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基于对数正态分布的多部位疲劳结构的疲劳寿命预测方法 被引量:7
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作者 谭秀峰 谢里阳 +2 位作者 马洪义 张娜 罗义建 《航空学报》 EI CAS CSCD 北大核心 2017年第2期171-177,共7页
以实现多部位疲劳结构的寿命预测为目的,基于概率累积损伤法则,推导了基于寿命服从对数正态分布的概率疲劳寿命预测方法。根据损伤临界值与应力水平无关这一前提条件,将损伤临界值由传统确定性的值1转换为随机变量,累积损伤由确定性的... 以实现多部位疲劳结构的寿命预测为目的,基于概率累积损伤法则,推导了基于寿命服从对数正态分布的概率疲劳寿命预测方法。根据损伤临界值与应力水平无关这一前提条件,将损伤临界值由传统确定性的值1转换为随机变量,累积损伤由确定性的中值损伤计算,建立了"中值累积损伤-概率损伤临界值"干涉模型。当对数寿命标准差恒定时,对比了所提出模型和基于Monte Carlo仿真的Miner累积损伤方法的寿命预测结果,验证了模型的准确性以及其方便快捷的优点;当对数寿命标准差变化时,损伤临界值由满足损伤等效的应力基准决定,此时亦可得到高精度的偏于安全的寿命预测结果。 展开更多
关键词 多部位疲劳 疲劳寿命 可靠性 中值损伤 概率损伤临界值 MONTE Carlo仿真
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Structures and properties of functional metal iodates 被引量:2
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作者 SUN ChuanFu, YANG BingPing & MAO JiangGao State Key Laboratory of Structural Chemistry Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou 350002, China 《Science China Chemistry》 SCIE EI CAS 2011年第6期911-922,共12页
Metal iodates with a lone-pair containing I(V) that is in an asymmetric coordination geometry can form a diversity of unusual structures and many of them are promising new second homonic generation (SHG) materials. Th... Metal iodates with a lone-pair containing I(V) that is in an asymmetric coordination geometry can form a diversity of unusual structures and many of them are promising new second homonic generation (SHG) materials. They exhibit wide transparency wavelength regions, large SHG coefficients and high optical-damage thresholds as well as moderately high thermal stability. In this paper, the structures and properties of the metal iodates are reviewed. The combination of d0 transition-metal cations with the iodate groups afforded a large number of metal iodates, with cations covering alkali metal, alkaline earth and lanthanide elements. Many of them are noncentrosymmetric (NCS) and display excellent SHG properties due to the additive effects of polarizations from both types of the asymmetric units. Some lanthanide iodates are able to emit strong luminescence in the visible or near-IR regions. The use of transition metal ions with dn (n ≠ 0) electronic configuration into iodate systems can also induce the formation of NCS compounds when the lone pairs of the iodate groups are properly aligned. The dn transition metal cations are normally octahedrally coordinated or in a square-planar coordination geometry. Furthermore, the combination of two different types of lone-pair-containing cations is also an effective strategy to design new SHG materials. 展开更多
关键词 second homonic generation (SHG) metal iodates crystal structures structure-property relationship
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