JPH09201281A - Conduction heater - Google Patents
Conduction heaterInfo
- Publication number
- JPH09201281A JPH09201281A JP1368896A JP1368896A JPH09201281A JP H09201281 A JPH09201281 A JP H09201281A JP 1368896 A JP1368896 A JP 1368896A JP 1368896 A JP1368896 A JP 1368896A JP H09201281 A JPH09201281 A JP H09201281A
- Authority
- JP
- Japan
- Prior art keywords
- heating
- metal
- container
- vacuum double
- glass vacuum
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
Links
Landscapes
- Cookers (AREA)
Abstract
Description
【0001】[0001]
【発明の属する技術分野】本発明は、ガラス真空二重容
器、陶磁器、耐熱ガラス、樹脂を容器として使った電気
湯沸かし器、鍋に関するものである。BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a double glass vacuum container, ceramics, heat-resistant glass, and an electric water heater and pot using resin as a container.
【0002】[0002]
【従来の技術】従来の真空二重容器を使った誘導加熱装
置としては、特公平4ー22565号公報に電気ジャー
ポットとして開示されている。その構造は図15のよう
になっている。1は蓋、2は外装ケースで、3は外装ケ
ース内に設けた真空二重瓶、4は水、5は水検知素子、
6は水温度検知素子、7は導電性金属で、8は加熱コイ
ルで導電性金属7を誘導加熱する。9は制御回路、10
は断熱材、11はポンプ作用で水を排出する排水口であ
る。導電性金属7は真空二重瓶3に固着していたため、
水は加熱金属の片面のみと接して熱交換していた。また
導電性金属を取り外して手入れすることができなかっ
た。2. Description of the Related Art A conventional induction heating apparatus using a vacuum double container is disclosed as an electric jar pot in Japanese Patent Publication No. 22565/1992. The structure is as shown in FIG. 1 is a lid, 2 is an outer case, 3 is a vacuum double bottle provided in the outer case, 4 is water, 5 is a water detection element,
6 is a water temperature detecting element, 7 is a conductive metal, and 8 is a heating coil for inductively heating the conductive metal 7. 9 is a control circuit, 10
Is a heat insulating material, and 11 is a drainage port for discharging water by a pump action. Since the conductive metal 7 was fixed to the vacuum double bottle 3,
The water was in contact with only one side of the heated metal to exchange heat. Moreover, the conductive metal could not be removed and maintained.
【0003】[0003]
【発明が解決しようとする課題】本発明は、加熱金属と
液体の熱交換を良くし、加熱金属の手入れ性を良くする
ことを目的としている。SUMMARY OF THE INVENTION It is an object of the present invention to improve heat exchange between a heated metal and a liquid, and to improve the careability of the heated metal.
【0004】[0004]
【課題を解決するための手段】上記課題を解決するため
に、本発明は、加熱金属板とガラス真空二重容器の間に
隙間を設け、かつ加熱金属板に穴またはスリットを設け
たことにより、加熱金属と液体の熱交換を良く構成とし
ている。In order to solve the above problems, the present invention provides a gap between a heating metal plate and a glass vacuum double container, and a hole or slit is provided in the heating metal plate. The heat exchange between the heating metal and the liquid is well configured.
【0005】また、別の手段として、ガラス真空二重容
器の口を広くし、ガラス真空二重容器より加熱金属を取
り出せるようにしている。As another means, the mouth of the glass vacuum double container is widened so that the heated metal can be taken out from the glass vacuum double container.
【0006】[0006]
【発明の実施の形態】請求項1に記載の発明は、加熱金
属を板状にし、断熱容器との間に0.5mm以上の隙間
を設けることにより加熱金属板の下側とも液体を接触さ
せ熱交換する表面積を広げ、かつ加熱金属板に穴または
スリットを設けて対流も促して熱交換を良くすることが
できる。BEST MODE FOR CARRYING OUT THE INVENTION In the invention described in claim 1, the heating metal is formed into a plate shape, and a gap of 0.5 mm or more is provided between the heating metal and the heat insulating container to bring the liquid into contact with the lower side of the heating metal plate. It is possible to increase the surface area for heat exchange and to provide convection by providing holes or slits in the heated metal plate to improve heat exchange.
【0007】請求項2に記載の発明は、加熱金属の表面
にフィンを設けて液体と接触する表面積を広げ、熱交換
を良くすることができる。According to the second aspect of the present invention, fins are provided on the surface of the heating metal to increase the surface area in contact with the liquid, and heat exchange can be improved.
【0008】請求項3に記載の発明は、加熱金属を輪に
した線状とすることで、簡単な構成で液体との接触面積
を広げ、対流もよく、熱交換を良くすることができる。According to the third aspect of the present invention, by making the heating metal into a linear shape, the contact area with the liquid can be widened with a simple structure, convection is good, and heat exchange can be improved.
【0009】請求項4に記載の発明は、断熱容器の口を
広くし、断熱容器より加熱金属を取り出せるようにする
ことによって、水垢その他の汚れの付き易い加熱金属の
手入れを容易にできる。According to the fourth aspect of the present invention, the mouth of the heat insulating container is widened so that the heat metal can be taken out of the heat insulating container.
【0010】請求項5に記載の発明は、ガラスは熱湯に
浸けておくと溶け、樹脂は油分を含んだ調理物に浸けて
おくと溶けるので、加熱金属を液体容器または調理容器
とすることによって、断熱容器に直接飲料水や調理物が
接触しないようにして溶解を防ぐという作用を有する。
また断熱容器から取り出せるようにすることによって、
水垢その他の汚れの付き易い加熱金属の手入れを容易に
できる。According to the fifth aspect of the present invention, the glass melts when immersed in boiling water, and the resin melts when immersed in a cooking product containing oil. Therefore, the heating metal is used as a liquid container or a cooking container. , It has an effect of preventing dissolution by preventing direct contact of drinking water or cooked food with the heat insulating container.
Moreover, by making it possible to take it out from the heat insulation container,
It is easy to care for heated metal that is susceptible to water stains and other stains.
【0011】請求項6に記載の発明は、加熱金属に弾性
体を取り付け、沸騰時に加熱金属とガラス真空二重容
器、陶磁器、耐熱ガラス等でできた断熱容器とが接触し
てカタカタという音が発生するのを防止することができ
る。According to a sixth aspect of the present invention, an elastic body is attached to the heating metal, and when boiling, the heating metal and a heat insulating container made of a glass vacuum double container, ceramics, heat-resistant glass, etc. come into contact with each other and a rattling noise is produced. It can be prevented from occurring.
【0012】請求項7に記載の発明は、加熱金属を断熱
容器の側面との間に弾性体を挟んで押しつけることによ
り、加熱金属を簡単な構造で脱着可能に固定できる。According to the seventh aspect of the present invention, the heating metal can be detachably fixed with a simple structure by pressing the heating metal with the elastic body sandwiched between the heating metal and the side surface of the heat insulating container.
【0013】請求項8に記載の発明は、加熱金属に穴の
あいた弾性体を取り付け、断熱容器に凸部を設け、前記
弾性体の穴に入れることによって、さらに簡単な構造で
加熱金属を脱着可能に固定できる。According to an eighth aspect of the present invention, an elastic body having a hole is attached to the heating metal, a convex portion is provided on the heat insulating container, and the heating metal is attached to and detached from the elastic body with a simpler structure. Can be fixed as possible.
【0014】請求項9に記載の発明は、加熱金属に弾性
体を取り付け、断熱容器に凹部を設け、前記弾性体を前
記凹部に入れることによって加熱金属を固定することに
よって、断熱容器に応力のかかりやすい凸部を設けずに
加熱金属を脱着可能に固定できる。According to a ninth aspect of the present invention, the elastic body is attached to the heating metal, the heat insulating container is provided with a concave portion, and the heating metal is fixed by inserting the elastic body into the concave portion, whereby stress is applied to the heat insulating container. The heating metal can be detachably fixed without providing a convex portion that is easily engaged.
【0015】請求項10に記載の発明は、加熱金属に弾
性体を取り付け、断熱容器に貫通穴を設け、前記弾性体
を前記貫通穴に入れることによって、断熱容器から液体
を導出する管と加熱金属を同一の弾性体で脱着可能に固
定できる。According to a tenth aspect of the present invention, an elastic body is attached to the heating metal, a heat insulating container is provided with a through hole, and the elastic body is inserted into the through hole, whereby a pipe for drawing out the liquid from the heat insulating container and heating are provided. Metal can be detachably fixed with the same elastic body.
【0016】請求項11に記載の発明は、断熱容器を陶
磁器、耐熱ガラス、樹脂で作ることにより、強度をもた
せることができる。According to the eleventh aspect of the present invention, the heat insulating container can be made strong by making it from ceramics, heat resistant glass and resin.
【0017】請求項12に記載の発明は、ガラス真空二
重容器で作ることにより、保温性能を上げることができ
る。According to the twelfth aspect of the present invention, the heat retention performance can be improved by making the glass vacuum double container.
【0018】請求項13に記載の発明は、内瓶に5から
100μmの厚さで金属をメッキ、蒸着、塗布あるいは
銀鏡反応で設けたガラス真空二重容器とすることで、加
熱金属をガラス真空二重容器の内側に入れることが不要
になり、加熱金属とそれを固定する弾性体の部品が減る
と同時に、加熱金属が汚れたり、錆びる心配も無い。According to the thirteenth aspect of the present invention, the heating metal is a glass vacuum double container in which an inner bottle is provided with a metal having a thickness of 5 to 100 μm by plating, vapor deposition, coating or silver mirror reaction. There is no need to put it inside the double container, the heating metal and the elastic parts that fix it are reduced, and at the same time, there is no worry of the heating metal becoming dirty or rusting.
【0019】請求項14に記載の発明は、ガラス真空二
重容器の少なくとも外瓶の加熱コイルに対向した部分は
金属のメッキまたは蒸着を施さないことで、誘導加熱に
よって外瓶が加熱されることが無い。According to a fourteenth aspect of the present invention, at least a portion of the glass vacuum double container facing the heating coil of the outer bottle is not plated or vapor-deposited with metal, so that the outer bottle is heated by induction heating. There is no.
【0020】請求項15に記載の発明は、ガラス真空二
重容器を該ガラス真空二重容器を収納した外装ケースご
と、加熱コイルから分離できるようにしたことで、ガラ
ス真空二重容器を保護しながら軽く持ち運べるという使
い勝手が良くなる。According to the fifteenth aspect of the present invention, the glass vacuum double container is protected from the heating coil by separating the glass vacuum double container together with the outer casing containing the glass vacuum double container. However, it is easier to carry and easier to use.
【0021】請求項16に記載の発明は、誘導加熱装置
は加熱コイルと加熱金属との距離が離れると加熱金属に
到達する磁束が減少して加熱できなくなるが、ガラス真
空二重容器の底を平らにすることによって、加熱コイル
が天面に平らに設置された市販のIH調理器でも加熱コ
イルと加熱金属の距離を接近させられる。According to the sixteenth aspect of the invention, in the induction heating device, when the distance between the heating coil and the heating metal increases, the magnetic flux reaching the heating metal decreases and heating cannot be performed. By flattening, the distance between the heating coil and the heating metal can be reduced even in a commercially available IH cooker in which the heating coil is installed flat on the top surface.
【0022】請求項17に記載の発明は、ガラス真空二
重容器の底はガラスを一重にし、かつ前記ガラス真空二
重容器の底の下に断熱材を設置することによって、ガラ
ス真空二重容器の底の強度を増すことができる。According to a seventeenth aspect of the present invention, the bottom of the glass vacuum double container is made of a single glass, and a heat insulating material is installed below the bottom of the glass vacuum double container to provide a glass vacuum double container. The strength of the bottom can be increased.
【0023】請求項18に記載の発明は、ガラス真空二
重容器の底は球面状で、加熱コイルは前記ガラス真空二
重容器の底に沿う形状とすることによって、ガラス真空
二重容器の強度を増すと共に加熱コイルと加熱金属の距
離を接近させられる。According to the eighteenth aspect of the present invention, the bottom of the glass vacuum double container is spherical, and the heating coil has a shape along the bottom of the glass vacuum double container. And the distance between the heating coil and the heating metal can be reduced.
【0024】請求項19に記載の発明は、ガラス真空二
重容器を収納した外装ケースは、該ガラス真空二重容器
の底より下に延長されており、加熱コイルは外装ケース
と当接する面より突出して外装ケースの内側に勘合する
ことにより、ガラス真空二重容器の底を不用意に卓上等
に衝突させる可能性を低くすることができる。The invention according to claim 19 is that the outer case accommodating the glass vacuum double container is extended below the bottom of the glass vacuum double container, and the heating coil is provided from a surface contacting the outer case. By protruding and fitting into the inside of the exterior case, it is possible to reduce the possibility that the bottom of the glass vacuum double container accidentally collides with a tabletop or the like.
【0025】以下、本発明の実施の形態について、図面
を参照して説明する。 (実施の形態1)図1は本発明の第1の実施の形態の構
成を示すものである。12はガラス真空二重容器で、外
瓶13と内瓶14の間を真空にして空気の対流による熱
伝導を防いでいる。15は外装ケースでガラス真空二重
容器に側面及び上面から衝撃がかかるのを防止してい
る。水16を断熱容器の底に加熱金属である加熱金属板
17を沈めて加熱する。水垢その他の汚れの付き易い加
熱金属の手入れを容易にするため、ガラス真空二重容器
12は口を広くし、容器より加熱金属板を取り出せるよ
うにしている。18は弾性体で、例えばシリコンゴム、
フッ素ゴムや樹脂でできており、ガラス真空二重容器
に、加熱金属板を直接当てないことで、沸騰した時の振
動でカタカタという音が発生することを防止する。また
加熱金属板をガラス真空二重容器の側面に弾性体18を
挟んで押しつけることで、簡単な構造で脱着可能で、ガ
ラス真空二重容器を傾けても加熱金属板が移動しないよ
うに固定している。19は高周波磁界を発生させる装置
で、加熱コイル20と加熱コイルに高周波電流を流す回
路21とより成り、天面のプレート22の上にガラス真
空二重容器を含む本体を乗せて使用する。23は蓋でガ
ラス真空二重容器を密閉し、エアポンプ24で中の空気
を加圧して排水管25より出水する。Embodiments of the present invention will be described below with reference to the drawings. (Embodiment 1) FIG. 1 shows the configuration of a first embodiment of the present invention. Reference numeral 12 is a glass vacuum double container, and a vacuum is applied between the outer bottle 13 and the inner bottle 14 to prevent heat conduction due to convection of air. An outer case 15 prevents the glass vacuum double container from being impacted from the side surface and the upper surface. The water 16 is heated by sinking a heating metal plate 17 which is a heating metal on the bottom of the heat insulating container. The glass vacuum double container 12 has a wide mouth so that the heated metal plate can be taken out from the container in order to facilitate the maintenance of the heated metal that is easily stained with water stains and the like. 18 is an elastic body, such as silicone rubber,
The glass vacuum double container made of fluororubber or resin is not directly contacted with the heating metal plate to prevent the rattling noise caused by the vibration when boiling. Also, the heating metal plate can be detached with a simple structure by pressing the heating metal plate against the side surface of the glass vacuum double container with the elastic body 18 sandwiched between the glass vacuum double container and the glass vacuum double container. ing. Reference numeral 19 denotes a device for generating a high frequency magnetic field, which is composed of a heating coil 20 and a circuit 21 for supplying a high frequency current to the heating coil, and is used by placing a main body including a glass vacuum double container on a plate 22 on the top surface. Reference numeral 23 denotes a lid, which seals the glass vacuum double container, pressurizes the air therein by an air pump 24, and discharges water from a drain pipe 25.
【0026】図2は加熱金属板の上面図で穴またはスリ
ットの形状を示している。図3は加熱金属板17を側面
から見た図で、加熱金属板の上面で熱交換するだけでな
く、加熱金属板の下面でも熱交換し、加熱されて比重の
小さくなった液体や沸騰したときの泡は、穴またはスリ
ットから上へ対流する。加熱金属板17と内瓶14の間
隔は、水のように粘性の低い液体の場合には0.5mm
でも十分に対流する。FIG. 2 is a top view of the heated metal plate showing the shape of holes or slits. FIG. 3 is a side view of the heating metal plate 17. Not only heat is exchanged on the upper surface of the heating metal plate, but also heat is exchanged on the lower surface of the heating metal plate, and the liquid is heated to reduce its specific gravity or boil. The bubbles then convect upward through the holes or slits. The distance between the heating metal plate 17 and the inner bottle 14 is 0.5 mm in the case of a liquid with low viscosity such as water.
But enough convection.
【0027】図4は加熱金属の別の実施の形態で、フィ
ン26が付いており、油のような粘性が高く熱交換しに
くい液体に対して表面積を広くして熱交換性能を改善す
る。図5は加熱金属の別の実施の形態で、輪にした金属
線27を間隔を置いて同心円状に並べ、その間を弾性体
28で固定している。金属板に比べ金属線の断面は円
で、金属線の間隔が広いため、対流の抵抗が小さい。FIG. 4 shows another embodiment of the heating metal, which is provided with fins 26 and has a large surface area for a liquid such as oil which has a high viscosity and is hard to exchange heat, thereby improving the heat exchange performance. FIG. 5 shows another embodiment of the heating metal, in which looped metal wires 27 are arranged in concentric circles at intervals, and elastic members 28 are fixed between them. The cross section of the metal wire is circular and the interval between the metal wires is wider than that of the metal plate, and thus the resistance to convection is small.
【0028】図6は加熱金属29を液体容器または調理
容器とした図で、ガラスは熱湯に浸けておくと溶け、樹
脂は油分を含んだ調理物に浸けておくと溶けるので、断
熱容器に直接飲料水や調理物が接触しないようにして溶
解を防いでいる。また弾性体30を液体容器または調理
容器との間に挟んで固定し、断熱容器から取り出せるよ
うにすることによって、水垢その他の汚れの付き易い加
熱金属の手入れを容易にしている。FIG. 6 is a view showing the heating metal 29 as a liquid container or a cooking container. The glass melts when immersed in hot water, and the resin melts when immersed in a cooking product containing oil. Dissolution is prevented by preventing contact with drinking water and food. Further, the elastic body 30 is sandwiched and fixed between the liquid container and the cooking container so that the elastic body 30 can be taken out from the heat insulating container, thereby facilitating the maintenance of the heated metal which is easily stained with water stains or other stains.
【0029】図7〜図9は、加熱金属を固定する別の実
施の形態で、図7は加熱金属板31に穴のあいた弾性体
32を取り付け、内瓶に凸部33を設け、弾性体32の
穴に入れることによって、加熱金属を脱着可能に固定で
きる。図8は、加熱金属34に弾性体35を取り付け、
内瓶に凹部36を設け、弾性体35を凹部に入れること
によって加熱金属を固定する、容器に応力のかかりやす
い凸部を設けずに加熱金属を脱着可能に固定できる。図
9は、ガラス真空二重容器の底に貫通穴を開け、弾性体
の管37を挿し、先が水位表示管になった液体導出管3
8を接続している。加熱金属39を弾性体の管37に取
り付けることにより、同一の弾性体で液体導出管と加熱
金属を固定できる。以上断熱容器をガラス真空二重容器
の図で説明してきたが、陶磁器、耐熱ガラスとすること
もできる。この場合ガラス真空二重容器より厚いため丈
夫であり、外装ケース無しでも使用できる。断熱容器が
樹脂の場合は、材料自体に弾力性があるため、これも外
装ケース無しでも使用できる。7 to 9 show another embodiment for fixing a heating metal. In FIG. 7, an elastic body 32 having a hole is attached to a heating metal plate 31, a convex portion 33 is provided on an inner bottle, and an elastic body is provided. The heating metal can be detachably fixed by being inserted into 32 holes. In FIG. 8, the elastic body 35 is attached to the heating metal 34,
The inner bottle is provided with the recessed portion 36 and the elastic body 35 is inserted into the recessed portion to fix the heating metal, and the heating metal can be detachably fixed without providing the container with a convex portion which is likely to be stressed. FIG. 9 shows a liquid outlet pipe 3 in which a through hole is formed in the bottom of a glass vacuum double container, an elastic tube 37 is inserted, and the tip is a water level display tube.
8 are connected. By attaching the heating metal 39 to the elastic tube 37, the liquid outlet tube and the heating metal can be fixed with the same elastic body. Although the heat insulating container has been described with reference to the double glass vacuum container, it may be made of ceramics or heat resistant glass. In this case, since it is thicker than the glass vacuum double container, it is strong and can be used without an outer case. When the heat insulating container is made of resin, the material itself is elastic, so that it can be used without an outer case.
【0030】図10は、加熱金属の別の構成例を示す。
通常の魔法瓶は、放射熱を反射させるためガラス真空二
重容器の真空側全体に銀を約1μmの厚さでメッキして
いる。これを20kHz程度で誘導加熱すると数十ワッ
ト程度の加熱になる。この程度では湯沸かしや調理には
不足なので、本発明では内瓶40の真空側に5から10
0μmの厚さで銀41をメッキ、蒸着、塗布あるいは銀
鏡反応で設け、それを誘導加熱することで、加熱金属を
ガラス真空二重容器の内側に入れる必要が無くなり、加
熱金属とそれを固定する弾性体が不要になると同時に、
加熱金属を液体や調理物の中に浸けないので、加熱金属
が汚れたり、錆びる心配も無くなる。なお加工の容易性
のため、図11に示すように銀42を内瓶の内側に設け
ても良い。一方ガラス真空二重容器の外瓶を加熱しても
その熱は殆ど内瓶の内容物に伝わらずエネルギーの無駄
なので、少なくともガラス真空二重容器の外瓶の加熱コ
イルに対向した部分は金属のメッキまたは蒸着を施さな
い。このようなガラス真空二重容器は、内瓶に銀をメッ
キなどで設けた後で内瓶と外瓶を溶着して製造する。FIG. 10 shows another structural example of the heating metal.
In an ordinary thermos, silver is plated to a thickness of about 1 μm on the entire vacuum side of a glass vacuum double container to reflect radiant heat. When this is induction-heated at about 20 kHz, it becomes about tens of watts. Since this amount is insufficient for boiling water and cooking, in the present invention, the inner bottle 40 has a vacuum side of 5 to 10 parts.
By providing silver 41 with a thickness of 0 μm by plating, vapor deposition, coating or silver mirror reaction and inductively heating it, it is not necessary to put the heating metal inside the glass vacuum double container, and the heating metal and it are fixed. At the same time as elastic body is unnecessary,
Since the heating metal is not submerged in liquid or food, there is no risk of the heating metal becoming dirty or rusting. For ease of processing, silver 42 may be provided inside the inner bottle as shown in FIG. On the other hand, even if the outer bottle of the glass vacuum double container is heated, the heat is hardly transferred to the contents of the inner bottle and energy is wasted. Therefore, at least the portion facing the heating coil of the outer bottle of the glass vacuum double container is made of metal. No plating or vapor deposition. Such a glass vacuum double container is manufactured by depositing silver on the inner bottle and then welding the inner bottle and the outer bottle.
【0031】本発明の実施の形態では、図1に示すよう
に、ガラス真空二重容器12を該ガラス真空二重容器を
収納した外装ケース15ごと高周波磁界を発生させる装
置19から分離できるようにし、ガラス真空二重容器の
側面と上面を保護しながら、軽く持ち運べるようにして
いる。ここで誘導加熱装置は加熱コイルと加熱金属との
距離が概ね15mm程度以上離れると加熱金属に到達す
る磁束が減少し、加熱できなくなるが、ガラス真空二重
容器の底を平らにすることによって、加熱コイルが天面
に平らに設置された市販のIH調理器でも加熱コイルと
加熱金属の距離を接近させられる。In the embodiment of the present invention, as shown in FIG. 1, the glass vacuum double container 12 and the outer case 15 accommodating the glass vacuum double container are separated from the device 19 for generating a high frequency magnetic field. , While protecting the side and top of the glass vacuum double container, it is lightly portable. Here, in the induction heating device, when the distance between the heating coil and the heating metal is about 15 mm or more, the magnetic flux reaching the heating metal decreases and it becomes impossible to heat, but by flattening the bottom of the glass vacuum double container, Even in a commercially available IH cooker in which the heating coil is installed flat on the top surface, the distance between the heating coil and the heating metal can be reduced.
【0032】図12はガラス真空二重容器の別の形態
で、ガラス真空二重容器42の底はガラスを一重にし、
かつガラス真空二重容器の底の下に断熱材43を設置し
ている。ガラスを二重にしたまま加熱コイルとガラス真
空二重容器の内側の加熱金属を接近させるとガラス瓶は
薄くなり、底からの衝撃に対して弱くなるが、本発明に
よれば底の強度を増すことができる。図13はガラス真
空二重容器のさらに別の形態で、ガラス真空二重容器4
4の底を球面状にしてガラス真空二重容器の強度を増す
と共に、加熱コイル45は前記ガラス真空二重容器の底
に沿う形状として、加熱コイルと加熱金属の距離を接近
させている。FIG. 12 shows another form of the glass vacuum double container, in which the bottom of the glass vacuum double container 42 is made of single glass.
Moreover, the heat insulating material 43 is installed under the bottom of the glass vacuum double container. When the heating coil and the heating metal inside the glass vacuum double container are brought close to each other while the glass is doubled, the glass bottle becomes thin and becomes weak against an impact from the bottom, but according to the present invention, the strength of the bottom is increased. be able to. FIG. 13 shows another form of the glass vacuum double container, which is a glass vacuum double container 4.
4 has a spherical bottom to increase the strength of the glass vacuum double container, and the heating coil 45 has a shape along the bottom of the glass vacuum double container so that the heating coil and the heating metal are close to each other.
【0033】(実施の形態2)図14は、ガラス真空二
重容器46を収納した外装ケース47を、ガラス真空二
重容器の底より下に延長し、加熱コイル48は外装ケー
ス47と当接する面49より突出して外装ケース47の
内側に勘合する構成にすることにより、外装ケース47
を食卓等から離した状態(図14(b))から、食卓等
に置いた時(図14(a))にガラス真空二重容器46
の底が食卓より浮くので、ガラス真空二重容器46の底
を不用意に卓上等に衝突させる可能性を低くすることが
できる。(Embodiment 2) In FIG. 14, an outer case 47 accommodating a glass vacuum double container 46 is extended below the bottom of the glass vacuum double container, and a heating coil 48 contacts the outer case 47. The outer case 47 is configured so as to project from the surface 49 and fit inside the outer case 47.
The glass vacuum double container 46 when the table is placed on the dining table or the like (FIG. 14A) from the state in which it is separated from the dining table or the like (FIG. 14B).
Since the bottom of the glass vacuum floats above the table, the possibility of accidentally colliding the bottom of the glass vacuum double container 46 with a table or the like can be reduced.
【0034】[0034]
【発明の効果】以上のように、本発明は加熱金属と液体
の熱交換を良くすることができ、また、断熱容器の構造
によっては加熱金属の手入れを容易とし、底の強度の向
上も図ることができる。As described above, according to the present invention, the heat exchange between the heating metal and the liquid can be improved, and depending on the structure of the heat insulating container, the heating metal can be easily maintained and the strength of the bottom can be improved. be able to.
【図1】本発明の第1の実施の形態の誘導加熱装置の構
成図FIG. 1 is a configuration diagram of an induction heating device according to a first embodiment of the present invention.
【図2】同、誘導加熱装置の加熱金属板の上面図FIG. 2 is a top view of a heating metal plate of the induction heating device.
【図3】同、誘導加熱装置の加熱金属板の断面図FIG. 3 is a sectional view of a heating metal plate of the induction heating device.
【図4】同、誘導加熱装置の別の加熱金属板の断面図FIG. 4 is a sectional view of another heating metal plate of the induction heating device.
【図5】同、誘導加熱装置の別の加熱金属板の上面図FIG. 5 is a top view of another heating metal plate of the induction heating device.
【図6】同、誘導加熱装置の要部断面図FIG. 6 is a sectional view of the main part of the induction heating device.
【図7】同、誘導加熱装置の加熱金属板の取付構造図[Fig. 7] Fig. 7 is a mounting structure diagram of a heating metal plate of the induction heating device
【図8】同、誘導加熱装置の加熱金属板の別の取付構造
図FIG. 8 is another mounting structure diagram of the heating metal plate of the induction heating device.
【図9】同、誘導加熱装置の加熱金属板の更に別の取付
構造図[Fig. 9] Fig. 9 is still another mounting structure diagram of the heating metal plate of the induction heating device.
【図10】同、誘導加熱装置の加熱金属板の別の構成図FIG. 10 is another configuration diagram of the heating metal plate of the induction heating device.
【図11】同、誘導加熱装置の加熱金属板の更に別の構
成図FIG. 11 is a still another configuration diagram of the heating metal plate of the induction heating device.
【図12】同、誘導加熱装置のガラス真空二重容器の断
面図FIG. 12 is a sectional view of the glass vacuum double container of the induction heating device.
【図13】同、誘導加熱装置の別のガラス真空二重容器
の断面図FIG. 13 is a sectional view of another glass vacuum double container of the induction heating device.
【図14】本発明の第2の実施の形態の誘導加熱装置の
断面図FIG. 14 is a sectional view of an induction heating device according to a second embodiment of the present invention.
【図15】従来の誘導加熱装置の断面図FIG. 15 is a sectional view of a conventional induction heating device.
12 ガラス真空二重容器 15 外装ケース 17 加熱金属板 18 弾性体 20 加熱コイル 12 glass vacuum double container 15 outer case 17 heating metal plate 18 elastic body 20 heating coil
Claims (19)
た加熱金属と、前記断熱容器の外側に設置され高周波磁
界により前記加熱金属を加熱する加熱コイルとを備え、
前記加熱金属は、板状とし、断熱容器との間に0.5m
m以上の隙間を設け、かつ穴またはスリットを設けてな
る誘導加熱装置。1. An insulating container, a heating metal placed inside the insulating container, and a heating coil installed outside the insulating container for heating the heating metal by a high frequency magnetic field,
The heating metal has a plate shape and is 0.5 m between the heating metal and the heat insulating container.
An induction heating device having a gap of m or more and a hole or a slit.
た加熱金属と、前記断熱容器の外側に設置され高周波磁
界により前記加熱金属を加熱する加熱コイルとを備え、
前記加熱金属は、その表面にフィンを設けてなる誘導加
熱装置。2. An insulating container, a heating metal placed inside the insulating container, and a heating coil installed outside the insulating container to heat the heating metal by a high frequency magnetic field,
The heating metal is an induction heating device having fins on its surface.
た加熱金属と、前記断熱容器の外側に設置され高周波磁
界により前記加熱金属を加熱する加熱コイルとを備え、
前記加熱金属は、輪にした線状としてなる誘導加熱装
置。3. An insulating container, a heating metal placed inside the insulating container, and a heating coil installed outside the insulating container for heating the heating metal by a high frequency magnetic field,
The induction heating device, wherein the heating metal is in the form of a ring.
な口の大きさとしてなる請求項1〜3のいずれか1項に
記載の誘導加熱装置。4. The induction heating device according to claim 1, wherein the heat insulating container has a size of a mouth through which heated metal can be taken out.
た加熱金属と、前記断熱容器の外側に設置され高周波磁
界により前記加熱金属を加熱する加熱コイルとを備え、
前記加熱金属は、前記断熱容器から取り出し可能な液体
容器または調理容器としてなる誘導加熱装置。5. An insulating container, a heating metal placed inside the insulating container, and a heating coil installed outside the insulating container for heating the heating metal by a high frequency magnetic field,
The induction heating device, wherein the heating metal serves as a liquid container or a cooking container that can be taken out from the heat insulating container.
る請求項1〜5のいずれか1項に記載の誘導加熱装置。6. The induction heating device according to claim 1, wherein the heating metal has an elastic body attached thereto.
性体を挟んで押しられて固定されてなる請求項1〜6の
いずれか1項に記載の誘導加熱装置。7. The induction heating device according to claim 1, wherein the heating metal is pressed and fixed by sandwiching an elastic body between the heating metal and a side surface of the heat insulating container.
けられ、断熱容器は、凸部を設け、前記弾性体の穴を前
記断熱容器の凸部に挿入することで前記加熱金属を固定
してなる請求項1〜6のいずれか1項に記載の誘導加熱
装置。8. The heating metal is attached with an elastic body having a hole, the heat insulating container is provided with a convex portion, and the hole of the elastic body is inserted into the convex portion of the heat insulating container to fix the heating metal. The induction heating device according to claim 1, wherein
熱容器は、凹部を設け、前記弾性体を前記断熱容器の凹
部に挿入することで前記加熱金属を固定してなる請求項
1〜6のいずれか1項に記載の誘導加熱装置。9. The heating metal is attached to an elastic body, the heat insulating container is provided with a recess, and the heating metal is fixed by inserting the elastic body into the recess of the heat insulating container. The induction heating device according to any one of 1.
断熱容器は、貫通穴を設け、前記弾性体を前記貫通穴に
挿入することで前記加熱金属を固定してなる請求項1〜
6のいずれか1項に記載の誘導加熱装置。10. The heating metal is attached to the elastic body,
The heat insulating container is provided with a through hole, and the heating metal is fixed by inserting the elastic body into the through hole.
The induction heating device according to any one of 6 above.
脂のいずれかとしてなる請求項1〜10のいずれか1項
に記載の誘導加熱装置。11. The induction heating device according to claim 1, wherein the heat insulation container is made of ceramics, heat-resistant glass, or resin.
てなる請求項1〜10のいずれか1項に記載の誘導加熱
装置。12. The induction heating device according to claim 1, wherein the heat insulating container is a glass vacuum double container.
器と、前記ガラス真空二重容器の外側に設置され高周波
磁界により前記金属を加熱する加熱コイルとを備え、前
記金属は、5〜100μmの厚さでメッキ、蒸着、塗布
あるいは銀鏡反応により設けられてなる誘導加熱装置。13. A glass vacuum double container having a metal in an inner bottle, and a heating coil installed outside the glass vacuum double container for heating the metal by a high frequency magnetic field, wherein the metal is 5 to 100 μm. Induction heating device that is provided by plating, vapor deposition, coating or silver mirror reaction with the thickness of.
も外瓶の加熱コイルに対向した部分に金属を有さない構
成とした請求項12または13記載の誘導加熱装置。14. The induction heating device according to claim 12, wherein the glass vacuum double container has no metal at least in a portion facing the heating coil of the outer bottle.
空二重容器を収納した外装ケースごと、加熱コイルから
分離できる構成とした請求項12〜14のいずれか1項
に記載の誘導加熱装置。15. The induction heating device according to any one of claims 12 to 14, wherein the glass vacuum double container is configured such that an outer case accommodating the glass vacuum double container can be separated from the heating coil.
にした請求項15に記載の誘導加熱装置。16. The induction heating device according to claim 15, wherein the glass vacuum double container has a flat bottom.
とし、かつその下に断熱材を設置してなる請求項16に
記載の誘導加熱装置。17. The induction heating device according to claim 16, wherein the glass vacuum double container has a single bottom and a heat insulating material installed below the bottom.
状とし、加熱コイルは、前記ガラス真空二重容器の底に
沿う形状としてなる請求項15に記載の誘導加熱装置。18. The induction heating apparatus according to claim 15, wherein the glass vacuum double container has a spherical bottom surface, and the heating coil has a shape along the bottom of the glass vacuum double container.
ースは、このガラス真空二重容器の底より下に延長さ
れ、加熱コイルは、前記外装ケースと当接する面より突
出して外装ケースの内側に嵌合してなる請求項15〜1
8のいずれか1項に記載の誘導加熱装置。19. An outer case containing a glass vacuum double container is extended below a bottom of the glass vacuum double container, and a heating coil projects from a surface abutting the outer case to the inside of the outer case. Claims 15 to 1 which are fitted
The induction heating device according to claim 8.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP1368896A JPH09201281A (en) | 1996-01-30 | 1996-01-30 | Conduction heater |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP1368896A JPH09201281A (en) | 1996-01-30 | 1996-01-30 | Conduction heater |
Publications (1)
Publication Number | Publication Date |
---|---|
JPH09201281A true JPH09201281A (en) | 1997-08-05 |
Family
ID=11840138
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP1368896A Pending JPH09201281A (en) | 1996-01-30 | 1996-01-30 | Conduction heater |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPH09201281A (en) |
Cited By (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2010080901A3 (en) * | 2009-01-07 | 2010-10-07 | MNML, Inc. | Induction heating apparatus with suspended induction plate |
CN102551545A (en) * | 2012-02-28 | 2012-07-11 | 宁波夏纳电器有限公司 | Heating milk foam machine |
US20120228286A1 (en) * | 2011-03-09 | 2012-09-13 | Central Garden And Pet Company | Inductive Heating Device for Aquarium Tanks |
JP2013255334A (en) * | 2012-06-06 | 2013-12-19 | Ihi Corp | Heat insulating housing |
CN104185324A (en) * | 2014-07-23 | 2014-12-03 | 中国科学院广州能源研究所 | Closed circulating heat radiation system of electromagnetic heating device |
CN105326335A (en) * | 2015-12-09 | 2016-02-17 | 浦北县金洋电厨具有限公司 | Electric frying pan with pan body easy to fix |
JP2021069856A (en) * | 2019-11-01 | 2021-05-06 | パーソルパナソニックHrパートナーズ株式会社 | Liquid heating device |
CN113163969A (en) * | 2018-10-23 | 2021-07-23 | 布瑞威利私人有限公司 | Water jug |
-
1996
- 1996-01-30 JP JP1368896A patent/JPH09201281A/en active Pending
Cited By (9)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2010080901A3 (en) * | 2009-01-07 | 2010-10-07 | MNML, Inc. | Induction heating apparatus with suspended induction plate |
US8389913B2 (en) | 2009-01-07 | 2013-03-05 | Scott Wilson Design Limited | Induction heating apparatus with suspended induction plate |
US20120228286A1 (en) * | 2011-03-09 | 2012-09-13 | Central Garden And Pet Company | Inductive Heating Device for Aquarium Tanks |
CN102551545A (en) * | 2012-02-28 | 2012-07-11 | 宁波夏纳电器有限公司 | Heating milk foam machine |
JP2013255334A (en) * | 2012-06-06 | 2013-12-19 | Ihi Corp | Heat insulating housing |
CN104185324A (en) * | 2014-07-23 | 2014-12-03 | 中国科学院广州能源研究所 | Closed circulating heat radiation system of electromagnetic heating device |
CN105326335A (en) * | 2015-12-09 | 2016-02-17 | 浦北县金洋电厨具有限公司 | Electric frying pan with pan body easy to fix |
CN113163969A (en) * | 2018-10-23 | 2021-07-23 | 布瑞威利私人有限公司 | Water jug |
JP2021069856A (en) * | 2019-11-01 | 2021-05-06 | パーソルパナソニックHrパートナーズ株式会社 | Liquid heating device |
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