Jute textiles with enhanced interfacial bonding as reinforcement for cementitious composites

Author:

Kohan Lais1ORCID,Fioroni Carlos A1ORCID,Azevedo Adriano GDS1ORCID,Leonardi Barbara2ORCID,Baruque-Ramos Julia3ORCID,Fangueiro Raul4ORCID,Junior Holmer Savastano1ORCID

Affiliation:

1. College of Animal Science and Food Engineering, University of São Paulo, Pirassununga, Brazil

2. Golden Technology, São Jose dos Campos, Brazil

3. School of Arts Sciences and Humanities, University of São Paulo, São Paulo, Brazil

4. Department of Textile Engineering, University of Minho, Guimarães, Portugal

Abstract

In fabric-cement composites, the limited impregnation of cementitious matrix products due to thick and twisted yarns leads to premature failure due to poor bonding strength. In addition, cellulosic textile reinforcements have many challenges about durability, appearance of voids at mortar-fiber interface, and rise of microcracks. Textile performances were evaluated in different conditions: coated with micro-silica powder, pretreated, and without any treatment. This study also assessed how textile weave structure and yarn geometry configuration affect the interactions of two different jute textiles (Close Weave Jute Fabric – CJF and Open Weave Jute Fabric - OJT) when used as reinforcement in mortar matrix. Textile characterization and composite analysis (by four-point bending tests, SEM/EDS, and physical tests) were conducted to assess the different textile reinforcements, the mechanical behavior of produced composites, and visual and chemical compounds analysis of the interfacial transition zone between textile and mortar matrix after silica coating. Micro silica powder coating was deemed necessary to address limited impregnation and to avoid telescope pull-off. Weave structure determined the difference between jute fabrics to reinforce mortar matrix, being only OJF (larger interstices in the weave structure) with micro silica coating allowed a better matrix interaction and stood out from the other textiles and achieved the best specific energy of all samples, (4.28 ± 0.91) kJ.m-2. Calcium and silicon inside the yarn interstices and textile-matrix interface indicate the formation of strong bonds by calcium-silicate-hydrate products. The silica coating treatment enhanced formation of strong bonds, which demonstrated future promise for natural fiber application.

Funder

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

Fundação de Amparo à Pesquisa do Estado de São Paulo

Publisher

SAGE Publications

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