首页> 外文会议>International Conference on Proceeding amp; Manufacturing of Advanced Materials; 20060704-08; Vancouver(CA) >Transformation and Precipitation Behavior in the New Conceptual TMCP Process Utilizing Heat Treatment On-line Process
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Transformation and Precipitation Behavior in the New Conceptual TMCP Process Utilizing Heat Treatment On-line Process

机译:利用热处理在线过程的新概念TMCP过程中的相变和析出行为

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New conceptual TMCP process for manufacturing high strength steel plates, which is applied an on-line heat treatment immediately after accelerated cooling (ACC), was developed. Transformation and precipitation behavior in the new TMCP process was investigated and compared with those in conventional ACC process and quenching and tempering process (Q+T). In the ACC process and Q+T process, microstructures were consisted of bainitic ferrite and second phase, such as cementite or martensite-austenite constituent (MA). And fine carbides, which were formed randomly, were observed in Q+T steel. On the other hand, in the new TMCP process polygonal ferrite was observed in addition to bainitic ferrite and cementite, and two kinds of precipitation forms, random precipitation and row precipitation, were observed. It was found that ferrite transformation is promoted during heating after accelerated cooling, which brings row precipitation of fine carbides. Furthermore, Control of the formation of MA this new TMCP process. In the conventional ACC process, MA constituents are formed from carbon enriched untransformed austenite during air cooling after ACC, and formation of MA is hard to prevent for higher strength steels. On the other hand, carbon enrichment to untransformed austenite can be prevented by carbide formation during on-line heat treatment after ACC. It was demonstrated that homogeneous microstructure with very low amount of MA constituents was achieved by the new TMCP process. And, absence of brittle phase brought excellent resistance to hydrogen induced cracking in NACE sour environment. In this paper, details of the metallurgical and mechanical feature of this new TMCP steel were discussed, and application to sour resistant linepipe steel was introduced.
机译:开发了用于制造高强度钢板的新概念性TMCP工艺,该工艺在加速冷却(ACC)之后立即进行在线热处理。研究了新的TMCP工艺中的相变和沉淀行为,并将其与常规ACC工艺和淬火和回火工艺(Q + T)中的相比较。在ACC工艺和Q + T工艺中,显微组织由贝氏体铁素体和第二相组成,例如渗碳体或马氏体-奥氏体成分(MA)。在Q + T钢中观察到随机形成的细碳化物。另一方面,在新的TMCP工艺中,除了贝氏体铁素体和渗碳体以外还观察到多边形铁素体,并且观察到两种沉淀形式,即随机沉淀和行沉淀。发现在加速冷却后的加热过程中促进了铁素体的转变,这导致细碳化物的行析出。此外,控制MA形成了这个新的TMCP过程。在传统的ACC工艺中,MA成分是在ACC后的空气冷却期间由富含碳的未变形奥氏体形成的,并且对于高强度钢很难防止MA的形成。另一方面,通过在ACC之后的在线热处理期间碳化物的形成可以防止碳富集到未转变的奥氏体。结果表明,新的TMCP工艺可实现具有非常低的MA成分的均质微观结构。而且,脆性相的缺乏在NACE酸性环境中具有极好的抗氢致裂纹的能力。本文详细讨论了这种新型TMCP钢的冶金和力学性能,并介绍了其在耐酸管线管钢中的应用。

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