...
首页> 外文期刊>EPJ Web of Conferences >Improving fatigue performance of rail thermite welds
【24h】

Improving fatigue performance of rail thermite welds

机译:改善钢轨铝热焊接的疲劳性能

获取原文
           

摘要

Rail transport development offers economic and ecological interests. Nevertheless, it requires heavy investments in rolling material and infrastructure. To be competitive, this transportation means must rely on safe and reliable infrastructure, which requires optimization of all implemented techniques and structure. Rail thermite (or aluminothermic) welding is widely used within the railway industry for in-track welding during re-rail and defect replacement. The process provides numerous advantages against other welding technology commonly used. Obviously, future demands on train traffic are heavier axle loads, higher train speeds and increased traffic density. Thus, a new enhanced weld should be developed to prevent accidents due to fracture of welds and to lower maintenance costs. In order to improve such assembly process, a detailed metallurgical study coupled to a thermomechanical modelling of the phenomena involved in the thermite welding process is carried out. Obtained data enables us to develop a new improved thermite weld (type A). This joint is made by modifying the routinely specified procedure (type B) used in a railway rail by a standard gap alumino-thermic weld. Joints of type A and B are tested and compared. Based on experimental temperature measurements, a finite element analysis is used to calculate the thermal residual stresses induced. In the vicinity of the weld, the residual stress patterns depend on the thermal conditions during welding as it also shown by litterature [1, 2]. In parallel, X-Ray diffraction has been used to map the residual stress field that is generated in welded rail of types A and B. Their effect on fatigue crack growth in rail welds is studied. An experimental study based on fatigue tests of rails welded by conventional and improved processes adjudicates on the new advances and results will be shown.
机译:铁路运输的发展带来了经济和生态利益。然而,它需要在轧制材料和基础设施上进行大量投资。为了提高竞争力,这种运输手段必须依靠安全可靠的基础设施,这需要对所有已实施的技术和结构进行优化。铁路铝热(或铝热)焊接在铁路行业中被广泛用于在重新铁路和缺陷更换期间进行轨道内焊接。与其他常用焊接技术相比,该工艺具有许多优势。显然,未来对火车交通的需求是更大的轴重,更高的火车速度和增加的交通密度。因此,应该开发一种新的增强型焊缝,以防止由于焊缝破裂而引起的事故并降低维护成本。为了改善这种组装过程,进行了详细的冶金研究,并结合了热熔焊接过程中涉及的现象的热机械模型。获得的数据使我们能够开发一种新的改进的铝热焊接(A型)。该接头是通过标准间隙铝热焊接修改铁路规范中使用的常规程序(B型)而制成的。测试和比较了A型和B型接头。基于实验温度测量值,使用有限元分析来计算所产生的热残余应力。在焊缝附近,残余应力模式取决于焊接过程中的热条件,如文献[1、2]所示。同时,X射线衍射已被用于绘制A型和B型焊接钢轨中产生的残余应力场。研究了它们对钢轨焊缝中疲劳裂纹扩展的影响。基于传统和改进工艺焊接的钢轨疲劳试验的实验研究将判定新的进展和结果。

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