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Reconfiguring machine tool behavior via smart building block systems

机译:通过智能构建模块系统重新配置机床行为

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The reconfigurability of manufacturing systems is conventionally increased by utilizing concepts of modularization and platforms. At this moment, the actual reconfigurability is often limited to a priori designed reconfiguration variants for the production within single part families. There is only a little research on reconfiguring the mechanical behavior of machine tool frames. This paper presents an innovative approach for reconfiguring the mechanical behavior based on smart building block systems. Topologically optimized polyhedral building blocks are mechanically bolted to form different machine tool frame configurations.A high grade of modularization allows for the assembly of individualized topologies for different manufacturing scenarios “as needed when needed”. The increase in reconfigurability results from the high geometric flexibility of the proposed building block system. However, successful implementation relies on quick and robust simulation approaches for calculating the machine tool frame characteristics before the actual assembly process. Within this paper, a time-efficient approach based on the sub-structuring methodology is utilized. The presented approach consists of forming superelements by performing a GUYAN reduction on the building blocks to extract the stiffness behavior. A Component Mode Synthesis is used to extract modal information. The ANSYS Parametric Design Language is then used to automatically couple the modules according to a customized descriptive machine tool language. A simple joint model is implemented and experimentally fitted with a two-block configuration. The two-block configuration is then extrapolated to a full machine tool frame portal. An example of changing the modal characteristics of this machine tool frame portal is presented in the form of numerical results.
机译:传统上,通过利用模块化和平台的概念来提高制造系统的可重构性。目前,实际的可重构性通常仅限于先验设计的可重构变体,以用于单个零件系列中的生产。关于重新配置机床框架的机械性能的研究很少。本文提出了一种基于智能构件系统重新配置机械行为的创新方法。通过机械方式将拓扑优化的多面体构建块螺栓连接起来,以形成不同的机床框架配置。高度的模块化允许“在需要时”针对不同的制造场景组装个性化的拓扑。可重构性的提高是由于所提出的构建模块系统的高几何灵活性。但是,成功的实现依赖于快速而可靠的仿真方法,以便在实际组装过程之前计算机床的机架特性。在本文中,使用了一种基于子结构方法的省时方法。提出的方法包括通过对构件进行GUYAN折减以提取刚度行为来形成超元。组件模式综合用于提取模式信息。然后使用ANSYS参数化设计语言根据自定义的描述性机床语言自动耦合模块。实现了一个简单的联合模型,并通过实验将其与两个模块的配置进行了拟合。然后将两段式配置外推到整个机床框架门户。以数值结果的形式给出了更改此机床框架门户的模态特征的示例。

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