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Deformation control through fixture layout design and clamping force optimization

机译:通过夹具布局设计和夹紧力优化控制变形

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摘要

Workpiece deformation must be controlled in the numerical control machining process. Fixture layout and clamping force are two main aspects that influence the degree and distribution of machining deformation. In this paper, a multi-objective model was established to reduce the degree of deformation and to increase the distributing uniformity of deformation. The finite element method was employed to analyze the deformation. A genetic algorithm was developed to solve the optimization model. Finally, an example illustrated that a satisfactory result was obtained, which is far superior to the experiential one. The multi-objective model can reduce the machining deformation effectively and improve the distribution condition.
机译:在数控加工过程中必须控制工件变形。夹具的布置和夹紧力是影响加工变形程度和分布的两个主要方面。本文建立了一个多目标模型,以减少变形的程度,增加变形的分布均匀性。有限元方法被用来分析变形。开发了遗传算法来求解优化模型。最后,通过一个例子说明了获得了令人满意的结果,该结果远胜于体验性结果。多目标模型可以有效地减少加工变形,改善分布条件。

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