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Titlebook: Liquid Metal Systems; Material Behavior an H. U. Borgstedt,Gunter Frees Book 1995 Plenum Press, New York 1995 Metall.alloy.corrosion.liquid

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楼主: Malicious
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Compatibility Tests of Insulating Materials in Pb-17Li Alloy,erforms the easiest way to reduce the MHD pressure drop. In this case electrical currents could only flow inside the liquid metal itself, and the result is a reduction of the MHD pressure drop by some orders of magnitude. However, the insulating coating has to be compatible with Pb-17Li over the who
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formed in liquid metal~ lnd are only stable in this environment. The research and deveopment devoted to the fission reactor techniques were more or less completed in several countries, further work is in progress in some countries in which the interest in fast breeder reactors arose recently. Even the worldwi978-1-4613-5814-5978-1-4615-1977-5
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als in nuclear techniques. The technological development has been supported by studies of the basic physical-chemical properties of liquid metals: One major concern is the material behaviour in contact with the liquid metals, corrosion and the possible deterioration of metallic and ceramic materials
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Deposition of the Corrosion Products in Pb-17Li,b-17Li blanket. The molten alloy is likely to be contained within either 316L stainless steel or the newer German type 1.4914 martensitic steel. The results of preliminary studies have shown that corrosion product mass transfer and deposition may affect the maximum operating temperature in some liquid metal blanket systems.
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