The effect of clay reinforcement of pine pollen grains on the mechanical, anti-corrosion and anti-microbial properties of an epoxy coating

Author:

Mrah Lahouari12,Khiati Zoulikha34,Mezrai Abdelmoumin15

Affiliation:

1. Ecole Supérieure en Génie Electrique et Energétique d’Oran , Chemin Vicinal N°9 , 31000 Oran , Algeria

2. Laboratoire de Chimie des Polymères , Université d'Oran1 Ahmed Ben Bella , BP 1524 ElM'nouer, 31000 Oran , Algeria

3. Département de chimie-physique , Faculté de chimie , Université des Sciences et de la Technologie d’Oran , M. Boudiaf, BP 1505 El M’naouar , 31000 Oran , Algeria

4. Laboratoire de Synthèse Organique , Physico-Chimie , Biomolécules et Environement (L.S.P.B.E) , Université des Sciences et de la Technologie d’Oran Mohamed Boudiaf , USTO-MB , BP 1505, El M’naouer, 31000 Oran , Algeria

5. Laboratoire de Chimie Organique , Substances Naturelles et Analyses (COSNA) , Université Aboubakr Belkaid-Tlemcen , P.O. Box 119 , Tlemcen 13000 , Algeria

Abstract

Abstract In this work, a new material (PP-Mag) was manufactured using pine pollen (PP) and cetyltrimethylammonium bromide (CTA-Mag). By combining PP and Maghnite with an epoxy resin (EP), innovative nanocomposite materials was developed. With different blend compositions, the effect of EP on the mechanical properties, polarisation tests, salt spray tests and morphological characteristics of the blends was studied. The storage modulus (E′) of EP is 2179 MPa, which increases to 2361 MPa with increasing PP-Mag content. The mechanical properties of the blends containing EP/wt%PP/Mag showed an improved performance due to a better adhesion between the two phases when EP is incorporated. It was shown that the PP/Mag materials present in the matrix improve the corrosion resistance according to the different polarisation tests and the salt spray test.

Publisher

Walter de Gruyter GmbH

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