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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Dynamic optimization method with applications for machine tools based on approximation model
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Dynamic optimization method with applications for machine tools based on approximation model

机译:基于近似模型的机床应用动态优化方法

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摘要

Natural frequencies and modal shapes of machine tools have position-dependent characteristics owing to their dynamic behaviors changing with the positions of moving parts. It is time-consuming and difficult to evaluate the dynamic behaviors of machine tools and their machining accuracy at different positions. In this paper, a Kriging approximation model coupled with finite element method is proposed to substitute the dynamic equations for obtaining the position-dependent natural frequencies of a machine tool, as well as relative positions between the tool and the workpiece during the machining process. Based on the proposed method, dynamic performance optimization design of the machine tool is conducted under the condition of minimum relative positions. Three case studies are illustrated to demonstrate the implementation of the proposed method.
机译:由于其动态行为随着运动部件的位置而变化,机床的自然频率和模态形状具有位置依赖性特征。 它是耗时且难以评估不同位置的机床的动态行为及其加工精度。 在本文中,提出了一种与有限元方法耦合的Kriging近似模型,以替代动态方程,以获得机床的位置依赖性自然频率,以及在加工过程中工具和工件之间的相对位置。 基于所提出的方法,机床的动态性能优化设计在最小相对位置的条件下进行。 示出了三种案例研究以证明所提出的方法的实施。

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