Experimental Investigation on Nano Oil Added Fluid Influence for the Machining of Hardened AISI H13 Hot Work Tool Steel

S. Saleh, M. Ranjbar
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引用次数: 1

Abstract

Tool wear, Cutting forces, Cutting temperature, Cutting fluids, AISI H13 hot work tool steel. This paper presents an experimental study on how to enhance the machining processes of the AISI H13 hot work tool steel by implementing a decent cooling and lubrication technic throughout the machining processes. Proper machining conditions and parameters for industrial applications are analysed namely; dry conditions, wet conditions of Boron and nano additive solutions. The flow rate is measured and calculated. The cutting fluid in different concentration is used in the hard-turning experiments. Different cutting speeds (100,150,200m/min), feed rates (0.03, 0.06, 0.09mm/rev), and a constant depth of cut (0.2mm) are considered. The assessments are equated against the machining forces and temperatures, using 12 pieces of PVD coated ceramic type turning insert-cutting tools. The results of experimental investigation show that the wet machining conditions have substantial effects across all the machining standards. It is indicated that the machining temperature is reduced tremendously during the both cases of wet machining conditions. Thus, wet machining by adding additives demonstrats enhanced machining conditions at the medium feed rates and lower cutting speeds by reducing the cutting force, which is a threat to the tool life.
纳米油加液对淬硬AISI H13热加工工具钢加工影响的实验研究
刀具磨损、切削力、切削温度、切削液、AISI H13热加工工具钢。本文对如何通过在加工过程中实施适当的冷却和润滑技术来提高AISI H13热加工工具钢的加工工艺进行了实验研究。分析了适合工业应用的加工条件和加工参数;干燥条件下,湿条件下硼和纳米添加剂溶液。对流量进行测量和计算。采用不同浓度的切削液进行硬车削试验。考虑了不同的切削速度(100,150,200m/min),进给速度(0.03,0.06,0.09mm/rev)和恒定的切削深度(0.2mm)。使用12块PVD涂层陶瓷型车削插入刀具,对加工力和温度进行了评估。实验研究结果表明,湿加工条件对所有加工标准都有很大的影响。结果表明,在两种湿式加工条件下,加工温度都有较大的降低。因此,通过添加添加剂进行湿式加工,在中等进给速率和较低切削速度下,通过降低切削力来提高加工条件,这对刀具寿命构成威胁。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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