High heat flux experiment on isotropic graphite using pulsed laser beam
- 1. Kyushu Univ., Fukuoka (Japan)
Description
In order to examine the plasma-withstanding behavior of isotropic graphite which is the leading favorite material for the first wall of nuclear fusion reactors, the pulsed thermal loading experiment was carried out by using a laser. As the result of analyzing the gas which was emitted during the pulsed thermal loading, together with the formation and release of various hydrocarbon gases, also the formation of carbon clusters due to the sublimation of carbon was observed. The vacuum characteristics and the dependence on thermal loading condition and surface treatment condition of these released gases were determined, and the problems and the way of improvement in its application to nuclear fusion reactors were elucidated. Since the isotropic graphite is of low atomic number, the radiation loss in plasma is small, and the improvement of the plasma parameters can be expected. Besides, the heat resistance and high temperature stability in vacuum are good, and the induced radioactivity is low. On the other hand, the quantity of gas occlusion is much, various hydrocarbon gases are formed at high temperature, and the wear due to sublimation arises by very high thermal loading. The experimental method, the observation of graphite surface by SEM, and the effect of carbon coating due to thermal decomposition are reported. (K.I.)
Additional details
Publishing Information
- Journal Title
- Oyo Rikigaku Kenkyusho Shoho
- Journal Issue
- no.68
- Series
- Oyo Rikigaku Kenkyusho Shoho.
- ISSN
- 0030-7734
- CODEN
- ORKSA
INIS
- Country of Publication
- Japan
- Country of Input or Organization
- Japan
- INIS RN
- 21051122
- Subject category
- S70: PLASMA PHYSICS AND FUSION TECHNOLOGY;
- Descriptors DEI
- FIRST WALL; GRAPHITE; HEAT FLUX; HYDROCARBONS; ISOTROPY; LASERS; MATERIALS TESTING; PLASMA; SUBLIMATION; SURFACES; THERMAL SHOCK; THERMONUCLEAR REACTOR MATERIAL
- Descriptors DEC
- AMPLIFIERS; CARBON; ELEMENTS; EQUIPMENT; EVAPORATION; MATERIALS; NONMETALS; ORGANIC COMPOUNDS; PHASE TRANSFORMATIONS; TESTING; THERMONUCLEAR REACTOR WALLS