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Optimum design of chills in the sand casting process

机译:砂型铸造过程中冷风的优化设计

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摘要

Are-meshing free algorithm is presented for optimizing the size and shape of chills in a sand casting process. The heat conduction in each chill is assumed to be one-dimensional normal to its contact surface. The chill is removed from the casting layout and replaced with heat fluxes applied on the associated mould and casting interfaces. The change in size and shape of the chill is modeled by moving the borders of the interface contact regrions. A change in thickness of the chill is also included using a parameter which controls the magnitude of the interface heat fluxes and implies the thermal capacity of the chill. The model is linked to an optimization tool to search for the optimum set of dimensions of the chill that produces a prescribed directional coolign in the casting. A test case is solved to demonstrate the capability of the proposed algorithm in optimizing chill design in complex geometries.
机译:提出了无网格划分算法,用于优化砂型铸造过程中冷风的尺寸和形状。假设每次冷却中的热传导都垂直于其接触面的一维。从铸件布局中除去冷气,并用施加在相关的模具和铸件界面上的热通量代替。通过移动界面触点区域的边界来模拟寒流的大小和形状的变化。还使用控制界面热通量的大小并暗示冷却剂的热容量的参数来包括冷却剂厚度的变化。该模型链接到优化工具,以搜索在铸件中产生规定的定向冷却液的冷却液最佳尺寸集。解决了一个测试案例,以证明所提出算法在复杂几何形状中优化冷却设计的能力。

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