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首页> 外文期刊>Journal of structural engineering >Statistical Characterization of Fiber-Reinforced Polymer Composite Material Properties for Structural Design
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Statistical Characterization of Fiber-Reinforced Polymer Composite Material Properties for Structural Design

机译:用于结构设计的纤维增强聚合物复合材料特性的统计表征

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A consistent basis for statistically reducing fiber-reinforced polymer (FRP) composite material property test data for load and resistance factor design (LRFD) of composite structures is developed in this paper. A two-parameter Weibull probability distribution is recommended for modeling both strength and stiffness properties. Consistent with practice for other materials used in structural engineering applications, the 5-percentile value of strength of coupons and components, as well as modulus values, appropriately adjusted for the small size of typical data samples, is recommended for the nominal value of strength for LRFD applications. Statistical uncertainty due to small sample size in the data reduction process is accounted for through the use of a data confidence factor, which is the tolerance limit defined as the 80th percent lower confidence level of the 5-percentile value of the population. With the nominal values so determined, appropriate resistance factors for LRFD-based design codes can be derived and limits for qualification and acceptance criteria for FRP composite structural products can be established.
机译:本文为统计降低复合材料的载荷和阻力因子设计(LRFD)的纤维增强聚合物(FRP)复合材料性能测试数据提供了一致的基础。建议使用两个参数的威布尔概率分布来对强度和刚度特性进行建模。与结构工程应用中使用的其他材料的实践一致,建议将试样和组件的强度的5个百分点值以及模量值(针对典型数据样本的小尺寸进行适当调整)作为标称强度值。 LRFD应用程序。通过使用数据置信度因子来解决由于数据缩减过程中样本量较小而引起的统计不确定性,该数据置信度因子是公差极限,定义为总体5个百分位数的可信度下限降低80%。通过确定这样的标称值,可以得出基于LRFD的设计规范的适当电阻系数,并可以确定FRP复合结构产品的合格和合格标准极限。

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