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3D Printing Possibilities: Additive Manufacturing Impact Limiters for Transportation Casks
With the significant advances in additive manufacturing (AM), otherwise known as 3D printing, Orano Federal Services and the University of North Carolina at Charlotte recently re-examined the capabilities to print impact limiters for transportation casks used to ship spent nuclear fuel. Impact limiters protect transportation casks (sometimes also referred to as transportation overpacks) and their contents during an accident. Impact limiter designs must withstand testing based on a certain significance level of hypothetical accidents, including drops, crushing, fires, and immersion in water.
Piero Martin
Fusion Science and Technology | Volume 59 | Number 3 | April 2011 | Pages 602-616
Lecture | Fourth ITER International Summer School (IISS2010) | doi.org/10.13182/FST11-A11700
Articles are hosted by Taylor and Francis Online.
This lecture was given at the 4th ITER International Summer School in May 2010 to describe the broad research program on feedback control of magnetohydrodynamic (MHD) stability performed by the reversed field pinch (RFP) community and its implication for magnetic confinement fusion. The lecture provides a bird's-eye view on RFP feedback control results obtained with active coils, and on their implications for ITER and tokamaks in general. A number of selected key examples are presented with the aim of highlighting the more innovative and broadly applicable results. RFPs provide a significant contribution to the effort of the broader fusion community on active control of MHD stability, and to fusion science in general.