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Titlebook: High-Temperature Measurements of Materials; Hiroyuki Fukuyama,Yoshio Waseda Book 2009 Springer-Verlag Berlin Heidelberg 2009 Atomic struct

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978-3-642-09945-8Springer-Verlag Berlin Heidelberg 2009
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Hiroyuki Fukuyama,Yoshio WasedaMost comprehensive book on high-temperature measurements.Highly important for process control in crystal growth and metallurgical processes.Deals with established methods.A valuable reference for both
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Advances in Materials Researchhttp://image.papertrans.cn/h/image/426786.jpg
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1435-1889 Deals with established methods.A valuable reference for bothA variety of industries – information technology, aerospace, automobile, and basic and new materials manufacturing – need technological innovations, which bring high-value-added and high-quality products at low cost not only because of glob
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Book 2009hich bring high-value-added and high-quality products at low cost not only because of global competition, but also because of the perspective of en- ronmental consciousness and regulation. Thermophysical properties of hi- temperature melts are indispensable for numerical simulations of material proc
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Measurement of Structure of High Temperature and Undercooled Melts by using X-Ray Diffraction Methohniques of high-temperature liquids have not been advanced so much because of the difficulty in the selection of crucible materials. In the case of liquid metals, several ceramics (e.g., fused silica, sintered alumina, sapphire, graphite, boron nitride) have been used for crucibles. Despite the adop
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Viscosity and Density Measurements of High Temperature Melts,ding on the groups of the melts, for example, in general low for molten metals and high for molten silicates, including slag and glass, and the difference reaches more than ten orders by reflecting the difference in the melt structure. On the other hand, density is mainly depending on atomic mass an
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Marangoni Flow and Surface Tension of High Temperature Melts,erless process and assures the contamination-free condition from measurement devices. It is well known that flow direction in the weld pool is dependent on surface contamination and that this is related to weldability [4, 5]. Flow direction is controlled by the temperature coefficient of surface ten
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