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随着柔性电子领域的不断发展,人们对可穿戴设备的智能化需求逐渐增多。其中,具有视觉交互功能的智能发光纺织品因其应用场景和功能的多样性引起了人们的广泛关注。ZnS∶Cu基力致发光弹性体仅在受到机械应力下就可以实现可见光的发射,具备可循环的力-光可视化传感特性,在智能发光服装方面有着潜在的应用价值。本文通过弹性聚合物基体网络结构调控、Al_(2)O_(3)纳米粒子掺杂的方法来增加应力传递位点,从而提高ZnS∶Cu复合弹性体的发光强度。通过挤出包覆、3D打印、丝网印刷等工艺实现了力致发光智能织物的连续化和图案化制备,改善了力致发光纺织品的力-光转换的灵敏度和穿戴舒适性问题,其在可穿戴传感、运动健康监测、智慧交通警示等方面具有潜在的应用价值。 相似文献
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散裂靶件作为加速器和次临界堆芯的耦合部件,是ADS系统相关研究最主要的组成部分之一。无窗靶巧妙地利用了液体的自由液面特性,避免了质子束对结构材料直接轰击,是一种很有前景的散裂靶靶件形式。采用水作为实验工质搭建了一套无窗散裂靶水模拟实验台架,该实验系统覆盖了无窗散裂靶水模拟实验所需的流量及压力条件,采用粒子图像测速仪(PIV) 对自由界面的流场进行可视化观察与分析,得到了自由界面的基本表征参数之间关系和可视化界面的流场信息。结果表明,无窗靶自由液面的位置和形状受到回路整体流量、压力和靶件几何尺寸的影响。As the coupling component between accelerator and subcritical core, the spallation target is of crucial importance to the operation safety of the whole system. Hence, the spallation target is one of the most important parts in ADS corresponding researches. Due to lifetime limitation of material, the windowless target which has a stable free surface attracts more and more attention. The present paper deals with the experimental investigation on the free surface behavior in an approximately 1:1 size windowless target model using water as test fluid. We can get the flow and pressure conditions of windowless spallation target water simulation experiment from the platform. The free surface and eld visualization were obtained by particle imaging velocimetry. The results show that the position and flow pattern of the free surface depend on experimental pressure, flow velocity and geometry of the target. 相似文献
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