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Compressive creep behavior of an oxide-dispersion-strengthened CoCrFeMnNi high-entropy alloy

机译:氧化物弥散强化的CoCrFeMnNi高熵合金的压缩蠕变行为

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Creep tests of two equiatomic CoCrFeMnNi alloys were conducted in the temperature range from 973 K to 1073 K. The alloys were prepared by milling blends of powders of pure elements in a planetary ball mill and compacting by the spark plasma technique. Two variants of the alloys were prepared: (i) without and (ii) with the dispersion of oxides. Creep resistance was substantially improved by the presence of oxides. Diffusion creep controlled by lattice diffusion was suggested as a possible mechanism at low stresses. The effective diffusion coefficient calculated for Nabarro-Herring creep was comparable to the lattice diffusion coefficient of Ni in the same high-entropy alloy. At high stresses, the creep behavior was characterized by the presence of a threshold stress invoked by oxide particles.
机译:在973 K到1073 K的温度范围内对两种等原子的CoCrFeMnNi合金进行了蠕变测试,通过在行星式球磨机中研磨纯元素粉末的混合物并通过火花等离子体技术压实来制备该合金。制备了两种合金变体:(i)没有和(ii)具有氧化物的分散体。氧化物的存在大大提高了耐蠕变性。建议在低应力下由晶格扩散控制的扩散蠕变是一种可能的机制。计算出的Nabarro-Herring蠕变的有效扩散系数与Ni在同一高熵合金中的晶格扩散系数相当。在高应力下,蠕变行为的特征在于存在由氧化物颗粒引起的阈值应力。

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