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首页> 外文期刊>Indian journal of engineering and materials sciences >Experimental investigation of cutting zone temperature and flank wear correlation in turning AISI 1045 steel with different tool geometries
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Experimental investigation of cutting zone temperature and flank wear correlation in turning AISI 1045 steel with different tool geometries

机译:不同刀具几何形状的AISI 1045车削钢中切削区温度和侧面磨损相关性的实验研究

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摘要

This paper focuses on the experimental investigation and analysis of temperature generated at the cutting zone during machining and the wear of cutting insert at the flank face and the relationship between these parameters. Uncoated cemented carbide inserts of different geometries are used to turn AISI 1045 steel. Three levels of cutting insert geometries cutting insert shape (included angle), relief angle and nose radius are chosen. Taguchi’s design of experiments (DoE) is used to design the experiments and using signal-to-noise (S/N) ratio, the control parameters are analyzed, showing a correlation between the two responses. Analysis of variance is performed to determine the most significant factor over the responses and empirical models are developed for predicting the responses using multiple linear regression models. Cutting zone temperature is mostly influenced by nose radius followed by cutting insert shape and for flank wear the significance of cutting insert shape is more, followed by nose radius. Confirmation experiment performed with optimum cutting insert geometry shows a reduction in cutting zone temperature and flank wear.
机译:本文着重于实验研究和分析加工过程中在切削区域产生的温度以及侧面的切削刀片的磨损以及这些参数之间的关系。使用不同几何形状的未涂层硬质合金刀片来车削AISI 1045钢。选择三个级别的切削刀片几何形状:切削刀片形状(夹角),后角和刀尖半径。 Taguchi的实验设计(DoE)用于设计实验,并使用信噪比(S / N)来分析控制参数,从而显示两个响应之间的相关性。进行方差分析以确定响应中最重要的因素,并建立了经验模型以使用多个线性回归模型预测响应。切削区域的温度主要受刀尖半径的影响,其次是切削刀片的形状,而对于侧面磨损,切削刀片形状的重要性更大,其次是刀尖半径。使用最佳切削刀片几何形状进行的确认实验表明,切削区域温度和侧面磨损降低。

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