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January 23, 2026Materialwissenschaft und Werkstofftechnik0 citations

Wear performance enhancement in glass‐epoxy composites with clamshell and cenosphere fillers for industrial application

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AKA. Manoj KumarBJB. Hemalata Jena

Key Points

  • The aim is to evaluate the wear performance of hybrid glass-epoxy composites filled with clamshells and cenospheres.
  • Conducted dry abrasion tests on composites with varying filler content and applied loads.
  • Utilized Taguchi methodology to analyze process parameters affecting wear.
  • Employed a L27 orthogonal array design for optimal parameter determination.
  • Examined abraded surfaces of the composites using scanning electron microscopy.
  • Clamshell and cenosphere fillers improved the wear resistance of glass-epoxy composites significantly.
  • Applied load was identified as the most influential factor affecting wear resistance.
  • Composites with 10 wt.-% filler content demonstrated superior abrasion resistance.

Abstract

This research explores the potential of utilizing marine waste, specifically clamshells, and industrial waste in the form of cenospheres to create a novel class of hybrid glass epoxy composite materials. To assess their performance, a dry abrasion test was conducted on these composites, considering factors such as filler content (ranging from 0 wt.‐% to 20 wt.‐% (w filler )), applied load (from 70.1 N to 146.7 N), sliding velocity (between 1.5 m/s and 2.1 m/s), and sliding distance (ranging from 75 m to 125 m) as the four major process parameters. The wear experiments followed the Taguchi methodology and employed an L27 orthogonal array to determine the optimal process parameters for minimizing wear in the composite materials. The introduction of fillers into the glass epoxy composites significantly improved their resistance to dry abrasion. Notably, the applied load emerged as the most influential factor affecting abrasive wear in these composites. For composites containing w filler = 10 wt.‐%, cenosphere‐filled composites and clamshells‐filled composites exhibited superior wear resistance. Subsequently, the abraded surfaces of the composites were examined under a scanning electron microscope, and the potential mechanisms of abrasion were comprehensively analysed and presented.

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Cite This Study

Kumar et al. (2026) studied this question.

synapsesocial.com/papers/69731005c8125b09b0d1fc6dhttps://doi.org/10.1002/mawe.70072
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