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Characterizations of cutting tool flank wear-land contact

机译:切削刃侧面磨损接触的特征

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摘要

Metal deposition at the tool flank wear-land during machining is a common phenomenon, especially in machining aluminum alloys and annealed steels. The cause of metal deposit has not been studied and the characteristics of the wear-land and deposit contact are not completely known. In this study, a turning test was conducted using tungsten carbide (WC) tools with pre-generated wear-land to machine an aluminum alloy. The WC tools after machining were prepared by metallographic means to expose the cross-section of the interfacial zone. The metallographic samples were analyzed using etching, optical microscopy, scanning electron microscopy, energy dispersive by X-ray analysis, and microhardness testing. The major findings include the following. The metal deposit is resistant to common etching solutions, shows high carbon and oxygen concentrations, and has a very high hardness, all indicating fine microstructures resulted from the thermomechanical, and possibly chemical, process. The WC at the contact interface has a thin heat-affected zone showing reduced hardness and different microstructures. In addition, the flank wear-land subsurface has a decreased tungsten concentration, but an increased carbon concentration. After removing the metal deposit, the flank wear-land consistently shows two topographically distinct zones when the wear-land is large; one close to the cutting edge has a plastic-contact feature and the other has an elastic-contact feature. No significant difference in terms of microstructures and compositions was identified, except that the plastic-contact zone was softer than the elastic-contact zone.
机译:在加工过程中,在刀具侧面磨损处的金属沉积是一种普遍现象,尤其是在加工铝合金和退火钢时。金属沉积的原因尚未得到研究,磨损面和沉积物接触的特性尚不完全清楚。在这项研究中,车削测试是使用碳化钨(WC)工具和预先产生的磨损区来加工铝合金的。加工后的WC工具通过金相方法制备以暴露界面区域的横截面。使用蚀刻,光学显微镜,扫描电子显微镜,通过X射线分析进行能量分散和显微硬度测试对金相样品进行分析。主要发现包括以下内容。该金属沉积物能够抵抗普通的蚀刻溶液,显示出高的碳和氧浓度,并且具有非常高的硬度,所有这些都表明由热机械过程以及可能的化学过程产生的精细微观结构。接触界面处的WC有一个薄的热影响区,显示出降低的硬度和不同的微观结构。此外,侧面磨损区的次表面具有降低的钨浓度,但具有增加的碳浓度。去除金属沉积物后,当磨损大时,侧面磨损区域始终显示出两个在地形上不同的区域。一个靠近切削刃,具有塑性接触特征,另一个具有弹性接触特征。除了塑性接触区比弹性接触区更软之外,在微观结构和组成方面没有发现显着差异。

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