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首页> 外文期刊>Australian Journal of Structural Engineering >Calibration of Australian Standard AS3600 concrete structures part II: reliability indices and changes to capacity reduction factors
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Calibration of Australian Standard AS3600 concrete structures part II: reliability indices and changes to capacity reduction factors

机译:澳大利亚标准AS3600混凝土结构的校准第二部分:可靠性指标和容量降低系数的变化

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摘要

Capacity reduction factors (φ) for flexure, shear and axial loadings are derived for reinforced concrete (RC) structures based on a reliability-based calibration of the Australian Concrete Structures Standard AS3600. The structural reliability analysis considers the bias and variability of material properties, dimensions, loads and model error. The target reliabilities (β_τ) are selected based on consideration of past practice and Australian and international standards. The capacity reduction factors (φ) for the new code AS3600-2009 are selected using the most recent statistical parameters for material strengths for 20-100 MPa strength concrete using Class N (ductile) 500N reinforcement. The reliability-based calibration found that the φ-factor can be increased from 0.80 to 0.85 for members in bending, and increased from 0.60 to 0.65 for axial loading of short (stocky) columns where the ratio of the live load to the dead load is at least 0.25. No changes are recommended for shear or torsion, at this time, or for slender columns; further research is needed to better refine the design models for these cases and reduce the variation in their model error. The proposed increases in capacity reduction factors will result in up to an 8.3% increase in design strength that, in turn, provides efficiency in the use of materials. The proposed changes provide for modest savings in greenhouse gas emissions.
机译:基于澳大利亚混凝土结构标准AS3600的基于可靠性的校准,得出钢筋混凝土(RC)结构的弯曲,剪切和轴向荷载的承载力减小系数(φ)。结构可靠性分析考虑了材料特性,尺寸,载荷和模型误差的偏差和变异性。根据过去的实践以及澳大利亚和国际标准来选择目标可靠性(β_τ)。使用最新的统计参数,使用N级(延性)500N增强材料为20-100 MPa强度的混凝土,选择最新代码AS3600-2009的容量降低系数(φ)。基于可靠性的校准发现,弯曲构件的φ因子可以从0.80增加到0.85,而短(高矮)柱的轴向载荷(活载荷与静载荷之比为)的φ因子可以从0.60增大到0.65。至少0.25。目前,对于剪力或扭转或细长柱,不建议更改。需要进一步研究以针对这些情况更好地完善设计模型并减少其模型误差的变化。提议的减少容量的因素的增加将导致设计强度最多增加8.3%,从而提高了材料的使用效率。拟议的变更为温室气体排放量的适度节约提供了条件。

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