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Design and development of a five-axis machine tool with high accuracy,stiffness and efficiency for aero-engine casing manufacturing 被引量:4

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摘要 In order to satisfy the machining requirements of aero-engine casing in modern aviation industry, this paper investigates three main issues during the design and development process of a five-axis machine tool with high accuracy, stiffness and efficiency, including whole structure design,key components design, and supporting stiffness design. First, an appropriate structure of five-axis machine tool is determined considering the processing characteristics of aero-engine casing. Then, a dual drive swing head and a compact motorized spindle are designed with enough drive capability and stiffness, and related structure, assembly method, cooling technology, and performance simulation are given in detail. Next, a design method of supporting stiffness of guide is proposed through the deformation prediction of the spindle end. Based on above work, a prototype of machine tool is developed, and some experiments are carried out, including performance tests of swing head and motorized spindle, and machining of a simulated workpiece of aero-engine casing. All experimental results show that the machine tool has satisfactory accuracy, stiffness and efficiency, which meets the machining requirements of aero-engine casing. The main work can be used as references for engineers and technicians, which are meaningful in practice.
出处 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2022年第4期485-496,共12页 中国航空学报(英文版)
基金 co-supported by the Natural Science Foundation of Beijing(No.3214043) the Project of State Key Lab of Tribology of Tsinghua University(No.SKLT2021D16) the National Natural Science Foundation of China(No.51975319)。
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