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Strain Aging in Boron Alloyed Multi-Phase С- Mn – Si – Steel Wire Rod

机译:硼合金化多相С-Mn – Si –钢丝盘条的应变时效

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The specimens of C – Mn – Si - steel wire rod 5.5 mm in diameter with 0.005% B and without B additions from Moldova Steel Works had been studied. It was been established by crystallographic-geometrical analysis, that the boron atoms could be allocate in B – alloyed a – Fe only in the positions of a sub-interstitial solid solution. By study a static strain aging (SSA) and a dynamic strain aging (DSA) specimens of wire rod by C – Mn – Si - steel with B and without B (both with multi-phase (ferrite- martensite (bainite)-pearlite) microstructures) more expressed decreasing of strengthening properties and higher characteristics of ductility had been determined for C – Mn – Si - steel specimens with B. These results could be explained by “de - nitrogenous” and “de - carbonaceous” mechanisms, when boron atoms from a – Fe sub-interstitial solid solution by producing wire rod and by its strain aging thermal treatment with temperatures 150 - 450 °С generate boron- nitrogenous and boron - carbonaceous – nitrogenous precipitations. By realizing these mechanisms nitrogen and carbon atoms are partly excluded from the dislocation pinning’s process. This, in fact, explains to inhibit the development of strain aging (SSA and DSA) in boron- micro-alloyed C – Mn – Si - steel.
机译:研究了摩尔多瓦钢厂的直径5.5 mm,含0.005%B和不含B的C – Mn – Si –线材的试样。通过晶体学和几何学分析确定,硼原子只能在子间隙固溶体的位置分配在B –合金化的– Fe中。通过研究C – Mn – Si –带B和不带B(均具有多相(铁素体-马氏体(贝氏体)-珠光体)的C – Mn – Si –盘条的静态应变时效(SSA)和动态应变时效(DSA)标本)含B的C-Mn-Si-钢试样确定了表现出增强性能下降和延性较高的特征。这些结果可以用硼原子的“脱氮”和“脱碳”机理来解释。通过生产线材并在150-450°С的温度下进行应变时效热处理,从– Fe子间隙固溶体中生成硼-氮和硼-碳-氮的沉淀物。通过了解这些机制,氮和碳原子被部分排除在位错钉扎过程中。实际上,这解释了抑制微合金化的C – Mn – Si –钢中的应变时效(SSA和DSA)的发展。

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