Vibration Analysis of Aluminum Alloy Based Hybrid Composite Material
V. Shalini1, Prof. R. Surendran2, Dr. N. Nandakumar3, Dr. S. Periyasamy 4
1 PG Scholar, Engineering Design, Government College of Technology, Coimbatore, India.
2 Assistant Professor, Mechanical Engineering Department, Government College of Technology, Coimbatore,
India.
3 Professor, Mechanical Engineering Department, Government College of Technology, Coimbatore, India.
4 Associate Professor, Mechanical Engineering Department, Government College of Technology, Coimbatore,
India.
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Abstract - These focuses on the Vibration analysis of seven different Hybrid composite materials. The composites include varying compositions of LM6, Si3N4, and MoS2. Static structural analysis was conducted to evaluate the deformation behaviour under applied loads, while modal analysis was performed to investigate the natural frequencies and mode shapes. The results provide insights into the mechanical properties and dynamic behaviour of the composites. Comparisons between different compositions reveal the effects of Si3N4 and MoS2 on the stiffness, strength, and deformation characteristics of the LM6 matrix material. The analysis was conducted using ANSYS Workbench software, employing numerical simulations and theoretical models. The static structural analysis investigated the deformation behaviour of the composites under applied loads, providing insights into their mechanical properties such as stiffness, strength, and deformation characteristics. Modal analysis was performed to study the natural frequencies and mode shapes of the composites, enabling the understanding of their dynamic behaviour and vibration properties. By comparing the results of the different compositions, the influence of Si3N4 and MoS2 on the composite's mechanical and dynamic properties was assessed. The outcomes of this project offer valuable insights into the design and optimization of composite materials, propelling advancements in various industries and fostering technological innovation.
Key Words: Vibration, ANSYS Workbench, Static Structural analysis, Modal Analysis, Hybrid Composites, Mode shapes.