DOE OSTI · 1892065
Development of scalable design optimization parameters for bi-component protective systems
Abstract
Bi-component protection-systems need to withstand a variety of extreme loading conditions such as high-velocity projectile impact to shock and blast mitigation. The large number of parameters at each stage of bi-component protection system design process results in a near-infinite number of possible variables for optimization. The aim of this project is to identify the scaling laws linking material and geometric scales of the problem to the final impact performance, further including the effects of wave propagation/interaction and inter-component bonding. Specifically, the impact dynamics for different optimal projectile/target density ratios and relative component mass fractions are quantified for bonded ceramic/titanium alloy systems. The impact behavior such as wave mechanics and damage propagation within the target system is characterized and quantified via digital image correlation or via x-ray phase-contrast imaging.
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Guo, Zherui, Lillo, Thomas M. 2022-09-19. Development of scalable design optimization parameters for bi-component protective systems. https://www.osti.gov/biblio/1892065
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