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On the structure of the Hugoniot relation for a shock-induced martensitic phase transition

机译:休克马氏体相变休格尼奥特关系的结构

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The Hugoniot curve relates the pressure and volume behind a shock wave, with the temperature having been eliminated. This paper studies the Hugoniot curve behind a propagating sharp interface between two material phases for a solid in which an impact-induced phase transition has taken place. For a solid capable of existing in only one phase, compressive impact produces a shock wave moving into material, say, at rest in an unstressed state at the ambient temperature. If the specimen can exist in either of two material phases, sufficiently severe impact may produce a disturbance with a two-wave structure: a shock wave in the low-pressure phase of the material, followed by a phase boundary separating the low- and high-pressure phases. We use a theory of phase transitions in thermoelastic materials to construct the Hugoniot curve behind the phase boundary in this two-wave circumstance. The kinetic relation controlling the evolution of the phase transition is an essential ingredient in this process.
机译:Hugoniot曲线将冲击波后的压力和体积与温度消除了相关。本文研究了在固体中两种材料相之间传播的尖锐界面后面的Hugoniot曲线,其中发生了碰撞诱导的相变。对于仅能存在于一个相中的固体,压缩冲击会产生冲击波,该冲击波会移动到材料中,例如在环境温度下处于静止状态时处于静止状态。如果标本可以存在于两个材料相中的任何一个相中,则足够严重的冲击可能会产生两波结构的干扰:材料的低压相中的冲击波,然后是将低压和高压相分离的相界。 -压力阶段。我们使用热弹性材料中的相变理论来构造在这种两波情况下相边界后面的Hugoniot曲线。控制相变演变的动力学关系是该过程的重要组成部分。

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