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Investigation of Chip Dimensional Characteristics Created by the Specific Cutting Tool at the Machining of 12 050 Steel

机译:12 050钢制加工机械加工芯片尺寸特征的研究

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The article deals with the investigation of chip dimensional characteristics that are created by the tool with linear cutting edge nonparallel to the workpiece axis. It is the tool with special geometry that was designed by authors in order to improve product quality and shorten the time of its production. Aim of the research has been focused on the obtaining of dependencies of the chip dimensions on both feed per revolution and setting of tool corner height in relation to the workpiece axis during machining of 12 050 steel. Measured data were processed statistically and they were evaluated by means of regression analysis in matrix expression. Measured data have indicated that with the increasing of feed per revolution, the chip width and chip thickness are increasing, too. As for the depth of cut, if it is increasing, the width of chip is also increasing, but chip thickness is not changing. The experiments have shown that the shape of chips at the machining by tool with linear cutting edge is not suitable for usage in production without direct control by operator. Therefore, when considering usage of this tool, it will be necessary to design the tool with chip breaker.
机译:本文涉及调查芯片尺寸特性,该芯片尺寸特征具有线性切削刃非平行的工具产生的芯片尺寸特性。它是具有特殊几何形状的工具,由作者设计,以提高产品质量,缩短生产时间。该研究的目的一直专注于获得芯片尺寸的依赖性,在加工12 050钢的加工过程中与工件轴相对于工件轴的换档和刀具高度的设置。测量数据在统计上处理,通过矩阵表达中的回归分析评估它们。测量数据表明,随着每次旋转的饲料增加,芯片宽度和芯片厚度也在增加。至于切割的深度,如果越来越多,芯片的宽度也在增加,但芯片厚度不变。实验表明,通过工具用线性切削刃加工的芯片的形状不适用于生产中的使用而不通过操作员进行直接控制。因此,在考虑使用此工具的情况下,有必要使用碎片断路器设计工具。

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