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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Microstructure, hardness and residual stress distribution of dissimilar metal electron beam welds: maraging steel and high strength low alloy steel
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Microstructure, hardness and residual stress distribution of dissimilar metal electron beam welds: maraging steel and high strength low alloy steel

机译:异种金属电子束焊缝的马氏体时效钢和高强度低合金钢的组织,硬度和残余应力分布

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摘要

The present investigation reports on a study that has been taken up to develop an understanding of the electron beam welding characteristics of similar and dissimilar combination of maraging steel and high strength low alloy steel, which are in the hardened condition, i.e. maraging steel, in a solution that was in treated and aged condition, whereas high strength low alloy steel in a quenched and tempered condition before welding. The joint characterisation studies include microstructural examination, microhardness survey across the weldment and measurement of residual stresses. Maraging steel weld metal is under compressive stress rather than tensile stress as observed in low alloy steel welds because the martensite transformation occurs at a relatively low temperature. It has been observed that, in dissimilar metal welds, tensile stress is observed at the fusion boundary of low alloy steel and weld metal, whereas compressive stress is obtained at the location between weld and maraging steel fusion boundary. Dissimilar weldment contains a soft region beside the interface on maraging steel side because of the diffusion of manganese from low alloy steel towards maraging steel. The observed residual stresses, hardness distribution across the similar and dissimilar metal welds are correlated with the observed microstructures.
机译:本研究报告进行了一项研究,以深入了解马氏体时效钢和高强度低合金钢在硬化状态下的相似和不相似组合(即马氏体时效钢)的电子束焊接特性。溶液经过处理和时效处理,而高强度低合金钢在焊接前处于淬火和回火状态。联合表征研究包括显微组织检查,焊件的显微硬度调查和残余应力的测量。与低合金钢焊缝中观察到的一样,马氏体时效钢焊缝金属承受的是压缩应力而不是拉伸应力,因为马氏体转变发生在相对较低的温度下。已经观察到,在不同的金属焊缝中,在低合金钢和焊缝金属的熔合边界处观察到拉伸应力,而在焊缝和马氏体时效钢的熔合边界之间的位置处获得压应力。由于锰从低合金钢向马氏体时效钢的扩散,异种焊件在马氏体时效钢一侧的界面旁包含一个软区。在相似和不相似的金属焊缝上观察到的残余应力,硬度分布与观察到的微观结构相关。

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