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Locating method and motion stroke design of flexible assembly tooling for multiple aircraft components

机译:多种飞机部件柔性组装工具的定位方法和运动冲程设计

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摘要

To get an accurate dimensional size/shape/spatial and assembly accuracy, flexible assembly tooling is developed and applied in aviation production, instead of traditional dedicated rigid tooling. Its configuration can be adjusted to fit different assembly environments and support/locate different components together in correct relative positions. For multiple aircraft components, the optimal design on flexible assembly tooling system, i.e., flexible locating method and motion stroke of different locating units, was studied in this paper. Firstly, to assemble the multiple components with a flexible method, the optional geometric features were defined and divided into several groups, with cluster analysis. Secondly, with two-stage progressive reasoning and the polychromatic set theory, the precise logical mapping relationship between product assembly/coordination requirements and detailed tooling locating methods was proposed. Thirdly, considering the constraints of assembly operation space, assembly constraints (such as assembly loads and locating freedom), product posture, and other specific assembly factors, a design procedure with quantitative analysis and containing eleven steps was proposed and modeled, and then solved with intelligent algorithm. Lastly, flexible design for assembling four different wing flap components was optimized to verify the methodology's feasibility. The flexible assembly system has a compact/simplified structure, and a sufficient assembly operation space. The layout scheme of the comprised units distributes by three rows, and parallel to each other. And the locating function of end locating effectors is highly integrated with a good flexibility degree. Combined with the practical design and assembly process, the motion stroke fits well with flexible assembly requirements, demonstrating a good locating/assembly performance.
机译:为了获得精确的尺寸/形状/空间和装配精度,柔性装配工具开发并应用于航空生产,而不是传统的专用刚性工具。可以调整其配置以适合不同的组装环境,并在正确的相对位置将不同的组件连接在一起。对于多种飞机部件,本文研究了柔性组装工具系统上的最佳设计,即不同定位单元的柔性定位方法和运动行程。首先,通过灵活的方法组装多个组件,定义了可选的几何特征并分为几个组,具有集群分析。其次,通过两级逐步推理和多色集理论,提出了产品组装/协调要求与详细工具定位方法的精确逻辑映射关系。第三,考虑到装配操作空间的约束,提出并建立了具有定量分析和含有11个步骤的设计过程,并建模了组装限制(例如装配负载和定位自由度),产品姿势和其他特定装配因子,并建模了一个具有定量分析和含有11个步骤的设计过程,然后解决智能算法。最后,优化组装四种不同翼片组件的灵活设计,以验证方法的可行性。柔性组装系统具有紧凑/简化的结构和足够的组装操作空间。所包含单元的布局方案分布三行,彼此平行分布。端子定位效果的定位功能高度集成,具有良好的灵活性程度。结合实用的设计和装配过程,运动冲程与灵活的组装要求配合得很好,展示了良好的定位/装配性能。

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