首页> 外文会议>International Conference on Shock amp; Impact Loads on Structures; 20071017-19; Beijing(CN) >A NEW TECHNOLOGY OF LOCAL EXPLOSION SHOCK WAVE DEFORMATION FOR IMPROVING WELDED JOINT TOUGHNESS BEFORE WELDING
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A NEW TECHNOLOGY OF LOCAL EXPLOSION SHOCK WAVE DEFORMATION FOR IMPROVING WELDED JOINT TOUGHNESS BEFORE WELDING

机译:焊接前局部焊接冲击波变形的新技术

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It is well known that the toughness of HAZ was damaged after steels were experienced welding thermal cycles. Compared with weld metals, the toughness in HAZ is difficult to control and adjust. In order to meet the requirement for more and more high toughness in HAZ, generally such measures are taken to remarkably increase the toughness of parent metals in the production of steels that the toughness in HAZ would be lift to some degree simultaneously. But these measures are not economical and will take much time. In addition, the most position in the structures made by these steels is too enough to be wasted according to design specification.In order to overcome these shortages, a new technology, local explosion pre-treatment was developed to locally improve the worst HAZ, which make HAZ be subjected to explosive shock wave deformation before welding. In these local zones,highly density of sub structure defects such as dislocations and defaults and twins are generated and homogeneously distributed, so these defects will be helpful to the improvement of toughness in HAZ as following factors: ● To refine the grain sizes because these defects become as the nuclear of re-crystallization. ● To fasten carbon diffusion which makes transformation more homogeneous and equilibrium. ● To fasten hydrogen transmission from weld metal to parent metal to avoid cold cracking in HAZ and Weld metal.
机译:众所周知,在钢经历了焊接热循环后,HAZ的韧性被破坏了。与焊接金属相比,HAZ的韧性难以控制和调整。为了满足HAZ中越来越高的韧性的要求,通常采取这样的措施来显着提高钢生产中的母体金属的韧性,以使HAZ中的韧性同时提高到一定程度。但是这些措施并不经济,将花费很多时间。此外,这些钢在结构中的最高位置已不足以根据设计规范浪费。为了克服这些不足,开发了一种新技术,即局部爆炸预处理以局部改善最恶劣的HAZ,使热影响区在焊接前经受爆炸冲击波变形。在这些局部区域中,产生了高密度的亚结构缺陷,如位错,默认和孪晶并均匀分布,因此,这些缺陷将有助于改善热影响区的韧性,其原因如下:●细化晶粒尺寸,因为这些缺陷成为重结晶的核。 ●加快碳扩散,使转化更加均匀和平衡。 ●加快氢从焊缝金属到母材的传输,避免热影响区和焊缝金属发生冷裂。

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