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Titlebook: Science and Technology of the Undercooled Melt; Rapid Solidification P. R. Sahm,H. Jones,C. M. Adam Book 1986 Martinus Nijhoff Publishers,

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发表于 2025-3-21 19:18:00 | 显示全部楼层 |阅读模式
书目名称Science and Technology of the Undercooled Melt
副标题Rapid Solidification
编辑P. R. Sahm,H. Jones,C. M. Adam
视频video
丛书名称NATO Science Series E:
图书封面Titlebook: Science and Technology of the Undercooled Melt; Rapid Solidification P. R. Sahm,H. Jones,C. M. Adam Book 1986 Martinus Nijhoff Publishers,
描述"SCIENCE AND TECHNOLOGY OF ‘!HE UNDEROLED MELT" This title was chosen as the topical headline of the Advanced Research Workshop (ARW) from March 17 to 22 1985, held at the Castle of Theuern. The usual term "Rapid Solidification" is an overlapping description. Due to the fact that nucleation is so eminently important for the undercooling of a melt and this, in turn, is an important characteristic of rapid solidifi­ cation, undercooling plays an essential role in "rapid solidification." The undercooled melt has caused an "accelerated evolution" (if not a revolution) in materials science during the last decade. Several rather exciting concepts with interesting potential for novel applications are being pursued presently in various laboratories and companies. They concern not only new processes and ha~ware developments, but also present chal­ lenging perspectives for ventures, including the founding of new companies; or they promise growth possibilities with established larger and smaller industrial establishments.
出版日期Book 1986
关键词Metall; alloy; crystal; glass; liquid; modeling; thermodynamics
版次1
doihttps://doi.org/10.1007/978-94-009-4456-5
isbn_softcover978-94-010-8483-3
isbn_ebook978-94-009-4456-5Series ISSN 0168-132X
issn_series 0168-132X
copyrightMartinus Nijhoff Publishers, Dordrecht 1986
The information of publication is updating

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Formation and Stability of Metallic Glassesthat claim to interpret (never, as yet, to predict) the alloy combinations and compositions capable of forming metallic glasses by rapid solidification from the melt, and to point to some aspects which seem ripe for further attention. Most attention is devoted to recent work.
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Structural Criteria for Glass Forming Ability: Application to Aluminium-Based AlloysThe glass forming ability (GFA) of metallic alloys is usually accounted for in terms of thermodynamics and kinetics parameters. Structural parameters do not explicitely enter such approaches though the atomic size ratio r./r.in binary M.X. alloys has obviously some link with GFA as was recently shown by EGAMI and WASEDA (1).
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https://doi.org/10.1007/978-94-009-4456-5Metall; alloy; crystal; glass; liquid; modeling; thermodynamics
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Fundamentals of Rapid Solidificationding to various models of nucleation and growth during solidification, and the effects of cooling rate and undercooling on important microstructural features such as grain size, dendrite arm spacing, and extent of segregation are discussed.
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Fundamentals of Rapid Solidificationapid solidification are described, and the observed cooling curves are analysed according to various cooling models. The experimental effects of rapid solidification conditions on heat transfer coefficient and cooling rate in the vicinity of the solidification point are also described, and the effic
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