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An approach to torque and temperature thread by thread on tapping

机译:螺纹旋转扭矩和温度螺纹的方法

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摘要

During internal threading, small alterations in cutting parameters, tool geometry, or process characteristics produce considerable effects on torque and temperature behavior. Understanding these effects is critical to the design and development of new taps. In this work, the torque behavior for a tap operation is evaluated as a function of the number of threads, tool manufacturer, and angle of the taper region of the tool. The chip-tool interface temperature was analyzed, considering the influence of cutting speed and number of threads. Experimental tests were carried out using M10x1.5 taps and cutting speeds of 10 m/min and 25 m/min. Taps with two different geometries were considered in this analysis. The results show a difference in the distribution of the torque along the threads of the conical part between the tools. The presence of adhered material increased the torque during the reverse stage. The torque during the reverse stage for a tap with a damaged tooth was approximately 50% of the torque during the cutting stage. The temperature showed an increase with the number of threads stabilizing between the fourth and fifth threads and increasing again in the sixth filled due to adhesion of workpiece material.
机译:在内部螺纹期间,切割参数,工具几何形状或工艺特性的小变化会对扭矩和温度行为产生相当大的影响。了解这些效果对新抽头的设计和开发至关重要。在这项工作中,作为工具的锥形区域的螺纹,工具制造商和角度的函数评估用于抽头操作的扭矩行为。考虑到切割速度和螺纹数量的影响,分析了芯片工具界面温度。使用M10x1.5抽头和10m / min和25米/分钟进行实验试验。在该分析中考虑了两个不同几何形状的水龙头。结果表明,沿着工具之间的锥形部分的螺纹的扭矩分布差异。粘附材料的存在在反向阶段期间增加了扭矩。在具有损坏齿的水龙头的反向阶段期间的扭矩在切割阶段期间的扭矩的约50%。温度显示随着第四和第五螺纹之间稳定的螺纹数量的增加,并且在由于工件材料的粘附而填充的第六次填充的螺纹数量。

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