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Optimal Design for Improved Hybrid Kinematic Machine Tools Structures

机译:改进的混合动力机床结构的优化设计

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The structures of machine tools used nowadays require improvement for achieving the sustainability of manufacturing in terms of functionality, cost, and energy consumption. This study deals with the optimal design problem formulation for improving the kinematic design of machine tools having hybrid kinematic structures (i.e., structures having both serial and parallel kinematic mechanisms). The solutions for overcoming such challenges as 1) size of workspace, 2) shape of workspace, 3) enhancement of dexterity, and 4) compactness of the machine are presented. The mobility of over-constrained parallel and hybrid kinematic structures is also discussed. Throughout the article, examples are cited for the sake of better understanding.? 2012 The Authors. Published by Elsevier B.V. Selection and/or peer-review under responsibility of Professor Roberto Teti.
机译:当今使用的机床的结构在功能,成本和能耗方面需要改进以实现制造的可持续性。该研究涉及用于改善具有混合运动学结构(即,具有串联和并联运动学机构的结构)的机床的运动学设计的最优设计问题公式。提出了克服以下挑战的解决方案:1)工作区的大小,2)工作区的形状,3)增强灵活性和4)机器的紧凑性。还讨论了过度约束的并行和混合运动学结构的迁移率。在全文中,为了更好地理解,引用了示例。 2012作者。由Elsevier B.V.出版,由Roberto Teti教授负责选拔和/或同行评审。

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