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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Computer simulation and experimental study of machining deflection due to original residual stress of aerospace thin-walled parts
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Computer simulation and experimental study of machining deflection due to original residual stress of aerospace thin-walled parts

机译:航空薄壁零件原始残余应力引起的加工变形的计算机模拟和实验研究

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摘要

Aerospace thin-walled parts have a complex structure and high accuracy. Factors such as original residual stress, fixing, and machining may make low-rigidity parts deform easily, which is difficult for traditional craftwork to forecast and control. Especially in machining big aerospace parts, original residual stress has a great effect on machining deflection. In this paper finite element model of original residual stress is established to analyze the corresponding deflection by machining aerospace thin-walled parts. Simulation results are validated consistent with experimental results approximately. At last the paper puts forward the corresponding mend methods to control the deflection caused by original residual stress during the actual machining process.
机译:航空航天薄壁零件结构复杂,精度高。诸如原始残余应力,固定和机械加工等因素可能会使低刚度零件容易变形,这对于传统工艺而言很难预测和控制。特别是在加工大型航空航天零件时,原始残余应力对加工变形有很大影响。本文建立了原始残余应力的有限元模型,以分析加工航空航天薄壁零件的相应挠度。验证了仿真结果与实验结果的一致性。最后提出了相应的修补方法,以控制实际加工过程中原始残余应力引起的变形。

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