首页> 外文会议>ASME conference on smart materials, adaptive structures and intelligent systems >DEVELOPMENT OF 3D IMPACT SELF-SENSING COMPOSITES USING FRACTO-MECHANOLUMINESCENT EuD_4TEA
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DEVELOPMENT OF 3D IMPACT SELF-SENSING COMPOSITES USING FRACTO-MECHANOLUMINESCENT EuD_4TEA

机译:利用分数维机械发光EuD_4TEA开发3D冲击自感复合材料

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The objective of this study is to develop three dimensional (3D) impact self-sensing composites capable of localizing impact damage in through-the-thickness direction. The 3D impact self-sensing composites (3D-ISSC) are designed by embedding fracto-mechanoluminescent (FML) crystals in cells of honeycomb-cored fiber reinforced polymer (FRP) structural composites. FML crystals were shown to emit light resulting from cleavage of crystalline structures due to external mechanical stimuli. Unlike other conventional sensor networks, without supplying external electrical source, the 3D-ISSC is envisioned to monitor impact occurrences and detect damage. Instead, the emitted light will be utilized for informing severity of impact occurrences and 3D locations of the impact damage. First, FML europium-doped dibenzoylmethide triethylammonium (EuD_4TEA) crystals are synthesized. Second, the synthesized EuD4TEA crystals are embedded in the honey-cored FRP structural composites to fabricate 3D-ISSC. Third, to validate its 3D self-sensing capability, Kolsky bar is employed to apply high strain-rate compressive loading to simulate impact occurrences while taking high-speed video footage for quantifying intensity of FML light emission through image processing technique.
机译:这项研究的目的是开发能够在整个厚度方向上定位冲击损伤的三维(3D)冲击自感应复合材料。 3D冲击自感应复合材料(3D-ISSC)是通过在蜂窝芯纤维增强聚合物(FRP)结构复合材料的单元中嵌入分光致发光(FML)晶体而设计的。 FML晶体显示出由于外部机械刺激而导致的晶体结构分裂而发光。与其他常规传感器网络不同,在不提供外部电源的情况下,可以预见3D-ISSC可以监视撞击事件并检测损坏。取而代之的是,发出的光将用于告知撞击发生的严重程度以及撞击损坏的3D位置。首先,合成了掺有FML euro的二苯甲酰甲基三乙铵(EuD_4TEA)晶体。其次,将合成的EuD4TEA晶体嵌入蜂蜜芯FRP结构复合材料中,以制造3D-ISSC。第三,为了验证其3D自感应功能,Kolsky bar被用来施加高应变率压缩载荷来模拟撞击的发生,同时通过图像处理技术拍摄高速视频素材来量化FML发光强度。

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