cmhpc.emae case.edu

Computational Mechanics High Performance Computing Laboratory

Terminal ballistic and high velocity impacts on metallic targets at 100ms - 3kms. Hypervelocity Impacts-Small polymer particle impacts on metallic targets at 5kms-10kms. Taylor-anvil impact tests of polyurea projectile at 200ms - 450ms. Failure mechanism of ceramic composites, metal alloys and glass materials. Simulation of Kaplun balloons filled with water or gas. Multiscale and multiphysics simulation of the human heart. Bo Li, Ph.D. Assistant Professor of Mechanical and Aerospace Engineering.

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Computational Mechanics High Performance Computing Laboratory

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Terminal ballistic and high velocity impacts on metallic targets at 100ms - 3kms. Hypervelocity Impacts-Small polymer particle impacts on metallic targets at 5kms-10kms. Taylor-anvil impact tests of polyurea projectile at 200ms - 450ms. Failure mechanism of ceramic composites, metal alloys and glass materials. Simulation of Kaplun balloons filled with water or gas. Multiscale and multiphysics simulation of the human heart. Bo Li, Ph.D. Assistant Professor of Mechanical and Aerospace Engineering.

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The web site states the following, "Terminal ballistic and high velocity impacts on metallic targets at 100ms - 3kms." We noticed that the web page also stated " Hypervelocity Impacts-Small polymer particle impacts on metallic targets at 5kms-10kms." It also said " Taylor-anvil impact tests of polyurea projectile at 200ms - 450ms. Failure mechanism of ceramic composites, metal alloys and glass materials. Simulation of Kaplun balloons filled with water or gas. Multiscale and multiphysics simulation of the human heart. Assistant Professor of Mechanical and Aerospace Engineering."

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