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Dynamic Optimization of Induction Heat-Up and Surface Hardening Processes on Complex Spatial Domains

机译:复杂空间域的感应加热和表面硬化过程的动态优化

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This contribution deals with the dynamic optimization of induction heat-up and surface hardening processes for workpieces with complex shapes. Suitable optimal control problems are formulated and tackled by using the formal Lagrangian technique in terms of a first optimize then discretize approach. The numerical solution of the optimality conditions is carried out by using the gradient algorithm in combination with FEM software. The approach is illustrated both for an axisymmetrical workpiece and a gear wheel with complex and non-convex geometry.
机译:该贡献涉及具有复杂形状的工件的感应加热和表面硬化过程的动态优化。在第一次优化方面,通过使用正式的拉格朗日技术制定和解决了合适的最佳控制问题。通过使用与FEM软件组合使用梯度算法来执行最佳状态的数值解。该方法示出了轴对称工件和具有复杂和非凸起几何形状的齿轮。

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