
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- the invention relates to the technical field of cooking equipment technology, in particular to a high performance air fryer.
- air fryers As a kind of pot utensils in the kitchen, air fryers have become more and more popular in life.
- the air fryer uses the flowing hot air to carry the oil and gas and the oil mist continuously in the pot, so that the cooking effect can reach the effect and taste of the fried food.
- the electric air tube is basically used to heat the air, and the heated air is blown by the fan to realize the flow of the hot air.
- the air flows, the edible oil that is added or the oil that is blown out from the food is naturally simultaneously performed.
- the heat is turned into an oil mist, and the air drives the oil mist to circulate and fry the food.
- the electric air tube is simply used for hot air circulation, the temperature of the hot air blown into the pot is not high enough, the baking process is slow, the heat transfer is uneven, the thermal efficiency is low, and the effect of the frying is not good, and the locality is easy.
- Charging which affects the taste of the food and is not conducive to health; on the other hand, the heated electric heating tube is often stuck above the thermal insulation shell, which is easy to loose and cannot be stably fixed.
- the object of the present invention is to provide a high-efficiency air fryer by increasing the auxiliary heat generating device to achieve preheating of air by reducing the burden of the main heat generating device, further reducing power consumption and improving air.
- the heating efficiency of the fryer on the other hand, the air supply device is provided to ensure that the air can be heated at a high speed on the surface of the food; at the same time, the high-speed air can penetrate the surface of the food and heat the inside of the food to ensure food.
- the main heating device has two ends fixed in the positioning groove by two screws, and the remaining part of the heating tube passes through the card slot card Fixed by fixing, this fixing method is stable Reliable and improve the effective utilization of space.
- the utility model solves the problem that the hot air circulation is simply adopted by the electric heating tube in the prior art, the temperature of the hot air blown into the pot is not high enough, the baking process is slow, the heat transfer is uneven, the power consumption is high, the thermal efficiency is low, and the explosion is caused. The effect is not good, and it is easy to burn locally, which affects the taste of the food and is not conducive to health.
- the structure is simple, convenient for installation and maintenance, and easy to disassemble
- a high-performance air fryer comprising a casing, an outer cover, a stirring device, a heat insulating shell, a heating device, a thermal cycle device and an inner pot, wherein the heating device, the heat insulating shell, the heat circulating device and the inner pot are disposed in the outer casing
- the heating device includes a main heating device and a secondary heating device, the main heating device is disposed under the inner pot, the heat insulating shell encloses the main heating device, and the auxiliary heating device is disposed at the heat preservation Below the shell;
- the heat cycle device includes a heat transfer conduit and a blower assembly; the blower assembly is disposed below a middle portion of the heat retaining shell, and the heat transfer conduit is disposed outside the heat insulating shell, the heat transfer conduit
- the air inlet is connected to one side of the auxiliary heat generating device, and an air outlet of the heat transfer conduit is connected between the outer cover and the inner lid to form an inner cavity;
- the heat-insulating housing is provided with a plurality of heat-dissipating through-holes, and the heating device drives the air flowing under the heat-insulating shell through the air-sending component, so that the heated airflow inside the heat-insulating shell flows through the heat-dissipating through-hole
- the heat transfer conduit is delivered to the inner pot.
- the air supply assembly includes a fan and a drive motor, and the drive motor is disposed under the fan, and the drive motor drives the fan to rotate.
- the stirring device includes a stirring motor, a stirring pin and a stirrer, the stirring motor and the stirring pin are fixed inside the outer cover, and the bottom end of the agitator is mounted on the inner pot;
- the agitating pin is sleeved with the top end of the agitator, and the agitating motor drives the agitating pin to drive the agitator to rotate.
- a positioning groove and a card slot are further provided, and the positioning groove and the card slot are disposed on the surface of the heat insulating case.
- the heating device is a heat generating tube, and both ends of the main heat generating device are fixed to the protective cover through the positioning groove, and a part of the heat generating tube is fixed by the card slot.
- a handle is disposed on both sides of the inner pot edge.
- handles are further disposed on both sides of the outer cover.
- the working process of the air fryer of the present invention is as follows: when the air fryer is activated to cook the food, the heating device is heated, wherein a part of the heat of the main heating device is directly transmitted to the inner pot to heat the food, and another part of the heat is transferred to the In the nearby air, the auxiliary heating device is heated to generate more heat, and the fan is provided by the fan of the air supply assembly. Under the action of the wind, the hot air flows through the heat dissipation through hole of the heat insulating case to the heat transfer pipe.
- the air inlet is blown in, and then flows out from the air outlet, and finally the hot air is blown into the inner pot, so that the temperature of the inner pot is higher, the food is heated efficiently, and the flow of the hot air flow is set by providing a heat transfer pipe. Control improves the thermal efficiency of the air fryer.
- the heating device When the heating device heats the bottom of the inner pot, the hot air flow is blown to the surface of the food through the air supply assembly, so that the food is fried and the air is hot fried. The food is evenly heated and crispy, so that the food can be cooked quickly and evenly. 5.
- the stirring device By setting the stirring device, it is possible to heat the food in the cooking pot while heating Stirring evenly ensures that the food can be hit and heated by the hot air flow in all aspects, so that the food is evenly heated, and the phenomenon that the food is burnt due to local overheating is avoided.
- the heating device is a heating tube, which has the characteristics of high thermal efficiency, long service life, high mechanical strength, convenient installation and low cost. Part of the heating tube is fixed by the card slot type, which is stable and reliable, and improves the space utilization efficiency.
- FIG. 1 is a schematic cross-sectional structural view of an air fryer according to an embodiment of the present invention
- Figure 2 is a partially exploded perspective view of an air fryer according to an embodiment of the present invention.
- Figure 3 is another partially exploded perspective view of an air fryer according to an embodiment of the present invention.
- Figure 4 is a further partial exploded perspective view of an air fryer according to an embodiment of the present invention.
- a high-performance air fryer as shown in FIG. 1 to FIG. 4, comprises a casing 1, an outer cover 2, a heat insulating casing 3, a heating device 4, a thermal cycle device and an inner pot 6, the heating device 4, and the heat insulating shell 3 a heat cycle device and an inner pot 6 are disposed in the outer casing 1;
- the heating device 4 is disposed at the bottom of the air fryer, and the heating device 4 includes a main heating device 41 and a secondary heating device 42.
- the main heating device 41 is disposed under the inner pot 6, and the heat insulating shell 3 is wrapped around the setting device.
- a main heating device 41, the auxiliary heating device 42 is disposed under the heat insulating shell 3;
- the heat device 41 is a main heater, and the auxiliary heat generating device 42 is a secondary heater, and the heat of the auxiliary heater is transmitted to the upper portion of the air fryer via the heat transfer pipe 51.
- the heat cycle device includes a heat transfer conduit 51 and a blower assembly 52; the blower assembly 52 is disposed below the middle portion of the heat insulating shell 3, and the heat transfer conduit 51 is disposed outside the heat insulating shell 3.
- the air inlet 511 of the heat transfer conduit 51 communicates with one side of the auxiliary heat generating device 42, and the air outlet 512 of the heat transfer conduit 51 communicates with the cover of the outer cover 2 and the inner pot 6 to form a cavity;
- the heat-dissipating through-hole 31 is disposed in the middle of the heat-insulating housing 3, and the heating device 4 drives the air flowing under the heat-insulating housing 3 through the air-sending assembly 52 to cause the heated airflow inside the heat-insulating housing 3 to pass through
- the heat radiating through holes 31 are sent to the heat transfer pipe 51 to be transferred into the inner pot 6.
- the heating device 4 When the air fryer is activated to cook the food, the heating device 4 is heated, wherein a part of the heat of the main heating device 41 is directly transmitted to the inner pot 6, the food is heated, and the other part of the heat is transferred to the nearby air.
- the auxiliary heating device 42 is heated to generate more heat, and the fan 521 of the air blowing assembly 52 provides a wind source. Under the action of the wind, the hot air flows through the heat dissipation through hole of the heat insulating shell 3. 31 is blown into the air inlet 511 of the heat transfer conduit 51, and then flows out of the air outlet 512, and finally hot air is blown into the inner pot 6, so that the temperature of the inner pot 6 is higher and the drying is performed efficiently.
- the food is heated, and by providing the heat transfer conduit 51, the flow of the hot air flow is controlled, and the thermal efficiency of the air fryer is improved.
- the air blowing assembly 52 includes a fan 521 and a driving motor 522 disposed under the fan 521, and the driving motor 522 drives the fan 521 to rotate.
- the air supply assembly 52 is simple in structure, convenient in installation and maintenance, and easy to disassemble.
- the driving motor 522 drives the fan 521 to rotate. Under the driving of the fan 521, hot air near the heating device 4 passes through the heat dissipation through hole 31 of the heat insulating housing 3, and enters the heat transfer conduit 51. The hot air flow flows into the inner pot 6 to perform thermal circulation, thereby realizing the cooking work of the air fryer. While the heating device 4 heats the bottom of the inner pot 6, the hot air flow is blown to the surface of the food through the air blowing assembly 52, so that the food is fried and the air is hot-fried, and the food is evenly heated, and the crispy is suitable. Eat food quickly and evenly.
- a stirring device which includes a stirring motor 71, a stirring pin 72, and an agitator 73, and the stirring motor 71 and the stirring pin 72 are fixed inside the outer cover 2, the agitator 73 The bottom end is mounted on the inner pot 6; when the outer cover is closed, the agitating pin 72 is sleeved with the top end of the agitator 73, and the agitating motor 71 drives the agitating pin 72 The agitator 73 is driven to rotate.
- the agitating motor 71 drives the agitating pin 72 to rotate, and the agitating pin 72 is fixedly coupled to the agitator 73, so that the agitator 73 can be driven to perform rotational agitation.
- the stirring device By setting the stirring device, the food in the cooking inner pot 6 can be uniformly stirred at the same time, thereby ensuring that all aspects of the food can be hit and heated by the hot air flow, thereby achieving uniform heating of the food and avoiding food occurrence. Charging due to local overheating.
- a positioning groove 32 and a card slot 33 are further provided. As shown in FIG. 2 to FIG. 4, the positioning groove 32 and the card slot 33 are disposed on the surface of the protective cover, and the heating device 4 is a heat pipe. Both ends of the main heat generating device 41 are fixed to the protective cover through the positioning groove 32, and a part of the heat generating tube is fixed by the card slot 33.
- the heating device 4 is a heat-generating tube, which has the characteristics of high thermal efficiency, long service life, high mechanical strength, convenient installation and low cost.
- the heating tube is a multi-folded stainless steel heating tube, the two ends of which are fixed by the two screws in the positioning groove 32, and the remaining part of the heating tube is fixed by the card slot 33. Stable and reliable, improve space efficient utilization.
- a handle 9 is further provided, and the handle 9 is disposed on both sides of the inner pot 6.
- the handle 9 can be provided. It is convenient to extract and clean.
- the air fryer is used to cook the food, the user needs to pour the food in one time, and the inner pot 6 can be lifted by the handle 9 to be dumped in the corresponding loader.
- a handle 10 is further provided, and the handle 10 is disposed at one end of the outer cover 2.
- the handle 10 is convenient for the user to open or close the outer cover 2 to realize the air fryer cooking work.
- the air fryer When the air fryer is used in the operation of the present invention, food is added to the inner pot 6, the outer cover 2 is closed, the drive motor 522 and the heating device 4 are activated, and the fan 521 is rotated to provide wind power.
- the heating device 4 performs heating of the inner pot 6, while a flow of hot air is blown into the heat transfer duct 51 through the fan 521 to enter the inner pot 6 to heat food, thereby achieving circulation of hot air, circulating hot air.
- the flow direction can be seen from FIG. 1 .
- the auxiliary heat generating device 42 is added to realize the preheating of the air, the burden of the main heat generating device 41 is reduced, and the heating efficiency of the air fryer is further improved.
- the air supply device is arranged to ensure that the air can fully heat the surface of the food at a high speed; at the same time, the air flowing at a high speed can penetrate the surface of the food and heat the inside of the food to ensure uniform heating of the whole food, thereby maximizing utilization.
- the hot air reduces energy consumption, low carbon and environmental protection, and has a broad market prospect.
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Abstract
一种高效能空气炸锅,包括外壳(1)、外盖(2)、搅拌装置、保温壳(3)、加热装置(4)、热循环装置和内锅(6),加热装置(4)、保温壳(3)、热循环装置和内锅(6)设置于外壳(1)内,加热装置(4)包括主发热装置(41)和辅发热装置(42),主发热装置(41)设置于内锅(6)的下方,保温壳(3)包裹设置主发热装置(41),辅发热装置(42)设置于保温壳(3)的下方;通过增加辅发热装置(42),实现空气的预热,降低主发热装置(41)的负担,进一步地提高空气炸锅的加热效率,降低了能耗。
Description
本发明涉及烹饪设备技术的技术领域,具体涉及一种高效能空气炸锅。
空气炸锅作为一种厨房内的锅类用具,在生活中已经越来越普及。空气炸锅是利用流动的热空气带着油气、油雾在锅内持续地运动,从而使烹饪效果达到油炸食物的效果和口感。
目前的空气炸锅,基本采用电热管加热空气,利用风扇吹动加热后的空气,来实现热风的流动,空气流动时,自然就对加入的食用油或者由食物内炸出的油也同时进行了加热,使其变为油雾,空气带动着油雾循环,进行食物的炸制。但是,一方面,单纯采用电热管进行热空气循环,吹入锅内的热气的温度不够高,烘烤过程较慢,传热不均,热效率偏低,造成炸制的效果不好,容易局部烧焦,从而影响了食物的口感和不利于健康;另一方面,加热的电热管往往是卡接保温壳上方,容易松动,不能稳定地对其进行固定。
发明内容
本发明的目的在于针对上述的不足之处,进而提供一种高效能空气炸锅,通过增加了辅发热装置实现空气的预热,降低主发热装置的负担,进一步地降低耗电量,提高空气炸锅的加热效率,另一方面,设置送风装置,保证了空气能以高速对食物表面进行全面的加热;同时高速流通的空气还可以穿透食物表面,对食物内部进行加热,以保证食物整体受热均匀,从而最大化利用了热空气,降低了能耗,低碳环保;主发热装置其两端在所述定位槽通过两个螺钉进行固定,其余部分的发热管通过所述卡槽卡接式进行固定,这种固定方式稳定
可靠,提高空间有效利用率。解决了现有技术中单纯采用电热管进行热空气循环,吹入锅内的热气的温度不够高、烘烤过程较慢、传热不均、耗电量较高、热效率偏低、造成炸制的效果不好、容易局部烧焦从而影响了食物的口感和不利于健康等问题。同时结构简单、安装维修方便,容易拆卸。
为达此目的,本发明采用以下技术方案:
一种高效能空气炸锅,包括外壳、外盖、搅拌装置、保温壳、加热装置、热循环装置和内锅,所述加热装置、保温壳、热循环装置和内锅设置于所述外壳内,所述加热装置包括主发热装置和辅发热装置,所述主发热装置设置于所述内锅的下方,所述保温壳包裹设置所述主发热装置,所述辅发热装置设置于所述保温壳的下方;
所述热循环装置包括传热管道和送风组件;所述送风组件设置于所述保温壳的中部的下方,所述传热管道设置于所述保温壳的外侧,所述传热管道的进风口连通于所述辅发热装置的一侧,所述传热管道的出风口连通于所述外盖与内锅盖之间构成内腔;
所述保温壳的中部设置有若干个散热通孔,所述加热装置通过所述送风组件带动所述保温壳下方空气流动,使所述保温壳内部的受热气流经所述散热通孔流向所述传热管道传送到所述内锅内。
更进一步地,所述送风组件包括风扇和驱动电机,所述驱动电机设置于所述风扇的下方,所述驱动电机驱动所述风扇旋转。
更具体地,所述搅拌装置包括搅拌电机、搅拌插销和搅拌器,所述搅拌电机和搅拌插销固定于所述外盖内部,所述搅拌器的底端安装于所述内锅上;所述外盖闭合时,所述搅拌插销与所述搅拌器的顶端对接孔内相套接,所述搅拌电机驱动所述搅拌插销带动所述搅拌器转动。
更进一步地,还设置有定位槽和卡槽,所述定位槽和卡槽设置于所述保温壳表面上。
更进一步地,所述加热装置为发热管,所述主发热装置的两端通过所述定位槽固定于所述保护罩上,且其部分所述发热管通过所述卡槽进行固定。
更进一步地,所述内锅边缘的两侧还设置有提手。
更进一步地,所述外盖的两侧还设置有把手。
本发明的空气炸锅工作过程如下:当启动空气炸锅对食物进行烹饪时,加热装置加热,其中主发热装置的一部分热量直接传递给所述内锅,实现食物加热,另一部分的热量传到附近空气当中,同时辅发热装置加热,使得产生更多的热量,通过送风组件的风扇提供风源,在风力的作用下,热空气流通过所述保温壳的散热通孔向传热管道中进风口吹入,再从其出风口流出,最终热空气被吹进内锅里,使得内锅的温度更高,有效地进行加热食物,而且通过设置传热管道,对热空气流的流向加以控制,提高了空气炸锅的热效率。
本发明的有益效果:本发明1.一方面通过增加了所述辅发热装置实现空气的预热,降低所述主发热装置的负担,进一步地提高空气炸锅的加热效率,另一方面,设置所述送风装置,保证了空气能以高速对食物表面进行全面的加热;2.同时高速流通的空气还可以穿透食物表面,对食物内部进行加热,以保证食物整体受热均匀,从而最大化利用了热空气,降低了能耗,低碳环保;3.主发热装置其两端在所述定位槽通过两个螺钉进行固定,其余部分的发热管通过所述卡槽卡接式进行固定,这种固定方式稳定可靠,提高空间有效利用率;4.在加热装置加热内锅底部的同时,通过送风组件,把热空气流吹到食物表面,使食物煎炒的同时又进行空气热炸,食物受热均匀,香脆适宜,可快速均匀地料理食物。5.通过设置所述搅拌装置,能对正加热烹饪内锅里的食物同时进行均
匀搅拌,保证了食物全方面都可以受到热空气流的撞击、加热,实现了食物的受热均匀,避免了出现食物因局部过热而烧焦的现象。6.加热装置为发热管,具有热效率高、使用寿命长、机械强度高、安装方便和成本低廉等特点。部分发热管通过卡槽卡接式进行固定,这种固定方式稳定可靠,提高空间有效利用率。
下面结合附图和实施例对本发明进一步说明。
图1是本发明的一个实施例的空气炸锅的截面结构示意图;
图2是本发明的一个实施例的空气炸锅的一局部分解立体示意图;
图3是本发明的一个实施例的空气炸锅的另一局部分解立体示意图;
图4是本发明的一个实施例的空气炸锅的再一局部分解立体示意图.
其中:外壳1、外盖2、保温壳3、散热通孔31、定位槽32、卡槽33、加热装置4、主发热装置41、辅发热装置42、传热管道51、进风口511、出风口512、送风组件52、风扇521、驱动电机522、内锅6、搅拌电机71、搅拌插销72、搅拌器73、提手9、把手10。
下面结合附图并通过具体实施方式来进一步说明本发明的技术方案。
一种高效能空气炸锅,如图1-图4所示,包括外壳1、外盖2、保温壳3、加热装置4、热循环装置和内锅6,所述加热装置4、保温壳3、热循环装置和内锅6设置于所述外壳1内;
所述加热装置4设置在空气炸锅底部,加热装置4包括主发热装置41和辅发热装置42,所述主发热装置41设置于所述内锅6的下方,所述保温壳3包裹设置所述主发热装置41,所述辅发热装置42设置于所述保温壳3的下方;主发
热装置41为主加热器,辅发热装置42为辅加热器,辅加热器的热量经传热管道51传送到空气炸锅的上部。
所述热循环装置包括传热管道51和送风组件52;所述送风组件52设置于所述保温壳3的中部的下方,所述传热管道51设置于所述保温壳3的外侧,所述传热管道51的进风口511连通于所述辅发热装置42的一侧,所述传热管道51的出风口512连通于所述外盖2与内锅6盖之间构成内腔;
所述保温壳3的中部设置有若干个散热通孔31,所述加热装置4通过所述送风组件52带动所述保温壳3下方空气流动,使所述保温壳3内部的受热气流经所述散热通孔31流向所述传热管道51传送到所述内锅6内。
当启动空气炸锅对食物进行烹饪时,所述加热装置4加热,其中所述主发热装置41的一部分热量直接传递给所述内锅6,实现食物加热,另一部分的热量传到附近空气当中,同时所述辅发热装置42加热,使得产生更多的热量,通过所述送风组件52的风扇521提供风源,在风力的作用下,热空气流通过所述保温壳3的散热通孔31向所述传热管道51中进风口511吹入,再从其出风口512流出,最终热空气被吹进所述内锅6里,使得所述内锅6的温度更高,有效地进行加热食物,而且通过设置所述传热管道51,对热空气流的流向加以控制,提高了空气炸锅的热效率。
更进一步地,所述送风组件52包括风扇521和驱动电机522,所述驱动电机522设置于所述风扇521的下方,所述驱动电机522驱动所述风扇521旋转。
设置的所述送风组件52结构简单、安装维修方便,容易拆卸。所述驱动电机522带动所述风扇521转动,在所述风扇521的带动下,所述加热装置4附近的热空气通过所述保温壳3的散热通孔31,进入到所述传热管道51内,热空气流由此流入所述内锅6内进行热循环,从而实现空气炸锅的烹饪工作,在所
述加热装置4加热内锅6底部的同时,通过所述送风组件52,把热空气流吹到食物表面,使食物煎炒的同时又进行空气热炸,食物受热均匀,香脆适宜,可快速均匀地料理食物。
更具体地,还设置有搅拌装置,所述搅拌装置包括搅拌电机71、搅拌插销72和搅拌器73,所述搅拌电机71和搅拌插销72固定于所述外盖2内部,所述搅拌器73的底端安装于所述内锅6上;所述外盖闭合时,所述搅拌插销72与所述搅拌器73的顶端对接孔内相套接,所述搅拌电机71驱动所述搅拌插销72带动所述搅拌器73转动。
所述搅拌电机71驱动所述搅拌插销72进行旋转,所述搅拌插销72与所述搅拌器73固定连接,因此能带动所述搅拌器73进行旋转搅拌。通过设置所述搅拌装置,能对正加热烹饪内锅6里的食物同时进行均匀搅拌,保证了食物全方面都可以受到热空气流的撞击、加热,实现了食物的受热均匀,避免了出现食物因局部过热而烧焦的现象。
更进一步地,还设置有定位槽32和卡槽33,如图2-图4所示,所述定位槽32和卡槽33设置于所述保护罩表面上,所述加热装置4为发热管,所述主发热装置41的两端通过所述定位槽32固定于所述保护罩上,且其部分所述发热管通过所述卡槽33进行固定。
所述加热装置4为发热管,它具有热效率高、使用寿命长、机械强度高、安装方便和成本低廉等特点。所述发热管为多折弯曲的不锈钢发热管,其两端在所述定位槽32通过两个螺钉进行固定,其余部分的发热管通过所述卡槽33卡接式进行固定,这种固定方式稳定可靠,提高空间有效利用率。
更进一步地,还设置有提手9,所述提手9设置于所述内锅6的两侧。当使用者需要对所述内锅6和所述搅拌器73进行清洗时,可通过设置所述提手9,
方便提取出来清洗,当空气炸锅对食物进行烹饪完成后,使用者需要一次性倒取获得食物,可通过提手9提起所述内锅6在相应装料器进行倾倒。
更进一步地,还设置有把手10,所述把手10设置于所述外盖2的一端。通过设置所述把手10,方便使用者打开或闭合所述外盖2,实现空气炸锅烹饪工作。
当本发明的工作时,使用空气炸锅时,将食物添加到所述内锅6内,盖合所述外盖2,启动所述驱动电机522和加热装置4,所述风扇521转动提供风力、所述加热装置4进行加热所述内锅6,同时热空气流通过所述风扇521吹进所述传热管道51进入所述内锅6加热食物,实现热空气的循环,热空气循环的流向从图1可见,本发明一方面通过增加了所述辅发热装置42实现空气的预热,降低所述主发热装置41的负担,进一步地提高空气炸锅的加热效率,另一方面,通过设置所述送风装置,保证了空气能以高速对食物表面进行全面的加热;同时高速流通的空气还可以穿透食物表面,对食物内部进行加热,以保证食物整体受热均匀,从而最大化利用了热空气,降低了能耗,低碳环保,市场前景广阔。
以上结合具体实施例描述了本发明的技术原理。这些描述只是为了解释本发明的原理,而不能以任何方式解释为对本发明保护范围的限制。基于此处的解释,本领域的技术人员不需要付出创造性的劳动即可联想到本发明的其它具体实施方式,这些方式都将落入本发明的保护范围之内。
Claims (7)
- 一种高效能空气炸锅,包括外壳、外盖、搅拌装置、保温壳、加热装置、热循环装置和内锅,所述加热装置、保温壳、热循环装置和内锅设置于所述外壳内,其特征在于:所述加热装置包括主发热装置和辅发热装置,所述主发热装置设置于所述内锅的下方,所述保温壳包裹所述主发热装置,所述辅发热装置设置于所述保温壳的下方;所述热循环装置包括传热风道和送风组件,所述送风组件设置于所述保温壳的中部的下方,所述传热风道设置于所述保温壳的外侧,所述传热风道的进风口连通于所述辅发热装置的一侧,所述传热风道的出风口连通于所述保温壳与内锅盖之间构成内腔;所述保温壳的中部设置有若干个散热通孔,所述加热装置通过所述送风组件带动所述保温壳下方的空气流动,使所述保温壳内部的受热气流经所述散热通孔流向所述传热风道传送到所述内锅内。
- 根据权利要求1所述的高效能空气炸锅,其特征在于:所述送风组件包括风叶和驱动电机,驱动电机设置于所述风叶的下方,驱动电机驱动所述风叶旋转。
- 根据权利要求1所述的高效能空气炸锅,其特征在于:所述搅拌装置包括搅拌电机、搅拌插销和搅拌器,搅拌电机和搅拌插销固定于外盖内部,搅拌器的底端安装于内锅上;所述外盖闭合时,搅拌插销与搅拌器顶端的对接孔相套接,所述搅拌电机驱动搅拌插销带动所述搅拌器转动。
- 根据权利要求1所述的高效能空气炸锅,其特征在于:还设置有定位槽和卡槽,定位槽和卡槽设置于保温壳表面上。
- 根据权利要求1所述的高效能空气炸锅,其特征在于:所述加热装置为发热管,所述主发热装置的两端通过定位槽固定于保护罩上,且其部分发热管 通过卡槽进行固定。
- 根据权利要求1所述的高效能空气炸锅,其特征在于:所述内锅边缘的两侧还设置有提手。
- 根据权利要求1所述的高效能空气炸锅,其特征在于:所述外盖的两侧还设置有把手。
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USD1015798S1 (en) | 2019-06-06 | 2024-02-27 | Sharkninja Operating Llc | Food preparation device |
US11678765B2 (en) | 2020-03-30 | 2023-06-20 | Sharkninja Operating Llc | Cooking device and components thereof |
US11647861B2 (en) | 2020-03-30 | 2023-05-16 | Sharkninja Operating Llc | Cooking device and components thereof |
US11134808B2 (en) | 2020-03-30 | 2021-10-05 | Sharkninja Operating Llc | Cooking device and components thereof |
US11969118B2 (en) | 2020-03-30 | 2024-04-30 | Sharkninja Operating Llc | Cooking device and components thereof |
WO2024031875A1 (zh) * | 2022-08-09 | 2024-02-15 | 周金平 | 一种双锅双风道式空气炸锅 |
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