Shear strength of steel and CFRP to timber interface

H. Azlan, Z. Ahmad, R. Hassan, A. Jamadin
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引用次数: 2

Abstract

Adhesives can be used to form load-bearing joints in timber structures, both in repair and in new-build applications. An efficient and cost-effective method of making joints is to use rods or dowels or plate, bonded into pre-drilled holes in timber elements, by using structural adhesive for transferring structural loads between such elements. An adhesive is expected to hold materials together and transfer design loads from one adherend to other within a given service environment for the life of the structure. The behavior of the joints depends on many parameters such as glue-line thickness, types of rods, types of adherends etc. This paper reports the behavior of bonded-in joint by varying the plate types (steel and carbon fiber reinforced plastic (CFRP) plates) and timber types (Keruing and Kempas). To characterize the performance of the bonded-in joints, a series of test were conducted such as pull-out test and block shear test. As the strength properties of the joint greatly affected by the adhesive, the mechanical properties of the adhesives were also determined by conducting flexural and tensile test. The results show that the shear strength of bonded-in joint using CFRP plate is higher than bonded-in joint using steel plate.
钢和CFRP与木材界面的抗剪强度
粘合剂可用于形成木结构的承重接缝,无论是在修复还是在新建应用中。制造接头的一种有效和经济的方法是使用杆或销子或板,通过使用结构粘合剂在这些元件之间传递结构载荷,粘合到木材元件的预钻孔中。在给定的使用环境中,粘合剂可以将材料粘合在一起,并将设计载荷从一种粘合剂转移到另一种粘合剂,以延长结构的使用寿命。接头的性能取决于许多参数,如胶线厚度、棒的类型、附着物的类型等。本文报道了通过改变板型(钢和碳纤维增强塑料(CFRP)板)和木材类型(克鲁和肯帕斯)的粘合节点的性能。为了对连接节点的性能进行表征,进行了拉拔试验和块剪试验等一系列试验。由于胶粘剂对接头的强度性能影响较大,因此还通过进行弯曲和拉伸试验来确定胶粘剂的力学性能。结果表明:CFRP板连接节点的抗剪强度高于钢板连接节点;
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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