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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Influence of Cutting Parameters on Tool Wear and Surface Roughness in Hard Turning of AISI H11 Tool Steel using Ceramic Tools
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Influence of Cutting Parameters on Tool Wear and Surface Roughness in Hard Turning of AISI H11 Tool Steel using Ceramic Tools

机译:切削参数对AISI H11陶瓷工具钢硬车削中刀具磨损和表面粗糙度的影响

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摘要

In machining of parts, surface quality is one of the most specified customer requirements. Major indication of surface quality on machined parts is surface roughness. There are various machining parameters which have an effect on the surface roughness, but these effects have not been adequately quantified. In order for manufacturers to maximize their gains from utilizing finish hard turning, accurate predictive models for surface roughness and tool wear must be constructed. This paper utilizes response surface methodology (RSM) for modeling to predict surface roughness and tool wear for variety of cutting conditions in finish hard turning. The experimental data obtained from performed experiments in finish turning of hardened AISI H-ll steel have been utilized. Decrease in feed rate and increase in cutting speed resulted in significant increase in surface quality. However, increase in cutting speed also produced relatively higher tool wear. Also depth of cut did not significantly affect the tool wear and surface roughness.
机译:在零件加工中,表面质量是客户最指定的要求之一。加工零件表面质量的主要指标是表面粗糙度。有多种加工参数会影响表面粗糙度,但这些影响尚未得到充分量化。为了使制造商能够通过利用精加工而获得最大收益,必须构建用于表面粗糙度和工具磨损的精确预测模型。本文利用响应表面方法(RSM)进行建模,以预测精加工中各种切削条件下的表面粗糙度和刀具磨损。利用了从硬化的AISI H-II钢的精车中进行的实验获得的实验数据。进给速度的降低和切削速度的提高导致表面质量的显着提高。但是,切削速度的提高也会产生相对较高的刀具磨损。切削深度也没有显着影响工具的磨损和表面粗糙度。

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