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Crack growth analysis of room temperature rolled (RTR) 6351 Al alloys by XFEM

机译:XFEM分析室温轧制(RTR)6351铝合金的裂纹扩展

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In this paper, the crack growth simulations are performed using extended finite element method (XFEM) on bulk, 40% and 70% room temperature rolled (RTR) 6351 Al-alloy. The properties obtained through experimentation are used for crack growth analysis. The fracture energy obtained by Charpy impact test is used as crack growth criterion for elasto-plastic crack growth simulations. The micro-structural characterisation of bulk and RTR Al-alloy is examined through optical microscope. After 40% and 70% thickness reductions, the decrease in grain size of the alloy is observed through optical micrographs. An improvement in mechanical properties has been observed for RTR samples through tensile and Charpy impact testing. The goal of this paper is to compare the fracture behaviour of as received and RTR 6351 Al alloy because it has been observed that even high strength materials may fail when loaded below their normal strength because of presence of cracks.
机译:在本文中,使用扩展有限元方法(XFEM)对散装,40%和70%室温轧制(RTR)6351铝合金进行了裂纹扩展模拟。通过实验获得的性能用于裂纹扩展分析。通过夏比冲击试验获得的断裂能被用作弹塑性裂纹扩展模拟的裂纹扩展标准。通过光学显微镜检查了块状和RTR铝合金的微观结构特征。在减少40%和70%的厚度后,可通过光学显微照片观察到合金晶粒尺寸的减小。通过拉伸和夏比冲击试验,已观察到RTR样品的机械性能有所改善。本文的目的是比较RTR 6351铝合金和RTR 6351铝合金的断裂行为,因为已经观察到,即使高强度材料在低于正常强度的情况下加载也会由于裂纹而失效。

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