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首页> 外文期刊>Smart Materials & Structures >Fracto-mechanoluminescent light emission of EuD(4)TEA-PDMS composites subjected to high strain-rate compressive loading
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Fracto-mechanoluminescent light emission of EuD(4)TEA-PDMS composites subjected to high strain-rate compressive loading

机译:EUD(4)茶型光学光发射的eUD(4)茶PDMS复合材料经受高应变率压缩负荷

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摘要

The objective of this study is to understand light emission characteristics of fracto-mechanoluminescent (FML) europium tetrakis(dibenzoylmethide)-triethylammonium (EuD(4)TEA) crystals under high strain-rate compressive loading. As a sensing material that can play a pivotal role for the self-powered impact sensor technology, it is important to understand transformative light emission characteristics of the FML EuD(4)TEA crystals under high strain-rate compressive loading. First, EuD(4)TEA crystals were synthesized and embedded into polydimethylsiloxane (PDMS) elastomer to fabricate EuD(4)TEA-PDMS composite test specimens. Second, the prepared EuD(4)TEA-PDMS composites were tested using the modified Kolsky bar setup equipped with a high-speed camera. Third, FML light emission was captured to yield 12 bit grayscale video footage, which was processed to quantify the FML light emission. Finally, quantitative parameters were generated by taking into account pixel values and population of pixels of the 12 bit grayscale images to represent FML light intensity. The FML light intensity was correlated with high strain-rate compressive strain and strain rate to understand the FML light emission characteristics under high strain-rate compressive loading that can result from impact occurrences.
机译:本研究的目的是了解在高应变率压缩载荷下,了解Tetrakiscinesence(FML)铕(二苯甲酰二甲酰醚)铕(二苯甲酰基)铕(EUD(4)茶)晶体的发光特性。作为对自动影响传感器技术来说可以发挥关键作用的感测材料,重要的是要在高应变率压缩载荷下了解FML EUD(4)茶晶的转化性发光特性。首先,合成EUD(4)茶晶体并嵌入聚二甲基硅氧烷(PDMS)弹性体中以制造EUD(4)茶PDMS复合试样。其次,使用配备有高速摄像头的改进的kolsky棒设置测试制备的EUD(4)茶PDMS复合材料。第三,捕获FML光发射以产生12位灰度视频镜头,该视频镜头被处理以量化FML发光。最后,通过考虑12位灰度图像的像素值和像素的像素群来产生定量参数以表示FML光强度。 FML光强度与高应变率压缩菌株和应变率相关的相关性,以了解能够由冲击发生的高应变率压缩负载下的FML发光特性。

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