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Tool wear and machining dynamics when turning high chromium white cast iron with pcBN tools

机译:用PCBN工具转动高铬白色铸铁时的工具磨损和加工动力学

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摘要

High chromium white cast irons (HCCI) with high hardness and abrasiveness owing to a particular combination of hard primary and eutectic carbides were used as workpiece materials for longitudinal turning with binderless cBN (bcBN) and high cBN (hcBN) tools. The materials with low and high Si content were used in as-cast and quenched states. Binderless cBN is prone to cratering and flank wear, while hcBN is more prone to significant cutting edge rounding. Atypical behavior was found when machining high-Si material where the increase in cutting forces was accompanied by suppression of vibrations. The observed formation of a tool protection layer (TPL) on the tool-chip interface was found to be responsible for the improved dynamic stability. Electron microscopy and EDX analysis revealed that the TPL consists of nanocrystalline Al2O3 with SiO2 inclusions, both present in the workpiece materials. The stability of TPL was found to depend on both workpiece and tool materials. The absence or removal of the layer resulted in the development of self-excited vibrations with a frequency of 380 Hz, which affected the machined surface.
机译:由于硬度和共晶碳化物的特定组合具有高硬度和磨蚀性的高铬白色铸造熨斗(HCCI)用作用粘合剂CBN(BCBN)和高CBN(HCBN)工具的纵向转动的工件材料。具有低和高Si含量的材料用于浇铸和淬火状态。粘合剂CBN容易发生起伏和侧面磨损,而HCBN更容易出现显着的切削刃圆形。在加工切割力的增加伴随振动时,发现了非典型行为。发现在工具芯片界面上观察到的刀具保护层(TPL)的形成负责改进的动态稳定性。电子显微镜和EDX分析表明,TPL由纳米晶体Al2O3组成,其中SiO 2夹杂物,包括在工件材料中。发现TPL的稳定性取决于工件和工具材料。层的缺失或去除导致自激振动的开发,频率为380赫兹,影响加工表面。

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