Force-induced deformation mechanism for cylindrical shell thin-walled parts milling with ice supporting: Modelling and Prediction

Haibo Liu, Lingqi Zeng, Chengxin Wang, Lingsheng Han, Pengchao Li, Y. Q. Wang
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Abstract

Improving the rigidity of the process system in the cutting region of thin-walled parts is a challenging problem to ensure machining accuracy. For limited structural space, the use of ice support is an effective method. However, ice and workpiece constitute a completely new process system, which generates a complex process response under milling forces. Based on the Kirchhoff-Love thin-wall small-deformation assumption and the Winkler model for describing the inverse support of ice on cylindrical shell thin-walled parts (CSTWP), a new prediction model is developed to predict the deflection of CSTWP under ice support. In the model, by introducing the displacement function in the form of annular triangular series, the analytical solution of the displacement is given for the cylindrical shell with non-simply supported edges at both ends under ice support. A finite element model for milling CSTWP under ice support is developed, which takes into account the nonlinear behavior of ice and the complex mechanical behavior of the ice/workpiece interface. Based on this finite element model and the corresponding milling experiments, the accuracy and validity of the established model are verified. The work provides a theoretical basis for the prediction of the deformation of CSTWP under ice support.
用冰支撑铣削圆柱壳薄壁零件的力致变形机制:建模与预测
要确保加工精度,提高薄壁零件切削区域加工系统的刚性是一个具有挑战性的问题。对于有限的结构空间,使用冰支撑是一种有效的方法。然而,冰和工件构成了一个全新的工艺系统,在铣削力作用下会产生复杂的工艺响应。基于 Kirchhoff-Love 薄壁小变形假设和用于描述圆柱壳薄壁零件(CSTWP)上冰反向支撑的 Winkler 模型,建立了一个新的预测模型来预测冰支撑下 CSTWP 的挠度。在该模型中,通过引入环形三角形序列形式的位移函数,给出了冰支撑下两端非简支边圆柱壳的位移解析解。考虑到冰的非线性行为和冰/工件界面的复杂机械行为,建立了冰支撑下 CSTWP 铣削的有限元模型。基于该有限元模型和相应的铣削实验,验证了所建模型的准确性和有效性。这项工作为预测冰支撑下的 CSTWP 变形提供了理论依据。
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