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Self-Lubrication of Machining Tools in Dry via In-situ Formed Tribofilms

机译:原位干燥加工工具的自润滑成分形成呋喃弗斯

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Green manufacturing technology has become a significant innovative keyword to reduce the environmental burden and CO2 emission at the stage of manufacturing and production. In daily operations by machining, huge amount of lubricating oils and cleansing agents is wasted so that dry machining technology provides us a way to completely reduce these wastes. Among several candidates, self-lubrication via in-situ formation of lubricious oxide films is accommodated to protective coatings in order to attain low friction and wear state even at higher cutting speed range. Materials science of in-situ formed lubricious oxide tribofilms is stated with consideration of accommodation mechanism via the chlorine implantation. Mechanical characterization is made for evaluation on elasto-plastic deformation of lubricious oxides. Turning test is employed to evaluate dry machinability of various tools for wide range of cutting speed. Self-lubrication in dry machining is described both for bare WC and TiCN-coated WC tools with and without chlorine implantation. Precise microstructure analyses are made by using the laser microscope, EDS and XPS. In-situ formation of lubricous oxides proves that self-lubrication process takes place even in dry machining to reduce the flank wear and friction coefficient.
机译:绿色制造技术已成为一项重要的创新关键词,以减少制造和生产阶段的环境负担和二氧化碳排放。通过加工的日常操作中,浪费了大量的润滑油和清洁剂,使得干加工技术为我们提供了一种完全减少这些废物的方法。在几个候选者中,通过原位形成润滑氧化膜的自润滑容纳在保护涂层中,以便即使在更高的切削速度范围内也能够达到低摩擦和磨损状态。通过氯植入考虑到含氯植入机理,阐述了原位成立的润滑氧化物呋喃酚的材料科学。对润滑氧化物弹塑性变形进行了机械表征。车削试验用于评估各种工具的干式加工性,以实现各种切削速度。干式加工中的自润滑用于裸WC和TICN涂层的WC工具,具有和不含氯植入。通过使用激光显微镜,EDS和XPS进行精确的微结构分析。原位形成润滑氧化物,证明即使在干燥加工过程中也发生自润滑过程,以降低侧面磨损和摩擦系数。

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