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Effect of post-processing annealing treatments on microstructure development and hydrogen embrittlement in API 5L X70 pipeline steel

机译:后处理退火处理对API 5L X70管道钢组织显影和氢脆的影响

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The mechanical properties of steels are strongly influenced by microstructure and texture developed during thermomechanical processing. Here, different annealing treatments have been performed on pipeline steel at inter-critical temperatures. The aim of this study is to relate hydrogen embrittlement behavior to the microstructural characteristics obtained through one-step, and two-step annealing treatments. Similar grain orientation distributions were observed after the initial hot rolling and the two-step annealing procedures. However, in the later process a dual-phase (i.e. ferrite-martensite) structure was formed; unlike in the starting material where only segregated patches of martensite were observed within a ferritic microstructure. The one-step treated steel was comprised of relatively large and primarily ferrite grains. As a result, the preliminary processing revealed the highest strength, with reduced ductility. The one-step treatment lowered strength and ductility. Although the two-step treated steel showed the lowest strength, it was the most ductile with improved resistance to hydrogen embrittlement. The tempering operation introduced in the two-step process created minimal strain and tempered martensite inside the steel. This reduced the tendency for hydrogen damage. A direct relationship was established between high tensile strength and increased embrittlement risks. Lowering the strength and hardness through double heat treatment cycles delayed the onset of cracking after pre-hydrogen charging.
机译:钢的机械性能受到热机械加工过程中显微结构和纹理的强烈影响。这里,在临界间温度下对管道钢进行了不同的退火处理。本研究的目的是将氢气脆化行为与一步获得的微观结构特征联系起来,两步退火处理。在初始热轧和两步退火程序之后观察到类似的晶粒取向分布。然而,在后来的过程中,形成了双相(即铁氧体 - 马氏体)结构;与起始材料不同,其中在铁素体微结构内仅观察到偏析马氏体的斑块。单步经处理的钢由相对大的和主要是铁素体晶粒组成。结果,初步处理显示出最高强度,延展性降低。一步处理降低强度和延展性。虽然两步处理钢显示出最低的强度,但它是最大的延展性,具有改善的耐氢脆性。两步过程中引入的回火操作在钢中产生了最小的应变和钢化马氏体。这降低了氢气损伤的趋势。在高拉伸强度和增加的脆性风险之间建立了直接关系。通过双热处理循环降低强度和硬度延迟了氢气预热后裂化的发作。

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