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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Anisotropic thermal lattice expansion and crystallographic structure of strontium aluminide within Al-10Sr alloy as measured by in-situ neutron diffraction
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Anisotropic thermal lattice expansion and crystallographic structure of strontium aluminide within Al-10Sr alloy as measured by in-situ neutron diffraction

机译:通过原位中子衍射测量的Al-10SR合金中铝化物的各向异性热晶层膨胀和晶体结构

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摘要

The aluminium strontium master alloy Al-10Sr has been investigated by in-situ neutron diffraction upon a heating-cooling cycle, revealing composition, crystallographic structure, lattice evolution and linear thermal expansion coefficients. Expansion of the Al matrix between [23.5 ... 26.7].10(-6) K-1 depends on temperature and fits well to the literature values, extrapolating to higher temperature at 800 K. Thermal expansion is highly anisotropic for tetragonal Al4Sr by a factor of 1.86 with values of 20.8 and 11.1.10(-6) K-1 in a and c-axis. The even larger discrepancy to the Al matrix is prone to residual intergranular phase stresses explaining the brittleness of such composite material. Upon first heating, recovery of the initially plastically deformed material is observed until 600 K and 700 K, for Al4Sr and Al. Rietveld analysis refines the 4e Wyckoff positions of the I 4/m m m crystal structure to z = 0.39 revealing that local tetrahedrons are regular while local hexagons are stretched, in contrast to literature. Its lattice parameters report to a(I) = 4.44240(48) angstrom, c(I) = 11.0836(15) angstrom at 300 K. Furthermore, the manuscript demonstrates full technical analysis of the neutron data. Findings feed into data bases and an outlook for improving mechanical properties of Al4Sr composites is given. (C) 2021 Elsevier B.V. All rights reserved.
机译:通过加热-冷却循环的原位中子衍射研究了铝锶中间合金Al-10Sr,揭示了其成分、晶体结构、晶格演化和线性热膨胀系数。铝基体在[23.5…26.7]之间的膨胀取决于温度,与文献值吻合良好,外推到800 K时的更高温度。四方Al4Sr的热膨胀系数为1.86,在a轴和c轴上的值分别为20.8和11.1.10(-6)K-1。与铝基体的更大差异容易导致残余晶间相应力,从而解释了这种复合材料的脆性。在首次加热时,观察到初始塑性变形材料的恢复,直到600 K和700 K,对于Al4Sr和Al。Rietveld分析将I 4/m m晶体结构的4e Wyckoff位置细化到z=0.39,与文献相反,显示局部四面体是规则的,而局部六角形是拉伸的。其晶格参数报告为a(I)=4.44240(48)埃,c(I)=11.0836(15)埃,温度为300 K。此外,手稿展示了中子数据的完整技术分析。研究结果已输入数据库,并对改善Al4Sr复合材料的力学性能进行了展望。(c)2021爱思唯尔B.V.保留所有权利。

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