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The study of dislocation dynamics in thermally aged Fe-1%Cu-C alloys by internal friction measurements

机译:通过内部摩擦测量研究热时效Fe-1%Cu-C合金中的位错动力学

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The effect of copper precipitation and the role of carbon in the dislocation dynamics of thermally aged Fe1%CuC alloys are studied by measuring the internal friction coefficient of non-deformed and cold-worked samples in the temperature range from 100 to 600K. In non-deformed samples we observe a complex behaviour of the Snoek-relaxation peak intensity, which indicates the existence of carbon redistribution governed by the copper precipitation. In cold-worked samples, the behaviour of dislocation-related relaxation processes is explained through an increase in hardening due to copper precipitation at early precipitation stages, and through the carbon redistribution which seems to play a major role in the alloy softening at later precipitation stages.
机译:通过测量100至600K温度范围内未变形和冷加工样品的内摩擦系数,研究了铜沉淀的影响以及碳在热时效Fe1%CuC合金位错动力学中的作用。在未变形的样品中,我们观察到Snoek松弛峰强度的复杂行为,这表明存在由铜沉淀控制的碳再分布。在冷加工样品中,与位错相关的弛豫过程的行为可以通过早期析出阶段铜析出导致的硬化增加以及碳的重新分布来解释,碳的重新分布似乎在后期析出阶段在合金软化中起主要作用。

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