JPS5817375B2 - High frequency heating device - Google Patents

High frequency heating device

Info

Publication number
JPS5817375B2
JPS5817375B2 JP4479477A JP4479477A JPS5817375B2 JP S5817375 B2 JPS5817375 B2 JP S5817375B2 JP 4479477 A JP4479477 A JP 4479477A JP 4479477 A JP4479477 A JP 4479477A JP S5817375 B2 JPS5817375 B2 JP S5817375B2
Authority
JP
Japan
Prior art keywords
heated
cavity
airflow
heating
opening
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.)
Expired
Application number
JP4479477A
Other languages
Japanese (ja)
Other versions
JPS53129351A (en
Inventor
菊地巖夫
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Hitachi Netsu Kigu KK
Original Assignee
Hitachi Netsu Kigu KK
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Hitachi Netsu Kigu KK filed Critical Hitachi Netsu Kigu KK
Priority to JP4479477A priority Critical patent/JPS5817375B2/en
Publication of JPS53129351A publication Critical patent/JPS53129351A/en
Publication of JPS5817375B2 publication Critical patent/JPS5817375B2/en
Expired legal-status Critical Current

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  • Control Of High-Frequency Heating Circuits (AREA)
  • Constitution Of High-Frequency Heating (AREA)
  • Electric Ovens (AREA)

Description

【発明の詳細な説明】 本発明は電波エネルギーによって物体を加熱する高周波
加熱装置、さらに詳しくは同装置の被加熱物を加熱制御
するための手段に関するものである。
DETAILED DESCRIPTION OF THE INVENTION The present invention relates to a high-frequency heating device for heating an object using radio wave energy, and more particularly to a means for controlling the heating of an object to be heated by the device.

物体を加熱するためにマイクロ波帯の電波エネルギーが
利用されていることは周知のことである。
It is well known that radio energy in the microwave band is used to heat objects.

係る高周波加熱装置において慣用の構成は、マグネトロ
ンのごとき電波発生源から放射される電波を直接あるい
は導波管を経て、被加熱物が収納されているオーブンと
称している空洞内部へ供給するという構成のものである
A common configuration of such high-frequency heating devices is a configuration in which radio waves emitted from a radio wave generation source such as a magnetron are supplied directly or through a waveguide to the inside of a cavity called an oven in which the object to be heated is housed. belongs to.

係る構成の同装置では、被加熱物は、通常、タイマー等
の時限手段によって加熱時間が制御されている。
In the apparatus having such a configuration, the heating time of the object to be heated is usually controlled by a timer such as a timer.

この場合には被加熱物の種類、すなわち誘電損失係数の
違い、重量、籾温、すなわち加熱前における被加熱物の
温度によって適宜に加熱時間を調節してやる必要がある
In this case, it is necessary to adjust the heating time appropriately depending on the type of the object to be heated, that is, the difference in dielectric loss coefficient, the weight, and the rice temperature, that is, the temperature of the object to be heated before heating.

もし時間調節が不適格であると、被加熱物が加熱不足で
あったり、加熱しすぎであるといった結果を召く。
If the time adjustment is inappropriate, the result will be that the object to be heated is under-heated or over-heated.

この問題の解決策として、従来は、被加熱物に温度検知
素子を挿入し、被加熱物の温度を直接的に検知して、マ
グネトロンの発振を制御して被加熱物の加熱制御を行な
うという方法が行なわれてきている。
Conventionally, as a solution to this problem, a temperature sensing element is inserted into the object to be heated, the temperature of the object to be heated is directly detected, and the oscillation of the magnetron is controlled to control the heating of the object to be heated. methods are being used.

係る手段を有する同装置では、被加熱物は形がくずれ、
調理上での支障を来すというへい害が生ずる。
In the device having such a means, the object to be heated loses its shape,
This may cause damage by interfering with cooking.

そこで本発明は、被加熱物の種類、重量、籾温によらず
、しかも被加熱物の形くずれが生じない被加熱物の加熱
制御手段を提供せんとするものである。
SUMMARY OF THE INVENTION Therefore, the present invention aims to provide a means for controlling the heating of an object to be heated, regardless of the type, weight, or rice temperature of the object to be heated, and which does not cause deformation of the object.

さらに詳しくは、空洞内を通った気流の物理変化を検知
し、その信号により電波発生源を制御して、被加熱物の
加熱制御を行なうとともに、係る手段を確実に構成せん
とするところに、本発明のねらいがある。
More specifically, it is desired to detect a physical change in the air flow passing through the cavity and control a radio wave generation source using the signal to control the heating of the object to be heated, and to reliably configure such a means. There is an aim of the present invention.

以下、実施例につき添付図面とともに説明する。Examples will be described below with reference to the accompanying drawings.

第1図において、1は同装置の本体であって、2は本体
1に開閉自在に装着された扉である。
In FIG. 1, 1 is the main body of the device, and 2 is a door attached to the main body 1 so as to be openable and closable.

本体1には、第2図に示すごとく空洞3を要し、該空洞
3の被加熱物の出入れ口(図示せず)を封塞するように
扉2が配設されている。
The main body 1 has a cavity 3 as shown in FIG. 2, and a door 2 is disposed to close an entrance/exit (not shown) of the cavity 3 for the object to be heated.

第2図及び第3図において、4は電波発生源のマグネト
ロンである。
In FIGS. 2 and 3, 4 is a magnetron that is a radio wave generation source.

5はマグネトロン4の冷却用のブロワであり、該ブロワ
5はエアカイト7で包囲されるとともに、該エアガイド
7にはブロワ吸気口6を備えている。
Reference numeral 5 denotes a blower for cooling the magnetron 4. The blower 5 is surrounded by an air kite 7, and the air guide 7 is provided with a blower intake port 6.

8はマグネトロン4を冷却した風の排気エアガイドであ
り、9はマグネトロン4のアンテナ部を包囲するアンテ
ナカバー9である。
8 is an exhaust air guide for cooling the magnetron 4, and 9 is an antenna cover 9 surrounding the antenna section of the magnetron 4.

該アンテナカバー9は高周波低損失の誘電体で構成する
The antenna cover 9 is made of a dielectric material with low loss at high frequencies.

10は回転受皿であり、該回転受皿10には被加熱物1
3が載置され、回転受皿7駆動モータ11を1駆動源と
し、カップリング片12により、該回転受皿駆動モータ
11の駆動力が伝達されて、該回転受皿10は回転軸0
−Olを回転の中心として回転運動を行なうように構成
されている。
10 is a rotating saucer, and the heated object 1 is placed in the rotating saucer 10.
3 is placed, and the rotary tray 7 drive motor 11 is used as a driving source, and the driving force of the rotary tray drive motor 11 is transmitted through the coupling piece 12, and the rotary tray 10 is moved to the rotation axis 0.
-Ol is the center of rotation.

14は吸気ダクトであり、15は空洞3に穿設された吸
気開口部である。
14 is an intake duct, and 15 is an intake opening formed in the cavity 3.

空洞3に入る風は、吸気ダクト14を経て、吸気開口部
15を通して空洞3内に導入される。
The wind entering the cavity 3 is introduced into the cavity 3 via the intake duct 14 and through the intake opening 15 .

16は空洞3に穿設された排気開口部であり、17は排
気ダクトである。
16 is an exhaust opening formed in the cavity 3, and 17 is an exhaust duct.

ところで、空$13を通る風は、第2図に示すごとく、
回転受皿10に略平行でかつ略半円弧状をえかいてまわ
るように配設されている。
By the way, the wind passing through the sky $13 is as shown in Figure 2.
It is arranged so as to be approximately parallel to the rotating tray 10 and to rotate in a generally semicircular arc shape.

このため、整風板21を要し気流の空洞3内を循環する
軌道を制限している。
For this reason, the air baffle plate 21 is required to restrict the trajectory of the airflow circulating within the cavity 3.

又、この種の気流を簡易に得るために空洞3の同一側壁
に吸気開口部15及び排気開口部16を設けている。
Further, in order to easily obtain this type of airflow, an intake opening 15 and an exhaust opening 16 are provided on the same side wall of the cavity 3.

空洞3を出る風は、排気開口部16を経て、排気ダクト
17を通して排気される。
The air leaving the cavity 3 is exhausted through the exhaust opening 16 and through the exhaust duct 17 .

排気ダクト17の一端はブロワ吸気口6の近傍に配設し
、ブロワ5の吸気力が排気ダクト17に作用するように
構成する。
One end of the exhaust duct 17 is disposed near the blower intake port 6 so that the intake force of the blower 5 acts on the exhaust duct 17.

18は風すなわち気流の物理変化を検知する検知素子で
あって、本実施例においては、気流の温度変化に感応す
るサーミスタのごとき素子を用いている。
Reference numeral 18 denotes a detection element for detecting physical changes in the wind, that is, airflow, and in this embodiment, an element such as a thermistor that is sensitive to temperature changes in the airflow is used.

19は検知素子18の信号を増幅する増幅手段であり、
20は該増幅手段19から発生する出力により作動し、
マグネトロン4の発振を制御する制御手段である。
19 is an amplification means for amplifying the signal of the detection element 18;
20 is operated by the output generated from the amplification means 19;
This is a control means for controlling the oscillation of the magnetron 4.

次に、上記実施例の動作及び各部の作用について説明す
る。
Next, the operation of the above embodiment and the effects of each part will be explained.

マグネトロン4で発生した電波は空洞3に放射され、被
加熱物13を加熱する。
Radio waves generated by the magnetron 4 are radiated into the cavity 3 and heat the object 13 to be heated.

被加熱物13は回転受皿10とともに回転して均一加熱
される。
The object to be heated 13 rotates together with the rotating tray 10 and is uniformly heated.

被加熱物13の加熱が進行するにつれて、被加熱物13
から放射される放射熱が増加する。
As the heating of the object to be heated 13 progresses, the object to be heated 13
The radiant heat radiated from increases.

この熱は空洞3を通る風により、検知素子18に伝達さ
れる。
This heat is transferred to the sensing element 18 by the wind passing through the cavity 3.

検知素子18は、被加熱物13の放射熱の変化に応動し
た信号を発生する。
The detection element 18 generates a signal in response to a change in the radiant heat of the object 13 to be heated.

検知素子18から発生した信号は増幅手段19により増
幅されて、制御手段20に伝達される。
The signal generated from the sensing element 18 is amplified by the amplification means 19 and transmitted to the control means 20.

そこで、被加熱物が所望の温度に達したときに制御手段
20が作動し、マグネトロン4の発振が制御され、被加
熱物の加熱制御が行なわれる。
Therefore, when the object to be heated reaches a desired temperature, the control means 20 is activated, the oscillation of the magnetron 4 is controlled, and the heating of the object to be heated is controlled.

以上のごとく本実施例は動作する。The present embodiment operates as described above.

ところ、で、本実施例の第一の特徴は時限手段により被
加熱物の加熱制御を行なっていないことである。
By the way, the first feature of this embodiment is that the heating of the object to be heated is not controlled by a timer.

したがって、加熱時間の調節を要しないので、被加熱物
の種類、重量、籾温によらず、所望の温度に被加熱物を
加熱制御することができるようになる。
Therefore, since it is not necessary to adjust the heating time, it becomes possible to control the heating of the object to be heated to a desired temperature regardless of the type, weight, and temperature of the rice to be heated.

第二の特徴としては検知素子18を直接に被加熱物に挿
入しないで被加熱物の温度変化をとらえる、いわゆる間
接検知方式であるので、被加熱物の形くずれを生ずるこ
とがないことである。
The second feature is that it is a so-called indirect detection method that detects temperature changes of the heated object without directly inserting the sensing element 18 into the heated object, so the heated object does not lose its shape. .

第三の特徴としては、風路の特異性をあげることができ
る。
The third characteristic is the uniqueness of the wind path.

すなわち、前述のごとく、被加熱物が載置される面に対
して略平行でかつ略半円弧状にまわる気流を通じている
ので、被加熱物が空洞3に置れる位置が変っても、確実
に気流が被加熱物の加熱進行状況に感応することができ
、それに対応して加熱制御を行なうことができる。
In other words, as mentioned above, since the airflow is passed approximately parallel to the surface on which the object to be heated is placed and revolves in an approximately semicircular arc shape, even if the position where the object to be heated is placed in the cavity 3 changes, the airflow is ensured. The airflow can be sensitive to the progress of heating the object to be heated, and the heating can be controlled accordingly.

以上、本発明によれば、被加熱物の種類、重量籾温によ
らず、被加熱物を形くずれさせることもなく被加熱物を
加熱制御することができ、しかもその手段を確実に構成
できる高周波加熱装置を提供することができる。
As described above, according to the present invention, it is possible to control the heating of the object to be heated without deforming the object, regardless of the type of the object to be heated or the weight and rice temperature, and the means for doing so can be reliably configured. A high frequency heating device can be provided.

なお、実施例においては、空洞を通る気流の温度変化を
とらえてマグネトロンの発振を制御する構成のものを提
示したが、必ずしも係る構成に限定されることはなく、
例えば被加熱物から発生する水蒸気による気流の湿度変
化等の他の物理変化を用いて、マグネトロンの発振を制
御して被加熱物の加熱制御を行なう構成のものにおいて
も本発明の思想を適用することができることはいうまで
もない。
In addition, in the embodiment, a configuration was presented in which the oscillation of the magnetron is controlled by capturing the temperature change of the airflow passing through the cavity, but the configuration is not necessarily limited to such a configuration.
For example, the idea of the present invention can also be applied to a structure in which the heating of the object to be heated is controlled by controlling the oscillation of a magnetron using other physical changes such as changes in the humidity of airflow due to water vapor generated from the object to be heated. Needless to say, it can be done.

【図面の簡単な説明】[Brief explanation of the drawing]

第1図は本発明に係る高周波加熱装置の斜視図であり、
第2図はその要部横断面略図であり、第3図はその要部
縦断面図である。 3・・・空洞、4・・・マグネトロン、5・・・ブロワ
、18・・・検知素子。
FIG. 1 is a perspective view of a high-frequency heating device according to the present invention,
FIG. 2 is a schematic cross-sectional view of the main part, and FIG. 3 is a longitudinal cross-sectional view of the main part. 3...Cavity, 4...Magnetron, 5...Blower, 18...Detection element.

Claims (1)

【特許請求の範囲】[Claims] 1 被加熱物を収納する空洞3を有し、該空洞3には気
流を通じる開口部を有し、該開口部の気流の出口側に気
流の物理変化を検知する検知素子18を備えるとともに
、空洞3に気流を通じる入口側の開口部と出口側の開口
部を該空洞の同一壁面に設け、しかも気流を半円弧状で
かつ被加熱物が載置される面に略平行に流せるような整
風手段を備えていることを特徴とする高周波加熱装置。
1 has a cavity 3 for storing an object to be heated; the cavity 3 has an opening through which the airflow passes; and a detection element 18 for detecting physical changes in the airflow is provided on the exit side of the airflow of the opening; An opening on the inlet side and an opening on the outlet side for communicating airflow to the cavity 3 are provided on the same wall surface of the cavity, and the airflow is made to flow in a semicircular arc shape and approximately parallel to the surface on which the object to be heated is placed. A high-frequency heating device characterized by being equipped with air conditioning means.
JP4479477A 1977-04-18 1977-04-18 High frequency heating device Expired JPS5817375B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP4479477A JPS5817375B2 (en) 1977-04-18 1977-04-18 High frequency heating device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP4479477A JPS5817375B2 (en) 1977-04-18 1977-04-18 High frequency heating device

Publications (2)

Publication Number Publication Date
JPS53129351A JPS53129351A (en) 1978-11-11
JPS5817375B2 true JPS5817375B2 (en) 1983-04-06

Family

ID=12701317

Family Applications (1)

Application Number Title Priority Date Filing Date
JP4479477A Expired JPS5817375B2 (en) 1977-04-18 1977-04-18 High frequency heating device

Country Status (1)

Country Link
JP (1) JPS5817375B2 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0144458Y2 (en) * 1983-11-01 1989-12-22

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0144458Y2 (en) * 1983-11-01 1989-12-22

Also Published As

Publication number Publication date
JPS53129351A (en) 1978-11-11

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