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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Investigation on turning of AISI 1040 steel with the application of nano-crystalline graphite powder as lubricant
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Investigation on turning of AISI 1040 steel with the application of nano-crystalline graphite powder as lubricant

机译:以纳米晶石墨粉为润滑剂的AISI 1040钢车削研究

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摘要

The past few decades have witnessed significant advancements in turning processes, cutting tools and coolant/lubricant chemistry. These developments have enhanced the machining capabilities of hard materials when machining at higher cutting conditions. Turning, being characterized by the development of high temperatures at the cutting zone, is critical with respect to the tool life and surface finish apart from other machining results like the forces generated. This phenomenon of heat generation at the cutting zone plays a negative role during turning operations due to their peculiar characteristics such as poor thermal conductivity, high strength at elevated temperature, resistance to wear and chemical degradation. Cutting fluids and solid lubricants are generally used to overcome the problem of heat generation at the cutting zone. The use of cutting fluids in the conventional way may not effectively control the heat generated in turning operation. Moreover, cutting fluids are a major source of pollution. With the advancement in technology, nano-level particulate solid lubricants are being used nowadays in machining operations, especially grinding and turning. The present work deals with the investigation of using nano-level particulate graphite powder as a solid lubricant and various tests were conducted by machining AISI 1040 steel using tungsten carbide inserts. The experiments were conducted by taking into account the parameters like feed rate ranging from 0.05 mm/rev to 0.125 mm/rev, cutting speed ranging from 51 m/min to 192.6 m/min and depth of cut from 0.25 mm to I mm. Four levels of each parameter are considered for experimentation. The results indicate that with the decrease in the nano-sized graphite powder, there is an increase of cutting forces - feed force, cutting force and thrust force. The temperatures at the tool-chip interface also increases with the decrease in the lubricant size. It is found that the surface roughness of the workpiece after machining deteriorated due to the size of the lubricant particle.
机译:在过去的几十年中,车削工艺,切削工具和冷却液/润滑剂化学物质取得了重大进步。这些发展提高了在更高切削条件下进行加工时硬质材料的加工能力。车削以切削区域高温的发展为特征,对于刀具寿命和表面光洁度而言至关重要,除了产生力的其他加工结果以外。由于其特殊的特性,例如导热性差,高温下的高强度,耐磨性和化学降解性,在切削过程中在切削区域产生热量的这种现象起着负面作用。通常使用切削液和固体润滑剂来克服在切削区域产生热量的问题。以常规方式使用切削液可能无法有效地控制车削操作中产生的热量。此外,切削液是主要的污染源。随着技术的进步,纳米级颗粒状固体润滑剂如今已用于机加工操作,尤其是研磨和车削。本工作涉及使用纳米级颗粒石墨粉末作为固体润滑剂的研究,并且通过使用碳化钨刀片对AISI 1040钢进行机加工来进行各种测试。通过考虑进给速度范围从0.05 mm / rev到0.125 mm / rev,切割速度从51 m / min到192.6 m / min以及切割深度从0.25 mm到1 mm的参数进行实验。每个参数分为四个级别进行实验。结果表明,随着纳米级石墨粉的减少,切削力-进给力,切削力和推力增加。随着润滑剂尺寸的减小,工具-切屑界面处的温度也升高。发现由于润滑剂颗粒的尺寸,加工后的工件的表面粗糙度变差。

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