Fiber-Reinforced Composite and Wood Bonded Interfaces: Part 2. Fracture

J. Davalos, P. Qiao, B. Trimble
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引用次数: 39

Abstract

The evaluation of durability and shear strength of FRP-wood bonded interfaces is presented in Part 1 of this two-part study (see Davalos et al. [1]); here, in Part 2, an innovative contoured double-cantilever beam (CDCB) specimen is used to evaluate Mode I fracture of bonded interfaces, and interface fracture toughness data are experimentally obtained for dry and wet conditions. The specimens are designed by the Rayleigh-Ritz method to achieve a linear rate of compliance with respect to crack length. The proposed CDCB specimen is an efficient tool to evaluate Mode I fracture of hybrid interfaces, and the fracture toughness data obtained can be used to predict whether or not a bonded interface will delaminate under general service conditions. Based on the results of this two-part study, recommendations and guidelines are given for evaluation and qualification of FRP-wood bonded interfaces; the methods presented are useful for designing bonded joints, evaluating in-service durability of interfaces, and obtaining fracture toughness data for FRP-wood material combinations.
纤维增强复合材料和木材粘合界面:第2部分。骨折
frp -木材粘结界面的耐久性和抗剪强度评估在本研究的第1部分中提出(见Davalos等人[1]);在第二部分中,采用创新的双悬臂梁(CDCB)试件来评估粘结界面的I型断裂,并在干湿条件下实验获得界面断裂韧性数据。试件的设计采用瑞利-里兹方法,以获得与裂纹长度相关的线性顺应率。所提出的CDCB试样是评估混杂界面I型断裂的有效工具,所获得的断裂韧性数据可用于预测粘结界面在一般使用条件下是否会发生分层。根据这两部分的研究结果,对frp -木材粘合界面的评价和鉴定提出了建议和指南;所提出的方法可用于设计粘结接头、评估界面耐久性以及获取frp -木材材料组合的断裂韧性数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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