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Performance of Coated and Uncoated Inserts during Intermittent Cut Milling of AISI 1030 Steel

机译:AISI 1030钢间歇式切割过程中涂层和未涂层​​插入的性能

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Knowledge of tool behaviour during intermittent cut machining of various work material is much required in order to improve the efficiency of the machining process. The tool-work impact and related effects of tool wear and surface roughness are often the subjects of interest. Even though, more work has been done to establish the relationship between cutting speed, tool wear and surface roughness during intermittent milling, there is no significant data available for AISI 1030 steel. To fill the gap, the machining of AISI 1030 steel using both coated and uncoated inserts were performed. Results were used to develop a linear regression model by which the relation between the machining parameters and the response were established. Results on tool wear patterns and wear mechanisms were compared between coated and uncoated inserts. Cyclic load on inserts and unstable temperature at cutting zone leads to flank wear and progressive chipping, which were the dominant failure modes observed. Coated inserts out performed uncoated inserts in terms of tool wear and surface roughness. The results also revealed that the feed rate was the dominant factor affecting surface roughness, whereas the cutting speed significantly contributes to the tool wear.
机译:为了提高加工过程的效率,需要了解各种工作材料的间歇切割过程中的工具行为的知识。工具 - 工作的影响和刀具磨损和表面粗糙度的相关效果通常是感兴趣的主题。尽管如此,已经完成了更多的工作来建立在间歇铣削期间切割速度,工具磨损和表面粗糙度之间的关系,可提供AISI 1030钢的重要数据。为了填充间隙,进行使用涂覆和未涂覆的插入物的AISI 1030钢的加工。结果用于开发线性回归模型,由此建立加工参数与响应之间的关系。在涂层和未涂覆的插入物之间比较工具磨损图案和磨损机制的结果。切割区内插入件和不稳定温度的循环负载导致侧面磨损和渐进式切削,这是所观察到的主要衰竭模式。涂层刀片在工具磨损和表面粗糙度方面进行了未涂层的插入物。结果还透露,进料速率是影响表面粗糙度的主要因素,而切割速度显着有助于工具磨损。

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