论文标题

三维上空角度互锁编织材料的弹性和断裂行为:厚度,尺寸效应和多轴测试

Elastic and Fracture Behavior of Three-Dimensional Ply-to-Ply Angle Interlock Woven Composites: Through-Thickness, Size Effect, and Multiaxial Tests

论文作者

Li, Weixin, Qiao, Yao, Fenner, Joel, Warren, Kyle, Salviato, Marco, Bazant, Zdenek P., Cusatis, Gianluca

论文摘要

这项工作介绍了对ply角互锁三维编织复合材料的弹性和断裂行为的全面研究。该研究调查了新型的分裂和楔形驱动的面外断裂测试,以阐明厚度方向的拉伸断裂行为,并提供平面外拉伸强度和断裂能的估计。此外,对几何尺寸尺寸尺寸尺寸的单缘凹凸张力(已发送)样品进行了充分表征材料的层内断裂能,并研究这种类型的三维复合材料中结构强度的缩放。结果证实了这些材料结构强度的尺寸效应是显着的。实际上,即使研究尺寸的范围比以前对传统层压复合材料和二维纺织品复合材料的尺寸效应研究更广泛,所有实验数据都落在准延性和脆性行为之间的过渡区。这意味着所研究的三维复合材料的强损伤耐受性。通过Bazant的II型尺寸效应定律(SEL)对数据的分析实现了三维复合材料的层内断裂能的客观表征。最后,与X射线微型计算机断层扫描相结合的Arcan钻机测试允许对多轴标称加载条件下的不同损伤机制(尤其是张力为主导和剪切主导的条件)进行前所未有的见解。

This work presents a comprehensive investigation of the elastic and fracture behavior of ply-to-ply angle interlock three-dimensional woven composites. The research investigated novel splitting and wedge-driven out-of-plane fracture tests to shed light on the tensile fracture behavior in the thickness direction and to provide estimates of the out-of-plane tensile strength and fracture energy. In addition, size effect tests on geometrically-scaled Single Edge Notch Tension (SENT) specimens were performed to fully characterize the intra-laminar fracture energy of the material and to study the scaling of structural strength in this type of three-dimensional composites. The results confirmed that size effect in the structural strength of these materials is significant. In fact, even if the range of sizes investigated was broader than in any previous size effect study on traditional laminated composites and two-dimensional textile composites, all the experimental data fell in the transition zone between quasi-ductile and brittle behavior. This implies strong damage tolerance of the investigated three-dimensional composites. The analysis of the data via Bazant's Type II Size Effect Law (SEL) enabled the objective characterization of the intra-laminar fracture energy of three-dimensional composites for the first time. Finally, Arcan rig tests combined with X-ray micro-computed tomography allowed unprecedented insights on the different damage mechanisms under multi-axial nominal loading conditions, particularly tension-dominated and shear-dominated conditions.

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