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Numerical Validation of Two-Parameter Weibull Model for Assessing Failure Fatigue Lives of Laminated Cementitious Composites—Comparative Assessment of Modeling Approaches

机译:评估胶凝复合材料失效疲劳寿命的两参数威布尔模型的数值验证—建模方法的比较评估

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摘要

In this paper, comparative assessment of failure fatigue lives of thin laminated cementitious composites (LCCs) modeled by two modeling approaches—double-parameter Weibull distribution model and triple-parameter distribution model—was carried out. LCCs were fabricated of ordinary Portland cement (OPC), fly ash cenosphere (FAC), quartz sand, and reinforcing meshes and fibers. The failure fatigue life assessment at various probabilities by the two-parameter model was based on numerical calculations whereas the three-parameter model was applied by an open source program—ProFatigue®. Respective parameters, shape and scale parameters in the two-parameter Weibull distribution model while shape, scale, and location parameters in three-parameter model were determined, and the corresponding probabilistic fatigue lives at various failure probabilities were calculated. It is concluded that the two-parameter model is more accurate in probabilistic fatigue life assessment of double-layer mesh-reinforced LCCs, whereas for single-layer reinforced LCCs, both models could be used at a fair confidence level.
机译:本文通过两种建模方法(双参数威布尔分布模型和三参数分布模型)对薄层水泥基复合材料(LCC)的失效疲劳寿命进行了比较评估。 LCC由普通波特兰水泥(OPC),粉煤灰空心层(FAC),石英砂,增强网和纤维制成。两参数模型基于各种数值计算来评估各种概率下的疲劳疲劳寿命,而三参数模型则由开源程序ProFatigue ®应用。确定了两参数威布尔分布模型中的各个参数,形状和比例参数,同时确定了三参数模型中的形状,比例和位置参数,并计算了各种失效概率下相应的概率疲劳寿命。结论是,两参数模型在双层网状增强LCC的概率疲劳寿命评估中更为准确,而对于单层增强LCC,这两种模型都可以在合理的置信度下使用。

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