Abstract
Aerospace engine is the source of power for the development of national defense and aerospace. Engine bolt tightening is an important part of the aerospace engine production process. At present, most of the bolt tightening methods of aerospace engines are manual tightening or traditional rigid tightening, which lead to the problem of low efficiency and large engine deformation. This paper proposes a process planning method for bolt tightening of aerospace engine based on digital twin, including flexible tightening mechanism design, tightening sequence optimization, the establishment of the digital twin system of the tightening mechanism, etc. The flexible tightening mechanism is suitable for different types of aerospace engines. Based on bolt tightening sequence optimization, the deformation and stress of the cabin section during the tightening process are reduced. The bolt tightening work is completed in the digital twin system, the real-time communication of physical and digital space synchronizes the operations of them. After tightening, the residual pre-tightening force of bolts are detected based on the ultrasonic method. The results show that the proposed method can solve the problems of low efficiency of aerospace engine bolt tightening and the problem of the cabin’s large deformation. Furthermore, it provides technical reference and theoretical basis for the bolt tightening technology of aerospace engine.
Funder
National Natural Science Foundation of China
Natural Science Foundation of Liaoning Province
Subject
Electrical and Electronic Engineering,Industrial and Manufacturing Engineering,Control and Optimization,Mechanical Engineering,Computer Science (miscellaneous),Control and Systems Engineering
Reference21 articles.
1. Effects of the joint surface considering asperity interaction on the bolted joint performance in the bolt tightening process;Jiang;Tribol. Int.,2022
2. Optimized bolt tightening strategies for gasketed flanged pipe joints of different sizes;Abid;Int. J. Press. Vessel. Pip.,2016
3. Vibration characteristics of rotor systems with bolt joints;Liu;J. Vib. Shock,2016
4. Finite Element Analysis of Mechanical Behavior of High Strength Bolt Friction Grip Long Joint;Zhang;J. Civ. Archit. Environ. Eng.,2010
5. Influence of working conditions on the clamping force of composite connection structures during bolt tightening;Cai;J. Compos. Mater.,2022
Cited by
7 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献