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Assessing the Accuracy of Five Axis Machines by Comparing Machine Measurement Data with Test Work Piece Deviations

机译:通过比较机器测量数据与测试工件偏差来评估五轴机床的精度

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In aerospace industry the application of five axis machines is increasing and becoming common practice. The determination of the accuracy of such five axis machine however is often difficult or problematic. A significant increase is seen in the certification efforts involved for this industry sector. To assess the accuracy of a five axis machine within one minute a dedicated Rotary Inspector system has been developed by IBS Precision Engineering. With this measurement system a 3D measuring head is used in combination with a masterball while the machine executes a certain cycle using multiple machine axes simultaneously. Typical tests are specified in ISO10791-6 (e.g. AK1, BK4, CK4) and these are used in this paper to determine the machine's accuracy first, representing normal (milling) machine use. Usually test work pieces are made on a machine and its geometrical deviations are checked on a CMM for certification. The relation between these geometrical test work piece deviations and the measured ISO machine error parameters of the rotary axes is addressed in this paper. In this way the need of milling (many) test work pieces can be reduced significantly for certification purposes.
机译:在航空航天工业中,五轴机床的应用正在增加,并已成为一种惯例。然而,确定这种五轴机床的精度通常是困难的或成问题的。在该行业涉及的认证工作中看到了显着增加。为了评估一分钟内五轴机床的精度,IBS Precision Engineering开发了专用的Rotary Inspector系统。通过该测量系统,可以将3D测量头与主球结合使用,同时机器可以同时使用多个机器轴执行特定的循环。典型测试在ISO10791-6中进行了规定(例如AK1,BK4,CK4),本文将其用于首先确定机器的精度,这代表了正常(铣削)机器的使用情况。通常,测试工件是在机器上制造的,其几何偏差在CMM上进行检查以进行认证。本文讨论了这些几何测试工件偏差与旋转轴的测量的ISO机器误差参数之间的关系。这样,出于认证目的,可以大大减少铣削(许多)测试工件的需求。

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