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Development of fast response bi-luminophore pressure-sensitive paint by means of an inkjet printing technique

机译:通过喷墨印刷技术开发快速响应双荧光体压敏涂料

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A novel fast response bi-luminophore pressure-sensitive paint (PSP) by inkjet printing of sensor-dot arrays on an anodized aluminum (AA) substrate has been developed for unsteady flow measurements. A bi-luminophore AA-PSP, which is a combination of PSP and temperature-sensitive paint (TSP), is essential for precise pressure measurements, because the PSP result needs the temperature correction. However, a conventional bi-luminophore AA-PSP prepared by a dipping method does not work well due to the interference between the PSP and TSP luminophores. To overcome this problem, we have developed isolated dot arrays of PSP and TSP formed on an anodized aluminum substrate by an inkjet printing method. In this study, platinum tetrakis (pentafluorophenyl) porphyrin (PtTFPP) and ZnS-AgInS2 (ZAIS) were employed as pressure- and temperature-sensitive dyes, respectively. A suitable solvent was chosen for each dye to form the dots with uniform, high luminescence intensity, and high sensitivity. The developed bi-luminophore AA-PSP could simultaneously measure pressure and temperature and could reduce the temperature effect of the PSP from -0.97%/K (without temperature correction) to -0.01%/K (with temperature correction). It showed a pressure response time of 17.8 +/- 0.8 mu s at 90% pressure rise to a step change of pressure, which is in the same range as a conventional AA-PSP.
机译:已经开发出一种新颖的快速响应双荧光体压敏涂料(PSP),该方法通过在阳极氧化铝(AA)基板上喷墨打印传感器点阵列来进行不稳定流量测量。 PSP和热敏涂料(TSP)的组合的双荧光体AA-PSP对于精确的压力测量至关重要,因为PSP结果需要温度校正。然而,由于PSP和TSP发光体之间的干扰,通过浸渍法制备的常规双发光体AA-PSP不能很好地工作。为了克服这个问题,我们开发了通过喷墨印刷法在阳极氧化铝基板上形成的PSP和TSP隔离点阵列。在这项研究中,分别使用四(五氟苯基)铂卟啉(PtTFPP)和ZnS-AgInS2(ZAIS)作为压敏和热敏染料。为每种染料选择合适的溶剂以形成具有均匀,高发光强度和高灵敏度的点。所开发的双荧光体AA-PSP可以同时测量压力和温度,并且可以将PSP的温度影响从-0.97%/ K(未经温度校正)降低到-0.01%/ K(经过温度校正)。在压力上升90%时,压力响应时间为17.8 +/- 0.8μs,处于与常规AA-PSP相同的范围内。

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