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Improving the oxidation resistance of Inconel 718 high-temperature nickel alloy using combined surface engineering technology

机译:采用组合表面工程技术改善了418高温镍合金的抗氧化性

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摘要

To increase the oxidation resistance of the Inconel 718 Ni alloy, a hybrid technology is proposed that combines electro-spark alloying (ESA) and magnetron sputtering (MS). Multiphase ZrSiB (ESA), ZrSiB, MoSiB, and CrAlSiB (MS) electrodes were obtained by self-propagating high-temperature synthesis. The study of the structure, composition and properties of single- and double-layers has been carried out. ZrB2 (73?wt.%), Si (21?wt.%), Ni and NiSix traces (<5?wt.%) were detected in the ESA-layer. The ESA-layer had a hardness of 19?GPa and elastic modulus of 351?GPa. The ZrSiB MS-layer contained a h-ZrB2 phase with a 4?–17?nm crystallites and Si-based amorphous regions. The layer hardness and elastic modulus were equal to 22?and 256?GPa, respectively. The MoSiB MS-layer had a conical structure, contained the h-MoSi2 and B-based amorphous phases. The layer showed hardness of 27?GPa and elastic modulus of 389?GPa. The Cr2Al, CrBx, and CrSi2 phases were found in the CrAlSiB MS-layer with hardness of 19?GPa and elastic modulus of 260?GPa. The 4.8?μm oxide film was formed on the surface of the Ni alloy after annealing in air at 900°C.?The depth of the oxidation for ZrSiB?/?ZrSiB, MoSiB?/?ZrSiB, and CrAlSiB?/?ZrSiB MS-ESA coatings was 9.2, 0.4, and 0.12?μm, correspondingly. The ESA-layer acts as barrier to reduce the diffusion of elements from the substrate. Two-layer MoSiB?/?ZrSiB and CrAlSiB?/?ZrSiB coatings increase the oxidation resistance of the Ni alloy by 12?and 40?times, respectively, and can be recommended for deposition onto aircraft engine parts.
机译:为了提高Inconel 718 Ni合金的抗氧化性,提出了一种混合技术,其结合了电火花合金化(ESA)和磁控溅射(MS)。通过自展开高温合成获得多相ZRSIB(ESA),ZrSIB,MOSIB和CRALSIB(MS)电极。已经进行了对单层和双层的结构,组成和性质的研究。在ESA层中检测到ZRB2(73×wt.%),Si(21〜wt。%),Ni和Nisix迹线(<5≤w≤%)。 ESA层的硬度为19?GPA和351μl≤GPA的弹性模量。 ZrSIB MS层含有H-ZRB2相,具有4〜-17·NM微晶和基于Si的非晶区域。层硬度和弹性模量分别等于22?和256μm≤GPA。 MOSIB MS层具有锥形结构,含有H-MOSI2和B基的无定形阶段。该层显示硬度为27μm≤GPA和389μm≤GPA的弹性模量。在Cralsib MS层中发现Cr2Al,CRBX和CRSI2阶段,其硬度为19≤GPA和260Ω·GPA的弹性模量。在900℃的空气中在空气中在Ni合金的表面上形成4.8μm氧化膜。zrsib氧化的深度为zrsib?/ zrsib,mosib?/?zrsib,以及cralsib -ESA涂层相应地为9.2,0.4和0.12μm。 ESA层充当屏障以减少来自基板的元件的扩散。双层摩托车?/?Zrsib和Cralsib?/?Zrsib涂层将Ni合金的氧化性分别增加12?和40倍,可以建议沉积到飞机发动机部件上。

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