高速硬切削过程的参数化建模与自动优化

C. Yue, Xianli Liu, Chunbin Cai, Mingming Yu
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引用次数: 0

摘要

在传统的切削过程有限元仿真模型中,材料参数和边界条件的设置占用了大量的时间。仿真结果不容易得到最优切削参数;解决过程的目标也是盲目的。本研究基于优化理论和二次开发有限元软件,结合python和Abaqus建立了PCBN刀具正交切削钢的参数化模型。刀具角度、刀具尺寸、工件尺寸和工艺等数值可以在二维模型界面上参数化设置。结合Abaqus和Isight,可以自动从仿真模型中提取出切削力的平均值和切削温度的最高值。为了得到所选参数下的最小切削力和温度,该模型以切削进给量和切削速度作为设计变量进行优化。经实验验证,优化结果的精度是可以接受的。研究结果为建立高效、高精度的有限元仿真模型奠定了基础。为切削参数的优化和新刀具的开发提供了可行有效的途径。[2014年11月9日收到;2015年2月9日修订;接受2015年2月14日]
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Parametric modelling and automatic optimisation of high-speed hard cutting process
In traditional finite element method (FEM) simulation model of cutting process, settings of material parameters and boundary conditions take up a lot of time. The optimal cutting parameters are not easily obtained by simulation results; also the target of solution process is blind. Based on optimisation theory and secondary development of finite element software, in this research, a parametric model is established by combining python with Abaqus for PCBN tool cutting steel orthogonally. Numerical values of tool angle, tool size, workpiece size and process can be set in the interface of two-dimensional model in a parameterised way. By combining Abaqus and Isight, the average value of cutting force and highest value of cutting temperature could be extracted from the simulation model automatically. To get the minimum of cutting force and temperature under the selected parameter, the model takes cutting feed and speed as design variables to optimise. Under experimental validation, the precision of optimisation results is acceptable. This research result lays a foundation for establishment of high efficiency and high accuracy FEM simulation model. Also, it provides a feasible and effective way for the optimisation of cutting parameters and development of new tools. [Received 09 November 2014; Revised 09 February 2015; Accepted 14 February 2015]
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