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The High Temperature Deformation Behavior of TiC_(0.98) Grown by the Floating Zone Technique

机译:浮区法生长的TiC_(0.98)的高温变形行为

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In order to investigate the high temperature deformation behaviors of TiCo.98, crystals were grown by the radio frequency (r.f.) floating zone technique and were deformed by a compression test at temperatures from 1283 to 2133 K and a strain rate from 5.87 × 10~(-4) to 6.01 × 10~(-3)s~(-1). TiCo.98 exhibited a marked work-softening phenomena which is characteristic of covalently bonded materials such as Ge and Si, and the phenomena became less clear with an increasing temperature and with a decreasing strain rate. After the softening, work hardening was observed. The rate hardening decreased as the temperature increased. The stress-strain curve can be explained in terms of the increase in the athermal internal stress and the decrease in the thermal effective stress with the increase in dislocation density by the deformation. The upper yield stress was mainly determined by the frictional resistance to dislocation motion, and the athermal internal stress contribution was very small.
机译:为了研究TiCo.98的高温变形行为,通过射频(rf)浮区技术生长晶体,并在1283至2133 K的温度和5.87×10〜的应变速率下通过压缩试验使其变形。 (-4)至6.01×10〜(-3)s〜(-1)。 TiCo.98表现出显着的工作软化现象,这是共价键合材料(例如Ge和Si)的特征,并且随着温度升高和应变速率降低,该现象变得不那么清晰。软化后,观察到加工硬化。硬化速率随温度升高而降低。应力-应变曲线可以解释为随着变形引起的位错密度的增加,无热内部应力的增加和热有效应力的减少。上屈服应力主要由位错运动的摩擦阻力决定,无热内应力的贡献很小。

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