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首页> 外文期刊>Journal of Computer-Aided Materials Design >Computer-aided design of transformation toughened blast resistant naval hull steels: Part I
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Computer-aided design of transformation toughened blast resistant naval hull steels: Part I

机译:相变增韧防爆船体钢的计算机辅助设计:第一部分

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A systematic approach to computer-aided materials design has formulated a new class of ultratough, weldable secondary hardened plate steels combining new levels of strength and toughness while meeting processability requirements. A theoretical design concept integrated the mechanism of precipitated nickel-stabilized dispersed austenite for transformation toughening in an alloy strengthened by combined precipitation of M_2C carbides and BCC copper both at an optimal approx 3 nm particle size for efficient strengthening. This concept was adapted to plate steel design by employing a mixed bainitic/martensitic matrix microstructure produced by air-cooling after solution-treatment and constraining the composition to low carbon content for weldability. With optimized levels of copper and M_2C carbide formers based on a quantitative strength model, a required alloy nickel content of 6.5 wt percent was predicted for optimal austenite stability for transformation toughening at the desired strength level of 160 ksi (1,100 MPa) yield strength. A relatively high Cu level of 3.65 wt percent was employed to allow a carbon limit of 0.05 wt percent for good weldability, without causing excessive solidification microsegregation.
机译:一种系统的计算机辅助材料设计方法已制定出一类新的超韧性,可焊接的二次硬化钢板,在满足可加工性要求的同时,结合了新的强度和韧性水平。一个理论设计概念整合了沉淀的镍稳定的分散奥氏体在合金中的相变增韧机理,该合金是通过M_2C碳化物和BCC铜在最佳约3 nm的最佳粒径下联合沉淀而得到强化的,从而有效地进行了强化。通过采用固溶处理后通过空气冷却产生的贝氏体/马氏体混合显微组织,并将该组合物的碳含量限制在较低的范围内,以实现可焊接性,该概念适用于钢板设计。在基于定量强度模型的铜和M_2C碳化物形成剂的最佳含量的情况下,预计在要求的屈服强度为160 ksi(1100 MPa)时,要求的合金镍含量为6.5 wt%,以获得最佳的奥氏体稳定性以实现相变增韧。为了获得良好的可焊接性,采用相对较高的Cu含量为3.65%(重量)以允许碳含量限制为0.05%(重量),而不会引起过多的固化微偏析。

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