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Effects of dispersion methods and surface treatment of carbon nano-tubes on defect detectability and static strengths of adhesive joints

机译:碳纳米管的分散方法和表面处理对胶接接头缺陷检测能力和静态强度的影响

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Adhesive bonding and bolting are two typical joining methods of composites. Adhesive bonding does not require holes, and the load is distributed over a larger area than that in mechanical joints. However, such bonding is highly sensitive to the surface treatment, service temperature, humidity, and other environmental conditions. In particular, the formation of kissing bonds (due to surface defects or contamination) reduces the bonding strength significantly. The electrical-impedance method using carbon nano-tubes (CNTs) is a highly promising technology that helps in detecting different types of bonding defects. In this study, aluminum-to-aluminum adhesive joints with 1 wt% CNTs were fabricated. The static strengths and defect detectabilities determined using the electrical-impedance method were then evaluated. To uniformly disperse the CNTs into the adhesive, a sonication process, a three-roll-mill process, and solvent were employed. The defect detectabilities and static strengths of the adhesive joints produced using five different types of dispersion methods were then evaluated. Moreover, the defect detectability and static strength of the adhesive joints with respect to the surface treatment of the CNTs were investigated. (C) 2017 Elsevier Ltd. All rights reserved.
机译:粘接和螺栓连接是复合材料的两种典型连接方法。粘接不需要孔,并且载荷分布在比机械接头大的区域。但是,这种粘合对表面处理,使用温度,湿度和其他环境条件高度敏感。特别地,由于表面缺陷或污染,形成吻合键会大大降低键合强度。使用碳纳米管(CNT)的电阻抗方法是一种很有前途的技术,可帮助检测不同类型的粘合缺陷。在这项研究中,制造了具有1 wt%CNT的铝-铝粘合接头。然后评估使用电阻法确定的静态强度和缺陷可检测性。为了将CNT均匀地分散在粘合剂中,采用了超声处理,三辊研磨处理和溶剂。然后评估了使用五种不同类型的分散方法生产的粘合接头的缺陷检测能力和静态强度。而且,研究了相对于CNT的表面处理的粘合接头的缺陷检测能力和静态强度。 (C)2017 Elsevier Ltd.保留所有权利。

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