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Experimental study on internal cooling system in hard turning of HCWCI using CBN tools

机译:CBN工具硬通型HCWCI中内部冷却系统的实验研究

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摘要

In recent times, hard turning became most emerging technique in manufacturing processes, especially to cut high hard materials like high chrome white cast iron (HCWCI). Use of Cubic boron nitride (CBN), pCBN and Carbide tools are most appropriate to shear the metals but are uneconomical. Since hard turning carried out in dry condition, lowering the tool wear by minimizing tool temperature is the only solution. Study reveals, no effective cooling systems are available so for in order to enhance the tool life of the cutting tools and to improve machinability characteristics. The detrimental effect of cutting parameters on cutting temperature is generally controlled by proper selections. The objective of this paper is to develop a new cooling system to control tool tip temperature, thereby minimizing the cutting forces and the tool wear rates. The materials chosen for this work was HCWCI and cutting tools are CBN inserts. Intricate cavities were made on the periphery of the tool holder for easy flow of cold water. Taguchi techniques were adopted to carry out the experimentations. The experimental results confirm considerable reduction in the cutting forces and tool wear rates.
机译:最近,硬转弯成为制造过程中最新兴的技术,特别是切割高铬白色铸铁(HCWCI)等高硬质材料。使用立方体氮化物(CBN),PCBN和硬质合金工具最合适的是剪切金属,但是不经济的。由于在干燥条件下进行硬变动,因此通过最小化工具温度降低工具磨损是唯一的解决方案。研究表明,没有有效的冷却系统可用于增强切削工具的工具寿命并提高可加工性特性。切割参数对切削温度的不利影响通常通过适当的选择来控制。本文的目的是开发一种新的冷却系统来控制工具尖端温度,从而最小化切割力和工具磨损率。为此工作选择的材料是HCWCI和切割工具是CBN插入物。基于工具架的周边进行复杂腔,以便于冷水流动。采用Taguchi技术进行实验。实验结果证实了切割力和工具磨损率的显着降低。

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