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Effect of welding heat input on microstructures and toughness in simulated CGHAZ of V-N high strength steel

机译:焊接热输入对V-N高强度钢模拟CGHAZ组织和韧性的影响

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For the purpose of obtaining the appropriate heat input in the simulated weld CGHAZ of the hot-rolled V-N microalloyed high strength S-lean steel, the microstructural evolution, hardness, and toughness subjected to four different heat inputs were investigated. The results indicate that the hardness decreases with increase in the heat input, while the toughness first increases and then decreases. Moderate heat input is optimum, and the microstructure is fine polygonal ferrite, granular bainite, and acicular ferrite with dispersive nano-scale V(C,N) precipitates. The hardness is well-matched with that of the base metal. Moreover, the occurrence of energy dissipating micromechanisms (ductile dimples, tear ridges) contributes to the maximum total impact energy. The detrimental effect of the free N atoms on the toughness can be partly remedied by optimizing the microstructural type, fraction, morphologies, and crystallographic characteristics. The potency of V(C,N) precipitates on intragranular ferrite nucleation without MnS assistance under different heat inputs was discussed.
机译:为了在热轧V-N微合金高强度S贫钢的模拟焊缝CGHAZ中获得合适的热输入,研究了四种不同热输入下的组织演变,硬度和韧性。结果表明,硬度随着热量输入的增加而降低,而韧性则先增加然后降低。适度的热量输入是最佳的,其微观结构为细小的多边形铁素体,粒状贝氏体和针状铁素体,具有分散的纳米级V(C,N)析出物。硬度与母材的硬度非常匹配。此外,耗能的微机制(延性凹痕,撕裂脊)的出现有助于最大的总冲击能。游离N原子对韧性的有害影响可以通过优化微观结构类型,级分,形态和晶体学特征来部分弥补。讨论了在不同的热输入下,在没有MnS辅助的情况下,V(C,N)沉淀在晶粒内铁素体形核上的效力。

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