Bimodal impact strength distribution in HDPE composites : formulational effects and bayesian inference
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Date
Authors
Viljoen, David
Labuschagné, Johan
Kuehnert, Ines
Journal Title
Journal ISSN
Volume Title
Publisher
KeAi Communications Co.
Abstract
A bimodal impact strength distribution was found in notched impact specimens of HDPE composites
with calcium carbonate, carbon black, SEBS and stabilisers. The bimodal distribution was only found at
moderate-to-high calcium carbonate loadings, with the likelihood of low impact strength increasing
with increasing stabiliser loading and decreasing with increasing SEBS/CB masterbatch loading. Bayesian
methods were used first to confirm bimodality and then to investigate the effects of formulation on the
performance of the system, based on a hierarchical model with quadratic and interactive terms and
switching based on the sampling of a Bernoulli distribution with a logistic regression informing the
probability of high or low impact strength. The results are contextualised through micrograph fractography and, briefly, differential scanning calorimetry. Results are also reported for unnotched impact tests,
with negative correlations for impact strength with calcium carbonate and stabilisers, a positive correlation with SEBS/CB and interactive effects.
Description
Keywords
Bayesian inference, Polymer composites, Bimodal, Impact strength, Fractography, SDG-09: Industry, innovation and infrastructure
Sustainable Development Goals
SDG-09: Industry, innovation and infrastructure
Citation
Viljoen, D., Labuschagné, J., Kuehnert, I. 2024, 'Bimodal impact strength distribution in HDPE composites : formulational effects and bayesian inference', Advanced Industrial and Engineering Polymer Research, vol. 7, pp. 201-214, doi : 10.1016/j.aiepr.2023.11.001.