Ductility Loss due to Dynamic Strain Aging in Heat-Affected Zone of High Strength Low Alloy Steel

Y. Kikuta, T. Araki, M. Yoneda, K. Yasuda, K. Matsueda
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Abstract

When tensile tests on mild steel are carried out at various temperatures, the serrated yielding and flow are observed at a certain testing temperature range, specially 100-300°C, and the consequent em-brittlement occurs. This phenomenon is generally known as a blue brittleness or a dynamic strain aging and is related to testing temperature, solute atom contents (carbon and/or nitrogen contents), strain rate and so forth.On the other hand, for base metal of QT-type high strength low alloy steels in which solute atoms such as carbon and nitrogen are fixed as carbide, nitride or carbo-nitride by heat treatment, such embrit-tlement seems to be not apt to occur comparatively. But, even if QT-type steels, there is a possibility of dynamic strain aging in heat-affected zone (HAZ) because of the above carbide, nitride or carbo-nitride dissolving by welding heats, and the consequent embrittlernent.This study was investigated about the ductility loss due to dynamic strain aging in HAZ of a 80 kg/mm2 class high strength low alloy steel.It is found by this study that dynamic strain aging and, thus, the ductility loss can occur in HAZ even if QT-type steels. The degree of ductility loss is increased in the order of upper bainite, lower bainite and martensite structure.These results can be qualitatively interpreted by considering as interaction between dislocations and solute atoms, specifically nitrogen atoms rather than carbon atoms.Transformed HAZ, which is heated above 1200°C and has martensite structure and, thus, a high content of free nitrogen atoms, is sensitive to ductility loss due to dynamic strain aging as well as the deterioration of grain coarsened HAZ toughness.
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高强度低合金钢热影响区动态应变时效引起的延性损失
在不同温度下对低碳钢进行拉伸试验时,在一定的试验温度范围内,特别是在100-300℃,观察到锯齿状的屈服和流动,并产生脆脆。这种现象通常被称为蓝脆性或动态应变老化,它与测试温度、溶质原子含量(碳和/或氮含量)、应变速率等有关。另一方面,对于通过热处理将碳、氮等溶质原子固定为碳化物、氮化物或碳氮化物的qt型高强度低合金钢的母材,这种脆性元素似乎相对不易发生。但是,即使是qt型钢,由于上述碳化物、氮化物或碳氮化物在焊接热影响区溶解,以及随之而来的脆化,也有可能在热影响区发生动态应变时效。研究了80 kg/mm2级高强度低合金钢在热影响区动态应变时效引起的塑性损失。本研究发现,即使是qt型钢,在热影响区也会发生动态应变时效,从而导致塑性损失。塑性损失程度依次为上贝氏体、下贝氏体和马氏体组织。这些结果可以定性地解释为位错与溶质原子,特别是氮原子而不是碳原子之间的相互作用。相变HAZ加热到1200℃以上,具有马氏体组织,因此自由氮原子含量高,对动态应变时效造成的塑性损失和晶粒粗化HAZ韧性的恶化很敏感。
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