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Work Hardening Mechanism in Soft Particle Dispersion Ferritic Steel

机译:软颗粒弥散铁素体钢的加工硬化机理

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The work hardening behavior was investigated in ferritic steels containing hard particles or soft Cu particles with various volume fractions and particle diameters, and then the effect of plastically deformable soft particles on the work hardening was evaluated in terms of the accumulation of GN dislocations. The amount of work hardening and dislocation density increased with an increase of volume fraction of dispersion particles and a decrease of particle diameter in hard particle dispersion steel. On the other hand, in soft Cu particle dispersion steel, the effect of volume fraction and particle diameter on work hardening behavior was relatively small. TEM observation suggested that stress relaxation around particle takes place by plastic deformation of Cu particle itself. In order to consider the effect of plastic deformation of Cu particles on accumulation of GN dislocations, "particle plastic accommodation parameter" was proposed to modify the Ashby's work hardening theory. As a result, the amount of work hardening was successfully predicted for both the hard and soft particle dispersion steels.
机译:在含有不同体积分数和粒径的硬颗粒或软Cu颗粒的铁素体钢中研究了加工硬化行为,然后根据GN位错的积累评估了可塑性变形的软颗粒对加工硬化的影响。随着硬质分散钢中分散粒子的体积分数的增加和粒径的减小,加工硬化和位错密度的数量增加。另一方面,在软Cu颗粒分散钢中,体积分数和粒径对加工硬化行为的影响相对较小。 TEM观察表明,颗粒周围的应力松弛是通过Cu颗粒本身的塑性变形而发生的。为了考虑Cu颗粒的塑性变形对GN位错积累的影响,提出了“颗粒塑性调节参数”来修正Ashby的工作硬化理论。结果,成功地预测了硬颗粒和软颗粒分散钢的加工硬化量。

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