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Investigation of compressive properties of 3D fiber reinforced polymeric (FRP) composites through combined end and shear loading

机译:通过端部载荷和剪切载荷联合研究3D纤维增强聚合物(FRP)复合材料的压缩性能

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The failure mechanisms and failure stress states of 2D and 3D FRP composite is investigated through experimental work, SEM, finite element analysis and failure theories. In this research work, feasibility of ASTM standard D6641 is investigated for testing of 3D FRP composite. A 3D finite element model is developed in ABAQUS with homogeneous orthotropic laminate to investigate the failure stress state in the gage section of the test specimens. Two failure theories are considered for failure investigation that is fully interactive three dimensional Tasi Wu failure criteria and limit criteria (maximum stress criteria). SEM is carried out to investigate the failure mechanisms and failure location in the specimens. Experimental results shows that the compressive strength of 3D FRP composite is less as compared to 2D FRP composite, also standard deviation (SD) and coefficient of variance (COV) of 3D FRP composite is high. This paper highlights the problems associated with the use of ASTM D6641 for 3D FRP composite, and internal failure mechanisms in 3D FRP composite using compression through combine end and shear loading.
机译:通过实验工作,扫描电镜,有限元分析和破坏理论,研究了2D和3D FRP复合材料的破坏机理和破坏应力状态。在这项研究工作中,研究了ASTM标准D6641用于3D FRP复合材料测试的可行性。在ABAQUS中使用均匀的正交各向异性层压板开发了3D有限元模型,以研究试样应变计截面中的破坏应力状态。两种失效理论被认为是用于失效研究的,它们是完全互动的三维塔斯乌失效准则和极限准则(最大应力准则)。进行SEM以研究样品中的破坏机理和破坏位置。实验结果表明,与2D FRP复合材料相比,3D FRP复合材料的抗压强度较低,3D FRP复合材料的标准偏差(SD)和方差系数(COV)也较高。本文重点介绍了与将ASTM D6641用于3D FRP复合材料有关的问题,以及在3D FRP复合材料中使用组合载荷和剪切载荷进行压缩的内部破坏机理。

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