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Effects of tool material, tool topography and minimal quantity lubrication (MQL) on machining performance of compacted graphite iron (CGI)

机译:刀具材料,刀具外形和最小量润滑(MQL)对压实石墨铁(CGI)加工性能的影响

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摘要

This paper addresses the tribological challenges involved in the machining of compacted graphite iron (CGI) through an investigation of the effects of tool material, local tool surface topography and minimal quantity lubrication (MQL) on machining performance. Turning experiments were undertaken using four different tools (flat coated carbide, grooved coated carbide, grooved coated cermet and chamfered ceramic) under dry and MQL conditions. The tests were conducted at two different cutting speed conditions with a constant feed and depth of cut. Results reveal that at low speed, the cermet tool provides a significant reduction in cutting forces in comparison to coated carbide. Cutting forces show an increase with the usage of MQL at high speed, suggesting a negative influence of the cutting fluid on CGI machining performance. Scanning electron microscopy/energy dispersive X-ray analysis of the tested tools reveal the absence of MnS layer on tools used for CGI machining, thereby reconfirming the findings by other researchers.
机译:本文通过研究工具材料,局部工具表面形貌和最小量润滑(MQL)对加工性能的影响,解决了压实石墨铁(CGI)加工中涉及的摩擦学挑战。在干燥和MQL条件下,使用四种不同的工具(平涂层硬质合金,带槽涂层的硬质合金,带槽涂层的金属陶瓷和倒角陶瓷)进行车削实验。在恒定进给和切削深度的两种不同切削速度条件下进行测试。结果表明,与涂覆的硬质合金相比,金属陶瓷刀具在低速时切削力显着降低。切削力随高速使用MQL的增加而增加,这表明切削液对CGI加工性能有负面影响。被测工具的扫描电子显微镜/能量色散X射线分析表明,用于CGI加工的工具上不存在MnS层,从而证实了其他研究人员的发现。

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