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首页> 外文期刊>Journal of structural engineering >Fracture Mechanics-Based Design of Column Splices with Partial Joint Penetration Welds
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Fracture Mechanics-Based Design of Column Splices with Partial Joint Penetration Welds

机译:基于断裂力学的部分贯通焊缝柱接头设计

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摘要

Design standards in the United States mandate the use of complete joint penetration (CJP) welds for welded column splices (WCS) in high-seismic regions. However, recent experiments suggest that economical partial joint penetration (PJP) welds (which have a cracklike flaw) provide acceptable performance if high-toughness materials are used with large weld penetration. To generalize these findings, a fracture mechanics-based method is proposed for the seismic design of WCS with PJP welds. In support of the design method, four scientific components are presented: (1) finite element fracture mechanics (FEFM) simulations that simulate 25 WCS connections; (2) design equations based on results of the FEFM simulations; (3) Monte Carlo simulation to characterize the uncertainty in the strength determined by the design equations; and (4) reliability analysis to calibrate resistance factors that provide acceptable levels of safety. Trends in the resulting resistance factors and component reliabilities are discussed, and the variability in WCS strength arising from modeling uncertainty (i.e., due to regression fitting of design equations) is determined to be dominant. Simplified guidelines for prescriptive design of WCS connections with PJP welds are presented. In addition to the proposed design equations and resistance factors, a major outcome is the demonstration of a flaw-tolerant design approach based on fracture mechanics. Limitations of the approach are discussed. (C) 2015 American Society of Civil Engineers.
机译:美国的设计标准要求在高地震地区对焊接柱接头(WCS)使用完全接头渗透(CJP)焊缝。但是,最近的实验表明,如果使用高韧性材料和较大的焊缝熔深,则经济的部分接头熔深(PJP)焊缝(具有类似裂纹的缺陷)可提供可接受的性能。为了概括这些发现,提出了一种基于断裂力学的方法,用于采用PJP焊缝的WCS的抗震设计。为了支持该设计方法,提出了四个科学组成部分:(1)有限元断裂力学(FEFM)模拟,可模拟25个WCS连接; (2)基于FEFM仿真结果的设计方程; (3)蒙特卡洛模拟,以表征设计方程确定的强度不确定性; (4)可靠性分析,以校准可提供可接受安全水平的电阻系数。讨论了所得电阻系数和组件可靠性的趋势,并确定了由建模不确定性(即,由于设计方程的回归拟合)引起的WCS强度的变化是主要的。介绍了使用PJP焊缝进行WCS连接的规范设计的简化指南。除了提出的设计方程式和阻力因素外,主要成果是基于断裂力学的耐缺陷设计方法的演示。讨论了该方法的局限性。 (C)2015年美国土木工程师学会。

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