Niobium technology – meeting the challenges of the global energy supply
31 Aug 2018
Microstructure evolution and mechanical properties of X6CrNiMoVNb11-2 stainless steel after heat treatment
This investigation helps us to better understand the strengthening mechanism and performance controlling scheme of martensite stainless steel during the cast-rolling forming process in future applications.
Precipitate evolution in 22Cr25NiWCuCo(Nb) austenitic heat-resistant stainless steel during heat treatment at 1200 ◦C
In this study, 22Cr25NiWCuCo(Nb) heat-resistant steel specimens with high Cr and Ni contents were adopted to investigate the effect of Nb content on thermal and precipitation behavior.
Battery Technology Trends and Innovation in Power Tools, Robotics and Cordless Devices
Introduced over 40 years ago, The Charles Hatchett Award is a prestigious recognition that aims to identify new applications and markets for Niobium. The award is sponsored by CBMM | Niobium and recognizes the best published research on the science and technology of Niobium. The annual award brings together technical experts worldwide, and a panel of international experts selects the winning paper. This highlights video explores the potential commercial applications involving Niobium and how it’s possible to significantly increase the capacity and reduce the charging time of Lithium-ion batteries.
Unraveling the nature of anomalously fast energy storage in T-Nb₂O₅
The Charles Hatchett Award is important to identify new applications and markets for Niobium. Introduced over 40 years ago, the Charles Hatchett Award is sponsored by CBMM Niobium and recognizes the best published research on the science and technology of Niobium. The annual award brings together technical experts from around the world and the winning paper is selected by a panel of international experts. The 2018 Charles Hatchett Award winners video unravels the research and the study process on the nature of anomalously fast energy storage in T-Nb2O5 and a scientific perspective on the fast charging behavior of the T-Nb2O5 and its unique properties.
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