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Planing of Cobalt-Free Tungsten Carbide Using a Diamond Tool:Cutting temperature and tool wear

机译:使用金刚石工具规划无钴碳化钨:切削温度和工具磨损

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Diamond tools wear easily under cutting tungsten carbide. To clarify the wear mechanism, the authors composed a temperature-measurement system of a cutting point using a dual-color-infrared pyrometer and performed planing experiments. Infrared rays, emitted from the contact point between a mono-crystal-diamond tool and a cobalt-free tungsten carbide, are transmitted though the diamond tool and an optical fiber and then they are detected by the pyrometer. Before the planing experiments, rubbing experiments were performed using a mono-crystal-diamond stick and a tungsten-carbide disk. The effects of gas environments and rubbing conditions on contact-point temperature, friction coefficient, and diamond wear were experimentally investigated. Planing experiments of the tungsten carbide using mono-crystal-diamond tool, were performed. The effects of planing conditions and gas environments on cutting-point temperature and tool wear were investigated. Through the experiments the following results were obtained. Rubbing and cutting point temperature is the highest in Argon gas followed by Nitrogen gas and is the lowest in Air. Diamond-tool wear is the greatest in Argon gas, less in Nitrogen gas, and the least in Air. The reason for this is that a chemically or physically absorbed layer of oxygen or nitrogen on tungsten carbide acts as a lubricant at the contact point. Cutting-point temperature was in proportion to cutting speed. The temperature under cutting speed at 90m/min and cutting depth at 1.0μm in Air was approximately 170degrees Celsius.
机译:金刚石刀具在切削碳化钨时容易磨损。为了弄清磨损机理,作者使用双色红外高温计组成了一个切割点的温度测量系统,并进行了刨削实验。从单晶金刚石工具和无钴碳化钨之间的接触点发出的红外线通过金刚石工具和光纤传输,然后由高温计检测。在刨削实验之前,使用单晶金刚石棒和碳化钨圆盘进行摩擦实验。实验研究了气体环境和摩擦条件对接触点温度,摩擦系数和金刚石磨损的影响。使用单晶金刚石工具进行了碳化钨的平面实验。研究了刨削条件和气体环境对切削温度和刀具磨损的影响。通过实验,获得以下结果。氩气中的摩擦和切割点温度最高,其次是氮气,而空气中的最低。金刚石工具的磨损在氩气中最大,在氮气中少,而在空气中最少。其原因是在碳化钨上化学或物理吸收的氧或氮层在接触点处起润滑剂的作用。切割点温度与切割速度成正比。在空气中,切割速度为90m / min,切割深度为1.0μm时的温度约为170摄氏度。

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