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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >A new methodology for evaluating position and orientation errors of airfoil sections
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A new methodology for evaluating position and orientation errors of airfoil sections

机译:一种评估翼型截面位置和方向误差的新方法

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摘要

This paper presents an improved methodology for evaluating the position and orientation errors of airfoil sections of a manufactured aero-engine blade. The existing method estimates these errors by finding rigid-body transformations with translational and rotational parameters altogether to best match the inspection data points onto the design airfoil profiles. Such transformations lead to unreliable evaluation results due to combining the position and orientation errors with each other. This paper proposes to decouple the position and orientation errors in their evaluation in order to avoid the combining effect. To isolate the position error from the orientation error, an important location tolerance evaluation feature, the centroid of a manufactured airfoil section, must be correctly identified from the sectional inspection data points. Identifying the centroid location directly from discrete data points is subject to an error caused by biased area calculations on the pressure and suction sides of an airfoil. This work proposes to reconstruct a valid airfoil profile from the inspection data points for each airfoil section to overcome the area bias problem and to maintain consistency in identifying the centroid. With the centroid of each inspected airfoil section identified, the position error and the orientation error can then be evaluated in sequence. A series of case studies has been performed to demonstrate the effectiveness of the proposed methodology and how it is able to prevent wrongful rejection/acceptance of geometrically acceptable/unacceptable blades as well as incorrect modification of the related manufacturing processes.
机译:本文提出了一种改进的方法,用于评估制造的航空发动机叶片的翼型截面的位置和方向误差。现有方法通过找到具有平移和旋转参数的刚体变换来估计这些误差,以使检查数据点与设计翼型轮廓最佳匹配。由于将位置和方向误差相互结合,这样的转换会导致评估结果不可靠。本文提出在评估中将位置和方向误差解耦,以避免合并效应。为了将位置误差与方向误差隔离开,必须从截面检查数据点中正确识别出重要的位置公差评估功能,即翼型截面的质心。直接从离散数据点识别质心位置会受到由机翼压力侧和吸力侧上的偏差区域计算引起的误差的影响。这项工作建议从每个翼型截面的检查数据点重建一个有效的翼型轮廓,以克服面积偏差问题并保持识别质心的一致性。确定每个检查的机翼截面的质心后,即可依次评估位置误差和方向误差。已经进行了一系列案例研究,以证明所提出方法的有效性,以及如何防止几何可接受/不可接受的刀片被错误地拒绝/接受以及相关制造工艺的不正确修改。

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