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NASA NTRS · 19970021685

Gravitational Effects on Closed-Cellular-Foam Microstructure

Abstract

Polyurethane foam has been produced in low gravity for the first time. The cause and distribution of different void or pore sizes are elucidated from direct comparison of unit-gravity and low-gravity samples. Low gravity is found to increase the pore roundness by 17% and reduce the void size by 50%. The standard deviation for pores becomes narrower (a more homogeneous foam is produced) in low gravity. Both a Gaussian and a Weibull model fail to describe the statistical distribution of void areas, and hence the governing dynamics do not combine small voids in either a uniform or a dependent fashion to make larger voids. Instead, the void areas follow an exponential law, which effectively randomizes the production of void sizes in a nondependent fashion consistent more with single nucleation than with multiple or combining events.

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BibTeXRIS

Noever, David A., Cronise, Raymond J., Wessling, Francis C., McMannus, Samuel P., Mathews, John, Patel, Darayas. 1996-04-01. Gravitational Effects on Closed-Cellular-Foam Microstructure. https://ntrs.nasa.gov/citations/19970021685

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