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Optimal Tolerance Allocation for Multi-body Mechanical Systems

机译:多机械系统的最佳公差分配

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摘要

Tolerance allocation is a key process for multi-body mechanical system design and assembly. It plays a significant role in linking design features together including design requirements, product quality, manufacturing costs and system perfoiinance. An innovative CPT (cost-precision-time) approach along with a comprehensive computer program is presented in this paper to meet the aforementioned multi-objective design needs. The CPT is a systematic design procedure comprising a Monte Carlo method for tolerance allocation, and genetic algorithms / factorial design for comprehensive cost consideration. Two different production models including a Fortini's clutch and a SCARA robot, are employed to verify the overall quality and reliability of the CPT method. The design results show that the CPT method is capable of 3D tolerance design for static structures, dynamic systems and robotic models. The tolerance models thus obtained by using CPT approach are sufficiently accurate and more economic as compared to those obtained by using other methods that are presented in literature. The CPT method and associated design procedure presented here is thus proved to be systematic, economic and accurate for comprehensive tolerance design of given industrial production systems.
机译:公差分配是多体机械系统设计和组装的关键过程。它在将设计特征结合在一起,包括设计要求,产品质量,制造成本和系统性能,起到重要作用。本文提出了一种创新的CPT(成本精确时间)方法以及全面的计算机程序,以满足上述多目标设计需求。 CPT是一种系统的设计过程,包括用于公差分配的蒙特卡罗方法,以及用于综合成本考虑的遗传算法/因子设计。两种不同的生产模型包括Fortini的离合器和Scara机器人,用于验证CPT方法的整体质量和可靠性。设计结果表明,CPT方法能够进行静态结构,动态系统和机器人模型的3D公差设计。与通过使用文献中呈现的其他方法获得的相比,通过使用CPT方法获得的耐受性模型足够准确和更经济。因此,本文介绍的CPT方法和相关的设计程序是对给定工业生产系统的综合公差设计进行系统的,经济和准确性。

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