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Modelling of Machining Process While Turning Tool Steel with CBN Tool

机译:用CBN工具转动工具钢加工过程的建模

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摘要

For machining operations during the last few decades, there has been major progress in developing models for industries. This paper aimed to develop mathematical models using Design Expert 7.1 software to study the effect of cutting parameters on main cutting force, surface roughness and stress. Second objective of this research work was to optimize the machining process by finding the best parameters setting with defined goals for the variables. Results reveal that the value of main cutting force decreases with a decrease in the value of cutting speed and depth of cut. The most significant factors in case of surface roughness and stress are feed rate and depth of cut, respectively. Mathematical models have been developed for main cutting force, surface roughness and stress, and average errors of 3.87, 5.41 and 2.96% were observed for the corresponding values and analogous trend lines of the plots, respectively. The optimal set of conditions possessing highest desirability value (0.617) and lowest surface roughness (out of eight solutions having the same desirability of 0.617) is as follows: cutting speed-138.29 m/min; feed rate-0.13mm/rev; depth of cut-0.28mm (input parameters) and main cutting force- 219.273 N; surface roughness-0.439μm; stress-5128.18 N/mm~2 (responses for input parameters).
机译:对于在过去几十年中的加工运营中,在开发行业模式方面取得了重大进展。本文旨在使用设计专家7.1软件开发数学模型,研究切割参数对主切割力,表面粗糙度和应力的影响。本研究工作的第二个目的是通过找到具有变量的定义目标的最佳参数设置来优化加工过程。结果表明,主要切割力的值随着切割速度和切割深度的值而降低。在表面粗糙度和应力的情况下最重要的因素分别是饲料速率和切割深度。已经开发了数学模型,用于主切割力,表面粗糙度和应力,以及3.87,5.41和2.96%的平均误差分别用于图的相应值和类似趋势线。具有最高可取性值(0.617)和最低表面粗糙度的最佳条件(具有相同0.617的八个溶液中的最低表面粗糙度如下:切割速度-138.29 m / min;进料速率-0.13mm / rev;切割深度0.28mm(输入参数)和主切割力-219.273 n;表面粗糙度-0.439μm;压力-5128.18 n / mm〜2(输入参数的响应)。

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