纤维增强复合材料和木材粘合界面:第1部分。耐久性和抗剪强度

J. Davalos, P. Qiao, B. Trimble
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引用次数: 55

摘要

纤维增强塑料(FRP)复合材料已显示出加固木结构的潜力(例如,将FRP条或织物粘合到木构件上)。虽然通过这种增强技术可以显著提高刚度和强度,但人们担心frp -木材胶粘剂的可靠性能,因为它容易分层。这篇论文的总体目标是制定一个评估复合材料/木材粘合界面的使用性能和断裂的资格认证程序。研究了两种类型的frp -木材界面:酚醛frp -木材键和环氧frp -木材键。在本论文的第一部分中,通过改进的ASTM测试来评估frp -木材粘结剂的耐久性和抗剪强度。首先,使用改进的ASTM分层试验评估frp -木材界面粘结的使用性能和耐久性。然后,通过改进的ASTM块体剪切试验,得到了干湿两种条件下粘结界面的表观抗剪强度。结果表明,改进的ASTM D 2559标准试验可以成功地用于研究几种参数(如粘接压力、装配时间和偶联剂)对干湿暴露循环下粘接线性能的影响。然后根据ASTM D 905的块体剪切试验,对混合材料层合板进行修正,得到界面平均抗剪强度。frp -木材粘合界面的I型断裂和frp -木材粘合性能评估指南在第二部分的论文中提出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fiber-Reinforced Composite and Wood Bonded Interfaces: Part 1. Durability and Shear Strength
Fiber-reinforced plastic (FRP) composites have shown the potential for reinforcement of wood structures (e.g., bonding of FRP strips or fabrics to wood members). Although significant increases in stiffness and strength are achieved by this reinforcing technique, there is a concern about the reliable performance of the FRP-wood adhesive bond, which is susceptible to delamination, The overall objective of this two-part paper is to develop a qualification program to evaluate the service performance and fracture of composite/wood bonded interfaces. Two types of FRP-wood interfaces are studied: phenolic FRP-wood and epoxy FRP-wood bonds. In the present paper, Part 1, the durability and shear strength of FRP-wood bonds are evaluated by modified ASTM tests. First, the service performance and durability of FRP-wood interface bond is evaluated using a modified ASTM delamination test. Then, the apparent shear strengths of bonded interfaces under both dry and wet conditions are obtained from modified ASTM block-shear tests. It is shown that the modified ASTM D 2559 standard test can be successfully used to study the effect of several parameters (e.g., bonding pressure, assembling time, and coupling agents) on bondline performance under wet-dry exposure cycles. Then for the best combination of parameters, the average interface shear strengths can be obtained from block-shear tests of ASTM D 905, modified for hybrid laminates. Mode I fracture of FRP-wood bonded interfaces and guidelines for FRP-wood bond performance evaluation are presented in the companion Part 2 paper.
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