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首页> 外文期刊>Materials Science and Engineering >Effect of γ'-phase particles on the orientation and temperature dependence of the mechanical behaviour of Al_(0.3)CoCrFeNi high-entropy alloy single crystals
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Effect of γ'-phase particles on the orientation and temperature dependence of the mechanical behaviour of Al_(0.3)CoCrFeNi high-entropy alloy single crystals

机译:γ'相颗粒对Al_(0.3)CoCrFeNi高熵合金单晶力学行为的取向和温度依赖性的影响

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The present paper reports the effect of nanoscale γ'-phase particles (d = 5-7 nm), after 50 h of ageing at 893K, on the mechanical behaviour, dislocation structure and dynamic strain ageing of the Al_(0.3)CoCrFeNi high-entropy alloy single crystals under tensile strain, over a wide temperature range from 77 to 973K. It was found that precipitation of γ'-phase particles leads to localization of deformation in one slip system, the development of a planar structure, a decrease in the value of (dσ/dε)/G(T) and an increase in plasticity, compared to quenched crystals, in the temperature range from 77 to 973K. The physical reason for the strain localization and the development of a planar structure in the Al_(0.3)CoCrFeNi high-entropy alloy single crystals with γ'-phase particles is associated with softening of the acting slip systems on shearing of particles via slip dislocations. At 973K, in the quenched single crystals and those with y'-phase particles of the Al_(0.3)CoCrFeNi high-entropy alloy, dynamic strain ageing accompanied by a serrated flow on the σ(ε) curves during tensile strain was observed. It was shown that at 973K, a planar structure develops simultaneously with dynamic strain ageing in quenched Al_.3CoCrFeNi high-entropy alloy single crystals. The development of a planar structure in quenched Al_(0.3)CoCrFeNi high-entropy alloy single crystals at 973K is due to the formation of pre-precipitates which, like nanoscale y'-phase particles, soften the acting slip systems during the operation of the particle shearing mechanism.
机译:本文报道了在893K老化50 h后,纳米级γ'相粒子(d = 5-7 nm)对Al_(0.3)CoCrFeNi高强度合金的力学行为,位错结构和动态应变时效的影响。熵合金单晶在77至973K的宽温度范围内承受拉伸应变。研究发现,γ'相颗粒的沉淀会导致一个滑移系统中的变形局部化,平面结构的发展,(dσ/dε)/ G(T)值的降低和可塑性的提高,与淬火晶体相比,温度范围为77至973K。带有γ'相颗粒的Al_(0.3)CoCrFeNi高熵合金单晶中的应变局部化和平面结构发展的物理原因与作用滑移系统的软化有关,该滑移系统通过滑移位错剪切了颗粒。在973K处,在淬火的单晶和具有Al_(0.3)CoCrFeNi高熵合金y'相颗粒的单晶中,观察到动态应变时效,并在拉伸应变过程中伴随着σ(ε)曲线上的锯齿状流动。结果表明,在973K时,Al_.3CoCrFeNi高熵合金淬火单晶在动态应变时效的同时发展出平面结构。在973K淬火的Al_(0.3)CoCrFeNi高熵合金单晶中平面结构的发展归因于预沉淀物的形成,该沉淀物像纳米级y'相颗粒一样,在操作过程中软化了作用滑移系统。颗粒剪切机制。

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