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- W3088884744 abstract "Abstract Al-Cu pure metal without intermetallics and three different Metal Intermetallic Laminates (MIL) with varying intermetallic phase quantity are considered in this study. The varying thickness of intermetallic phases viz, Al2Cu, AlCu and Al4Cu9 were obtained by controlling the process parameters. Finite Element analysis of these MILs was carried out to analyze the mechanical response of these laminates. The mechanical properties data were obtained from the quasi-static compression tests were simulated using Abaqus software by loading the MILs in perpendicular direction. The stress distribution across each laminate was analyzed and the stress–strain graph for every individual MIL was generated from the simulation results. The strength of the MIL was found to increase with the increase in the volume fraction of the intermetallic phases. It is also seen that, among all the three MILs, MIL-4 (Processing parameters: 12 MPa, 475 °C and 120 min) showed higher strength. This is attributed to the presence of higher thickness of the intermetallics formed by the application of higher temperatures and time." @default.
- W3088884744 created "2020-10-01" @default.
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- W3088884744 date "2021-01-01" @default.
- W3088884744 modified "2023-09-24" @default.
- W3088884744 title "Simulations on compressive properties of Al-Cu metal intermetallic laminates (MILs) using FEA" @default.
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- W3088884744 doi "https://doi.org/10.1016/j.matpr.2020.08.328" @default.
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