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The influence of pre-strain on the flow strength and microstructural evolution of polycrystalline gamma-TiAl

机译:预应变对多晶γ-TiAl流动强度和组织演变的影响

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Specimens of single-phase polycrystalline gamma-Ti47Al51Mn2 have been tested in compression at 300 and 550 degrees C. Monotonic and Cottrell-Stokes temperature change experiments have been conducted, and the deformation microstructure associated with these tests has been characterized by transmission electron microscopy. The transient experiments indicate that the flow stress is reversible both when the temperature is dropped from 550 to 300 degrees C, and when it jumps from 300 to 550 degrees C. Deformation at the lower temperature has been associated with superdislocation motion and the formation of faulted dipoles, while ordinary dislocation motion dominates at the higher temperature. Dislocation motion and strain hardening in this alloy have both been characterized as fully reversible processes that are unaffected by prior deformation history. Implications for modelling the yield strength anomaly in this alloy are discussed. [References: 22]
机译:单相多晶γ-Ti47Al51Mn2的样品已在300和550摄氏度下进行了压缩测试。进行了单调和Cottrell-Stokes温度变化实验,并通过透射电子显微镜表征了与这些测试相关的变形微观结构。瞬态实验表明,当温度从550降到300摄氏度,以及温度从300跳到550摄氏度时,流动应力都是可逆的。较低温度下的变形与超位错运动和断层的形成有关。偶极子,而普通的位错运动在较高的温度下占主导地位。这种合金中的位错运动和应变硬化都被认为是完全可逆的过程,不受先前的变形历史影响。讨论了对这种合金的屈服强度异常进行建模的含义。 [参考:22]

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