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Investigation of serrated chip morphology change regular in the burning of titanium alloys

机译:钛合金燃烧中锯齿状切屑形态变化规律的研究

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摘要

Titanium alloys are regarded as difficult-machining materials due to their high strength at elevated temperature, relatively low thermal conductivity, small elastic modulus, and high chemical reactivity. It is prone to produce cutting burn defect in end milling. In order to investigate the variation regular of serrated chip morphologies and the relationship between chip macro morphologies and tool flank wear in the burning of milling titanium alloys TC4, a series of cutting experiments were conducted in this study. The chip morphology and cutting vibration characteristic in different tool wear stages were examined using an optical microscope, SEM, and vibration test system. In addition, the variation characteristics of serrated chips in the burning of milling titanium alloy TC4 were analyzed. The results revealed that the occurrence of tool flank wear can make an influence on serrated chips morphologies and surface color in the cutting burning process. Besides, the chip segment degree, shear angle, and width of adiabatic shear band increased rapidly as the cutting burning occurring. The present research could be potentially used to evaluate tool wear and surface quality in the burning of end milling titanium alloy process.
机译:钛合金由于其在高温下的高强度,相对较低的热导率,较小的弹性模量和较高的化学反应性而被认为是难加工材料。立铣刀容易产生切削烧伤缺陷。为了研究铣削钛合金TC4燃烧时锯齿状切屑形貌的变化规律以及切屑宏观形貌与刀具后刀面磨损之间的关系,进行了一系列切削实验。使用光学显微镜,SEM和振动测试系统检查了在不同刀具磨损阶段的切屑形态和切削振动特性。此外,分析了铣削钛合金TC4时锯齿状切屑的变化特征。结果表明,在切削燃烧过程中,刀具侧面磨损的发生会影响锯齿状切屑的形态和表面颜色。此外,切屑段度,剪切角和绝热剪切带宽度随着切削燃烧的发生而迅速增加。本研究可潜在地用于评估立铣钛合金燃烧过程中的工具磨损和表面质量。

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