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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Machining process parameters optimization for heavy-duty CNC machine tools in sustainable manufacturing
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Machining process parameters optimization for heavy-duty CNC machine tools in sustainable manufacturing

机译:可持续制造中重型数控机床的加工工艺参数优化

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摘要

Machining process parameters (MPP) directly affect the machining quality and efficiency of heavy-duty CNC machine tools (HCMT). The selection of MPP is very important to effectively improve machining performance. Machining performance has been closely related to the HCMT running state. In order to maintain HCMT sustainably manufacturing with high accuracy and low consumption after machining performance degradation for a long time running, MPP should be re-optimized according to the current state of the machine tools. Thus, this paper proposed a MPP optimization method for running HCMT to obtain optimal MPP based on current running state. A multi-objective optimization model was built, considering both the linear factors such as machining time and machining cost and nonlinear factors such as chatter in machining process. The nonlinear factors were reflected by the nonlinear dynamic model of machining process. Furthermore, a grid optimization algorithm was introduced to search the optimal MPP from the multi-objective optimization model. Finally, a case study was implemented to verify the feasibility of the nonlinear dynamic model and the superiority of the multi-objective optimization method compared with single-objective optimization method.
机译:加工过程参数(MPP)直接影响重型数控机床(HCMT)的加工质量和效率。选择MPP是有效提高加工性能的重要性。加工性能与HCMT运行状态密切相关。为了在加工性能下降后保持HCMT可持续制造,在加工性能下降后长时间运行,应根据机床的当前状态重新优化MPP。因此,本文提出了一种MPP优化方法,用于运行HCMT以基于当前运行状态获得最佳MPP。建立了一种多目标优化模型,考虑了线性因素,例如加工时间和加工成本和非线性因子,如加工过程中的喋喋不休。非线性因子被加工过程的非线性动态模型反射。此外,引入了网格优化算法以从多目标优化模型中搜索最佳MPP。最后,实施了一个案例研究以验证非线性动态模型的可行性以及与单目标优化方法相比的多目标优化方法的优越性。

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