首页> 外文期刊>Ultrasonics >Influence of severe plastic deformation on fatigue life applied by ultrasonic peening in welded pipe 316 Stainless Steel joints in corrosive environment
【24h】

Influence of severe plastic deformation on fatigue life applied by ultrasonic peening in welded pipe 316 Stainless Steel joints in corrosive environment

机译:严重塑性变形对焊接管316不锈钢接头施加超声波喷丸施加寿命的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Corrosive solutions have an enormous effect on fatigue life of components in refinery industry. Several postprocessing solutions are proposed to improve the weld zone, which is affected by the corrosive solutions. Ultrasonic peening (UP) is developed to enhance the fatigue life, specifically in corrosive environments and corrosion resistance of the components. The enhancement mechanism of UP is based on severe plastic deformation and reduction of tensile residual stress in weld toe. In this research, the fatigue-corrosion life of welded 316 Stainless Steel (SS) pipe is enhanced through utilizing UP process with different diameters of strikers. Fatigue-corrosion life of the weld on 316 SS and 347 SS fillers, as experimental samples, is studied in corrosive environments. This study intends to shed more light on the influence of corrosion and strength in fatigue-corrosion life of the sample materials. Therefore, this article studies the microstructure and pitting corrosion of the samples at different zones. The experimental results showed enhancement of fatigue-corrosion life after applying UP. The results revealed that welding by using 316 SS filler and UP with striker diameter of 4 mm have the highest fatigue life in the simulated H2S corrosive environment
机译:腐蚀性解决方案对炼油厂疲劳疲劳寿命有巨大影响。提出了几种后处理解决方案以改善受腐蚀解决方案影响的焊接区。开发超声波喷丸(上升)以增强疲劳寿命,特别是在腐蚀性环境和部件的耐腐蚀性中。 UP的增强机构是基于焊接脚趾的严重塑性变形和降低拉伸残余应力。在本研究中,通过利用不同直径的撞击器的加压来提高焊接316不锈钢(SS)管道的疲劳腐蚀寿命。在腐蚀性环境中研究了316 SS和347 SS填料焊缝的疲劳腐蚀寿命,如实验样品。本研究打算在样品材料的疲劳腐蚀寿命的影响下揭示腐蚀和强度的影响。因此,本文研究了不同区域的样品的微观结构和点腐蚀。实验结果表明施用后疲劳腐蚀寿命的提高。结果表明,焊接通过使用316 SS填充物和撞击器直径为4mm的抗尖端具有最高的疲劳寿命,在模拟的H2S腐蚀性环境中具有最高的疲劳寿命

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