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Improvement in Oxidation Resistance of IMI834: Comparison Between Implantation and Coating; a Quest

机译:IMI834的抗氧化性的改善:植入和涂层之间的比较; 追求

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Although IMI834 is designed to have high oxidation resistance, its surface can be further improved after nitrogen ion implantation or titanium nitride coating. It is well known that oxidation resistance can be improved after implantation and coating, but up to what extent, depends a lot on the temperature at which it is used. TiN is formed after nitrogen ion implantation in IMI834 as confirmed from glancing angle XRD. For comparison between implantation and coating, same thickness of TiN equal to that of the nitrogen ion range is deposited on IMI834 and oxidation behavior is analyzed at different temperatures. Surface of the samples were analyzed using Scanning electron microscope, Rutherford backscattering spectroscopy, compound formation using glancing angle XRD and nanohardness was measured using nanoindentor. Oxidation resistance of the unimplanted, implanted and coated samples was compared at three different temperatures (500, 700 and 800C). It is observed that oxidation resistance is better for the implanted samples at higher temperature whereas oxidation resistance is better for the TiN coated samples at lower temperature.
机译:尽管IMI834设计成具有高抗氧化性,但在氮离子注入或氮化钛涂层之后,其表面可以进一步提高。众所周知,植入和涂层后可以改善氧化性,但在多大程度上取决于它的使用温度。在IMI834中的氮离子注入后形成锡,从透明角XRD确认。为了在植入和涂层之间进行比较,沉积在IMI834上沉积与氮离子范围内的锡的厚度相同,并在不同温度下分析氧化行为。使用扫描电子显微镜分析样品的表面,Rutherford反向散射光谱,使用纳米管门测量使用透明角XRD和纳米腔的化合物形成。在三种不同温度(500,700和800℃的三种不同温度下,将未占用的,植入和涂覆的样品的氧化抗性进行比较。观察到氧化抗性在较高温度下植入样品更好,而氧化耐氧化抗性在较低温度下更好。

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