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首页> 外文期刊>Sensors and Actuators, A. Physical >Effects of solvents for luminophore on dynamic and static characteristics of sprayable polymer/ceramic pressure-sensitive paint
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Effects of solvents for luminophore on dynamic and static characteristics of sprayable polymer/ceramic pressure-sensitive paint

机译:发光体溶剂对可喷涂聚合物/陶瓷压敏涂料动态和静态特性的影响

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摘要

Polymer/ceramic pressure sensitive paint (PC-PSP) is an optical fast-responding pressure sensor. PC-PSP consists of a polymer and particles as the material for a porous binder layer, and a pressure-sensitive luminophore. The solution of the polymer and particles, and then the solution of the luminophore are separately applied to a model surface. The response time of PSP is mainly determined by the thickness and oxygen diffusivity of the binder layer. However, we found that PC-PSP showed the significantly different response time depending on the solvents for the luminophore despite the same total thickness of the binder layer. Therefore, we investigated the effect of solvents in dissolving luminophore on the PC-PSP characteristics including response time, pressure sensitivity, and luminescence lifetime. PC-PSP's prepared with solvents for luminophore that poorly dissolve the polymer in the binder layer achieved a faster response time of those prepared with solvents that can dissolve the polymer. Furthermore, it was also found that the solvents caused the change in the response time, luminescence intensity and luminescence lifetime of PC-PSP. We have concluded that the different solubility of the solvents may provide the different state of porous structure and the local distribution of luminophore in the binder layer, and it causes the variation of the dynamic and static characteristics of PC-PSP. (C) 2019 Elsevier B.V. All rights reserved.
机译:聚合物/陶瓷压敏涂料(PC-PSP)是光学快速响应压力传感器。 PC-PSP由聚合物和颗粒组成,作为多孔粘合剂层的材料和压敏发光体。聚合物和颗粒的溶液,然后将发光体的溶液分别施加到模型表面上。 PSP的响应时间主要由粘合剂层的厚度和氧扩散率决定。然而,我们发现PC-PSP表明,尽管粘合剂层的总厚度相同,但仍然根据发光体的溶剂显示出显着不同的响应时间。因此,我们研究了溶剂对溶解发光体对PC-PSP特性的影响,包括响应时间,压力敏感性和发光寿命。用溶剂制备的PC-PSP为发光体溶剂溶解,粘合剂层中的聚合物差异达到溶剂制备的响应时间,其可以溶解聚合物的溶剂。此外,还发现溶剂导致PC-PSP的响应时间,发光强度和发光寿命的变化。我们已经得出结论,溶剂的不同溶解度可以提供不同的多孔结构状态和粘合剂层中发光体的局部分布,并导致PC-PSP的动态和静态特性的变化。 (c)2019 Elsevier B.v.保留所有权利。

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