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Investigating the Wear Behavior of Fe-Based Amorphous Coatings under Nanoscratch Tests

机译:在纳米划痕试验下研究铁基非晶涂层的磨损行为

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The wear behavior of two coatings (Fe 49.7 Cr 18 Mn 1.9 Mo 7.4 W 1.6 B 15.2 C 3.8 Si 2.4 and Fe 40 Cr 23 Mo 14 C 15 B 6 Y 2 ) sprayed by high-velocity air fuel technology was investigated through nanoscratch tests under ramping loads. Compared with the substrate, the Fe-based amorphous coatings exhibit lower penetration depth, higher elastic recovery, and lower wear volume, indicating the excellent wear resistance of the coatings. This behavior is related to the high hardness and high hardness/elastic modulus ratio ( H / E ) of the Fe-based amorphous coatings. From the scanning electron microscopy images of the scratch grooves, it is found out that ploughing governs the wear behavior of the coatings and substrate. In addition, spalling wear easily occurs in the pore regions of the coatings.
机译:通过纳米划痕试验研究了高速空气燃料技术喷涂的两种涂层(Fe 49.7 Cr 18 Mn 1.9 Mo 7.4 W 1.6 B 15.2 C 3.8 Si 2.4和Fe 40 Cr 23 Mo 14 C 15 B 6 Y 2)的磨损行为在不断增加的负载下。与基体相比,铁基无定形涂层具有较低的渗透深度,较高的弹性回复率和较低的磨损量,表明涂层具有出色的耐磨性。此行为与铁基非晶涂层的高硬度和高硬度/弹性模量比(H / E)有关。从划痕凹槽的扫描电子显微镜图像中,可以发现犁刀控制着涂层和基体的磨损行为。另外,在涂层的孔区域中容易发生剥落磨损。

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