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Verification and validation of residual stresses in composite structures

机译:验证和验证复合结构中的残余应力

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Process-induced residual stresses occur in composite structures composed of dissimilar materials. As these residual stresses could result in fracture, their consideration when designing composite parts is necessary. However, the experimental determination of residual stresses in prototype parts can be time and cost prohibitive. Alternatively, it is possible for computational tools to predict potential residual stresses. Therefore, the objectives of the presented work are to demonstrate an efficient method for simulating residual stresses in composite parts, as well as the potential value of statistical methods during analyses for which material properties are unknown. Specifically, a simplified residual stress modeling approach is implemented within Sandia National Laboratories' SIERRA/SolidMechanics code. Concurrent with the model development, bi-material composite structures are designed and manufactured to exhibit significant residual stresses. Then, the presented modeling approach is rigorously verified and validated through simulations of the bi-material composite structures' manufacturing processes, including a mesh convergence study, sensitivity analysis, and uncertainty quantification. The simulations' final results show adequate agreement with the experimental measurements, indicating the validity of a simple modeling approach, as well as a necessity for the inclusion of material parameter uncertainty in the final residual stress predictions.
机译:过程引起的残余应力出现在由不同材料组成的复合结构中。由于这些残余应力可能导致断裂,因此在设计复合零件时必须考虑它们。但是,实验确定原型零件中的残余应力可能会浪费时间和成本。备选地,计算工具可以预测潜在的残余应力。因此,本文工作的目的是演示一种有效的方法,用于模拟复合材料零件中的残余应力,以及在分析材料特性未知的过程中统计方法的潜在价值。具体而言,在Sandia National Laboratories的SIERRA / SolidMechanics代码中实施了简化的残余应力建模方法。与模型开发同时,设计和制造双材料复合结构以显示出显着的残余应力。然后,通过模拟双材料复合结构的制造过程,包括网格收敛研究,灵敏度分析和不确定性量化,对提出的建模方法进行了严格的验证和验证。模拟的最终结果与实验测量结果充分吻合,表明了简单建模方法的有效性,并且在最终残余应力预测中必须包括材料参数不确定性。

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