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A Meta-model Framework forGrinding Simulation

机译:元模型框架Forgrinding模拟

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When considering the mechanics of grinding, several physical phenomena have to be modeled, each one having effect on the resulting grinding forces, wheel and workpiece geometry. Depending on the analyzed problem, some dependencies can be neglected to privilege some aspects instead of others. Nevertheless, all models essentially start considering wheel-workpiece engagement and the corresponding material removal (both wheel and workpiece side), deriving the forces by means of energy balances and/or shear mechanics. The meta-model proposed in this paper represents a general framework conceived for providing a time-domain simulation engine based on a dexel representation of wheel and workpiece, capable to “host” all the semi-empirical models existing in literature, where the overall grinding force is the result of the integration of the force contributions associated to the local removal along wheel-workpiece engagement arc. A cascade approach is adopted to solve for forces and displacements the DAEs set describing the dynamic interactions between wheel and workpiece, whereas all the algebraic relationships pertaining to the various specific models are solved in a pre-processing phase, yielding a set of response surfaces that are queried during time integration. Finally, the meta-model framework is instantiated for a model of traverse roll grinding with force-dependent wheel wear.
机译:在考虑研磨的机制时,必须建模几种物理现象,每个物理现象对所得到的研磨力,轮和工件几何具有影响。根据分析的问题,可以忽略一些依赖性来特权而不是其他方面的特权。然而,所有模型都基本上开始考虑轮式工件接合和相应的材料去除(两个轮和工件侧),通过能量余额和/或剪切力学产生力。本文提出的元模型代表了一种基于车轮和工件的左塞尔表示提供时域仿真引擎的一般框架,能够“托管”在文献中存在的所有半实证模型,在那里整体研磨力是沿着轮式工件接合弧的局部去除相关的力贡献的整合的结果。采用级联方法来解决力和位移的DAES设置描述轮和工件之间的动态相互作用,而与各种特定模型有关的所有代数关系在预处理阶段求解,产生一组响应表面在时间集成期间查询。最后,将元模型框架实例化,用于采用力依赖轮磨损的横向辊磨模型。

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