首页> 外文期刊>Engineering Structures >Fatigue damage of welded high-strength steel details improved by post-weld treatment subjected to critical cyclic loading conditions
【24h】

Fatigue damage of welded high-strength steel details improved by post-weld treatment subjected to critical cyclic loading conditions

机译:焊接高强度钢细节的疲劳损坏改善了临界循环加载条件的焊接后处理

获取原文
获取原文并翻译 | 示例

摘要

High-frequency mechanical impact (HFMI) treatment has proven its potential in many aspects, however the improvement under the conditions of high stress ratios, stress ranges and variable amplitude loading (VAL) has not been sufficiently addressed. In that respect, the aim of this work is to verify the indications and trends in the recently published literature and to understand the local weld toe mechanisms related to several cyclic loading conditions. The investigations were performed for three types of welds subjected to high stress ratios, ranges as well as VAL in order to represent the real-life scenarios, where the aim was to include the state of compressive residual stresses, cyclic behaviour of material and eventually estimate the fatigue life. The induced beneficial stresses were relaxed after applying compressive overloads (OL). However, a tensile OL indicated a potential benefit, by reducing the extent of residual stress relaxation. With the increasing stress ratio (R) and maximum stress (?max), the improve- ment due to the HFMI decreased 59% as compared with the cases for OL = 0.8fy. The estimated damage decreased rapidly from R = -1 to R = 0.2, however it decreased slowly from R = 0.2 to R = 0.5, indicating that the effect of HFMI was reduced for high stress ratios due to the stress relaxation. The remaining improvement was then governed by the modification of weld geometry and the strain hardening effect. The fatigue damage was decreased from as-welded (AW) to HFMI states. For R = -1, longitudinal attachments were the most improved joint with 86%, while transverse attachments and butt joints were improved by 73% and 61%, respectively. The fatigue damage was increased when relatively larger block loads applied. Hence, the HFMI improvement was reduced 20% for transverse and longitudinal attachments and 14% for butt joints. The damage for ?max = 0.6fy in HFMI was similar to the damage for ?max = 0.3fy in AW, despite a doubling of the maximum CAL, which indicated promising potential of the HFMI improvement.
机译:在许多方面,高频机械冲击(HFMI)处理已经证明其潜力,但是在高应力比,应力范围和可变幅度负载(VAL)的条件下的改善尚未得到充分寻址。在这方面,这项工作的目的是验证最近发表的文献中的指示和趋势,并了解与几个循环负载条件相关的本地焊接脚趾机制。对经过高应力比的三种类型的焊缝进行调查,范围以及val以表示现实生活场景,目的是包括压缩残余应力的状态,材料的循环行为,最终估计疲劳生活。在施加压缩过载(OL)后,诱导的有益应力放松。然而,通过降低残留应力松弛的程度,拉伸醇表明潜在的益处。随着应力比(R)和最大应力(αmax)的增加,与OL = 0.8Fy的病例相比,HFMI引起的改进降低了59%。估计损伤从r = -1至r = 0.2迅速下降,但从r = 0.2至r = 0.5缓慢降低,表明HFMI因应力松弛而降低了高应力比的影响。然后通过焊接几何形状的改变和应变硬化效果来治理剩余的改善。疲劳损伤从焊接(AW)降至HFMI状态。对于r = -1,纵向附着是最改善的关节,分别提高了86%的接头,分别提高了73%和61%。当施加相对较大的块载荷时,疲劳损坏增加。因此,对于横向和纵向附件的HFMI改善减少了20%,对接接头14%。 HFMI中的损坏= 0.6Fy类似于AW的损坏,尽管最大CAL加倍,但表明HFMI改善的有希望的潜力。

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