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Effect of Temperature on the Cyclic Stress Components of Gamma - TiAl Based Alloy with Niobium Alloying

机译:温度对铌合金化γ基合金循环应力成分的影响

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Cyclic strain controlled multiple step tests have been performed on cylindrical specimens of cast y-TiAl based alloy with 2 at.% of Nb with nearly lamellar microstructure at 23 and 750 °C in laboratory atmosphere with the aim to study the effect of temperature on the internal and effective cyclic stress components. At these temperatures, the evolution of the effective and internal stress components and the effective elastic moduli were derived from the hysteresis loops analyzed according to the statistical theory of hysteresis loop. Cyclic hardening/softening curves and cyclic stress-strain curves were obtained at both temperatures. Cyclic stress-strain curves measured using short-cut procedure coincide with the basic cyclic stress-strain curve. They are shifted to lower stresses with increasing temperature. Cyclic stress-strain response at both temperatures was compared and discussed in relation to changes of internal and effective stress components and dislocation modes referred in literature concerning this class of the material.
机译:循环应变控制的多步骤已经在铸造Y-Tial基合金的圆柱形标本上进行,其中2at。在实验室气氛中在23和750℃下具有几乎层状微观结构的Nb,目的是研究温度对的影响内部和有效的循环应力分量。在这些温度下,从根据滞后回路的统计理论分析的滞后环来源,源自有效和内应力分量和有效弹性模量的演变。在两个温度下获得循环硬化/软化曲线和环状应力 - 应变曲线。使用短切法测量的循环应力 - 应变曲线与基本循环应力 - 应变曲线重合。它们随着温度的增加而转移到降低应力。比较两个温度的循环应力 - 应变响应,并相对于文献中提到的本类材料的内部和有效应力分量和位错模式的变化来讨论。

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