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Bonding characteristics and corrosion resistance of silane-cerium-treated aluminum adherend

机译:硅烷铈处理的铝粘附体的粘结特性和耐蚀性

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A silane-cerium treatment was applied on an aluminum adherend to simultaneously improve the bonding performance and corrosion resistance of the adhesively bonded aluminum joint in cryogenic applications, such as with liquefied natural gas containment tanks. The lap shear strengths and corrosion performances of the adhesively bonded joints composed of treated aluminum adherends were measured with respect to the silane-cerium treatment and the surface pretreatment on the aluminum adherend. The bonding characteristics of the aluminum adherend were investigated by measuring the water contact angle and conducting the potentiodynamic polarization test after the aluminum adherends with different surface treatments of silane-cerium were immersed in a 0.5 M NaCl solution. In addition, the surfaces were analyzed with scanning electron microscopy, X-ray photoelectron spectroscopy, and Fourier transform infrared spectroscopy to characterize the chemical compositions of the silane-cerium-treated aluminum adherend. The experimental results show that an appropriate silane-cerium treatment on the aluminum adherend produces an effective corrosion-resistant layer and that it has a highly reliable bonding characteristic for the adhesive joint at a cryogenic temperature of - 150°C.
机译:在铝被粘物上进行了硅烷-铈处理,以同时提高低温应用(例如液化天然气储罐)中粘合铝接头的粘合性能和耐腐蚀性。对于硅烷-铈处理和铝被粘物的表面预处理,测量了由处理过的铝被粘物组成的粘合接头的搭接剪切强度和腐蚀性能。在将经过不同表面处理的硅铈铈铝粘附体浸入0.5 M NaCl溶液后,通过测量水接触角并进行电位动力学极化试验,研究了铝粘附体的结合特性。另外,通过扫描电子显微镜,X射线光电子能谱和傅里叶变换红外光谱来分析表面,以表征经硅烷-铈处理的铝粘附体的化学组成。实验结果表明,在铝被粘物上进行适当的硅烷-铈处理可产生有效的耐腐蚀层,并且在-150°C的低温下,它对胶粘剂接头具有高度可靠的粘结特性。

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