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PDC Glass/Ceramic Coatings Applied to Differently Pretreated AISI441 Stainless Steel Substrates

机译:PDC玻璃/陶瓷涂料应用于不同预处理的AISI441不锈钢基材

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摘要

In this work, the influence of different cleaning procedures on adhesion of composite coatings containing passive ceramic and commercial glasses was investigated. Two compositions (C2c, D2-PP) of double-layer polymer-derived ceramic (PDC) coating systems, composed from bond coat and a top coat, were developed. In order to obtain adherent coatings, stainless steel substrates were cleaned by four different cleaning procedures. The coatings were then deposited onto the steel substrate via spray coating. Pretreatment by subsequent ultrasonic cleaning in acetone, ethanol and deionised water (procedure U) was found to be the most effective, and the resultant C2c and D2-PP coatings, pyrolysed at 850 °C, indicated strong adhesion without delamination or cracks, propagating at the interface steel/bond coat. In the substrate treated by sandblasting and chemical etching, small cracks in the bond coat were observed under the same pyrolysis conditions. After oxidation tests, all coatings, except for those subjected to the U-treated substrates, showed significant cracking in the bond coat. The D2-PP coatings were denser than C2c, indicating better protection of the substrate.
机译:在这项工作中,研究了不同清洁程序对包含被动陶瓷和商用玻璃的复合涂层附着力的影响。开发了由粘结涂层和面涂层组成的双层聚合物衍生陶瓷(PDC)涂层系统的两种成分(C2c,D2-PP)。为了获得附着的涂层,可通过四种不同的清洁程序清洁不锈钢基材。然后通过喷涂将涂层沉积在钢基材上。发现在丙酮,乙醇和去离子水中进行后续超声波清洗的预处理最为有效(步骤U),所得的C2c和D2-PP涂层在850°C的温度下热解,显示出很强的附着力,而没有分层或裂纹,在90°C时传播。界面钢/粘结层。在通过喷砂和化学蚀刻处理的基材中,在相同的热解条件下观察到粘结涂层中的小裂纹。经过氧化测试后,所有涂层,除了那些经过U处理的基材外,在粘结层中均显示出明显的裂纹。 D2-PP涂层比C2c致密,表明对基材的保护效果更好。

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