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Characterizing the biaxial compressive deformation behavior of epoxy polymer through cruciform experiment and finite element analysis

机译:通过十字形实验和有限元分析表征环氧聚合物的双轴压缩变形行为

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The multiaxial deformation behaviors of amorphous epoxy polymers were characterized using planar biaxial compression tests and finite element (FE) analyses of cruciform specimens. The multiaxial limit of elastic deformation was investigated considering buckling instability of the planar biaxial compression tests. An offset -based yield criterion was proposed to determine the initial yield surface considering the nonlinear elastic deformation characteristics observed in the deformation tests. An FE analysis confirmed using the results of the tests revealed that the proposed method captured the initial multiaxial yielding in the central gauge of the specimen, demonstrating that existing pressure-dependent classical yield functions, such as the paraboloidal and conical yield functions, cannot appropriately describe the initial yield surface of the epoxy polymer. The yield function previously customized from molecular dynamics (MD) data exhibited a relatively good agreement with the initial yield surface. The determined shape of the initial yield surface and its agreement with the MD data-driven yield function were not consistently maintained during subsequent yielding. The results indicate that a new customized yield function properly describing the broader initial yield surface than those of the classical yield functions and its shape transition to plastic behavior is necessary to accurately reflect the entire multiaxial deformation behavior.
机译:采用平面双轴压缩试验和十字形试样有限元(FE)分析表征了无定形环氧聚合物的多轴变形行为。研究了考虑平面双轴压缩试验屈曲不稳定性的弹性变形的多轴极限。提出了一种基于偏移的屈服准则,用于确定变形试验中观察到的非线性弹性变形特性的初始屈服面。使用测试结果确认的有限元分析表明,所提出的方法捕获了试样中心规格的初始多轴屈服,表明现有的压力相关经典屈服函数,如抛物面和圆锥屈服函数,不能适当地描述环氧聚合物的初始屈服表面。先前根据分子动力学(MD)数据定制的屈服函数与初始屈服面表现出相对良好的一致性。在随后的屈服过程中,初始屈服面的确定形状及其与MD数据驱动的屈服函数的一致性并不一致。结果表明,为了准确反映整个多轴变形行为,需要一种新的定制屈服函数来正确描述比传统屈服函数更宽的初始屈服面及其向塑性行为的形状过渡。

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