The Effect of Nickel and Aluminum Concentration on Cyclic Oxidation Resistance of Mild Steel (AISI 1020)

Y. Salman, Mahmood Hmood, E. E. Ghadeer
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Abstract

Experimental studies have been made to determine the oxidation be heavier of several coatings system on commercial mild steel alloy (AISI 1020). The oxidation kinetics of a single stage coating such as Aluminized and Nickel have been under )1000C( using a thermal cyclic oxidation.The structures were studied using optical microscope to identify a phases. Most coating use to enhance the formation of protective oxid scale, in this research, the results for Nickel coating showed some reduction in resistance of )AISI 1020( alloy and It is found they follow linear rate law, but Aluminized coating using a pack – cementation technique, exhibited the greatest resistance to oxidation, followed parabolic law (protective oxidation behavior). because it has a good ductility and its capability to form a protective oxid Layer )Al2O3(, such Alumina scale is known as thermally and electrically insulator and characterized with slow gowning rate.
镍和铝浓度对低碳钢(AISI 1020)抗循环氧化性能的影响
通过实验研究,确定了几种涂层体系在商品低碳钢合金(AISI 1020)上的氧化较重。单级涂层(如镀铝和镍)的氧化动力学已低于1000℃(使用热循环氧化)。用光学显微镜对其结构进行了表征。在本研究中,镀镍层对aisi1020合金的抗氧化性能有一定的降低,并遵循线性速率规律,而镀铝层采用包埋胶结技术,表现出最大的抗氧化性能,遵循抛物线规律(保护氧化行为)。因为它具有良好的延展性和形成保护氧化层的能力)Al2O3(,这种氧化铝鳞片被称为热绝缘体和电绝缘体,其特点是生长速度慢。
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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