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Fatigue Resistance and Crack Initiation Mechanisms in High-Thickness Aircraft Al-alloy and Steel Sheets after Water Jet Cutting

机译:水射流切割后高厚飞机Al合金和钢板疲劳抗性和裂纹启动机制

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摘要

Water jet cutting is an advanced technology of separating and machining materials. It is well known, however, that fatigue properties are particularly strongly affected by surface conditions and quality of surface layer. Water jet cutting was applied to two types of aircraft sheets, namely Al-alloy sheet of fairly high thickness 50.8 mm and steel sheet of thickness 25 mm. Fatigue resistance and crack initiation mechanism of the materials after the cutting were compared with those studied using a reference batch of specimens manufactured by fine milling and grinding, respectively. Character of surface damage caused by water jet cutting resulted in a considerable reduction of fatigue strength in comparison with milled or ground surface, respectively. The results are evaluated considering effects of microscopic character of surface conditions, like numerous micronotches caused by the technology used, on fatigue initiation process, as well as effects of subsurface inclusions on fatigue crack initiation and early growth.
机译:水射流切割是一种分离和加工材料的先进技术。然而,众所周知,疲劳性质受到表面条件和表面层的质量特别强烈的影响。将水射流切割应用于两种类型的飞机板,即相当高的厚度为50.8mm的Al合金板,厚度为25mm。将切割后材料的疲劳抗性和裂纹引发机理与使用精细研磨和研磨制造的参考批次进行的样品进行比较。水射流切割引起的表面损坏的性质,分别与研磨或地面的疲劳强度相当降低。考虑到表面条件的微观特征的影响,如疲劳起始过程上使用的技术,如疲劳裂纹引发和早期生长的疲劳裂纹引起的效果,评估结果。

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