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A New Complex-valued Thermal Fracture Finite Element Method for Evaluating the Structural Integrity of Aircraft Structures

机译:一种新的复合热断裂有限元方法,用于评估飞机结构的结构完整性

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A new computational method based on the complex-variable finite element method (ZFEM) is developed for composite materials and mixed mode loading. ZFEM is employed to calculate the Energy Release Rate (ERR) for linear elastic structures and materials undergoing thermal and mechanical loading. ZFEM allows easy and precise computation of the ERR as a byproduct of the finite element analysis and it overcomes some of the limitations of current fracture techniques such as the J-integral. In contrast to the J-integral. ZFEM is contourless and does not require corrective terms when extended into new physics. ZFEM facilitates structural integrity assessments of novel materials, such as composite and functionally graded materials. The results are compared against analytical and numerical solutions to verify the validity of the method. A practical application of the method is shown by conducting a fracture analysis of a skin/stringer panel under thermal and mechanical loading.
机译:一种基于复合变量有限元方法(ZFEM)的新计算方法是为复合材料和混合模式负载开发的。使用ZFEM来计算用于接受热和机械负载的线性弹性结构和材料的能量释放速率(ERR)。 ZFEM允许简单且精确地计算ERR作为有限元分析的副产品,并且它克服了当前断裂技术的一些限制,例如J-Intional。与J-Integral相反。 ZFEM是COUNTINGLES,并且在扩展到新物理学时不需要纠正术语。 ZFEM促进了新型材料的结构完整性评估,如复合材料和功能分级材料。将结果与分析和数值解决方案进行比较,以验证该方法的有效性。通过在热和机械负载下进行皮肤/纵梁面板的断裂分析来示出该方法的实际应用。

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