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- W1569610162 abstract "One approach to improve fatigue resistance of A319 alloy cast components is to reduce the size of microstructural discontinuities by increasing cooling rates during solidification. A combination of experimental and numerical methods were used to explore the efficacy of using a water-cooled chill to increase cooling rates during solidification in A319 alloy cast in a chilled-wedge format. A solid and a water-cooled chill were designed and installed in a bonded sand mould package instrumented with thermocouples to measure cooling rates and two Linear Variable Differential Transducers to measure the displacement of the casting/chill interface. A mathematical model was developed to evaluate the casting/chill interface heat transfer behaviour in the casting produced with the two chill configurations. The experimental results show that for the casting format studied, the water-cooled chill is able to significantly increase cooling rates during solidification up to 50mm from the chill and the macro-scale gap that develops at the interface is significantly larger for the case of the solid chill compared with the water-cooled chill." @default.
- W1569610162 created "2016-06-24" @default.
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- W1569610162 date "2015-01-01" @default.
- W1569610162 modified "2023-09-25" @default.
- W1569610162 title "Evaluation of the Casting/Chill Interface Thermal Behaviour During A319 Alloy Sand Casting Process" @default.
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- W1569610162 doi "https://doi.org/10.1007/978-3-319-48117-3_44" @default.
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