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Investigating the Effect of Size and Shape of Perforations on Natural Frequency of an Acoustic Panel made of Natural Fiber Reinforced Composites by Modal Analysis

EasyChair Preprint 2265

14 pagesDate: December 26, 2019

Abstract

The main aim of this research is to analyse the modal response of an acoustic panel made of Natural Fiber Reinforced Composites (NFRC) by varying the size and shape of perforations in it. NFRC are proved to be excellent acoustic absorbers. Hence, researches have been made on developing an acoustic panel made of NFRC. Acoustic panels with perforations turned out to be successful because of its effective absorption. In general, researchers consider only the effect of size and shape of perforations on the acoustic absorption whereas, leaving away the effect of size and shape of perforations on the modal response. Hence this research has been performed to understand the effect of size and shape of the perforations on the modal response of an acoustic panel made of PLA-OPEFBF composite. Composite were prepared using conventional hot-press techniques. Design of an acoustic panel was made using SolidWorks and the modal response analysis is performed using ANSYS. The result shows increase or decrease in size of the perforation affects the natural frequency of the system. This research shows the importance of considering the effect of considering the size and shape of the perforations during the development of an acoustic panel.

Keyphrases: Natural Fiber Reinforced Composite, acoustic panel, modal analysis, size and shape of perforations

BibTeX entry
BibTeX does not have the right entry for preprints. This is a hack for producing the correct reference:
@booklet{EasyChair:2265,
  author    = {Vignesh Sekar and Mazin Zarrouq and Satesh Narayana Namasivayam},
  title     = {Investigating the Effect of Size and Shape of Perforations on Natural Frequency of an Acoustic Panel made of Natural Fiber Reinforced Composites by Modal Analysis},
  howpublished = {EasyChair Preprint 2265},
  year      = {EasyChair, 2019}}
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