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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >An approach to predict the distortion of thin-walled parts affected by residual stress during the milling process
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An approach to predict the distortion of thin-walled parts affected by residual stress during the milling process

机译:一种方法来预测铣削过程中残余应力影响的薄壁部件的变形

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摘要

Among all the main influential factors on the distortion of thin-walled parts, residual stress plays a key role before or after the machining process. It is worth to control and propose an approach to predict the precision of workpiece after the processing has been completed. In this study, through comprehensive multi-factor optimization analysis and investigation, a thin-walled workpiece with aerospace frame is taken as the research object, followed by the proposition of a method of predicting the processing accuracy of the thin-walled part during the milling affected by the residual stress. Using the proposed approach and considering of the residual stress as the optimization goal, the optimized milling path should be arranged from the inside to the outside in the case of a single characteristic. By contrast, for the machining with different characteristics, the best processing sequence should be assigned reversely, from the outside to the inside. After using the prediction method and verification with a target thin-walled part, this study concludes that the smaller magnitude of surface initial and machined residual stress will reduce distortion of the thin-walled part. In this way, the processing accuracy and stability of thin-walled parts can be both improved and raised to a higher level.
机译:在薄壁零件变形的所有主要影响因素中,残余应力在加工过程之前或之后起到关键作用。值得控制并提出一种方法来预测处理完成后的工件精度。在本研究中,通过全面的多因素优化分析和调查,采用航空航天框架的薄壁工件作为研究对象,其次是在铣削期间预测薄壁部分的加工精度的方法的命题受残留压力的影响。使用所提出的方法,并考虑到残余应力作为优化目标的,优化的铣削轨迹应当从内侧被布置到外部的单个特性的情况下。相比之下,对于具有不同特性的加工,应将最佳处理序列从外部转到内部分配。使用该预测方法和验证与目标薄壁部后,该研究的结论是初始表面和机加工的残余应力较小幅值会降低薄壁部的变形。以这种方式,薄壁部件的加工精度和稳定性可以改善并升高到更高的水平。

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