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- W2140317967 abstract "The design of gas turbine disk forgings is a complicated and highly iterative process. There are many design constraints including bounds on strain, temperature, strain rate, press tonnage, dwell time, sonic coverage, fillet radius, draft angles, and die-fill. The analysis involves thermal-mechanical coupling, nonlinear material behavior, friction modeling, very large deformation, time-dependency, and multiple operations. Furthermore, the die-designers in today's cost-competitive environment have to produce a design as near-net-shape as possible, i.e., a design that requires the least amount of forging material and yet simultaneously meets all of the design specifications. It is a challenge for a manual design process to generate a good forging design, let alone an optimal one. By automating the design and analysis tools involved and also incorporating optimization techniques, it is possible to significantly reduce the lead time and engineering cost as well as to achieve a design that is not just acceptable but optimal with respect to user-defined criteria such as weight, cost, and performance." @default.
- W2140317967 created "2016-06-24" @default.
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- W2140317967 date "2000-09-06" @default.
- W2140317967 modified "2023-09-25" @default.
- W2140317967 title "A practical approach to forging optimization" @default.
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- W2140317967 doi "https://doi.org/10.2514/6.2000-4940" @default.
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