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Shot peening and peen forming finite element modelling-towards a quantitative method

机译:喷丸和喷丸成形有限元建模-一种定量方法

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Peen forming is commonly used on aluminium alloys in the aerospace industry for wing skin shaping. Numerous analytical, numerical, and experimental studies have been made to better understand the effects of various peening parameters on the final material state and to predict deformed shapes, but conclusions were often limited to trends. The purpose of this study is therefore to develop and verify experimentally quantitative numerical tools for peen forming applications by studying the simple case of peening an Almen-sized AA-2024 aluminium strip in an Almen holder. The first step consisted in improving an existing random dynamic model by determining optimal dimensions. The AA-2024 target mechanical behaviour was characterized experimentally and a combined isotropic-kinematic hardening law was selected to model the material behaviour. The dynamic impact model and material constitutive law provided good prediction of peening-induced stresses in thick AA-2024 for two shot velocities. The sequence-sensitive aspect of the forming process was also investigated and a new shell-based finite element model was proposed. Numerical and experimental results for three shot velocities were compared to evaluate the validity of this numerical simulation method and promising agreement was observed.
机译:在航空航天工业中铝合金上通常使用喷头成形来进行机翼蒙皮成形。为了更好地了解各种喷丸参数对最终材料状态的影响并预测变形形状,已经进行了许多分析,数值和实验研究,但结论通常仅限于趋势。因此,本研究的目的是通过研究在Almen支架中对Almen尺寸AA-2024铝带进行喷丸处理的简单案例,开发和验证用于喷丸成形应用的实验定量数值工具。第一步包括通过确定最佳尺寸来改进现有的随机动力学模型。通过实验表征了AA-2024的目标力学行为,并选择了各向同性的运动硬化定律来模拟材料的行为。动态冲击模型和材料本构关系为两次射速下AA-2024厚的喷丸引起的应力提供了良好的预测。还研究了成形过程中对序列敏感的方面,并提出了一个新的基于壳的有限元模型。比较了三种抛射速度的数值和实验结果,以评估该数值模拟方法的有效性,并观察到有希望的协议。

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