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- W4386004644 abstract "The functionality of an engine relies on the efficient working of its piston. The piston is always acted upon by cyclic stresses and dynamic loads which directly affects its performance. Therefore, it is imperative to study its static and modal characteristics. The present study has been carried out to analyse the natural frequencies of vibration of a mechanical piston. The piston model used in the study has been modelled for two different aluminium alloys AA6105 and A7075-T6. Honda Activa 110 cc BS-IV Engine has been used for standard piston dimensions. Finite element analysis solver ANSYS has been used to perform static structural analyses. The equivalent stress, shear stress, and deformation in the solid model of the piston were obtained for two different aluminium alloys. The von Mises stress is computed as 163.87 MPa and 157.75 MPa for AA6105 and A7075-T6, respectively, which were below the yield value of the material. Six vibration modes were computed by performing modal analysis on piston considering both the aluminium alloy materials. The lowest natural frequencies reported for AA6105 and A7075-T6 were 8320.8 Hz and 8185.6 Hz, respectively. The piston skirt shows maximum deformation under different modes of natural frequencies. The solid model showed improvement in static and dynamic capabilities of a piston. Findings of this study will serve as a reference and framework for piston design." @default.
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- W4386004644 date "2023-01-01" @default.
- W4386004644 modified "2023-10-12" @default.
- W4386004644 title "Structural and Dynamic Analysis of an Aluminium Alloy Piston Using Finite Element Method" @default.
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- W4386004644 doi "https://doi.org/10.1007/978-981-99-3033-3_35" @default.
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