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OPTIMUM DESIGN AND DEVELOPMENT OF HIGH STRENGTH AND TOUGHNESS WELDING WIRE FOR PIPELINE STEEL

机译:管钢高强度和韧性焊丝的优化设计与开发

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Pipeline steel with higher strength (>800MPa) has been gradually used in recent years, so how to achieve good match of base metal and weld deposit is very important for its practical application. Based on the alloy system of 0.02-0.04%C, 2.0%Mn and 0.5%Si, four different kinds of welding wires were designed and produced. The effects of alloy elements on phase transformation and mechanical properties were analyzed. Experimental results show that the designed steels with the addition of 2-4% Ni+Cr+Mo and <0.2% Nb+V+Ti have high strength (>800MPa) and good elongation (>15%). The microstructure of deposits metal is mainly composed of granular bainite and M-A constituents with the mean size of 0.2-07μm are dispersed on ferritic matrix. The deposited metals have good match of strength (>800MPa) and impact toughness (>130J) which well meet the requirement of pipeline welding.
机译:近年来,具有更高强度(> 800MPA)的管道钢已逐渐使用,因此如何实现基础金属和焊接矿床的良好比赛对其实际应用非常重要。基于0.02-0.04%C,2.0%Mn和0.5%Si的合金系统,设计并生产了四种不同种类的焊丝。分析了合金元素对相变性和机械性能的影响。实验结果表明,设计钢的加入2-4%Ni + Cr + Mo和<0.2%Nb + V + Ti具有高强度(> 800MPa)和良好的伸长率(> 15%)。沉积金属的微观结构主要由粒状贝氏体和M-A成分组成,平均尺寸为0.2-07μm,分散在铁素体基质上。沉积的金属具有良好的强度(> 800MPa)和冲击韧性(> 130J)的良好匹配,这符合管道焊接的要求。

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