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Experimental Examination of Surface Roughness in Low-Environmental-Load Machining of External Cylindrical Workpieces

机译:外圆柱工件低环保加工表面粗糙度的实验检查

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This paper deals with the experimental examination of surface roughness when machining cylindrical workpieces with low volume of coolants and lubricants. The volume of coolants and lubricants was reduced in order to decrease the environmental load caused by cutting fluid. Our aim was to obtain a function relation between cutting data (cutting speed, feed rate), parameters of applied coolants and lubricants (viscosity, applied flow rate), and 3D surface roughness parameters of machined cylindrical workpiece. The cylindrical surface is machined on a standing workpiece with a special fixture in which the single point cutting tool executes both the principal (rotating) and auxiliary (linear) motions as well. The material AISI 1045 steel and external boring was carried out with a tool having a carbide insert. The aim of the research is to determine empirical formulas between the technological parameters and the surface roughness parameters by full factorial experiment design. Based on examinations, the best parameter combination can be selected.
机译:本文涉及用低体积的冷却剂和润滑剂加工圆柱形工件时表面粗糙度的实验检查。降低冷却剂和润滑剂的体积,以降低由切削液引起的环境载荷。我们的目的是在切割数据(切割速度,进料速率),应用的冷却剂和润滑剂(粘度,施加的流速)和3D表面粗糙度参数之间获得功能关系,以及加工圆柱工件的3D表面粗糙度参数。圆柱形表面在常设工件上加工,具有特殊夹具,其中单点切割工具也执行主体(旋转)和辅助(线性)运动。用碳化物插入物的工具进行材料AISI 1045钢和外部钻孔。该研究的目的是通过完整的因子实验设计确定技术参数和表面粗糙度参数之间的经验公式。根据检查,可以选择最佳参数组合。

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