首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >INFLUENCE OF TOOL HOLDER MATERIAL ON INTERFACIAL, INSERT AND TOOL HOLDER TEMPERATURES DURING TURNING OPERATION OF GRAY IRON
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INFLUENCE OF TOOL HOLDER MATERIAL ON INTERFACIAL, INSERT AND TOOL HOLDER TEMPERATURES DURING TURNING OPERATION OF GRAY IRON

机译:工具夹材材料对灰铁转动操作期间界面,插入和刀架温度的影响

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摘要

Usually studies related to machining temperature consider a system comprised of workpiece, chip and cutting tool, the effect of tool holder material is not taken in account. However, due to its physical properties, the tool holder material, usually carbon steel, has effect in the dissipation of the heat generated. This work studies the effect of the tool holder material on the temperature distribution during the turning operation of gray iron using cemented carbide cutting tool and without cutting fluid. Five tool holders were manufactured from materials with dofferent heat conductivity: carbon steel, stainless steel, totanium, copper and bronze. Temperatures in eight different positions in the tool holder and cutting insert were measured. The average temperature at the chip tool interface was also measured using the tool-work thermocouple method. The results showed that the measured chip tool interface temperature was less affected by the tool holder material, although the temperature distribution at the cutting tool is highly affected.
机译:通常,与加工温度相关的研究考虑由工件,芯片和切削工具组成的系统,刀架材料的效果是不考虑的。然而,由于其物理性质,工具架材料,通常是碳钢,在产生的热量耗散时具有效果。这项工作研究了工具架材料对使用碳水化合物切削工具的灰铁转动操作期间的温度分布的影响。五个工具架由具有拟特导热性的材料制成:碳钢,不锈钢,铜,铜和青铜。测量刀架和切削刀片中八个不同位置的温度。还使用工具工作热电偶法测量芯片工具界面的平均温度。结果表明,测量的芯片工具界面温度受到刀具夹具材料的影响,尽管切削工具的温度分布受到高度影响。

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