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AN ALGEBRAIC AND COMPUTATIONAL STRATEGY FOR STRUCTURE DECOMPOSITION OF VARIABLE TOPOLOGY MECHANISMS

机译:可变拓扑机制结构分解的代数与计算策略

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摘要

Identifying all the functional topological structures embedded in a variable topology mechanism (VTM) is a leading step when analyzing the topological characteristics of the mechanism. Such an identification task is equivalent to the structure decomposition of the VTM. In this paper, we introduce a systematic approach, which is both algebraically and computationally manipulate-able, for the structure decomposition of VTMs. Based on a given source mechanism of a VTM, all its embedded functional topological structures can be identified through an algebraic computation via this method. For illustrating the presented approach, the decomposition of an automatic steel clamping and sawing mechanism is demonstrated.
机译:在分析机构的拓扑特性时,识别嵌入在可变拓扑机制(VTM)中的所有功能性拓扑结构是一步。 这种识别任务等同于VTM的结构分解。 在本文中,我们介绍了一种系统方法,其代数和计算地操纵,用于VTM的结构分解。 基于VTM的给定源机制,可以通过该方法通过代数计算识别其所有嵌入的功能拓扑结构。 为了说明所提出的方法,证明了自动钢夹紧和锯切机构的分解。

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