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Nucleation, Growth, and Structure of Beta-Tin in Tin-Based Lead-Free Solders

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서명/저자사항Nucleation, Growth, and Structure of Beta-Tin in Tin-Based Lead-Free Solders.
개인저자Reeve, Thomas C.
단체저자명Purdue University. Materials Engineering.
발행사항[S.l.]: Purdue University., 2018.
발행사항Ann Arbor: ProQuest Dissertations & Theses, 2018.
형태사항264 p.
기본자료 저록Dissertation Abstracts International 79-10B(E).
Dissertation Abstract International
ISBN9780438018549
학위논문주기Thesis (Ph.D.)--Purdue University, 2018.
일반주기 Source: Dissertation Abstracts International, Volume: 79-10(E), Section: B.
Adviser: Carol A. Handwerker.
요약The solidification of the beta-Sn phase in Sn-based solder alloys is often unpredictable and difficult to induce, commencing heterogeneously from a highly-undercooled liquid. In addition, the crystal structure of beta-Sn is highly anisotropic an
요약My work has examined the nucleation, growth, and structure of beta-Sn via the implementation of the following thermodynamic and solidification approaches: (1) Al micro-alloying additions, (2) introduction of inoculating phases, and (3) introduct
요약First, the effects of Al micro-alloying on common industrial solder alloys was examined. In our initial studies, Al additions resulted in a range of microstructure effects, including the formation of Cu-Al IMCs. Through collaboration with collea
요약Through continued collaborations with ISU, Ames Lab, and Nihon-Superior, the potential nucleant relationship between CuxAly and Cu6Sn5 was explored as a means to manipulate the number and size of Cu6Sn5 nucleation sites through the particle size
요약For Cu6Sn5, a bimodal size distribution was observed for the alloy with Cu6Sn5 phase temperature stability of 240 °C, with large, faceted growth of Cu6Sn5, while the alloy with Cu6Sn5 phase temperature stability of 267 °C displayed no significan
일반주제명Materials science.
Engineering.
언어영어
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