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首页> 外文期刊>Journal of University of Science and Technology Beijing >Healing of hydrogen-attacked cracks in split specimens with recovering heat treatment in vacuum
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Healing of hydrogen-attacked cracks in split specimens with recovering heat treatment in vacuum

机译:真空中回收热处理,修复标本中的氢脆裂纹

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摘要

The healing mechanism of hydrogen-attacked cracks in low carbon steel and Cr-Mo steel and its influencing factors during the healing process were studied by recovering heat treatment of split specimens in vacuum. The result showed that crack pacing turns much smaller under the condition of pure heating, especially for crack tips. The healing effect is well related to the length of cracks with the shorter in priority. By the primary mechanism of thermal diffusion, iron and carbon atoms must diffuse at the high speed in steel to realize that plasticity deformation energy exceeds and overcomes surface tensile force energy. In addition, phase transformation and stress-stain relationship also have positive effects on the process.
机译:通过在真空中恢复劈裂试样的热处理,研究了低碳钢和Cr-Mo钢中氢冲击裂纹的修复机理及其影响因素。结果表明,在纯加热条件下,尤其是对于裂纹尖端,裂纹起搏变得小得多。愈合效果与裂缝的长度密切相关,优先级较短。通过热扩散的主要机理,铁和碳原子必须在钢中高速扩散,以实现可塑性变形能超过并克服表面张力能。此外,相变和应力-染色关系也对该过程产生积极影响。

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