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Compressive behavior of rigid polyurethane foams nanostructured with bacterial nanocellulose at low and intermediate strain rates

Chiacchiarelli, Leonel Matías et al · RI ITBA · 2020

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Summary

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"Nanocellulose reinforced foams are lightweight with improved mechanical properties; however, the strain-rate effect on their mechanical response is not yet fully understood. In this work, rigid polyurethane foams (PUFs) nanostructured with bacterial nanocellulose at 0.2 wt % (BNCF) and without it (PUF) are synthesized and subjected to compression tests at different strain rates. The BNC acts as a nucleation agent, reducing the cell size but maintaining a similar apparent density of 40.4 3.3 kg m −3 Both BNCF and PUF exhibit strain-rate effect on yield stress and densification strain. The BNCF exhibits localized progressive crushing and reduced friability, causing a remarkable recovery in the transverse direction. Numerical simulations show that functionally graded foams subjected to impact could be designed using different layers of PUF and BNCF to vary energy absorption and acceleration rate. The results presented herein warrant further research of the mechanical properties of nanostructured foams for impact applications."

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APA 7

Chiacchiarelli, L. M. E. A. (2020). Compressive behavior of rigid polyurethane foams nanostructured with bacterial nanocellulose at low and intermediate strain rates. http://ri.itba.edu.ar/handle/20.500.14769/1896

MLA

Chiacchiarelli, Leonel Matías et al. "Compressive behavior of rigid polyurethane foams nanostructured with bacterial nanocellulose at low and intermediate strain rates." 2020. http://ri.itba.edu.ar/handle/20.500.14769/1896.

Chicago

Chiacchiarelli, Leonel Matías et al. 2020. "Compressive behavior of rigid polyurethane foams nanostructured with bacterial nanocellulose at low and intermediate strain rates.". http://ri.itba.edu.ar/handle/20.500.14769/1896.

Harvard

Chiacchiarelli, L. M. E. A. 2020, Compressive behavior of rigid polyurethane foams nanostructured with bacterial nanocellulose at low and intermediate strain rates, RI ITBA, available at: http://ri.itba.edu.ar/handle/20.500.14769/1896 [Accessed 9 Aug. 2026].

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Title
Compressive behavior of rigid polyurethane foams nanostructured with bacterial nanocellulose at low and intermediate strain rates
Author / contributors
Chiacchiarelli, Leonel Matías et al
Publisher
RI ITBA
Publication year
2020
ISSN
0021-8995
ISSN
0021-8995
Language
English

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