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Umesh Gandhi is Executive Scientist at the Toyota Research Institute North America (TRINA) in Ann Arbor, MI, and was formerly Staff Engineer at General Motors. He holds a Ph.D. from the University of Michigan.
Sebastian Goris is Senior Research Engineer at 3M, in the Specialty Film and Polymer Processing Group. He holds a Ph.D. from the University of Wisconsin-Madison, where he also carried out postdoctoral research.
Tim A. Osswald, Ph.D., is Kuo K. and Cindy F. Wang Professor at the University of Wisconsin-Madison College of Engineering and Honorary Professor of Plastics Technology at the University of Erlangen-Nuremberg and the National University of Colombia. He is the author of many books and book chapters, as well as over 100 papers in the field of plastics technology.
Yu-Yang Song is Senior Scientist at the Toyota Research Institute North America (TRINA) in Ann Arbor, MI. He holds a PhD from Wayne State University.
Umesh Gandhi is Executive Scientist at the Toyota Research Institute North America (TRINA) in Ann Arbor, MI, and was formerly Staff Engineer at General Motors. He holds a Ph.D. from the University of Michigan.
Sebastian Goris is Senior Research Engineer at 3M, in the Specialty Film and Polymer Processing Group. He holds a Ph.D. from the University of Wisconsin-Madison, where he also carried out postdoctoral research.
Tim A. Osswald, Ph.D., is Kuo K. and Cindy F. Wang Professor at the University of Wisconsin-Madison College of Engineering and Honorary Professor of Plastics Technology at the University of Erlangen-Nuremberg and the National University of Colombia. He is the author of many books and book chapters, as well as over 100 papers in the field of plastics technology.
Yu-Yang Song is Senior Scientist at the Toyota Research Institute North America (TRINA) in Ann Arbor, MI. He holds a PhD from Wayne State University.
"Die Ergebnisse jahrelanger Zusammenarbeit zwischen Industrie und Wissenschaft auf diesem Gebiet werden umfassend und leicht verständlich dargestellt. Das Buch bietet einen praktischen Ansatz zur erfolgreichen Strukturanalyse von diskontinuierlich faserverstärkten Kunststoffen. Dazu gehören die Prozesssimulation, die Bestimmung der Mikrostruktur sowie die Abschätzung der Materialeigenschaften im Bauteil auf der Grundlage des Faserzustands sowie der Umgebungsbedingungen." Plasticker.de, 11.05.2020
"Die Ergebnisse jahrelanger Zusammenarbeit zwischen Industrie und Wissenschaft auf diesem Gebiet werden umfassend und leicht verständlich dargestellt. Das Buch bietet einen praktischen Ansatz zur erfolgreichen Strukturanalyse von diskontinuierlich faserverstärkten Kunststoffen. Dazu gehören die Prozesssimulation, die Bestimmung der Mikrostruktur sowie die Abschätzung der Materialeigenschaften im Bauteil auf der Grundlage des Faserzustands sowie der Umgebungsbedingungen." Plasticker.de, 11.05.2020