2020
DOI: 10.1080/02670844.2019.1693751
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Effect of substrate temperature on the oxidation behaviour of NiCrAlY coating

Abstract: NiCrAlY coating was deposited on the IN-738LC Ni-based superalloy by cathodic arc deposition at the substrate temperatures of 400°C and 700°C. The effects of the substrate temperature on the microstructure and the isothermal oxidation behaviour of the coatings were then investigated. SEM image and XRD analysis were used to characterize the deposited coatings. It was found that when the substrate temperature was raised from 400°C to 700°C, the degree of coating crystallinity was increased from 23% to 58%. After… Show more

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“…The hardness of the chosen metallic powder should be high to increase friction and impose a residence of wear on surfaces. From the past research work, generally, Fe, Ni, and Co-based alloys have been named novel materials for laser cladding [63][64][65]. Apart from LMD, Laser sintering (figure 11(b)) is also used to develop metal matrix composite (MMC) with high wear resistance properties [66][67][68].…”
Section: Solution 1: Surface Regaining By Laser Metal Deposition (Lmd)mentioning
confidence: 99%
“…The hardness of the chosen metallic powder should be high to increase friction and impose a residence of wear on surfaces. From the past research work, generally, Fe, Ni, and Co-based alloys have been named novel materials for laser cladding [63][64][65]. Apart from LMD, Laser sintering (figure 11(b)) is also used to develop metal matrix composite (MMC) with high wear resistance properties [66][67][68].…”
Section: Solution 1: Surface Regaining By Laser Metal Deposition (Lmd)mentioning
confidence: 99%