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Development of the SAW Wire for High Strength TMCP Steel

机译:高强度TMCP钢锯线的开发

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The wire for high strength and toughness TMCP steels of submerged arc welding was developed. The low carbon and micro-alloying with Ti-B system was adopted to obtain the acicular ferrite dominated deposited metals. Experimental results show that the carbon equivalent (P_(cm)) should be higher than 0.17, which can ensure the high strength and high toughness of the deposited metals. In the alloy system, Oxygen and Nitrogen contents, micro-alloyed elements (C, Mn) and its mixture ratio are the key factors that affect the deposited metals toughness. With increasing C, Mn content, the acicular ferrite is increased and toughness is improved. Oxygen and Nitrogen are deleterious to the toughness of deposited metals.
机译:开发了浸没电弧焊接的高强度和韧性TMCP钢的高强度和韧性TMCP钢丝。 采用与Ti-B系统的低碳和微合金化用于获得针状铁氧体占主导地位的沉积金属。 实验结果表明,碳当量(P_(cm))应高于0.17,可确保沉积金属的高强度和高韧性。 在合金系统中,氧气和氮含量,微合金元素(C,Mn)及其混合比是影响沉积金属韧性的关键因素。 随着C,Mn含量的增加,针状铁氧体增加,韧性得到改善。 氧气和氮气对沉积金属的韧性有害。

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