paper

PBPU Elastomer Network Architecture Determination via Corresponding States Analysis of Mechanical Behavior

arXiv:2508.13308

Abstract

In this work we examine the effect of R=[NCO]/[OH] in the R=<1 regime, on the resultant structural topology of polybutadiene polyurethane (PBPU) elastomer networks based on hydroxy-terminated polybutadiene (HTPB). We employ stress-elongation behavior and its modeling, as a tool. We examine this property via a combination of our model for the finite chain phantom networks incorporating the HTPB structural information, with the slip-tube model from the literature, suitably modified phenomenologically. We implement a further normalized Mooney-Rivlin (MR) representation (corresponding deformation states plots), to remove any magnitude bias on the model parameters. The now revealed curvatures of all the MR plots, in turn, reveals the non-correlation between the chain size and crosslink density. This discrepancy occurs due to the R-dependent majority presence of network defects due to sol effects (as obtained from swelling experiments) and non-load bearing pendant branches on the load-bearing network chains.

39 Pages (20 Pages Main Text, 12 Pages Appendices), 24 Figures (13 Figures in Main Text, 11 Figures in Appendix)

PBPU Elastomer Network Architecture Determination via Corresponding States Analysis of Mechanical Behavior · wovepaper