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首页> 外文期刊>Steel & Composite Structures: An International Journal >Reliability analysis-based conjugate map of beams reinforced by ZnO nanoparticles using sinusoidal shear deformation theory
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Reliability analysis-based conjugate map of beams reinforced by ZnO nanoparticles using sinusoidal shear deformation theory

机译:使用正弦剪切变形理论,通过ZnO纳米粒子加固的梁的可靠性分析梁的共轭图

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摘要

First-order reliability method (FORM) is enhanced based on the search direction using relaxed conjugate reliability (RCR) approach for the embedded nanocomposite beam under buckling failure mode. The RCR method is formulated using discrete conjugate map with a limited scalar factor. A dynamical relaxed factor is proposed to control instability of proposed RCR, which is adjusted using sufficient descent condition. The characteristic of equivalent materials for nanocomposite beam are obtained by micro-electro-mechanical model. The probabilistic model of nanocomposite beam is simulated using the sinusoidal shear deformation theory (SSDT). The beam is subjected to external applied voltage in thickness direction and the surrounding elastic medium is modeled by Pasternak foundation. The governing equations are derived in terms of energy method and Hamilton's principal. Using exact solution, the implicit buckling limit state function of nanocomposite beam is proposed, which is involved various random variables including thickness of beam, length of beam, spring constant of foundation, shear constant of foundation, applied voltage, and volume fraction of ZnO nanoparticles in polymer. The robustness, accuracy and efficiency of proposed RCR method are evaluated for this engineering structural reliability problem. The results demonstrate that proposed RCR method is more accurate and robust than the excising reliability methods-based FORM. The volume fraction of ZnO nanoparticles and the applied voltage are the sensitive variables on the reliable levels of the nanocomposite beams.
机译:在屈曲故障模式下使用嵌入式纳米复合梁的放宽共轭可靠性(RCR)方法,基于搜索方向增强一阶可靠性方法(表格)。使用具有有限标量因子的离散共轭图制定RCR方法。提出了一种动态松弛因子来控制所提出的RCR的不稳定性,其使用足够的下降条件调节。通过微电机械模型获得纳米复合梁等同材料的特性。使用正弦剪切变形理论(SSDT)模拟纳米复合梁的概率模型。梁在厚度方向上进行外部施加电压,周围的弹性介质由Pasternak基础建模。管理方程以能量方法和汉密尔顿的校长提供。采用精确解决方案,提出了纳米复合梁的隐式屈曲极限状态功能,其涉及各种随机变量,包括梁,梁长度,基础的弹簧常数,基础剪切恒定,施加的电压和ZnO纳米粒子的体积分数。在聚合物中。评估了所提出的RCR方法的鲁棒性,准确性和效率,用于该工程结构可靠性问题。结果表明,所提出的RCR方法比基于出种的可靠性方法的形式更准确和鲁棒。 ZnO纳米颗粒的体积分数和施加的电压是纳米复合梁可靠级别的敏感变量。

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