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Unveiling 3D Deformations in Polymer Composites by Coupled Micro X-Ray Computed Tomography and Volumetric Digital Image Correlation

机译:耦合微X射线计算机断层扫描和体积数字图像相关技术揭示聚合物复合材料中的3D变形

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摘要

A new method combining micro-X-ray computed tomography (mu XCT) and volumetric digital image correlation (V-DIC) in conjunction with in-situ mechanical testing was used to probe three-dimensional (3D) deformation behavior in a friction stir blind rivet (FSBR) joint of carbon fiber reinforced polymer (CFRP) composite. Intrinsic microstructural features such as fibers, pores and metal inclusions enabled accurate volumetric strain calculation of dense fiber reinforced polymer composites using V-DIC without the need for high-contrast additives. Deformation calculated with V-DIC was employed to determine variation of local mechanical properties within the FSBR altered stir-zone microstructure. Unique deformation mechanisms such as internal interfacial shear and microstructure-dependent local buckling were observed in situ. The obtained 3D microscale strain maps revealed that the deformation behavior in joint-affected zones was fundamentally different from that of the bulk composite. Combined mu XCT and V-DIC were shown to be effective for understanding 3D microscale deformations in composites.
机译:将微X射线计算机断层扫描(mu XCT)和体积数字图像相关性(V-DIC)与原位机械测试相结合的新方法用于探测摩擦搅拌百叶窗中的三维(3D)变形行为碳纤维增强聚合物(CFRP)复合材料的铆钉(FSBR)接头。固有的微观结构特征(如纤维,孔洞和金属夹杂物)使使用V-DIC的致密纤维增强聚合物复合材料的体积应变精确计算成为可能,而无需使用高对比度添加剂。用V-DIC计算的变形被用来确定FSBR改变的搅拌区微观结构内局部机械性能的变化。原位观察到独特的变形机制,例如内部界面剪切和依赖于微结构的局部屈曲。所获得的3D微观应变图显示,在受关节影响的区域中的变形行为与本体复合材料的行为根本不同。结合使用mu XCT和V-DIC可以有效地理解复合材料中的3D微观形变。

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