论文标题
底物粗糙度对铝制Ni-base Superaly的氧化抗性的影响
Effect of Substrate Roughness on Oxidation Resistance of an Aluminized Ni-Base Superalloy
论文作者
论文摘要
在目前的工作中,结果表明,在铝化化学蒸气沉积(CVD)之前,在两个基于Ni的超合金上使用的表面制备方法是确定基于铝制Ni的Superalloys氧化抗性的最重要因素之一。发现砂砾爆炸底物表面对铝制涂层的氧化耐药性产生负面影响。对于在625中爆炸和铝化的砂砾,与738中的砂岩形成了较厚的外涂层。相反,在738中未发现对砂涂层厚度并铝化的niAL涂层厚度的影响。但是,观察到一个较厚的跨散射区(IDZ)。结果表明,与地震和铝合金相比,在热休克测试期间,具有砂砾表面的系统显示出较高的氧化耐药性,即砂砾爆破和铝合金的质量损失更高。提出了剩余的氧化铝颗粒,该氧化铝颗粒源于涂层/底物的扩散过程中的表面砂粒爆炸和应力分布。
In the present work, it is shown that the surface preparation method used on two Ni-based superalloys prior to aluminizing chemical vapor deposition (CVD) is one of the most important factors determining the oxidation resistance of aluminized Ni-based superalloys. It was found that grit blasting the substrate surface negatively affects the oxidation resistance of the aluminized coatings. For grit blasted and aluminized IN 625, a thicker outer NiAl coating was formed compared to that of IN 738. In contrast, no effect on NiAl coating thickness was found for grit blasted and aluminized IN 738. However, a thicker interdiffusion zone (IDZ) was observed. It was shown that the systems with grit-blasted surfaces reveal worse oxidation resistance during thermal shock tests, namely, a higher mass loss was observed for both grit blasted and aluminized alloys, as compared to ground and aluminized alloys. A possible reason for this effect of remaining alumina particles originating from surface grit blasting on the diffusion processes and stress distribution at the coating/substrate is proposed.