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Investigation on the mechanical properties of epoxy resin with void defects using digital image correlation and image-based finite element method

机译:使用数字图像相关性和基于图像的有限元方法对空隙缺陷的环氧树脂力学性能研究

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摘要

Fiber-reinforced polymer composite structures are increasingly used as load-bearing components in aerospace and automotive industries. The precise mechanical properties of composites are essential for structural design and analysis. Void defects, which are caused by the curing process of resin matrix, greatly impact the overall performance of composite structures. In this study, a novel image-based finite element modeling algorithm is proposed to acquire the real three-dimensional topography of void defects, including micro X-ray computed tomography scanning, image processing, non-uniform rational B-spline reconstruction and Boolean logic operation. This new algorithm can solve the reconstruction of blurry tomographic slices. Epoxy resin specimens embedded with a low-density expanded polystyrene bead as void defect were fabricated and tested with a digital image correlation system. By using the developed modeling method, the effects of void defect on the ultimate strength, Young's modulus, damage mode and strain field distribution of specimens were analyzed and compared with experimental data. Results revealed that the real geometry of the void defect must be accounted for to obtain the maximum stress accurately.
机译:纤维增强的聚合物复合结构越来越多地用作航空航天和汽车工业的承载部件。复合材料的精确机械性能对于结构设计和分析至关重要。空隙缺陷,这是由树脂基质的固化过程引起的,极大地影响了复合结构的整体性能。在本研究中,提出了一种新颖的基于图像的有限元建模算法来获取空隙缺陷的真正三维形貌,包括微X射线计算机断层扫描,图像处理,非均匀Rational B样条重建和布尔逻辑手术。这种新的算法可以解决模糊断层切片的重建。用数字图像相关系统制造和测试嵌入低密度膨胀聚苯乙烯珠的环氧树脂样品作为空隙缺陷。通过使用开发的建模方法,分析了空隙缺陷对最终强度,杨氏模量,损伤模式和标本的应变场分布的影响,并与实验数据进行了比较。结果表明,必须考虑空隙缺陷的真实几何形状以准确地获得最大压力。

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