首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Evaluation of Machinability According to the Changes in Machine Tools and Cooling Lubrication Environments and Optimization of Cutting Conditions Using Taguchi Method
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Evaluation of Machinability According to the Changes in Machine Tools and Cooling Lubrication Environments and Optimization of Cutting Conditions Using Taguchi Method

机译:根据机床和冷却润滑环境的变化对可加工性进行评估并使用Taguchi方法优化切削条件

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摘要

This study analyze the effect of machine tools, cooling lubrication environments and cutting conditions on surface roughness and cutting force, and propose the combination of cutting conditions which minimizes the effect of machine tool variables on the dispersion of cutting force and surface roughness by treating the changes in machine tool itself and the installation environments as a noise factors. To do so, the Taguchi method is used to establish an experiment plan, and flat end milling is carried out to measure cutting force and surface roughness. The research results show that in the case of cutting force, the effect of cutting conditions is dominant, and changes in machine tools and cooling lubrication environments barely have effect on cutting force. However, in the case of surface roughness, all of the cutting conditions, machine tool and cooling lubrication environment variables have impact. In order to select a combination of cutting conditions insensible to changes in machine tools, considerations for feed per revolution and axial depth of cut turn out most important in the aspect of cutting force, and considerations for feed per revolution is most important in the surface roughness.
机译:本研究分析了机床,冷却润滑环境和切削条件对表面粗糙度和切削力的影响,并提出了切削条件的组合,以通过处理变化来最大程度地减小机床变量对切削力和表面粗糙度分散的影响。在机床本身和安装环境中作为噪声因素。为此,使用Taguchi方法建立实验计划,并进行平端铣削以测量切削力和表面粗糙度。研究结果表明,在切削力的情况下,切削条件的影响占主导地位,机床的变化和冷却润滑环境对切削力几乎没有影响。但是,在表面粗糙度的情况下,所有切削条件,机床和冷却润滑环境变量都会产生影响。为了选择对机床的变化不敏感的切削条件的组合,在切削力方面,对每转进给量和切削轴向深度的考虑最为重要,而对每转进给量的考虑在表面粗糙度方面最为重要。 。

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