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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Determination of Force Parameters for Milling Simulations by Combining Optimization and Simulation Techniques
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Determination of Force Parameters for Milling Simulations by Combining Optimization and Simulation Techniques

机译:结合优化与仿真技术确定铣削仿真力参数

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摘要

Milling is a machining process in which material removal occurs due to the rotary motion of a cutting tool relative to a typically stationary workpiece. In modern machining centers, up to and exceeding six degrees of freedom for motion relative to the tool and workpiece are possible, which results in a very complex chip and force formation. For the process layout, simulations can be used to calculate the occurring process forces, which are needed, e.g., for the prediction of surface errors of the workpiece, or for tool wear and process optimization examinations. One limiting factor for the quality of simulation results is the parametrization of the models. The most important parameters for milling simulations are the ones that calibrate the force model, as nearly every modeled process characteristic depends on the forces. This article presents the combination of a milling simulation with the Broyden-Fletcher-Goldfarb-Shanno (BFGS) optimization algorithm for the fast determination of force parameters that are valid for a wide range of process parameters. Experiments were conducted to measure the process forces during milling with different process parameters. The measured forces serve as basis for tests regarding the quality of the determined force parameters. The effect of the tool runout on the optimization result is also discussed, as this may have significant influence on the forces when using tools with more than one tooth. The article ends with a conclusion, in which some notes about the practical application of the algorithm are given.
机译:铣削是一种加工过程,其中由于切削工具相对于通常静止的工件的旋转运动而发生材料去除。在现代加工中心中,相对于刀具和工件的运动自由度可能高达甚至超过六个,这会导致非常复杂的切屑和力的形成。对于过程布局,可以使用模拟来计算发生的过程力,例如,对于预测工件的表面误差,工具磨损和过程优化检查,这是必需的。模拟结果质量的一个限制因素是模型的参数化。铣削仿真中最重要的参数是用于校准力模型的参数,因为几乎每个建模过程的特性都取决于力。本文介绍了铣削仿真与Broyden-Fletcher-Goldfarb-Shanno(BFGS)优化算法的结合,用于快速确定适用于各种工艺参数的力参数。进行了实验以测量具有不同工艺参数的铣削过程中的工艺力。测得的力用作有关确定的力参数质量测试的基础。还讨论了刀具跳动对优化结果的影响,因为当使用多于一个齿的刀具时,这可能会对力产生重大影响。文章最后有一个结论,其中给出了有关算法实际应用的一些注释。

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