This study exploresABS composites theRice Husk Ash (RHA) development and characterizationCharacterization of acrylonitrile butadiene styrene (ABS) compositesComposites reinforced with rice husk ash (RHA)Rice Husk Ash (RHA), RHA, an agricultural byproduct abundant in silica. Test specimens were fabricated via 3D printing3D printing and subjected to mechanical, thermal, and structural evaluations using tensile testing, scanning electron microscopy (SEM)Scanning Electron Microscopy (SEM), X-ray diffraction (XRDX-ray Diffraction (XRD)), thermogravimetric analysis (TGA), differential scanning calorimetry (DSC), and water absorption tests. The results indicate that the incorporation of RHA affects the mechanical strength, thermal stability, and crystalline structure of ABS, supporting its potential for sustainable compositeComposites applications.

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Mechanical and Thermal Properties of 3D-Printed ABS Composites with Rice Husk Ash Incorporation

  • Gustavo F. Souza,
  • Lourdes Marcela Yataco,
  • Rene R. Oliveira,
  • Rita C. L. B. Rodrigues,
  • Vijaya Rangari,
  • Deepa Kodali,
  • Esperidiana A. B. Moura

摘要

This study exploresABS composites theRice Husk Ash (RHA) development and characterizationCharacterization of acrylonitrile butadiene styrene (ABS) compositesComposites reinforced with rice husk ash (RHA)Rice Husk Ash (RHA), RHA, an agricultural byproduct abundant in silica. Test specimens were fabricated via 3D printing3D printing and subjected to mechanical, thermal, and structural evaluations using tensile testing, scanning electron microscopy (SEM)Scanning Electron Microscopy (SEM), X-ray diffraction (XRDX-ray Diffraction (XRD)), thermogravimetric analysis (TGA), differential scanning calorimetry (DSC), and water absorption tests. The results indicate that the incorporation of RHA affects the mechanical strength, thermal stability, and crystalline structure of ABS, supporting its potential for sustainable compositeComposites applications.