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首页> 外文期刊>Journal of Failure Analysis and Prevention >Life Assessment and Crack Growth Properties of Laser Cut Dual-Phase Steel
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Life Assessment and Crack Growth Properties of Laser Cut Dual-Phase Steel

机译:激光切割双相钢的寿命评估和裂纹扩展性能

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The effect of laser cut-edges has been studied as a method for producing an optimum fatigue life performance of advanced high-strength steel. During this study, DP600 high-strength steel laser cut-edges have been fatigue tested under S-N and E-N fatigue loading regimes. The cut-edge surface characteristic properties and internal metallurgical alterations have been observed to directly influence fatigue life of the steel. This paper has investigated the crack initiation and growth properties of the initial crack to mode two. It is shown that alterations in the surface properties can be harnessed so that beneficial properties can be produced to retard crack initiation. It was determined that the laser power and cutting speed can be used independently to produce the appropriate balance between microstructure and optimum surface properties. Optimal fatigue lives were attained by minimizing the laser cut-edge surface damage, maintaining the formation of wide area striations and by forming a uniform layer of martensitic material close to the cut-edge. These results suggest that laser cutting can be used to enhance the fatigue life to failure of fracture-sensitive steel grades.
机译:作为先进的高强度钢的最佳疲劳寿命性能的一种方法,已经研究了激光尖端的影响。在这项研究中,DP600高强度钢激光尖端已在S-N和E-N疲劳载荷制度下进行了疲劳测试。观察到尖端的表面特性和内部的冶金变化直接影响了钢的疲劳寿命。本文研究了第二种模式下初始裂纹的裂纹萌生和扩展特性。结果表明,可以利用表面性质的改变,从而可以产生有益的性质来延迟裂纹的产生。已确定可以单独使用激光功率和切割速度来在微观结构和最佳表面性能之间产生适当的平衡。通过最大程度地减少激光切割边缘表面的损伤,保持宽条纹的形成并在切割边缘附近形成均匀的马氏体材料层,可以获得最佳的疲劳寿命。这些结果表明,激光切割可用于延长疲劳寿命,直到断裂敏感性钢种失效。

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