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首页> 外文期刊>Acta Materialia >FORMATION, SOLID SOLUTION HARDENING AND SOFTENING OF NANOCRYSTALLINE SOLID SOLUTIONS PREPARED BY MECHANICAL ATTRITION
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FORMATION, SOLID SOLUTION HARDENING AND SOFTENING OF NANOCRYSTALLINE SOLID SOLUTIONS PREPARED BY MECHANICAL ATTRITION

机译:机械吸引力制备的纳米晶固溶体的形成,固溶硬化和软化

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Nanocrystalline Ti_(100-x)Cu_x(X = 0-8), Nb_(100-x)Cu_x(x = 0-20), Ni_(100-x)Cu_x(x = 0-50), Cr_(100-x)Cu_x(x =0-20), Fe_(100-x)Cu_x(x =0-15). Cu_(l00-x)Ni_x(x =0-50), Cu_(100-x)Fe_x(x =0-50) and Cu_(100-x)Co_x(X = 0-50) solid solutions have been prepared by mechanical attrition of elemental powder mixtures. X-ray diffraction, differential scanning calorimetry, and microhardness measurements are utilized to investigate the structural evolution and the thermal and mechanical properties of the solid solutions. The strength of the nanocrystalline solid solution depends on both solid solution hardening and grain boundary hardening while the latter makes the major contribution to the total strength. The increase or decrease in hardness is dependent on the combined effects of solid solution hardening and either increased or decreased hardness resulting from changes in grain boundary hardening.
机译:纳米晶Ti_(100-x)Cu_x(X = 0-8),Nb_(100-x)Cu_x(x = 0-20),Ni_(100-x)Cu_x(x = 0-50),Cr_(100- x)Cu_x(x = 0-20),Fe_(100-x)Cu_x(x = 0-15)。通过以下方法制备了Cu_(100-x)Ni_x(x = 0-50),Cu_(100-x)Fe_x(x = 0-50)和Cu_(100-x)Co_x(X = 0-50)固溶体粉末混合物的机械磨损。 X射线衍射,差示扫描量热法和显微硬度测量用于研究固溶体的结构演变以及热和机械性能。纳米晶固溶体的强度取决于固溶体硬化和晶界硬化,而后者对总强度起主要作用。硬度的增加或降低取决于固溶体硬化的综合效果,以及由于晶界硬化而导致的硬度增加或降低。

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