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Patel, Zainab S; Alrashed, Abdulaziz O; Dwivedi, Kush; Salviato, Marco; Meza, Lucas R (, Additive Manufacturing)
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Sridhar, Santhosh; Kumar, Vipin; Meza, Lucas; Salviato, Marco (, Polymer Engineering & Science)Abstract The solid‐state foaming process produces microcellular foams with an outer layer of solid skin that encapsulates the cellular core. In this article, we implement a 1D model to predict the thickness of the solid skin based on the effectiveTgof the polymer‐gas system for a given foaming temperature. The model is based on the understanding that bubbles nucleate when the foaming temperature exceeds the effectiveTgduring the foaming process. The model was validated with experimental results on the PC‐CO2system, which showed that skin thickness decreases with increased foaming temperature. We also developed a linear correlation to accurately predict effectiveTgat different CO2concentrations. The article also explores the model sensitivity to the key input parameters related to gas diffusion. HighlightsLinear correlation to accurately predict effectiveTgprofiles in PC‐CO2system.Increasing foaming temperature decreases skin thickness.Model is sensitive to the input parameters related to gas diffusion.more » « less
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Salviato, Marco (, International Journal of Solids and Structures)
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Li, Weixin; Qiao, Yao; Fenner, Joel; Warren, Kyle; Salviato, Marco; Bažant, Zdeněk P.; Cusatis, Gianluca (, Composites Part C: Open Access)
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