首页> 外文期刊>Engineering Structures >Fatigue strength capacity of load-carrying fillet welds on ultra-high-strength steel plates subjected to out-of-plane bending
【24h】

Fatigue strength capacity of load-carrying fillet welds on ultra-high-strength steel plates subjected to out-of-plane bending

机译:超高强度钢板承受平面外弯曲的承载角焊缝的疲劳强度能力

获取原文
获取原文并翻译 | 示例

摘要

Weld root fatigue strength capacity is an important design criterion in load-carrying (LC) fillet welded joints subjected to cyclic loads. This paper elaborates on the weld root fatigue strength capacity of fillet welded LC joints made of ultra-high-strength steel (UHSS) and subjected to out-of-plane bending. Experimental fatigue tests are carried out using constant amplitude loading with an applied stress ratio of R = 0.1 with both pure axial, i.e. DOB = 0 (degree of bending, bending stress divided by total stress) and bending, i.e. DOB = 1.0, load conditions. The applicability of different approaches - nominal weld stress, effective notch stress concepts, and 2D linear elastic fracture mechanics (LEFM) - for the fatigue strength assessment of weld root capacity is evaluated. Furthermore, a parametric LEFM analysis is used to evaluate the effect of weld penetration on the root fatigue strength capacity in axial and bending loading. The results indicate that in the case of bending, nominal weld stress can be calculated using the linear stress distribution over the joint section and FAT36 as a reference curve. In the bending loading, for the joints failing from the weld toe, a mean fatigue strength of up to 185 MPa in the nominal stress system was achieved, indicating that the reference curve FAT63 is overly conservative. The ENS concept with FAT225 seemed to be slightly unconservative for assessing the root fatigue strength capacity. LEFM analyses revealed that in the case of increasing weld penetration and bending loading, weld root fatigue strength capacity seemed to correlate with the nominal weld stress calculated using effective weld throat thickness, while in axial loading, weld stress should be calculated using external throat thickness summed with penetration length.
机译:焊接根疲劳强度能力是承受周期性载荷的承载(LC)角焊缝的重要设计标准。本文详细阐述了超高强度钢(UHSS)制成的角焊LC接头在平面外弯曲时的焊缝根部疲劳强度。在恒定轴向载荷(即DOB = 0(弯曲度,弯曲应力除以总应力)和弯曲)(即DOB = 1.0)的情况下,使用恒定振幅载荷,施加应力比为R = 0.1进行实验疲劳试验。评估了不同方法的适用性-标称焊接应力,有效缺口应力概念和2D线性弹性断裂力学(LEFM)-用于评估焊缝根部疲劳强度的方法。此外,使用参数LEFM分析来评估焊缝熔深对轴向和弯曲载荷下根部疲劳强度的影响。结果表明,在弯曲的情况下,可以使用接头截面上的线性应力分布和FAT36作为参考曲线来计算名义焊接应力。在弯曲载荷下,对于从焊趾断裂的接头,在名义应力系统中的平均疲劳强度达到了185 MPa,这表明参考曲线FAT63过于保守。带有FAT225的ENS概念对于评估根部疲劳强度能力似乎不太保守。 LEFM分析表明,在增加焊缝熔深和弯曲载荷的情况下,焊缝根部疲劳强度能力似乎与使用有效焊缝厚度计算出的标称焊接应力相关,而在轴向载荷中,应使用总的外部喉管厚度求出焊接应力。具有穿透长度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号