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环境条件下金属-复合材料摩擦点焊的耐久性

Durability of Metal-Composite Friction Spot Joints under Environmental Conditions.

作者信息

Goushegir Seyed M, Scharnagl Nico, Dos Santos Jorge F, Amancio-Filho Sergio T

机构信息

Solid State Joining Processes, Materials Mechanics, Institute of Materials Research, Centre for Materials and Coastal Research, Helmholtz-Zentrum Geesthacht, 21502 Geesthacht, Germany.

Corrosion and Surface Technology, Magnesium Innovation Center (MagIC), Materials Mechanics, Institute of Materials Research, Centre for Materials and Coastal Research, Helmholtz-Zentrum Geesthacht, 21502 Geesthacht, Germany.

出版信息

Materials (Basel). 2020 Mar 4;13(5):1144. doi: 10.3390/ma13051144.

Abstract

The current paper investigates the durability of the single-lap shear aluminum-composite friction spot joints and their behavior under harsh accelerated aging as well as natural weathering conditions. Four aluminum surface pre-treatments were selected to be performed on the joints based on previous investigations; these were sandblasting (SB), conversion coating (CC), phosphoric acid anodizing (PAA), and PAA with a subsequent application of primer (PAA-P). Most of the pre-treated specimens retained approximately 90% of their initial as-joined strength after accelerated aging experiments. In the case of the PAA pre-treatment, the joint showed a lower retained strength of about 60%. This was explained based on the penetration of humidity into the fine pores of the PAA pre-treated aluminum, reducing the adhesion between the aluminum and composite. Moreover, friction spot joints produced with three selected surface pre-treatments were held under outside natural weathering conditions for one year. PAA-P surface pre-treated specimens demonstrated the best performance with a retained strength of more than 80% after one year. It is believed that tight adhesion and chemical bonding reduced the penetration of humidity at the interface between the joining parts.

摘要

本文研究了单搭接剪切铝-复合材料摩擦点焊连接的耐久性及其在苛刻的加速老化以及自然风化条件下的性能。基于先前的研究,选择了四种铝表面预处理方法应用于接头;这些方法分别是喷砂(SB)、转化涂层(CC)、磷酸阳极氧化(PAA)以及先进行PAA处理后再涂底漆(PAA-P)。在加速老化试验后,大多数预处理后的试样保留了其初始连接强度的约90%。对于PAA预处理,接头的保留强度较低约为60%。这是由于湿度渗透到PAA预处理铝的细孔中,降低了铝与复合材料之间的附着力。此外,采用三种选定表面预处理方法生产的摩擦点焊连接在室外自然风化条件下放置了一年。PAA-P表面预处理的试样表现出最佳性能,一年后保留强度超过80%。据信,紧密的附着力和化学键合减少了连接部件之间界面处湿度的渗透。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c1b/7084969/9cff3c0d5de5/materials-13-01144-g001.jpg

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