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纤维桥接对复合材料加筋板在弯曲载荷下分层行为的增韧效应:数值/实验研究

Fiber Bridging Induced Toughening Effects on the Delamination Behavior of Composite Stiffened Panels under Bending Loading: A Numerical/Experimental Study.

作者信息

Russo Angela, Zarrelli Mauro, Sellitto Andrea, Riccio Aniello

机构信息

Department of Engineering, University of Campania Luigi Vanvitelli, via Roma, 29, 81031 Aversa, Italy.

Institute of Polymers, Composites and Biomaterials, CNR-Research National Council of Italy, P.le E. Fermi, Granatello, Portici, 80055 Naples, Italy.

出版信息

Materials (Basel). 2019 Jul 28;12(15):2407. doi: 10.3390/ma12152407.

Abstract

In this paper, a research activity, focused on the investigation of new reinforcements able to improve the toughness of composite materials systems, is introduced. The overall aim is to delay the delamination propagation and, consequently, to increase the carrying load capability of composite structures by exploiting the fiber bridging effects. Indeed, the influence of fiber bridging related Mode I fracture toughness () values on the onset and propagation of delaminations in stiffened composite panels, under three-point bending loading conditions, have been experimentally and numerically studied. The investigated stiffened panels have been manufactured by using epoxy resin/carbon fibers material systems, characterized by different values, which can be associated with the material fiber bridging sensitivity. Experimental data, in terms of load and delaminated area as a function of the out-of-plane displacements, have been obtained for each tested sample. Non-Destructive Inspection (NDI) has been performed to identify the debonding extension and position. To completely understand the evolution of the delamination and its dependence on the material characteristics, experiments have been numerically simulated using a newly developed robust numerical procedure for the delamination growth simulation, able to take into account the influence of the fracture toughness changes, associated with the materials' fiber bridging sensitivity. The combined use of numerical results and experimental data has allowed introducing interesting considerations of the capability of the fiber bridging to substantially slow down the evolution of the debonding between skin and reinforcements in composite stiffened panels.

摘要

本文介绍了一项研究活动,其重点是研究能够提高复合材料系统韧性的新型增强材料。总体目标是通过利用纤维桥接效应来延缓分层扩展,从而提高复合结构的承载能力。实际上,已经通过实验和数值研究了在三点弯曲载荷条件下,与纤维桥接相关的I型断裂韧性()值对加筋复合板分层起始和扩展的影响。所研究的加筋板采用环氧树脂/碳纤维材料系统制造,其具有不同的值,这些值与材料的纤维桥接敏感性相关。对于每个测试样品,已获得了作为平面外位移函数的载荷和分层面积方面的实验数据。已进行无损检测(NDI)以识别脱粘扩展和位置。为了全面了解分层的演变及其对材料特性的依赖性,已使用新开发的用于分层生长模拟的强大数值程序对实验进行了数值模拟,该程序能够考虑与材料纤维桥接敏感性相关的断裂韧性变化的影响。数值结果和实验数据的结合使用,使得能够对纤维桥接显著减缓复合加筋板蒙皮与增强材料之间脱粘演变的能力进行有趣的思考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7fc4/6696603/80a16044d43f/materials-12-02407-g001.jpg

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