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Titlebook: Mechanics of Additive and Advanced Manufacturing, Volume 8; Proceedings of the 2 Sharlotte Kramer,Jennifer L. Jordan,Alison M. Bees Confere

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Dynamic Thermal Softening Behavior of Additive Materials for Hybrid Manufacturing,een the mechanical behavior of additively as-built materials compared to their wrought counterparts. As such, the use of wrought material properties for the simulation and optimization of the machining step in a hybrid manufacturing process may produce inaccurate results. The present work uses the N
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Correlation Between Process Parameters and Mechanical Properties in Parts Printed by the Fused Depoing the process parameters which significantly impact the mechanical properties is critical to achieving the ultimate final part quality sought by industry today. This work investigates the effect of different process parameters including nozzle temperature, printing speed, and print orientation on
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Shock Propagation and Deformation of Additively-Manufactured Polymer Foams with Engineered Porosityd both experimentally and computationally. In this study, a single-stage light gas gun is used to impact cube-shaped specimens, 40 mm on a side, instrumented with photon Doppler velocimeter (PDV) light probes to capture free surface velocities and side-looking high-speed video to capture deformation
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Mechanical and Thermal Characterization of Fused Filament Fabrication Polyvinylidene Fluoride (PVDFability to show piezoelectric behavior are some of these properties that are attractive to many industrial applications. Three-dimensional printing of PVDF is extremely difficult using fused filament fabrication processes due to the large coefficient of thermal expansion of homopolymer PVDF, which r
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