Virtual Fatigue Behaviour Analysis of Coir Fibre-Reinforced PVC Composites

Author:

Venkatachalam Gopalan1ORCID,Jayanthi Umapathy2,Suja Arumugasamy2ORCID,Gnanaaksaya Senthil2,Aravindh Sampath2ORCID,Velu Pitchumani Shenbaga2ORCID,Balamurugan Kulendran3ORCID,Gopal Rajendiran4ORCID

Affiliation:

1. Centre for Innovation and Product Development, Vellore Institute of Technology, Chennai 600127, Tamil Nadu, India

2. School of Mechanical Engineering, Vellore Institute of Technology, Chennai 600127, Tamil Nadu, India

3. Department of Mechanical Engineering, Government College of Engineering, Erode 638316, Tamil Nadu, India

4. Automotive Engineering Program, Department of Mechanical and Industrial Engineering, Bahir Dar Institute of Technology, Bahir Dar, Ethiopia

Abstract

PVC (polyvinyl chloride) is a tough polymer used in applications, including plumbing and construction materials. As natural fibre-reinforced composites have more advantages over conventional synthetic composites, this paper focuses on the fatigue analysis of PVC composite which is reinforced with coir fibre. The influences of three input parameters, namely, the size of the coir fibre, coir fibre content, and the chemicals that are used in the treatment of coir fibre on the fatigue life of the composite are examined. In the response surface model (RSM), Box-Behnken designs (BBD) are employed for the preparation/analysis/optimization of the samples. ANSYS software is used to perform the fatigue analysis of different samples containing various combinations of the parameters. To determine the effects of various input parameters on the fatigue behaviour of composites, ANOVA is employed to determine their optimal levels. Regression equations are established to determine the fatigue limit. When treated with triethoxy(ethyl)silane, coir with a concentration of 6 wt.% and a particle size of 75 μm exhibits a maximum fatigue limit of 2.819 MPa.

Publisher

Hindawi Limited

Subject

Polymers and Plastics

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