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- W2053409690 abstract "Simulation tools have been effectively employed in many applications for numerically investigate on the development of efficient production processes aiming to materials quality enhancement. Such studies allow drastically reduction of the number of experimental tests and consequently of the development costs and further of the time-to-market. In this framework, the present paper focuses on the study of filling rate and of the solidification times of Titanium alloys. Starting from some acquired experimental data, considering appropriate boundary conditions and properly setting of the external parameters (flow-rate, liquid temperature, etc.), the study targets optimizing the processing cycle and reducing the presence of defects in casting. The cast tree used for the research is a symmetric one, including two samples used for Charpy impact tests and two samples for tensile tests. The considered commercial software provides a complete finite element solution and has been employed facilitating to prevent casting defects. During the simulations, the process parameters and the alloy properties have been explicitly taken into account. Information about how the parameters should be modified to achieve the optimal conditions close to a defects-free castings was achieved. A good correlation, in terms of microstructural analysis, between the simulation data and the experimentally obtained results was obtained, confirming the reliability of the model." @default.
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- W2053409690 date "2014-05-01" @default.
- W2053409690 modified "2023-10-16" @default.
- W2053409690 title "Numerical Investigation for Evaluation and Prevention of Casting Defects in TiAl Alloys" @default.
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- W2053409690 doi "https://doi.org/10.4028/www.scientific.net/kem.611-612.1807" @default.
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