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Nuclear engineering researchers develop new resilient oxide dispersion strengthened alloy


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Texas A&M University researchers have recently shown superior performance of a new oxide dispersion strengthened (ODS) alloy they developed for use in both fission and fusion reactors.
Dr. Lin Shao, professor in the Department of Nuclear Engineering, worked alongside research scientists at the Los Alamos National Laboratory and Hokkaido University to create the next generation of high-performance ODS alloys, and so far they are some of the strongest and best-developed metals in the field.
ODS alloys consist of a combination of metals interspersed with small, nanometer-sized oxide particles and are known for their high creep resistance. This means that as temperatures rise, the materials keep their shape instead of deforming. Many ODS alloys can withstand temperatures up to 1,000 C and are typically used in power generation and engines within aerospace engineering, as well as cutlery. ....

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Refractory Metals: An A to Z of Applications


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1–4 It is possible to combine these elements, both with other materials and with each other, to create a wide range of high-performance refractory metal compounds and alloys, which are fundamental to several industries.
This article examines the main applications of refractory metals and the range of compounds and alloys in which they are used.
Aerospace and Defense
The defense and aerospace industries require materials with superior thermal and mechanical durability. For defense and aerospace applications, refractory metals are an essential class of materials as they supply a foundation for strength retention to temperatures as high as 2200°C.
Niobium is especially useful for applications in aerospace because of its comparatively low density, which is equivalent to that of nickel. ....

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