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A digital twin-driven approach for the assembly-commissioning of high precision products

机译:数字双驱动方法用于高精度产品的组装调试

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摘要

High precision products (HPPs) with multidisciplinary coupling are widely used in aerospace, marine, chemical and other fields. Since the internal structure of HPPs is complex and compact, the assembly process requires high precision and involves multidisciplinary coupling. Traditional assembly process of HPPs is based on manual experience, which results in low assembly efficiency and poor-quality consistency. Given the above problems, this research proposes a digital twin-driven assembly-commissioning approach for HPPs. Firstly, this paper introduces the theoretical framework of digital twin-driven assembly-commissioning. Secondly, we introduce the construction method of assembly-commissioning total factor information model based on digital twin technology; the fusion method of twin data and the interoperability method between digital twin models; in addition, the assembliability prediction and assembly-commissioning process optimization methods. Finally, a case study product is used to verify the effectiveness and feasibility of the proposed method.
机译:具有多学科耦合的高精度产品(HPP)广泛用于航空航天,海洋,化学和其他领域。由于HPP的内部结构复杂而紧凑,因此组装过程需要高精度,并且涉及多学科的耦合。 HPP的传统组装过程基于人工经验,这导致组装效率低和质量一致性差。鉴于上述问题,本研究提出了一种用于HPP的数字双驱动装配调试方法。首先,本文介绍了数字双驱动装配调试的理论框架。其次,介绍了基于数字孪生技术的装配调试全要素信息模型的构建方法。双胞胎数据的融合方法和数字双胞胎模型之间的互操作性方法;此外,可组装性预测和组装调试过程的优化方法。最后,使用案例研究产品来验证所提出方法的有效性和可行性。

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