JP5487572B2 - High-frequency heating device with steam generation function - Google Patents

High-frequency heating device with steam generation function Download PDF

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Publication number
JP5487572B2
JP5487572B2 JP2008192980A JP2008192980A JP5487572B2 JP 5487572 B2 JP5487572 B2 JP 5487572B2 JP 2008192980 A JP2008192980 A JP 2008192980A JP 2008192980 A JP2008192980 A JP 2008192980A JP 5487572 B2 JP5487572 B2 JP 5487572B2
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heater
aluminum
sheathed heater
heating
steam
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JP2010032081A (en
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崇任 山口
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Panasonic Corp
Panasonic Holdings Corp
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Panasonic Corp
Matsushita Electric Industrial Co Ltd
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Description

本発明は、蒸気発生機能付き高周波加熱装置に関するもので、より具体的には、蒸気発生手段の熱源であるシーズヒータを制御するリレーなどの制御装置の故障等によってシーズヒータが常時給電された場合の安全構造に関するものである。   The present invention relates to a high-frequency heating device with a steam generating function, and more specifically, when a sheathed heater is constantly supplied with power due to a failure of a control device such as a relay that controls a sheathed heater that is a heat source of steam generating means. It relates to the safety structure of

近年の加熱調理器は、電子レンジのような高周波加熱や、オーブンやグリルのような電熱加熱に加え、蒸気発生手段によって高温の水蒸気を発生させて被加熱物を加熱する機能を有した調理器が多く、特に高周波加熱装置に蒸気発生機能付きのものが多くなっている。   In recent years, cooking devices have the function of heating the object to be heated by generating high-temperature steam by means of steam generation means, in addition to high-frequency heating such as microwave ovens and electric heating such as ovens and grills. In particular, there are many high frequency heating devices having a steam generation function.

これらの高周波加熱装置に搭載されている蒸気発生手段は、水を沸騰させるための凹状蒸発皿の下方にシーズヒータを埋め込んだアルミダイキャストを配設し、蒸発皿への水の供給と共にシーズヒータのON/OFF制御により蒸気量をコントロールしている(例えば、特許文献1参照)。   The steam generating means mounted on these high-frequency heating devices is provided with an aluminum die-cast in which a sheathed heater is embedded below a concave evaporating dish for boiling water, and the sheathed heater is supplied with water to the evaporating dish. The amount of steam is controlled by ON / OFF control (see, for example, Patent Document 1).

図4は特許文献1に記載された従来の蒸気発生機能付き高周波加熱装置を示すものである。図4に示すように、蒸気発生手段1は加熱室底面壁を構成する一部に凹部を形成した蒸発皿の下方にシーズヒータ2を埋め込んだアルミダイキャスト3を配置し、さらに下方に水受け板4を配置した構成になっている。   FIG. 4 shows a conventional high-frequency heating apparatus with a steam generation function described in Patent Document 1. In FIG. As shown in FIG. 4, the steam generating means 1 has an aluminum die cast 3 in which a sheathed heater 2 is embedded below an evaporating dish in which a recess is formed in a part of the bottom wall of the heating chamber, and a water receiver is further provided below. The plate 4 is arranged.

アルミダイキャスト3にはサーミスタが接続され、サーミスタにより検出された温度情報をもとに、シーズヒータ2への給電をON−OFFするリレーや蒸発皿に水を供給するポンプを制御する構造になっている。
特開2008−128514号公報
A thermistor is connected to the aluminum die-cast 3, and based on the temperature information detected by the thermistor, a relay that turns on and off the power supply to the sheathed heater 2 and a pump that supplies water to the evaporating dish are controlled. ing.
JP 2008-128514 A

しかしながら、従来の構成では制御装置が正常に動作している時は問題ないが、シーズヒータの制御を行うリレーの接点溶着や、制御装置自体の故障などが発生した場合、使用者には高周波加熱装置が動作していないように見えるにもかかわらず、冷却装置が停止したままでシーズヒータのみが常時給電されている異常状態となる。   However, in the conventional configuration, there is no problem when the control device is operating normally, but when the contact welding of the relay that controls the sheathed heater or the failure of the control device itself occurs, high frequency heating is required for the user. In spite of the fact that the device does not seem to be operating, the cooling device is stopped and only the sheathed heater is in an abnormal state where power is always supplied.

この場合、シーズヒータの異常過熱によりアルミダイキャストの発煙とともにアルミが溶融し始め、水受け板はアルミダイキャストを囲った形状になっていないため、水受け板で受けられない部位ではアルミダイキャストの下方に配置した部品に溶融したアルミが滴下して地絡したり、高温のアルミによって樹脂などの部材が溶けたりする可能性があった。   In this case, due to abnormal overheating of the sheathed heater, aluminum begins to melt together with the smoke of the aluminum die cast, and the water receiving plate is not shaped to surround the aluminum die cast. There is a possibility that molten aluminum may drop and cause a ground fault on a part arranged below, or a member such as a resin may be melted by high-temperature aluminum.

また、シーズヒータは給電されたまま加熱を継続するため、溶融して軟らかくなったアルミダイキャストから高温のシーズヒータが抜け落ち、シーズヒータが他の電気部品に接触することによる地絡や、樹脂部品などが溶け、使用者が不用意に接触による火傷などに至る可能性があった。   In addition, since the sheathed heater continues to be heated with power supplied, the high-temperature sheathed heater falls off from the melted and soft aluminum die-cast, and the sheathed heater comes in contact with other electrical components. There is a possibility that the user may inadvertently get burned by contact.

さらに、常時給電されたシーズヒータが溶融したアルミと広範囲で接触していると、アルミの溶融熱としてシーズヒータの熱が奪われ、シーズヒータと溶融アルミが非常に高温のまま温度飽和してしまい、シーズヒータへの給電を長時間継続されてしまうことがあった。   Furthermore, if the sheathed heater that is constantly supplied is in contact with the molten aluminum over a wide range, the heat of the sheathed heater is taken away as the melting heat of the aluminum, and the sheathed heater and the molten aluminum are saturated at a very high temperature. The power supply to the sheathed heater may be continued for a long time.

現在では前述のように部品故障などの理由の如何に関わらず、二重、三重の安全対策を要求されているのが実態である。   At present, the reality is that double and triple safety measures are required regardless of the reason of component failure as described above.

本発明は、前記従来の課題を解決するもので、シーズヒータの制御を行うリレーの接点溶着や、制御装置自体の故障などが発生した異常時の安全対策としてヒータカバーに滴下したアルミを受ける形状とシーズヒータの支持部を設けたもので、地絡、樹脂の溶融、火
傷などの傷害を防止した安全性に優れた高周波加熱装置を提供することを目的とする。
The present invention solves the above-mentioned conventional problems, and receives aluminum dropped on the heater cover as a safety measure in the event of an abnormality in which a contact welding of a relay for controlling a sheathed heater or a failure of the control device itself occurs. It is an object of the present invention to provide a high-frequency heating device excellent in safety that is provided with a support portion for a sheathed heater and prevents injuries such as ground faults, resin melting, and burns.

上記従来の課題を解決するために、本発明の蒸気発生機能付き高周波加熱装置は、被加熱物を収納する加熱室と、前記加熱室の前面に自在に開閉する扉と、前記被加熱物を高周波電波によって加熱する高周波発生手段と、前記被加熱物をヒータで加熱する電熱手段と、前記被加熱物の出来栄えを蒸気によって向上させる蒸気発生手段とを備えた高周波加熱装置であって、前記蒸気発生手段は、加熱により蒸気を発生する水溜凹部を有した蒸発皿と、前記蒸発皿を加熱するシーズヒータを埋め込んだアルミダイキャストと、アルミダイ
キャスト下方に配置したヒータカバーと、前記ヒータカバーに設けられ前記シーズヒータを保持する支持部と、を備え、前記シーズヒータ上方のアルミ肉厚よりも、アルミダイキャスト下面と前記アルミダイキャスト下面と対向したヒータカバー底面との距離が大きいものである。
In order to solve the above-described conventional problems, a high-frequency heating apparatus with a steam generation function according to the present invention includes a heating chamber that houses an object to be heated, a door that freely opens and closes in front of the heating chamber, and the object to be heated. A high-frequency heating apparatus comprising high-frequency generating means for heating with high-frequency radio waves, electric heating means for heating the object to be heated with a heater, and steam generating means for improving the quality of the object to be heated with steam, The generating means includes an evaporating dish having a water reservoir recess that generates steam by heating, an aluminum die cast in which a sheathed heater for heating the evaporating dish is embedded, a heater cover disposed below the aluminum die cast, and the heater cover. provided and a support portion for holding the sheathed heater, the sheathed heater upper than aluminum thickness, wherein the aluminum die-cast lower surface aluminum DAIKI The distance between the strike the lower surface facing the heater cover bottom denotes larger.

本発明の蒸気発生機能付き高周波加熱調理器によれば、溶融アルミの滴下による地絡、樹脂の溶融や不用意な接触による火傷などの傷害の可能性を排除し、安全に停止させることができる。   According to the high-frequency heating cooker with a steam generation function of the present invention, it is possible to eliminate the possibility of injury such as a ground fault due to dripping of molten aluminum, a burn due to melting of the resin or inadvertent contact, and the like can be safely stopped. .

第1の発明は、被加熱物を収納する加熱室と、前記加熱室の前面に自在に開閉する扉と、前記被加熱物を高周波電波によって加熱する高周波発生手段と、前記被加熱物をヒータで加熱する電熱手段と、前記被加熱物の出来栄えを蒸気によって向上させる蒸気発生手段とを備えた高周波加熱装置であって、前記蒸気発生手段は、加熱により蒸気を発生する水溜凹部を有した蒸発皿と、前記蒸発皿を加熱するシーズヒータを埋め込んだアルミダイキャストと、アルミダイキャスト下方に配置したヒータカバーと、前記ヒータカバーに設けられ前記シーズヒータを保持する支持部と、を備え、前記シーズヒータ上方のアルミ肉厚よりも、アルミダイキャスト下面と前記アルミダイキャスト下面と対向したヒータカバー底面との距離が大きいものである。 According to a first aspect of the present invention, there is provided a heating chamber that houses an object to be heated, a door that freely opens and closes in front of the heating chamber, high-frequency generating means that heats the object to be heated by high-frequency radio waves, and the object to be heated is a heater. A high-frequency heating apparatus comprising an electric heating means for heating at a temperature and a steam generating means for improving the quality of the object to be heated by steam, wherein the steam generating means is an evaporation having a water reservoir recess that generates steam by heating. A plate, an aluminum die cast in which a sheathed heater for heating the evaporating dish is embedded, a heater cover disposed below the aluminum die cast , and a support portion provided on the heater cover and holding the sheathed heater , The distance between the bottom surface of the aluminum die cast and the bottom surface of the heater cover facing the bottom surface of the aluminum die cast is greater than the aluminum thickness above the sheathed heater. .

これによって、万一アルミ溶融物が滴下した場合でも、シーズヒータをヒータカバーが保持しているので、熱的な安全性を確保することができる。また、シーズヒータ上方のアルミ肉厚よりもアルミダイキャスト下面とヒータカバー底面の間の距離を大きくしているため、保持されたシーズヒータと、一旦溶けてヒータカバーに貯留された溶融アルミは分離され、シーズヒータは放熱よりも常時給電による発熱がはるかに大きくなるため、温度飽和することなく、シーズヒータ自体の異常な温度上昇により早期に断線に至り、安全にシーズヒータの発熱を停止させることができる。 As a result, even if the aluminum melt is dropped, the sheath cover holds the sheathed heater, so that thermal safety can be ensured. In addition, the distance between the bottom surface of the aluminum die cast and the bottom surface of the heater cover is made larger than the aluminum thickness above the sheathed heater , so the retained sheathed heater and the molten aluminum once melted and stored in the heater cover are separated. Because the sheathed heater generates much more heat due to the constant power supply than heat dissipation, the sheathed heater itself can be disconnected quickly due to abnormal temperature rise without causing temperature saturation, and the sheathed heater can be safely stopped from generating heat. Can do.

第2の発明は、第1の発明において、前記ヒータカバー底面に凹部を設けたもので、凹部に溶融したアルミを貯留できるため、ヒータカバー下方に配置した部品にアルミが付着して地絡したり、高温の溶融アルミの滴下によって樹脂などの部材が発火したりすることがなくなる。 The second aspect, in the first aspect, which was provided with a recess on the heater cover bottom, it is possible to store the aluminum melted in the recess, the aluminum adheres grounded in part disposed below the heater cover Or members such as resin are not ignited by dripping hot molten aluminum.

また、凹部に溶融したアルミを貯留させることによって、溶融アルミとシーズヒータを分離し、シーズヒータ自体の異常な温度上昇により早期に断線に至り、安全にシーズヒータの発熱を停止させることができる。   Further, by storing the molten aluminum in the recess, the molten aluminum and the sheathed heater are separated, and an abnormal temperature rise of the sheathed heater itself leads to early disconnection, so that the heat generation of the sheathed heater can be stopped safely.

第3の発明は、第1または第2の発明において、前記ヒータカバーにサーモスタットを配置したのもで、アルミダイキャストが溶融する前の任意の温度で機器を停止させることができるため、電気部品への接触による地絡の危険、樹脂部品などの溶融、使用者の不用意な接触による火傷などを未然に防止できる。 The third invention is the first or second invention, also was placed thermostat on the heater cover, it is possible to stop the device at any temperature before die-cast aluminum is melted, electrical components It is possible to prevent the risk of ground fault due to contact with the battery, melting of resin parts, etc., and burns caused by careless contact by the user.

以下、本発明の実施の形態について、図面を参照しながら説明する。なお、この実施の
形態によって本発明が限定されるものではない。
Hereinafter, embodiments of the present invention will be described with reference to the drawings. Note that the present invention is not limited to the embodiments.

(実施の形態)
図1は、本発明の実施の形態における蒸気発生機能付き高周波加熱装置の蒸気発生手段の側面図である。
(Embodiment)
FIG. 1 is a side view of steam generating means of a high-frequency heating apparatus with a steam generating function in an embodiment of the present invention.

図1において、正常な動作状態の時は、加熱室5の金属製底面を凹状に絞った水溜凹部で形成した蒸発皿6に供給された水は、シーズヒータ2を埋め込んだアルミダイキャスト3で適切に加熱を制御され、水蒸気となって加熱室5内に充満して被加熱物の乾燥を防止したり、出来栄えを良化させたりする。   In FIG. 1, in a normal operation state, water supplied to the evaporating dish 6 formed by the water reservoir concave portion in which the metal bottom surface of the heating chamber 5 is squeezed into a concave shape is transferred to the aluminum die cast 3 in which the sheathed heater 2 is embedded. The heating is appropriately controlled, and the steam is filled into the heating chamber 5 to prevent the heated object from drying or to improve the quality.

シーズヒータ2を制御するリレーの接点が溶着したり、制御装置自体が故障したりすることによってシーズヒータ2への給電が連続して行われた場合、シーズヒータ2に接している部分から徐々にアルミが溶融し始め、シーズヒータ2を保持できなくなる。   In the case where power is continuously supplied to the sheathed heater 2 due to welding of a relay contact for controlling the sheathed heater 2 or a failure of the control device itself, the sheathed heater 2 is gradually brought into contact with the sheathed heater 2. Aluminum begins to melt and the sheathed heater 2 cannot be held.

しかし、本発明によれば、ヒータカバー7にシーズヒータ2を保持する支持部8を設けているため、溶融して柔らかくなったアルミダイキャスト3から高温のシーズヒータ2が抜け落ちることがない。   However, according to the present invention, since the support portion 8 that holds the sheathed heater 2 is provided on the heater cover 7, the high-temperature sheathed heater 2 does not fall out of the aluminum die cast 3 that has been melted and softened.

つまり、高温のシーズヒータ2が他の電気部品に接触することによる地絡や、樹脂部品などの溶け、使用者の不用意な接触による火傷などの傷害を防止することができる。   That is, it is possible to prevent injuries such as a ground fault caused by contact of the high-temperature sheathed heater 2 with other electrical components, a melting of resin components, and a burn due to careless contact by the user.

また、ヒータカバー7底面に溶融したアルミを貯留させることができる凹部9を設けたため、一旦溶融してヒータカバー7に滴下、貯留されたアルミは再びシーズヒータ2に接することがなく、溶融アルミとシーズヒータ2は分離される。   In addition, since the concave portion 9 that can store the molten aluminum is provided on the bottom surface of the heater cover 7, the aluminum once melted and dropped onto the heater cover 7 does not come into contact with the sheathed heater 2 again. The sheathed heater 2 is separated.

接触していたアルミに放熱していたシーズヒータ2はアルミと分離されることによって放熱量よりも常時給電による発熱量がはるかに大きくなり、温度飽和することなく、シーズヒータ2自体の異常な温度上昇によって断線する。   The sheathed heater 2 that has radiated heat to the aluminum that was in contact with it is separated from the aluminum, so the amount of heat generated by the constant power supply is much larger than the amount of heat radiated, and the abnormal temperature of the sheathed heater 2 itself is not saturated. Disconnect by rising.

すなわち、異常時にシーズヒータ2と溶融アルミを分離することによって、発熱源であるシーズヒータ2を早期に断線させ、安全にシーズヒータの発熱を停止させることができ、さらにヒータカバー7の下方に配置した部品にアルミが付着して地絡したり、高温の溶融アルミの滴下によって樹脂などの部材が溶融したりすることを防止できる。   That is, when the sheathed heater 2 and molten aluminum are separated in the event of an abnormality, the sheathed heater 2 that is a heat generation source can be quickly disconnected, and the heat generation of the sheathed heater can be stopped safely, and further disposed under the heater cover 7. Thus, it is possible to prevent aluminum from adhering to the damaged parts and causing a ground fault or melting of a member such as a resin due to dripping of high-temperature molten aluminum.

図2は、本実施の形態における蒸気発生手段の要部断面図である。図2に示すように、シーズヒータ2を制御するリレーの接点が溶着したり、制御装置自体が故障したりすることによってシーズヒータ2への給電が連続して行われた場合、シーズヒータ2に接している部分から徐々にアルミが溶融し始め、ヒータカバー7に滴下し貯留する。   FIG. 2 is a cross-sectional view of a main part of the steam generating means in the present embodiment. As shown in FIG. 2, when power is continuously supplied to the sheathed heater 2 due to welding of a relay contact for controlling the sheathed heater 2 or failure of the control device itself, The aluminum gradually begins to melt from the contacting portion, and drops onto the heater cover 7 to be stored.

シーズヒータ2上方のアルミ肉厚Tよりもアルミダイキャスト3下面とヒータカバー7底面の間の距離Dを大きくなっているため(T<D)、一旦溶融してヒータカバー7に滴下、貯留されたアルミは再びシーズヒータ2に接することがなく、溶融アルミとシーズヒータ2は分離される。   Since the distance D between the bottom surface of the aluminum die cast 3 and the bottom surface of the heater cover 7 is larger than the aluminum thickness T above the sheathed heater 2 (T <D), it is once melted and dropped and stored in the heater cover 7. The aluminum does not come into contact with the sheathed heater 2 again, and the molten aluminum and the sheathed heater 2 are separated.

接触していたアルミに放熱していたシーズヒータ2はアルミと分離されることによって放熱量よりも常時給電による発熱量がはるかに大きくなり、温度飽和することなく、シーズヒータ2自体の異常な温度上昇によって断線する。   The sheathed heater 2 that has radiated heat to the aluminum that was in contact with it is separated from the aluminum, so the amount of heat generated by the constant power supply is much larger than the amount of heat radiated, and the abnormal temperature of the sheathed heater 2 itself is not saturated. Disconnect by rising.

すなわち、異常時にシーズヒータ2と溶融アルミを分離することによって、発熱源であ
るシーズヒータ2を早期に断線させ、安全にシーズヒータの発熱を停止させることができる。
That is, by separating the sheathed heater 2 and the molten aluminum at the time of abnormality, the sheathed heater 2 that is a heat generation source can be disconnected early, and the heat generation of the sheathed heater can be safely stopped.

図3は、本実施の形態における蒸気発生手段の斜視図である。図3に示すように、ヒータカバー7に配置したサーモスタット10はヒータカバー7を介してアルミダイキャスト3の温度をモニターしている。   FIG. 3 is a perspective view of the steam generating means in the present embodiment. As shown in FIG. 3, the thermostat 10 disposed on the heater cover 7 monitors the temperature of the aluminum die cast 3 via the heater cover 7.

このため、シーズヒータ2を制御するリレーの接点の溶着や制御装置自体の故障などによってシーズヒータ2への給電が連続して行われた場合に、アルミダイキャスト3が溶融する前の任意の温度で機器を停止させることができる。   For this reason, when power is continuously supplied to the sheathed heater 2 due to welding of a contact of a relay for controlling the sheathed heater 2 or failure of the control device itself, an arbitrary temperature before the aluminum die cast 3 is melted. You can stop the device.

以上のように、本発明は、蒸気発生機能付き高周波加熱装置に適用可能であり、安全性の高い蒸気発生機能付き高周波加熱装置の提供に寄与するものである。   As described above, the present invention can be applied to a high-frequency heating device with a steam generation function, and contributes to the provision of a high-safety high-frequency heating device with a steam generation function.

本発明の実施の形態における蒸気発生機能付き高周波加熱装置の蒸気発生手段の側面図The side view of the steam generation means of the high frequency heating device with a steam generation function in an embodiment of the present invention 本実施の形態における蒸気発生手段の要部断面図Sectional drawing of the principal part of the steam generation means in this Embodiment 本実施の形態における蒸気発生手段の斜視図The perspective view of the steam generation means in this Embodiment 従来の蒸気発生機能付き高周波加熱装置の要部断面図Sectional view of the main part of a conventional high-frequency heating device with steam generation function

1 蒸気発生手段
2 シーズヒータ
3 アルミダイキャスト
4 水受け板
5 加熱室
6 蒸発皿
7 ヒータカバー
8 支持部
9 凹部
10 サーモスタット
DESCRIPTION OF SYMBOLS 1 Steam generating means 2 Seed heater 3 Aluminum die-cast 4 Water receiving plate 5 Heating chamber 6 Evaporating dish 7 Heater cover 8 Supporting part 9 Recessed part 10 Thermostat

Claims (3)

被加熱物を収納する加熱室と、前記加熱室の前面に自在に開閉する扉と、前記被加熱物を高周波電波によって加熱する高周波発生手段と、前記被加熱物をヒータで加熱する電熱手段と、前記被加熱物の出来栄えを蒸気によって向上させる蒸気発生手段とを備えた高周波加熱装置であって、
前記蒸気発生手段は、加熱により蒸気を発生する水溜凹部を有した蒸発皿と、前記蒸発皿を加熱する断面が円形のシーズヒータを全周に亘り埋め込んだアルミダイキャストと、前記アルミダイキャストの下方に配置し、融したアルミを貯留可能なヒータカバーと、前記ヒータカバーに設けられ前記シーズヒータを保持する支持部と、を備え、
前記シーズヒータ上方のアルミ肉厚よりも、前記アルミダイキャスト下面と前記アルミダイキャスト下面と対向した前記ヒータカバー底面との距離が大きい蒸気発生機能付き高周波加熱装置。
A heating chamber for storing an object to be heated; a door that freely opens and closes in front of the heating chamber; high-frequency generating means for heating the object to be heated with high-frequency radio waves; and electric heating means for heating the object to be heated with a heater; A high-frequency heating device comprising steam generating means for improving the quality of the object to be heated by steam,
The steam generating means includes an evaporating dish having a water reservoir recess that generates steam by heating, an aluminum die cast in which a sheathed heater having a circular cross section for heating the evaporating dish is embedded all around, and the aluminum die cast arranged below, includes a heater cover capable of storing a molten and aluminum, and a support portion for holding the sheathed heater is provided in the heater cover,
A high-frequency heating apparatus with a steam generating function, wherein a distance between the lower surface of the aluminum die cast and the bottom surface of the heater cover facing the lower surface of the aluminum die cast is greater than the thickness of the aluminum above the sheathed heater.
前記ヒータカバー底面に凹部を設け、前記凹部に溶融したアルミを貯留する構造とした請求項1に記載の蒸気発生機能付き高周波加熱装置。 The high frequency heating apparatus with a steam generating function according to claim 1, wherein a concave portion is provided on a bottom surface of the heater cover and molten aluminum is stored in the concave portion. 前記ヒータカバーにサーモスタットを配置した請求項1または2に記載の蒸気発生機能付き高周波加熱装置。 The high frequency heating apparatus with a steam generating function according to claim 1 or 2, wherein a thermostat is disposed on the heater cover.
JP2008192980A 2008-07-28 2008-07-28 High-frequency heating device with steam generation function Expired - Fee Related JP5487572B2 (en)

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JPS51103103U (en) * 1975-02-14 1976-08-18
JPS59111625U (en) * 1983-01-17 1984-07-27 日本電熱株式会社 electric cooker
JPS62144620A (en) * 1985-12-20 1987-06-27 松下電器産業株式会社 Electric cooker
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