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Size effect on reliability indices and safety factors of quasibrittle structures

机译:尺寸对准脆性结构可靠性指标和安全系数的影响

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摘要

Many modern engineering structures are made of brittle heterogenous (quasibrittle) materials, such as concrete, composites, and tough ceramics. Recent studies have shown that the strength distribution of quasibrittle structures varies from a Gaussian distribution modified by a power-law tail to a Weibull distribution as the structure size increases, and such size dependence can be well captured by a finite weakest link model. This paper investigates the implication of the size-dependent strength distribution on the reliability-based analysis and design of quasibrittle structures by considering a linear failure limit state. The size effect on the statistical properties of structural strength directly leads to a size-dependent Cornell index, which could give a reasonable estimation of the failure risk in some cases. To improve the prediction of the structural failure risk, the size dependence of the strength distribution is further incorporated into the computation of the Hasofer-Lind index, where it is shown that the transformation method for the non-Gaussian random structural strength is dependent on the structure size and geometry. By assuming that the applied load follows a Gaussian distribution, approximate size effect equations are developed for the central and nominal safety factors through asymptotic matching. The proposed formulation of the size effect on reliability indices and safety factors is applied to analyze the failure of the Malpasset arch dam.
机译:许多现代工程结构都是由易碎的异质(准脆性)材料制成的,例如混凝土,复合材料和坚韧的陶瓷。最近的研究表明,随着结构尺寸的增大,准脆性结构的强度分布从由幂律尾部修正的高斯分布到威布尔分布,并且这种尺寸依赖性可以通过有限的最弱连接模型很好地捕获。本文通过考虑线性破坏极限状态,研究了基于尺寸的强度分布对准脆性结构基于可靠性的分析和设计的影响。尺寸对结构强度统计特性的影响直接导致尺寸相关的康奈尔指数,在某些情况下可以合理估计失效风险。为了改善对结构破坏风险的预测,将强度分布的大小相关性进一步纳入了Hasofer-Lind指数的计算中,结果表明,非高斯随机结构强度的转换方法取决于结构强度。结构尺寸和几何形状。通过假设施加的载荷遵循高斯分布,通过渐近匹配为中心和名义安全系数建立了近似的尺寸效应方程。拟议的尺寸对可靠性指标和安全系数的影响公式被用于分析马尔帕塞拱坝的破坏。

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