Deformation Mechanisms of Nial Cyclicly Deformed Near the Brittle-To-Ductile Transformation Temperature

Deformation Mechanisms of Nial Cyclicly Deformed Near the Brittle-To-Ductile Transformation Temperature
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Publisher : Createspace Independent Publishing Platform
Total Pages : 50
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ISBN-10 : 1722145145
ISBN-13 : 9781722145149
Rating : 4/5 (45 Downloads)

Book Synopsis Deformation Mechanisms of Nial Cyclicly Deformed Near the Brittle-To-Ductile Transformation Temperature by : National Aeronautics and Space Administration (NASA)

Download or read book Deformation Mechanisms of Nial Cyclicly Deformed Near the Brittle-To-Ductile Transformation Temperature written by National Aeronautics and Space Administration (NASA) and published by Createspace Independent Publishing Platform. This book was released on 2018-07-02 with total page 50 pages. Available in PDF, EPUB and Kindle. Book excerpt: One of the ongoing challenges of the aerospace industry is to develop more efficient turbine engines. Greater efficiency entails reduced specific strength and larger temperature gradients, the latter of which means higher operating temperatures and increased thermal conductivity. Continued development of nickel-based superalloys has provided steady increases in engine efficiency and the limits of superalloys have probably not been realized. However, other material systems are under intense investigation for possible use in high temperature engines. Ceramic, intermetallic, and various composite systems are being explored in an effort to exploit the much higher melting temperatures of these systems. NiAl is considered a potential alternative to conventional superalloys due to its excellent oxidation resistance, low density, and high melting temperature. The fact that NiAl is the most common coating for current superalloy turbine blades is a tribute to its oxidation resistance. Its density is one-third that of typical superalloys and in most temperature ranges its thermal conductivity is twice that of common superalloys. Despite these many advantages, NiAl requires more investigation before it is ready to be used in engines. Binary NiAl in general has poor high-temperature strength and low-temperature ductility. On-going research in alloy design continues to make improvements in the high-temperature strength of NiAl. The factors controlling low temperature ductility have been identified in the last few years. Small, but reproducible ductility can now be achieved at room temperature through careful control of chemical purity and processing. But the mechanisms controlling the transition from brittle to ductile behavior are not fully understood. Research in the area of fatigue deformation can aid the development of the NiAl system in two ways. Fatigue properties must be documented and optimized before NiAl can be applied to engineering systems. More importantly though, pr...


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