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Tensile properties and microstructure evolution during two-stage tensile testing of CoCrFeMnNi high-entropy alloy

机译:COCRFEMNNI高熵合金两级拉伸试验期间拉伸性能和微观结构演变

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The tensile properties of a CoCrFeMnNi high-entropy alloy, obtained by isothermal tensile testing and two-stage non-isothermal tensile testing, were compared. During the two-stage tensile testing, a tensile sample with the as-cast microstructure was loaded at 22°C up to a strain level of 15%. Subsequently, the tensile specimen was re-loaded until it fractured at 500°C and 700°C. Formation of several steps was observed at the point where grain boundaries and deformation twin boundaries intersect after the two-stage tensile testing at 500°C. The local deformation at the steps results in the fragmentation of the twin lamellae grains, which leads to the formation of an ultra-fine-grain structure. A high density of deformation twins was detected inside the ultra-fine grains. Furthermore, the grain fragmentation mechanism is discussed.
机译:比较了通过等温拉伸试验和两级非等温拉伸试验获得的COCRFEMNNI高熵合金的拉伸性能。在两级拉伸试验期间,将带有铸造微结构的拉伸样品在22℃下加载至15%的应变水平。随后,重新加载拉伸试样直至其在500℃和700℃下破裂。在500℃下两级拉伸试验后,在晶界和变形双界相交的点处观察到几个步骤的形成。步骤中的局部变形导致双薄片晶粒的破碎,这导致形成超细晶粒结构。在超细颗粒内检测到高密度的变形双胞胎。此外,讨论了晶粒碎片机制。

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