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  4. Formation of Whiskers and Hillocks on the Surface of Sn-6.6RE Alloys
 
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Formation of Whiskers and Hillocks on the Surface of Sn-6.6RE Alloys

Resource
Metallurgical and Materials Transactions A 39 (3): 604-612
Journal
Metallurgical and Materials Transactions A
Journal Volume
39
Journal Issue
3
Pages
604-612
Date Issued
2008
Date
2008
Author(s)
Chuang, T.H.
Chi, C.C.
Lin, H.J.
URI
http://ntur.lib.ntu.edu.tw//handle/246246/95968
https://www.scopus.com/inward/record.uri?eid=2-s2.0-39549095314&doi=10.1007%2fs11661-007-9426-9&partnerID=40&md5=3609b755a7a5a1b626a09c0dc01e6732
Abstract
As-cast Sn-6.6Ce, Sn-6.6Lu, and Sn-6.6La alloys contain peritectic structures of near β-Sn matrix embedded with CeSn3, Lu4Sn5, and LaSn3 clusters, respectively, among which those of LaSn3 are the smallest in size. After air storage at room temperature, Sn-6.6Ce and Sn-6.6Lu reveal a much higher tendency than Sn-6.6La to form long threadlike whiskers on the surface of CeSn3 phase. Sn-6.6La shows the earlier appearance of coarse hillocks during storage at 150 °C in comparison to the Sn-6.6Ce and Sn-6.6Lu, but these hillocks cease to grow after a short duration. In contrast, the hillocks in Sn-6.6Ce and Sn-6.6Lu can grow to large sizes. This discrepancy correlates to the lower oxidation rate of LaSn3 intermetallic phase than those of CeSn3 and Lu4Sn5, which is attributed to the higher chemical activity of La as compared to Ce and Lu. In addition, the smaller size of the LaSn3 clusters also leads to the lower amount of tin atoms released and lower compressive stress accumulated after oxidation, which result in the slower whisker and hillock growth in Sn-6.6La alloy as compared to those in Sn-6.6Ce and Sn-6.6Lu. © The Minerals, Metals & Materials Society and ASM International 2008.
Other Subjects
Compressive stress; Crystal structure; Crystal whiskers; Intermetallics; Oxidation; Hillock; Peritectic structures; Tin alloys
Type
journal article
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