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Preparation and oxidation behavior of NiCrAlYSi coating on a cobalt-base superalloy K40S

机译:钴基高温合金K40S上NiCrAlYSi涂层的制备及氧化行为

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Arc ion plating had been employed on a cobalt-base superalloy K40S to deposit a NiCrAlYSi coating to improve its oxidation resistance at 1323-1423 K in air. The K40S superalloy had poor oxidation resistance because a non-protective and easy spalling surface oxides scale mixed of Cr_2O_3 and CoCr_2O_4 was formed on its surface. After coated with NiCrAlYSi coating, a dense and protective α-Al_2O_3 scale was formed on the coating and excellently improved its oxidation resistance. Inter-diffusion obviously occurred between the coating and the substrate K40S superalloy in oxidation process, which resulted from Co atoms in K40S outwards diffused. A richen Cr and W carbides inter-diffusion layer was formed, which could acted as a diffusion barrier that barred Al atoms in coating inwards diffusion. Though the NiCrAlYSi changed into NiCoCrAlYSi during oxidation process, it still possessed a good oxidation resistance and had a considerable long-term life.
机译:在钴基高温合金K40S上采用了电弧离子镀,以沉积NiCrAlYSi涂层,以改善其在1323-1423 K下的空气中的抗氧化性。 K40S高温合金的抗氧化性较差,因为在其表面上形成了由Cr_2O_3和CoCr_2O_4混合而成的非保护性且易剥落的表面氧化物水垢。用NiCrAlYSi涂层涂覆后,在涂层上形成了致密的保护性α-Al_2O_3垢,并极大地提高了其抗氧化性。在氧化过程中,涂层和基体K40S高温合金之间明显发生了相互扩散,这是由于K40S中的Co原子向外扩散所致。形成了丰富的Cr和W碳化物相互扩散层,该层可作为扩散阻挡层,阻止涂层向内扩散的Al原子。尽管NiCrAlYSi在氧化过程中转变为NiCoCrAlYSi,但它仍具有良好的抗氧化性,并具有相当长的使用寿命。

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