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Microstructure and Properties of Weld CGHAZ under Different Heat Input for X90 Pipeline Steel

机译:X90管线钢在不同热输入下的焊接CGHAZ组织和性能。

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摘要

Two kinds of industry trial X90 pipeline steels which have different chemical composition were chosen as test objects, and the grain coarsening, microstructural characteristics and the variation rules of low-temperature impact toughness in weld CGHAZ of this two steel under different welding heat input were studied by physical thermal simulation technology, SEM, optical microscope and Charpy impact tests. The results showed that the microstructure in weld CGHAZ of 1# steel was mainly bainite ferrite(BF) and most of the M/A constituents were blocky or short rod-like; the grains of 2# steel were coarse and there was much granular bainite(GB). Meanwhile M/A constituents became coarser and their morphology changed from block to long bar; alloy content of X90 pipeline steel under different weld heat input had great effect on the grain size of original austenite. When heat input was lower than 20KJ/cm, the impact toughness in CGHAZ of lower alloy content pipeline steel was good; as heat input increased, impact toughness in CGHAZ of 1# steel increased to the values between 260J and 300J when heat input was between 20KJ/cm and 25KJ/cm and the dispersion of impact energy was small. The impact toughness of 2# steel decreased gradually and the impact energy had the obvious dispersion.
机译:选择两种化学成分不同的工业试验X90管线钢作为试验对象,研究了这两种钢在不同焊接热输入下的晶粒粗化,显微组织特征以及焊缝CGHAZ的低温冲击韧性变化规律。通过物理热模拟技术,SEM,光学显微镜和夏比冲击试验。结果表明:1#钢焊缝CGHAZ组织主要为贝氏体铁素体(BF),大部分M / A成分为块状或短棒状。 2#钢的晶粒较粗,贝氏体(GB)较多。同时,M / A成分变得更粗糙,并且其形态从块状变为长条状。 X90管线钢在不同焊接热输入下的合金含量对原始奥氏体晶粒尺寸影响很大。当热量输入低于20KJ / cm时,低合金含量管线钢的CGHAZ冲击韧性良好。随着热量输入的增加,当热量输入在20KJ / cm和25KJ / cm之间时,1#钢CGHAZ的冲击韧性增加到260J和300J之间,冲击能量的散布很小。 2#钢的冲击韧性逐渐降低,冲击能有明显的分散。

著录项

  • 来源
    《Materials science forum》 |2016年第2016期|943-949|共7页
  • 作者单位

    China Petroleum Pipeline Research Institute, Langfang 065000, China National Engineering Laboratory for Pipeline Safety, Langfang 065001, China;

    China Petroleum Pipeline Research Institute, Langfang 065000, China National Engineering Laboratory for Pipeline Safety, Langfang 065001, China;

    China Petroleum Pipeline Research Institute, Langfang 065000, China National Engineering Laboratory for Pipeline Safety, Langfang 065001, China;

    China Petroleum Pipeline Research Institute, Langfang 065000, China National Engineering Laboratory for Pipeline Safety, Langfang 065001, China;

    China Petroleum Pipeline Research Institute, Langfang 065000, China National Engineering Laboratory for Pipeline Safety, Langfang 065001, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    X90 pipeline steel; Physical thermal simulation; Heat input; Microstructure and toughness;

    机译:X90管线钢;物理热模拟;热输入;显微组织和韧性;

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