TY - EJOUR AU - Anousha, Hasan AU - Goudarzi, Shervin AU - Esmailpour, Mohammad AU - Rostamifard, Dariush PY - 2023 DA - December TI - Structural and corrosion properties of SiC–NiCr nanocomposite coating on Zr substrate in high temperature T2 - Journal of Theoretical and Applied Physics VL - 18 L1 - https://oiccpress.com/journal-of-theoretical-and-applied-physics/article/structural-and-corrosion-properties-of-sic-nicr-nanocomposite-coating-on-zr-substrate-in-high-temperature/ DO - 10.57647/j.jtap.2024.1801.04 N2 - The present report describes the deposition of SiC-NiCr films on Zr substrates under an H2 gas environment by plasma focusing (PF). Using the spark plasma sintering (SPS) method, the anode for the plasma focus device was made from SiC, Ni, and Chromium powders. X-ray diffraction (XRD) of SiC-NiCr samples shows a change in the position and intensity of the peaks in 10000 C temperature compared to the XRD spectrum at room temperature (RT). The surface characteristics and structure of the synthesized coating were investigated with Field Emission Scanning Electron Microscopy (FESEM) at RT and 1000°C. According to the FESEM images, the average coating nanoparticles size increases from 58.2 nm to 326.6 nm, and the average coating thickness increases from 0.85 µm to 60.34 µm by increasing the temperature. At high temperatures, the sample’s thermogravimetric analysis (TGA) indicates a reduction in corrosion rate from 3.25 to 0.22 mg/cm2. The coating of Zr with a thin layer of SiC-NiCr is capable of preventing or reducing the possibility of hydrogen explosions in extreme conditions. IS - 1 PB - OICC Press KW - XRD, Plasma Focus, Zirconium, SiC–NiCr, TGA, FESEM EN -