Advanced intermetallic-based alloys for extreme environment and energy applications : symposium held December 1-4, 2008, Boston, Massachusetts, U.S.A.

Advanced intermetallic-based alloys for extreme environment and energy applications : symposium held December 1-4, 2008, Boston, Massachusetts, U.S.A.
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用于极端环境和能源应用的先进金属间合金:研讨会于2008年12月1-4日在美国马萨诸塞州波士顿举行。

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发表时间:
2009
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通讯作者:
J. Wiezorek
J. Wiezorek
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文献类型:
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作者:
M. Palm;B. Bewlay;Yue;M. Takeyama;J. Wiezorek

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对能够实现更有效的能量转换的材料的需求不断增加-允许更高的操作温度和更轻的部件重量的材料,优选具有更好的耐腐蚀性-使金属间化合物基合金重新成为焦点。例如,最近将轻质TiAl基合金用于汽车和航空航天应用已经刺激了对其他金属间化合物基合金的研究。除了在先进的能源系统中遇到的极端环境的结构金属间化合物,这本书还侧重于新的金属间化合物-金属系统的基本和跨学科方面(例如,钴基高温合金)和功能性金属间化合物,可以储存能量,发电和提高可靠性。主题包括:用于储氢和热电应用的金属间化合物;铁铝化物-物理冶金;钛铝化物-物理冶金;钛铝化物-结构、性能和涂层;铁铝化物、钛铝化物、镍铝化物和硅化物;镍/钴超级合金和镍铝化物;铌和钼硅化物基合金; Laves相和金属间化合物的基本方面-相稳定性,缺陷和理论。
The increasing demand for materials which enable a more efficient energy conversion - materials allowing higher operating temperatures and a lower weight of the components with preferably better corrosion resistance- has put intermetallic-based alloys back into focus. For example, the recent use of light weight, TiAl-based alloys for automotive and aerospace applications has spurred research on other intermetallic-based alloys. In addition to structural intermetallics for extreme environments encountered in advanced energy systems, this book also focuses on fundamental and interdisciplinary aspects of novel intermetallic-metal systems (e.g., Co-based superalloys) and functional intermetallics that can store energy, generate power and enhance reliability. Topics include: intermetallics for hydrogen storage and thermoelectric applications; iron aluminides - physical metallurgy; titanium aluminides - physical metallurgy; titanium aluminides - structure, properties and coatings; iron aluminides, titanium aluminides, nickel aluminides and silicides; nickel/cobalt superalloys and nickel aluminides; niobium and molybdenum silicide-based alloys; laves phases and fundamental aspects of intermetallics - phase stability, defects and theory.