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High-Temperature Nanoindentation on Pure Titanium (Ti)

应用文章

Titanium (Ti) and Titanium alloys are attractive materials for high-temperature applications, e.g. for use in gas turbine engines, airframes, etc. in aerospace industry, due to their excellent high temperature stability, high strength, good corrosion and creep resistance. Chemically modifying the microstructure of titanium enhances their properties significantly, for example, some of the developed grades of titanium alloys can work at service temperatures as high as 500°C. The high strength-to-density ratio of titanium combined with their excellent elevated mechanical properties makes it a competitive candidate with commonly used nickel-based superalloys and stainless steels in similar applications. Recent development in the hightemperature nanoindentation provided the ability of examining the elevated near-the-surface mechanical properties of Titanium in a much faster and easier way, which facilitates precise local measurements over the large surface of testing material to obtain more reliable and statistically significant data.

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