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HIGH-SPEED MILLING - A NEW MANUFACTURING TECHNOLOGY

机译:高速铣削 - 一种新的制造技术

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摘要

High-speed milling (HSM) is becoming industrial practice instead of only laboratory use. Still it is generally considered a new manufacturing technology. The high-speed milling method has many benefits compared to conventional milling. Very often high-speed milling is considered just a way to improve productivity resulting from faster cutting speeds than those used conventionally. Seldom is it emphasised that the product quality can be improved as a consequence of increased accuracy and better surface finish. This report is based on the results of several Finnish projects on high-speed milling for testing the suitability of high-speed milling for different kinds of materials. In this paper the following topics are discussed: milling tools in high-speed machining and high-speed milling of different materials. The materials machined were steels, aluminium alloys, graphites and polymer matrix composites. The conclusion drawn is that most of the materials can be machined by high-speed milling. A good result is obtained by careful selection of cutting parameters. In high-speed milling, the tool life with a goal-oriented milling tool - material machined - cutting parameter combination is acceptable and the machining result is sufficient. When tools are not selected goalorientedly, the rate of tool wear is rapid.
机译:高速铣削(HSM)正在成为工业实践而不是仅限实验室使用。仍然仍被认为是一种新的制造技术。与传统铣削相比,高速铣削方法具有许多益处。通常,高速铣削被认为是提高生产率的方法,从而提高生产率,这些生产率比传统方式使用的更快的切割速度。很少有强调,由于提高精度和更好的表面光洁度,可以提高产品质量。本报告基于几种芬兰项目的高速铣削项目的结果,用于测试不同种类材料的高速铣削的适用性。本文讨论了以下主题:高速加工和高速铣削不同材料的铣削工具。加工材料是钢,铝合金,石墨和聚合物基复合材料。结论是,大多数材料都可以通过高速铣削加工。通过仔细选择切割参数来获得良好的结果。在高速铣削中,采用目标导向铣削工具材料加工 - 切割参数组合的工具寿命是可接受的,加工结果就足够了。当工具未循注术时,刀具磨损率迅速。

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