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The effect of chip breaker geometry on chip shape, bending moment, and cutting force: FE analysis and experimental study

机译:断屑槽几何形状对切屑形状,弯矩和切削力的影响:有限元分析和实验研究

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摘要

Control of continuous chips in turning operation is a very vital issue to enhance productivity and operator safety. A famous method to control the chip size is utilization of chip breaker. In this study, the influence of different aspects of chip breaker geometry on cutting force, chip shape, and bending moment was evaluated by using finite element and experimental approaches. Therefore, cutting tests were carried out on AISI 1045 steel using tungsten carbide inserts with various chip breaker geometries. The results indicated that the predicted cutting force and chip shape are in close agreement with the experimental ones. It is also observed that the bending moment generated by the upper level of breadth surface has the highest contribution in the development of combined and nonuniform state of stress at the root and body of deformed chip. Meanwhile, the chip breaker geometry had a significant effect on the cutting force value.
机译:在车削操作中控制连续切屑对于提高生产率和操作员安全性至关重要。控制断屑大小的一种著名方法是利用断屑槽。在这项研究中,使用有限元和实验方法评估了断屑槽几何形状的不同方面对切削力,切屑形状和弯曲力矩的影响。因此,使用具有各种断屑槽几何形状的碳化钨刀片对AISI 1045钢进行了切削测试。结果表明,预测的切削力和切屑形状与实验值基本吻合。还观察到,在变形切屑的根部和主体上,由宽面的上表面产生的弯矩对应力的复合和不均匀状态的发展具有最大的贡献。同时,断屑槽的几何形状对切削力值有重大影响。

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