论文标题

编织式杂化纤维的译性骨折的实验表征和数值建模增强了热塑性层压板

Experimental characterization and numerical modelling of the translaminar fracture of woven-ply hybrid fibers reinforced thermoplastic laminates

论文作者

Bouvet, Christophe, Vieille, B., Pujols-Gonzalez, J-D.

论文摘要

这项研究旨在研究初始缺口方向对编织式杂交纤维的译性骨折的影响。这项工作基于具有两个初始缺口(0 {\ textdegree}和45 {\ textDegree}的单个弯曲弯曲(SENB)标本的译本骨折的实验表征。这种几何形状导致层压层内的复杂应力状态以及同时的张力/压缩故障。已经实施了一种数字图像分析技术来监视机械负载期间的裂纹启动和增长。 To better understand the role played by the initial notch orientation as well as the plies orientation contribution to fracture behavior, a specific Finite Element mesoscale modelling was built to account for the deformation mechanisms (namely local plasticity) and the different damage behaviours (fiber breakage in tension and compression, kinking/crushing in compression, delamination) occurring within the plies of quasi-isotropic laminates.线性弹性断裂力学概念已应用于量化关键的译出骨折韧性(两种情况下约40 kJ/m $ {}^2 $)。最后,从合规方法中计算出G-R曲线,以研究初始缺口方向对断裂能的演变的影响。

This study was aimed at investigating the influence of initial notch orientation on the translaminar fracture of woven-ply hybrid fibers reinforced thermoplastic polyether ether ketone (PEEK) laminates. This work is based on the experimental characterization of translaminar fracture of Single-edge-notch bending (SENB) specimens with two initial notches (0{\textdegree} and 45{\textdegree}). Such geometry results in a complex stress state within the laminates plies as well as simultaneous tension/compression failures. A digital image analysis technique has been implemented to monitor the crack initiation and growth during mechanical loading. To better understand the role played by the initial notch orientation as well as the plies orientation contribution to fracture behavior, a specific Finite Element mesoscale modelling was built to account for the deformation mechanisms (namely local plasticity) and the different damage behaviours (fiber breakage in tension and compression, kinking/crushing in compression, delamination) occurring within the plies of quasi-isotropic laminates. Linear elastic fracture mechanics concepts have been applied to quantify the critical translaminar fracture toughness (about 40 kJ/m${}^2$ in both cases). Finally, the G-R curves were computed from the compliance method to investigate the influence of the initial notch orientation on the evolution of the fracture energy.

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