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Anomalous decrease in X-ray diffraction intensities of Cu-Ni-Al-Co-Cr-Fe-Si alloy systems with multi-principal elements

机译:具有多主要元素的Cu-Ni-Al-Co-Cr-Fe-Si合金系统的X射线衍射强度异常降低

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摘要

With an aim to understand the great reduction in the X-ray diffraction (XRD) intensities of high-entropy alloys, a series of Cu-Ni-Al-Co-Cr-Fe-Si alloys with systematic addition of principal elements from pure element to seven elements was investigated for quantitative analysis of XRD intensities. The variation of XRD peak intensities of the alloy system is similar to that caused by thermal effect, but the intensities further drop beyond the thermal effect with increasing number of incorporated principal elements. An intrinsic lattice distortion effect caused by the addition of multi-principal elements with different atomic sizes is expected for the anomalous decrease in XRD intensities. The mathematical factor of this distortion effect for the modification of XRD structure factor is formulated analogue to that of thermal effect.
机译:为了了解高熵合金的X射线衍射(XRD)强度的极大降低,一系列从纯元素中系统添加主要元素的Cu-Ni-Al-Co-Cr-Fe-Si合金对七个元素进行了研究,以定量分析XRD强度。合金系统的XRD峰强度的变化与热效应引起的变化相似,但是随着引入的主要元素数量的增加,强度进一步下降,超过了热效应。对于XRD强度的异常降低,预计会出现由添加具有不同原子尺寸的多主要元素引起的固有晶格畸变效应。修改XRD结构因数的这种畸变效应的数学因数类似于热效应。

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