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首页> 外文期刊>Advances in Manufacturing >Experimental research on the critical conditions and critical equation of chip splitting when turning a C45E4 disc workpiece symmetrically with a high-speed steel double-edged turning tool
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Experimental research on the critical conditions and critical equation of chip splitting when turning a C45E4 disc workpiece symmetrically with a high-speed steel double-edged turning tool

机译:实验研究的重要条件芯片和关键方程分裂时将C45E4盘工件对称高速钢铁双刃剑车刀

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摘要

Chip splitting is a natural chip separation phenomenon that can significantly reduce cutting energy consumption. To reveal its occurrence mechanisms, a method for obtaining its critical conditions through cutting experiments and establishing its critical equation is proposed in this paper. Based on previous research results regarding the relationship between chip removal interference and chip splitting, the control variables that affect chip splitting are identified by analyzing a geometric model of the cutting process. A total of 366 experiments on turning a C45E4 disc workpiece with a high-speed steel double-edged turning tool based on the dichotomy method were conducted and 51 experimental data on chip splitting critical conditions were obtained. According to these experimental data, a critical equation expressed by a finite-degree polynomial with a cutting thickness equal to the other control variables was fitted. By analyzing the critical surface, it was determined that chip splitting followed a law in which the smaller the cutting thickness and the larger the absolute value of the negative rake angle, edge angle, and edge inclination of the tool, the more likely chip splitting was to occur. Through a verification experiment, it was determined that the derived critical equation could accurately predict the occurrence of 95.24% of chip splitting. It was also determined that the occurrence of chip splitting led to a cliff-like drop in the specific total cutting force with a maximum drop of 51.23%. This research lays a foundation for the rational utilization of chip splitting in tool structure parameter design and cutting parameter energy saving optimization.
机译:芯片分裂是一种天然的芯片分离现象,可以显著降低切割能源消耗。方法获取其关键机制通过切削实验和条件提出了建立其临界方程这篇论文。关于芯片去除之间的关系干扰和芯片分裂,控制变量影响芯片的分裂被分析的几何模型切削过程。将C45E4盘工件高速钢一把双刃剑车刀的基础上二分法方法进行和51实验数据对芯片将至关重要条件得到。实验数据,一个关键方程表达由finite-degree多项式切割厚度等于其他控制变量原来的样貌。确定芯片分裂之后是一个法律吗切割厚度和越小绝对值越大的负面前角、边缘角和边的倾向工具,芯片是分裂发生。确定临界方程派生而来准确预测95.24%的发生芯片的分裂。芯片的发生分裂导致了cliff-like下降的具体总削减力,最大跌幅为51.23%。理性的研究奠定了基础利用芯片分割工具结构参数设计和切削参数能量节约优化。

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