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An analytical method in modeling of milling process damping considering cutting edge radius

机译:考虑铣削边缘半径的铣削过程阻尼模拟分析方法

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Process damping generated between the clearance face of the tool and wavy finish workpiece surface has a strong effect on cutting dynamics and stability. However, it has been mostly ignored in chatter analysis as there is hardly practical model for estimation of it, particularly for honed tool which equips arc cutting edge and performs significant process damping effect. The challenge of process damping modeling for cutting with honed tools lies mainly on the computation of the volume of the extruded material under the tool. In this study, based on the assumption of small amplitude vibrations, an analytical model with high computational efficiency is presented to compute the extruded volume in cutting with honed tools. Based on this model, we derive the equivalent process damping coefficient analytically by the energy dissipation principle and then construct the stability lobes by Full-Discretization Method. The predicted cutting stability is verified by previous researchers’ experiments and the existing process damping model. The results demonstrate that the proposed analytical method is applicable to deal with the problem of process damping for honed tool in milling operation.
机译:在工具和波浪整理工件表面的间隙面之间产生的处理阻尼对切割动力学和稳定性具有很强的影响。然而,由于估计它几乎没有实际的模型,它在喋喋不休地忽略了倒车分析,特别是对于装备电弧切削刃并且执行显着的工艺阻尼效果的珩磨工具。用珩磨工具切割工艺阻尼建模的挑战主要是在工具下的挤出材料体积的计算上。在该研究中,基于小幅度振动的假设,提出了一种具有高计算效率的分析模型,以计算用珩磨工具切割切割中的挤出体积。基于该模型,通过能量耗散原理分析的等效过程阻尼系数,然后通过全离散化方法构建稳定性裂隙。先前的研究人员的实验和现有的过程阻尼模型验证了预测的切割稳定性。结果表明,所提出的分析方法适用于处理磨削操作中珩磨工具的过程阻尼问题。

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