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MICROWAVE IRRADIATION METHOD
PROBLEM TO BE SOLVED: To provide a microwave irradiation method that can reduce the frequency of occurrence of cracks in a heating target object when the heating target object is irradiated with condensed microwaves.SOLUTION: A microwave irradiation device has a microwave source for generating microwaves of 10 GHz to 300 GHz in frequency, a reflection mechanism for reflecting and converging the generated microwaves, and a mount table on which a heating target object to be irradiated with the reflected microwaves is mounted. The reflected microwaves are converged and applied to the heating target object mounted on the mount table. The heating target object comprises heating target bodies A and B to be joined. The heating target body A is formed of transmissible material, and the heating target body B is formed of absorbable material. The joint faces of the heating target bodies A and B are brought into contact with each other to confront each other, and the heating target object is irradiated with the reflected microwaves so that the reflected microwaves are transmitted through the inside of the heating target body A, and then applied to the joint face of the heating target body B.
【課題】集光されたマイクロ波を被加熱対象に照射する際、被加熱対象にクラックが発生する頻度を低減すること。【解決手段】周波数が10GHz〜300GHzのマイクロ波を発生するマイクロ波源と、発生したマイクロ波を反射して集光する反射機構と、前記反射されたマイクロ波が照射される被加熱対象が載置される載置台と、を備えたマイクロ波照射装置が利用される。載置台に載置された被加熱対象に前記反射されたマイクロ波が集光して照射される。被加熱対象が、接合されるべき被加熱体A,Bからなる。被加熱体Aは「透過材」で構成され、被加熱体Bは「吸収材」で構成される。「被加熱体A、Bの接合面同士が向かい合って接触し、且つ、反射されたマイクロ波が被加熱体Aの内部を透過した後に被加熱体Bの接合面に照射されるように、反射されたマイクロ波が被加熱対象に照射される。【選択図】図5
MICROWAVE IRRADIATION METHOD
PROBLEM TO BE SOLVED: To provide a microwave irradiation method that can reduce the frequency of occurrence of cracks in a heating target object when the heating target object is irradiated with condensed microwaves.SOLUTION: A microwave irradiation device has a microwave source for generating microwaves of 10 GHz to 300 GHz in frequency, a reflection mechanism for reflecting and converging the generated microwaves, and a mount table on which a heating target object to be irradiated with the reflected microwaves is mounted. The reflected microwaves are converged and applied to the heating target object mounted on the mount table. The heating target object comprises heating target bodies A and B to be joined. The heating target body A is formed of transmissible material, and the heating target body B is formed of absorbable material. The joint faces of the heating target bodies A and B are brought into contact with each other to confront each other, and the heating target object is irradiated with the reflected microwaves so that the reflected microwaves are transmitted through the inside of the heating target body A, and then applied to the joint face of the heating target body B.
【課題】集光されたマイクロ波を被加熱対象に照射する際、被加熱対象にクラックが発生する頻度を低減すること。【解決手段】周波数が10GHz〜300GHzのマイクロ波を発生するマイクロ波源と、発生したマイクロ波を反射して集光する反射機構と、前記反射されたマイクロ波が照射される被加熱対象が載置される載置台と、を備えたマイクロ波照射装置が利用される。載置台に載置された被加熱対象に前記反射されたマイクロ波が集光して照射される。被加熱対象が、接合されるべき被加熱体A,Bからなる。被加熱体Aは「透過材」で構成され、被加熱体Bは「吸収材」で構成される。「被加熱体A、Bの接合面同士が向かい合って接触し、且つ、反射されたマイクロ波が被加熱体Aの内部を透過した後に被加熱体Bの接合面に照射されるように、反射されたマイクロ波が被加熱対象に照射される。【選択図】図5
MICROWAVE IRRADIATION METHOD
マイクロ波照射方法
AWAKURA YASUTAKA (author) / MAEDA SHINSAKU (author) / AKAO TAKAYOSHI (author)
2015-10-29
Patent
Electronic Resource
Japanese
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