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THE EFFECT OF SILICON ON THE ε → θ TRANSFORMATION IN ULTRA-STRONG SPRING STEELS

机译:硅对超强弹簧钢中ε→θ变换的影响

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Tempered martensitic steels have shown considerable strengthening by controlled precipitation of the transitional ε-carbide, which is precursor to the more stable cementite phase. It is widely accepted in literature that silicon plays a particular role in the aforementioned transformation. In order to gain further insight, studies have been carried out in a spring steel model alloy of composition Fe-0.55C-2.2Si wt.%. Mechanical tests have shown that in the ε → θ transformation regime there is a loss in strength and an increase in ductility. Albeit the apparent simple alloy composition, yield strengths above 2.4 GPa were obtained. The classical nucleation theory approach was used in order to understand the ε → θ transition. Both transformation and misfit strain energies have been considered in order to explain precipitation behaviour during tempering.
机译:钢化的马氏体钢已经通过过渡ε-碳化物的受控沉淀而显着强化,这是更稳定的渗碳岩相的前体。在文献中广泛接受,硅在上述转化中起着特定作用。为了获得进一步的见解,在组合物Fe-0.55C-2.2SI的弹簧钢模型合金中进行了研究。%。机械测试表明,在ε→θ变换状态下,存在强度损失和延展性的增加。尽管表观简单合金组合物,得到了2.4GPa以上的产量强度。使用古典成核理论方法以了解ε→θ过渡。已经考虑了转化和耗材应变能量,以便在回火过程中解释沉淀行为。

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