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首页> 外文期刊>Journal of structural engineering >LRFD Factors for Pultruded Wide-Flange Columns
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LRFD Factors for Pultruded Wide-Flange Columns

机译:拉挤宽法兰柱的LRFD因素

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Fiber-reinforced polymer (FRP) pultruded profiles are produced by a number of manufacturers worldwide in similar, but nonstandard, wide-flange, I, angle, and tubular profiles. At present there is no American National Standards Institute approved design code in the United States for structural design with pultruded FRP profiles. Manufacturers of pultruded profiles each provide their own design equations, design methods, material properties, and safety factors for their pultruded products. There is a need for standardization of production and design of pultruded profiles to enable mainstream use of these profiles in structural engineering practice. The purpose of this paper is twofold: (1) to provide appropriate resistance factors (φ factors) for wide-flange pultruded columns that are compatible with ASCE 7 load factors and (2) to provide a unified analytical equation for local and global buckling of concentrically loaded axial members, which may be appropriate for a future design code. The resistance factors are provided for different target levels of structural reliability, 3, and for different nominal design properties of the pultruded materials. The resistance factors were determined using Monte Carlo simulation based on the results of 75 tests of full-scale pultruded columns that have been reported in the literature. In addition, resistance factors and structural reliabilities were calculated for the design equations provided by the manufactures in their design codes. The paper demonstrates that a unified design equation for pultruded columns can be developed for LRFD with reliability indices that are similar to those used for conventional materials. The paper also shows that markedly different reliability indices are obtained for the different manufacturer-provided equations even though identical allowable stress design safety factors are recommended by all manufacturers.
机译:纤维增强聚合物(FRP)拉挤型材是由世界各地的许多制造商生产的,它们具有相似但非标准的宽法兰,I,角和管状轮廓。目前,在美国,尚无美国国家标准协会(National National Standards Institute)批准的用于拉挤FRP型材的结构设计的设计规范。拉挤型材的制造商各自提供其拉挤产品的设计方程式,设计方法,材料特性和安全系数。需要使拉挤型材的生产和设计标准化,以使这些型材能够在结构工程实践中得到主流使用。本文的目的是双重的:(1)为与ASCE 7荷载系数兼容的宽法兰拉挤柱提供适当的阻力系数(φ系数),以及(2)为钢筋混凝土的局部和整体屈曲提供统一的解析方程同心加载的轴向构件,可能适合将来的设计规范。为不同的目标结构可靠性等级3和拉挤材料的不同标称设计特性提供了阻力系数。使用蒙特卡罗模拟,基于文献中已报道的75个全尺寸拉挤柱测试结果确定了阻力系数。此外,还针对制造商在其设计规范中提供的设计方程式计算了阻力系数和结构可靠性。本文表明,可以为LRFD开发出拉挤柱的统一设计方程,其可靠性指标与传统材料相似。该论文还表明,即使所有制造商都建议使用相同的容许应力设计安全系数,但对于不同制造商提供的方程式,可获得明显不同的可靠性指标。

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