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Actual Feed Rate per Tooth at Micro Milling

机译:微铣削每齿的实际饲料速率

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摘要

Miniature structures can be produced economically by micro end milling as single parts or parts in small and medium lot sizes. The micro end milling process has to be analyzed particularly for the purpose of applying a well controlled and repeatable process. There are many specific characteristics in the micrometric scale of dimensions, whose role is negligible at the conventional processing technologies. One of these special features of micro end milling is the observation that the set value of the feed rate per tooth generally differs from the thickness of the actual removed material layer. Feed rate per tooth is practically defined as the distance, which is run by the edge lengthwise of the groove during one revolution of the tool. Accordingly the feed rate per tooth corresponds to the thickness of the material layer removed by one edge of the tool. This correspondence exists at conventional manufacturing methods but not at micro end milling. This fact is attended by more special features of the micro end milling process, which are multiple cutting, different machining conditions of the edges and tool deflection. This paper introduces the results of improvement of my earlier research on this field. An enhanced flowchart was constructed, which provides the calculation of the thickness of the actual removed material layer at micro end milling under all possible circumstances.
机译:微型结构可以通过微端铣削作为小和中等批量的单个部件或部件经济地生产。必须特别地分析微端研磨过程,以施加良好控制和可重复的方法。在尺寸的微型规模中存在许多具体特征,其作用在传统的处理技术方面可忽略不计。微端铣削的这些特殊特征之一是观察到每齿的进料速率的设定值通常与实际除去的材料层的厚度不同。每个牙齿的进料速率实际上定义为距离,在工具的一圈旋转期间由凹槽的边缘长度地运行。因此,每个牙齿的进料速率对应于由工具的一个边缘移除的材料层的厚度。这种对应关系存在于常规制造方法中,但不存在于微端铣削。通过微端铣削过程的更特殊的特征,这一事实是多种切割,边缘和刀具偏转的不同加工条件。本文介绍了我对该领域早期研究的改进结果。构造了增强的流程图,该流程图在所有可能的情况下提供了在微端研磨中的实际除去材料层的厚度的计算。

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