首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >A modified analytical cutting force prediction model under the tool crater wear effect in end milling Ti6Al4V with solid carbide tool
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A modified analytical cutting force prediction model under the tool crater wear effect in end milling Ti6Al4V with solid carbide tool

机译:用固体碳化工具,工具喷枪磨损效应下的改进的分析切割力预测模型

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摘要

This paper presents a study of the relationship between cutting force and tool crater wear of solid carbide tool during milling Ti6Al4V. The cutting force model in milling considering tool crater wear is discussed, which shows that for given the cutting conditions, tool geometries, and workpiece material, cutting force under the tool crater wear effect could be predicted easily and conveniently. The tool wear condition in milling Ti6Al4V is obtained by finite element simulation method. In addition, the experimental work of end milling Ti6Al4V with solid carbide tool is developed. Comparisons among experiment results, mathematical model results, and finite element simulation model results, including cutting force and tool wear, are discussed. The results show that the proposed mathematical model could predict cutting force under the tool crater wear effect with higher accuracy.
机译:本文介绍了在铣削Ti6Al4V铣削过程中切割力和刀具损伤的关系的研究。 讨论了考虑工具火山口磨损的铣削中的切割力模型,这表明,对于给定切割条件,工具几何形状和工件材料,可以容易方便地预测工具火山口磨损效果下的切割力。 通过有限元模拟方法获得铣削Ti6Al4V的工具磨损条件。 此外,开发了具有固体碳化物工具的端铣削Ti6Al4V的实验工作。 讨论了实验结果,数学模型结果和有限元模拟模型的比较,包括切割力和工具磨损。 结果表明,所提出的数学模型可以以更高的精度预测工具火山口磨损效果下的切割力。

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