A digital twin-based method for assembly deviations analysis

Junnan Zhi, Yanlong Cao, Tukun Li, Fan Liu, Jia Luo, Yanling Li, Xiangqian Jiang
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Abstract

This paper proposes and develops a digital twin-based method for assembly deviation analysis, which considers the impact of product shape deviations and uses assembly data in the product design phase to enhance the performance of assembly deviation analysis. Firstly, the overall product assembly deviation analysis process based on twin information is studied. Secondly, a mating algorithm, which evaluates multi-source assembly information, is proposed and developed. Thirdly, the interaction between adjacent mating feature deviation propagation and an updated iterative mechanism is examined. Finally, a digital twin assembly deviation analysis model based on the new proposed Jacobian-Twin approach is established, and validation is conducted through a case study.
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基于数字孪生的装配偏差分析方法
本文提出并开发了一种基于数字孪生的装配偏差分析方法,该方法考虑了产品形状偏差的影响,并利用产品设计阶段的装配数据来提高装配偏差分析的性能。首先,研究了基于孪生信息的整体产品装配偏差分析流程。其次,提出并开发了一种评估多源装配信息的配对算法。第三,研究了相邻配对特征偏差传播与更新迭代机制之间的相互作用。最后,基于新提出的 Jacobian-Twin 方法建立了数字孪生装配偏差分析模型,并通过案例研究进行了验证。
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