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Experimental Analysis of Process Parameters to Manufacture Micro-cavities by Micro-Milling

机译:通过微型研磨制造微腔的工艺参数的实验分析

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The use of conventional machining processes has been subject to important decline probably due to the increment in the use of emerging technologies. Therefore, the main applications of these traditional processes, such as automotive industry, are in crisis. In order to have a chance to compete successfully in the new trends, the machining industry must meet the needs of alternative sectors such as biomedical field. The aim of this study is to prove the capacity of micro-milling, by machining complex micro-cavities on aluminum workpiece using a conventional milling machine. Results are obtained by evaluating accuracy and geometric features. This study finds that the feed per tooth is a significant factor in order to obtain better results. The use of coolant increases the tool wear and therefore dimensional errors. This scope is a potential opportunity to reutilize the conventional machines from a new approach.
机译:由于使用新技术的增量,传统加工过程的使用可能是重要的,但可能是由于新兴技术的增量。因此,这些传统过程的主要应用,如汽车行业,都在危机中。为了有机会在新潮流中成功竞争,加工行业必须满足生物医学领域等替代部门的需求。本研究的目的是通过使用传统的铣床加工铝制工件上的复杂微腔来证明微铣削的能力。结果通过评估精度和几何特征来获得。本研究发现,每颗牙齿的饲料是一个重要因素,以获得更好的结果。使用冷却剂增加了刀具磨损和因此尺寸误差。此范围是一种从新方法中重用传统机器的潜在机会。

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