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首页> 外文期刊>Applied Surface Science >Preparation and characterization of cerium-based conversion coating on a Fe_(50)Mn_(30)Co_(10)Cr_(10) dual-phase high-entropy alloy
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Preparation and characterization of cerium-based conversion coating on a Fe_(50)Mn_(30)Co_(10)Cr_(10) dual-phase high-entropy alloy

机译:Fe_(50)Mn_(30)CO_(10)CR_(10)双相高熵合金对铈基转化涂层的制备与表征

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The mechanical properties of the Fe50Mn30Co10Cr10 (at.%) dual-phase high-entropy alloy (DP-HEA) are superior to those of the equiatomic CoCrFeMnNi single-phase HEA. However, poor corrosion resistance due to high manganese content is one of the main factors limiting the potential applications of Fe50Mn30Co10Cr10 DP-HEAs. This study investigated the feasibility of improving the corrosion resistance of Fe50Mn30Co10Cr10 DP-HEAs through the application of a cerium conversion coating to its surface. In addition, this study investigated the effects of bath temperature and the heating process on the formation of the cerium conversion coating. A cerium conversion coating with a thickness of approximately 10-20 nm formed on the DP-HEA surface from cerium conversion baths with various continuous heating processes. The anodic current densities exhibited by the polarization curves decreased, and Tafel extrapolation revealed that the corrosion current densities of the ceriumcoated specimens were two to three orders of magnitude lower than that of the untreated DP-HEA. The successful preparation of cerium conversion coatings through continuous bath-heating processes can improve the corrosion resistance of Fe50Mn30Co10Cr10 DP-HEAs. The superior anticorrosion properties of the coating formed by the T70 bath-heating process can be attributed to the increased thickness and large amount of CeO2 in the coating.
机译:Fe50Mn30CO10CR10(AT.%)双相高熵合金(DP-HEA)的机械性能优于赤素COCRFEMNNI单相HEA。然而,由于高锰含量导致的耐腐蚀性差是限制FE50MN30CO10CR10 DP-SEAS潜在应用的主要因素之一。本研究研究了通过将铈转化涂层施加到其表面上,提高了改善Fe50mN30CO10CR10DP-SEA的耐腐蚀性的可行性。此外,本研究研究了浴温和加热过程对铈转化涂层的形成的影响。在具有各种连续加热过程的DP-HEA表面上形成厚度为约10-20nm的铈转化涂层,其具有各种连续加热方法。由偏振曲线呈现的阳极电流密度降低,并且Tafel外推显示出鎓涂覆的样品的腐蚀电流密度比未处理的DP-Hea的腐蚀电流密度低2至三个数量级。通过连续浴加热方法的成功制备铈转化涂层可以提高Fe50mN30CO10CR10DP-SEA的耐腐蚀性。由T70浴加热过程形成的涂层的优异防腐性能可归因于涂层中增加的厚度和大量的CeO 2。

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