Mechanical and viscoelastic properties of basalt-hemp hybrid reinforced polypropylene

Author:

Rhodes Kyleigh1,Pelaez-Samaniego Manuel Raul12ORCID,Kiziltas Alper3,Preston Jim4,Meysami Mohammad5,Geda Andrew6,Yadama Vikram1ORCID

Affiliation:

1. Willamette Valley Company, Eugene, OR, USA

2. Faculty of Chemical Sciences, Universidad de Cuenca, Cuenca, Ecuador

3. Amazon Lab126, Sunnyvale, CA, USA

4. RheTech LLC, Whitmore Lake, MI, USA

5. BASF Corporation, Budd Lake, NJ, USA

6. Hyundai-Kia America Technical Center, Inc., Superior Twp, MI, USA

Abstract

A growing concern of climate change and waste pollution is causing a shift in products towards green materials. The automotive industry is exploring environmentally friendly alternatives to glass fibers (GF). This research focuses on understanding interactions between constituents of biocomposites made up of basalt fiber (BF) and hemp hurd particle fiber (HF) reinforced polypropylene (PP), and statistically comparing the mechanical properties. The addition of a coupling agent has significantly improved the performance and fiber-matrix interactions in the biocomposite blends. The elastic modulus of some BF/HF/PP mixtures were comparable to the GF/PP composite; however, the GF still outperformed in strength. Rotational and capillary rheometer analysis determined the viscosities of all formulations displaying that basalt composites were consistently lower in viscosity than the glass fiber composite, indicating easier processing conditions.

Funder

National Science Foundation I/UCRC

Publisher

SAGE Publications

Subject

Condensed Matter Physics,Ceramics and Composites

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