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Uniformity Study of Two-Functional Luminescent Dyes Adsorbed over an Anodized Aluminum Coating for Motion-Capturing Pressure- and Temperature-Sensitive Paint Imaging

机译:用阳极氧化铝涂层吸附两种功能发光染料的均匀性研究,用于运动捕获压力和温度敏感涂料成像

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摘要

The pressure- and temperature-sensitive paint (PSP/TSP) technique, for steady-state and unsteady-state measurements, is becoming widespread. However, unsteady quantitative measurement is still difficult because non-uniform distribution of the probes over a test model may cause errors in the results. We focus on the dipping method that applies two luminophores into a binding material to improve sensitivity uniformity over a model surface. A bullet-shaped axisymmetric test model with motion-capturing TSP was used to evaluate the sensitivity uniformity, and three dipping methods (static, convectional, and rotational) were examined. The average peak ratios in the longitudinal direction were 1.17–1.46 for static, 1.38–1.51 for convectional, and 1.42–1.45 for rotational dipping. The standard deviations in the transverse direction were the smallest for rotational (0.022–0.033), relative to static (0.086–0.104), and convectional (0.044–0.065) dipping.
机译:压力和温度敏感的涂料(PSP / TSP)技术,用于稳态和不稳定状态测量,变得普遍。然而,不稳定的定量测量仍然困难,因为探头在测试模型上不均匀分布可能导致结果中的误差。我们专注于将两个发光体施加到粘合材料中的浸渍方法,以提高模型表面上的敏感性均匀性。使用运动捕获TSP的子弹形轴对称测试模型用于评估敏感性均匀性,并检查三种浸渍方法(静态,对流和旋转)。纵向方向的平均峰值比为1.17-1.46,用于对流的静电,1.38-1.51,1.42-1.45,用于旋转浸渍。横向的标准偏差是旋转(0.022-0.033)的最小偏差,相对于静态(0.086-0.104),对映射(0.044-0.065)浸渍。

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