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Isothermal Transformation Products in a Cu-bearing High Strength Low Alloy Steel

机译:含铜高强度低合金钢的等温转变产物

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A time-temperature-transformation (TTT) diagram has been determined for a copper-bearing steel, which is a low alloy TMCP variant of the ASTM A710 type of structural steel. Quantitative measurements have been supplemented by optical microscopy and transmission electron microscopy to investigate the isothermal transformation behaviour as well as the associated precipjtate morphologies. It is shown that the kinetics and product phases of the polymorphic transformation and precipitation reactions are sensitive to both temperature and time. The TTT-diagram shows a prominent transformation region for bainitic structures, at temperatures intermediate between those of polygonal ferrite and martensite. In the intermediate region, the microstructures were characterised by a ferritic matrix with a lath and/or plate shaped grains containing a high dislocation density, together with a minor dispersed "island" phase. For a short holding time (5 sec) at intermediate temperatures (580-430℃), the island phase was identified as untempered twinned and lath martensite, autotempered twinned and lath martensite, and martensite/austenite constituent, depending on the level of carbon partitioning in the remaining austenite before quenching in water. For a longer holding time, the carbon enriched austenite regions decomposed to carbide and ferrite by coupled growth. Polygonal and quasi-polygonal ferrite were formed at relatively high transformation temperatures and these micro-structures contained a low dislocation density and were associated with interphase ε-copper precipitates.
机译:已经确定了含铜钢的时间-温度转变(TTT)图,该铜是ASTM A710型结构钢的低合金TMCP变体。光学显微镜和透射电子显微镜已对定量测量进行了补充,以研究等温转变行为以及相关的沉淀形态。结果表明,多晶型转变和沉淀反应的动力学和产物阶段对温度和时间均敏感。 TTT图在贝氏体铁素体和马氏体的中间温度下显示出贝氏体组织的明显转变区域。在中间区域,显微组织的特征是铁素体基体,其板条和/或板状晶粒含有高位错密度以及少量分散的“岛”相。在中间温度(580-430℃)下短时间保持(5秒),根据碳分配水平,岛相被确定为未回火的孪晶和板条马氏体,自回火的孪生和板条马氏体以及马氏体/奥氏体组成在剩余的奥氏体中加入水淬火。对于更长的保持时间,富碳奥氏体区域通过耦合生长分解为碳化物和铁素体。多边形和准多边形铁素体是在较高的转变温度下形成的,这些微结构的位错密度低,并且与相间的ε-铜沉淀有关。

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