New 3-D forms of graphene can be 10 times as strong as steel using porous geometry at a fraction of the weight
Porous, 3-D forms of graphene developed at MIT can be 10 times as strong as steel but much lighter.
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Porous, 3-D forms of graphene developed at MIT can be 10 times as strong as steel but much lighter.
MIT Professional Education is launching a new live virtual course, “Machine Learning for Materials Informatics.”
Cambridge, Massachusetts (PRWEB) August 22, 2022 -- MIT Professional Education is launching a new live virtual course, “Machine Learning for Materials
E-Mail IMAGE: This visualization shows the deep-learning approach in predicting physical fields given different input geometries. The left figure shows a varying geometry of the composite in which the soft material is... view more Credit: Courtesy of Zhenze Yang, Markus Buehler, et al Isaac Newton may have met his match. For centuries, engineers have relied on physical laws -- developed by Newton and others -- to understand the stresses and strains on the materials they work with. But solving those equations can be a computational slog, especially for complex materials. MIT rese...
Credits: Courtesy of the researchers Previous image Isaac Newton may have met his match. For centuries, engineers have relied on physical laws — developed by Newton and others — to understand the stresses and strains on the materials they work with. But solving those equations can be a computational slog, especially for complex materials. MIT researchers have developed a technique to quickly determine certain properties of a material, like stress and strain, based on an image of the material showing its internal structure. The approach could one day elimi...