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Error Estimation of Titanium Alloy Thin-walled Parts Based on Stiffness Model

机译:基于刚度模型的钛合金薄壁零件误差估计

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The main research object of this paper is the milling deformation of titanium alloy thin-walled parts, taking titanium alloy thin-walled blades as an example. Based on the theory of elastic plastic mechanics and the finite element method, the finite element model of the deformation caused by the cutting force of the blade machining is established. The blade deformation is analyzed by applying a cutting force to the machined area of the blade. Then based on the cutting force-deformation correlation, the static stiffness model of the machining area is established. According to the established local stiffness model of the workpiece, the deformation of the workpiece is calculated and predicted, and the threshold of the cutting force is obtained according to the analysis. This research can be used as a reference for improving the precision of CNC machining and improving production efficiency in manufacturing.
机译:本文的主要研究对象是钛合金薄壁零件的铣削变形,以钛合金薄壁叶片为例。基于弹性塑性力学理论和有限元方法,建立了叶片加工切削力引起的变形的有限元模型。通过向刀片的机加工区域施加切削力来分析刀片的变形。然后根据切削力与变形的相关性,建立加工区域的静态刚度模型。根据建立的工件局部刚度模型,对工件的变形进行计算和预测,并通过分析求出切削力的阈值。该研究可为提高数控加工精度和提高制造生产效率提供参考。

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