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A posture evaluation method for a large component with thermal deformation and its application in aircraft assembly

机译:具有热变形的大型零件的姿态评估方法及其在飞机装配中的应用

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摘要

Purpose - The purpose of this paper is to propose a posture evaluation approach based on temperature compensation and three-dimensional (3-D) tolerance for the key points (KPs). Design/methodology/approach - A large component 3-D compensation model of thermal deformation considering characteristics of the assembly object is developed. Then, the thermal deformation compensation model is used to modify the nominal coordinates for the KPs. By using a combination of relative deviations of KPs as the objective and 3-D tolerance as the constraints, an optimization model for posture evaluation is established. Findings - Deviations of posture and KPs' coordinates are obtained by solving the non-linear constrained optimization problem. The posture evaluation method is demonstrated in both a simulation case and practical implication of the aircraft components assembly system with the result that a good performance is obtained. Practical implications - The proposed method has been used in several aircraft assembly projects in China, and gained a good effect. Originality/value - This paper proposes a method for eliminating the affection of thermal deformation during posture evaluation process and improving the consistency and stability of posture evaluation results. The results of this research will help to systematically improve the manufacturing process and tolerance allocation efficiency in large aircraft assembly.
机译:目的-本文的目的是提出一种基于温度补偿和关键点(KP)的三维(3-D)公差的姿态评估方法。设计/方法/方法-考虑装配对象的特性,开发了大尺寸的3D热变形补偿模型。然后,使用热变形补偿模型来修改KP的名义坐标。通过将KPs的相对偏差作为目标并结合3-D公差作为约束,建立了姿态评估的优化模型。发现-通过解决非线性约束优化问题获得姿态和KP坐标的偏差。在航空器部件装配系统的仿真情况和实际应用中均论证了姿态评估方法,从而获得了良好的性能。实际意义-所提出的方法已在中国的多个飞机组装项目中使用,并取得了良好的效果。原创性/价值-本文提出了一种消除姿势评估过程中热变形影响并提高姿势评估结果的一致性和稳定性的方法。这项研究的结果将有助于系统地改善大型飞机装配的制造过程和公差分配效率。

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