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基于路况识别及素材谱的汽车用户路线疲劳损伤获取研究
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作者 苏亮 吴道俊 陈泉泉 《汽车工程》 EI CSCD 北大核心 2024年第8期1520-1528,共9页
为识别和获取用户路线的汽车结构疲劳损伤,提出了“素材谱”和“探测车”的概念,进而提出了一种基于路况识别、划分并与素材谱相结合的用户路线的汽车结构疲劳损伤的便捷获取方法。首先,构建了IRI(国际平整度指数)识别路面等级的数学模... 为识别和获取用户路线的汽车结构疲劳损伤,提出了“素材谱”和“探测车”的概念,进而提出了一种基于路况识别、划分并与素材谱相结合的用户路线的汽车结构疲劳损伤的便捷获取方法。首先,构建了IRI(国际平整度指数)识别路面等级的数学模型,建立了通过探测车的简配传感器方案识别用户路面等级的方法,并研究了车速与IRI的关联性和独立性。接着,提出了基于IRI和车速二维变量对用户路线的探测车道路工况细化分级及里程分布确定的方法。然后,结合全通道样车在本地采集的素材谱及单位里程损伤,最终高效地计算、获得用户路线及区域的汽车结构疲劳损伤。从而创建和形成了“素材谱+探测车”识别用户路线总损伤的解决方案。验证结果良好,表明所研究技术方法具有良好的可操作性、精确性和有效性。 展开更多
关键词 损伤 用户 路面 IRI 素材谱 探测车
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Quantum confinement effect of two-dimensional all-inorganic halide perovskites 被引量:3
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作者 蔡波 李晓明 +8 位作者 顾宇 Moussab Harb 李建海 谢美秋 曹菲 宋继中 张胜利 Luigi Cavallo 曾海波 《Science China Materials》 SCIE EI CSCD 2017年第9期811-818,共8页
Quantum confinement effect(QCE), an essential physical phenomenon of semiconductors when the size becomes comparable to the exciton Bohr radius, typically results in quite different physical properties of low-dimens... Quantum confinement effect(QCE), an essential physical phenomenon of semiconductors when the size becomes comparable to the exciton Bohr radius, typically results in quite different physical properties of low-dimensional materials from their bulk counterparts and can be exploited to enhance the device performance in various optoelectronic applications. Here, taking Cs Pb Br3 as an example, we reported QCE in all-inorganic halide perovskite in two-dimensional(2D) nanoplates. Blue shifts in optical absorption and photoluminescence spectra were found to be stronger in thinner nanoplates than that in thicker nanoplates, whose thickness lowered below -7 nm. The exciton binding energy results showed similar trend as that obtained for the optical absorption and photoluminescence. Meanwile, the function of integrated intensity and full width at half maximum and temperature also showed similar results, further supporting our conclusions. The results displayed the QCE in all-inorganic halide perovskite nanoplates and helped to design the all-inorganic halide perovskites with desired optical properties. 展开更多
关键词 quantum confinement effect all-inorganic halide perovskites NANOPLATES temperature dependence luminescence
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