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Investigating the influence of rubber reinforcement on mechanical and vibration properties in glass and jute epoxy hybrid composite

  • Sahebrao Chavan,
  • Nishant Kulkarni,
  • Ashok Mache

摘要

This research paper focuses on the development and characterization of a hybrid composite material incorporating jute fiber, glass fiber, and rubber, with the aim of achieving improved performance in terms of mechanical and damping properties. The hybrid composite was fabricated using an epoxy resin system (LY556) with a hardener (HY915), mixed at a ratio of 10:1. The rubber was cut into strips and incorporated into the composite matrix. Rubber strips were strategically positioned at angles of 0°, 30°, and 45° angles within the composite laminate to investigate the effects of fiber orientation on damping and mechanical properties. To evaluate the performance of the hybrid composite, a series of tests were conducted, including vibration testing using a Fast Fourier Transform (FFT) analyzer, and tensile, compression, and flexural testing using a universal testing machine. The hybrid composite with a 30° orientation of rubber strips within the glass–jute matrix showed the highest damping capacity. Furthermore, this configuration demonstrated the highest failure strain, indicating a more ductile behavior.