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Wetting of YSZ by molten Sn-8Zr, Sn-4Zr-4Ti, and Sn-8Ti alloys at 800-900 degrees C
Lin, Qiaoli1; Tan, Kaihui1; Wang, Le1; Sui, Ran2
刊名CERAMICS INTERNATIONAL
2022
卷号48期号:1页码:373-380
关键词Wettability Soldering Spreading dynamics
ISSN号0272-8842
DOI10.1016/j.ceramint.2021.09.112
英文摘要The wetting of 3% yttria-stabilized zirconia (YSZ) by Sn-8Zr, Sn-4Zr-4Ti, and Sn-8Ti alloys was studied at 800-900 degrees C. Both Zr and Ti improve the wettability via the formation of reaction products and adsorption. In the systems containing Zr additives in the alloys, ZrO2-x precipitates preferentially, and the wettability is dominated by interface adsorption. An anomalous temperature dependence was found in the final wettability of these systems owing to the decrease in adsorption with an increase in the temperature. The spreading dynamics are controlled by the dissolution of Zr, followed by the formation of a wetting ridge. The wettability of the Sn-8Ti/ YSZ system is dominated by the precipitation of reaction products (Ti2O3 and Ti11.31Sn3O10). The reaction ki-netics is the limiting factor for spreading in Sn-8Ti/YSZ, and the adsorption at the interface significantly decreased the energy barrier for wetting.
WOS研究方向Materials Science
语种英语
出版者ELSEVIER SCI LTD
WOS记录号WOS:000722571000005
内容类型期刊论文
源URL[http://ir.lut.edu.cn/handle/2XXMBERH/154909]  
专题材料科学与工程学院
作者单位1.Lanzhou Univ Technol, State Key Lab Adv Proc & Recycling Nonferrous Met, 287 Langongping Rd, Lanzhou 730050, Peoples R China;
2.Lanzhou Inst Technol, Dept Mat Sci & Engn, 1 Gongjiaping East Rd, Lanzhou 730050, Peoples R China
推荐引用方式
GB/T 7714
Lin, Qiaoli,Tan, Kaihui,Wang, Le,et al. Wetting of YSZ by molten Sn-8Zr, Sn-4Zr-4Ti, and Sn-8Ti alloys at 800-900 degrees C[J]. CERAMICS INTERNATIONAL,2022,48(1):373-380.
APA Lin, Qiaoli,Tan, Kaihui,Wang, Le,&Sui, Ran.(2022).Wetting of YSZ by molten Sn-8Zr, Sn-4Zr-4Ti, and Sn-8Ti alloys at 800-900 degrees C.CERAMICS INTERNATIONAL,48(1),373-380.
MLA Lin, Qiaoli,et al."Wetting of YSZ by molten Sn-8Zr, Sn-4Zr-4Ti, and Sn-8Ti alloys at 800-900 degrees C".CERAMICS INTERNATIONAL 48.1(2022):373-380.
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