Open Access Research Article

Chemical and Mechanical Properties for Rosin-based Hybrid Resins

ALEXANDRU BOLCU, NICOLETA CIOATERA, DUMITRU BOLCU, MARIUS MARINEL STANESCU, ION CIUCA, ALIN DINITA, IULIAN CONSTANTIN
Published 05 Apr 2023
Pages 67–74

Abstract

The increasing concern for the protection of the environment, through the use of renewable natural resources, has led in the last decades to the realization of a number of natural polymers or hybrids to be able to replace petroleum-based polymeric materials. Rosin is a low-cost wood resin extracted from conifers. In this paper, based on FTIR and Raman analyses, the spectra of natural Rosin resin and some hybrid resins with volume proportions of 45, 55 and 65% Rosin were studied. Some mechanical properties such as modulus of elasticity, elongation at break, tensile strength were determined from stress-strain diagrams obtained from tensile stress. Increasing the volume proportion of Rosin leads to a decrease in stiffness and strength properties and obtaining a visco-elastic behavior.

Keywords: Rosin; hybrid resin; FTIR and Raman analyses; chemical and mechanical properties

How to Cite this Article

BOLCU, A., CIOATERA, N., BOLCU, D., STANESCU, M., CIUCA, I., DINITA, A., & CONSTANTIN, I. (2023). Chemical and Mechanical Properties for Rosin-based Hybrid Resins. Materiale Plastice, 60(1), 67–74. https://doi.org/10.37358/MP.23.1.5646
BOLCU A, CIOATERA N, BOLCU D, STANESCU M, CIUCA I, DINITA A, CONSTANTIN I. Chemical and Mechanical Properties for Rosin-based Hybrid Resins. Materiale Plastice. 2023;60(1):67–74. doi: 10.37358/MP.23.1.5646
A. BOLCU, N. CIOATERA, D. BOLCU, M. STANESCU, I. CIUCA, A. DINITA, and I. CONSTANTIN, "Chemical and Mechanical Properties for Rosin-based Hybrid Resins,” Materiale Plastice, vol. 60, no. 1, pp. 67–74, 2023. doi: 10.37358/MP.23.1.5646
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