首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Residual Stresses in Inertia-Friction-Welded Dissimilar High-Strength Steels
【24h】

Residual Stresses in Inertia-Friction-Welded Dissimilar High-Strength Steels

机译:惯性摩擦焊接不同高强度钢中的残余应力

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

The welding of dissimilar alloys is seen increasingly as a way forward to improve efficiencies in modern aeroengines, because it allows one to tailor varying material property demands across a component. Dissimilar inertia friction welding (IFW) of two high-strength steels, Aermet 100 and S/CMV, has been identified as a possible joint for rotating gas turbine components and the resulting welds are investigated in this article. In order to understand the impact of the welding process and predict the life expectancy of such structures, a detailed understanding of the residual stress fields present in the welded component is needed. By combining energy-dispersive synchrotron X-ray diffraction (EDSXRD) and neutron diffraction, it has been possible to map the variations in lattice spacing of the ferritic phase on both sides of two tubular Aermet 100-S/ CMV inertia friction welds (as-welded and postweld heat-treated condition) with a wall thickness of 37 mm. Laboratory-based XRD measurements were required to take into account the variation in the strain-free d-spacing across the weld region. It was found that, in the heat-affected zone (HAZ) slightly away from the weld line, residual stress fields showed tensile stresses increasing most dramatically in the hoop direction toward the weld line. Closer to the weld line, in the plastically affected zone, a sharp drop in the residual stresses was observed on both sides, although more dramatically in the S/CMV. In addition to residual stress mapping, synchrotron XRD measurements were carried out to map microstructural changes in thin slices cut from the welds. By studying the diffraction peak asymmetry of the 200-alpha diffraction peak, it was possible to demonstrate that a martensitic phase transformation in the S/CMV is responsible for the significant stress reduction close to the weld line. The postweld heat treatment (PWHT) chosen to avoid any overaging of the Aermet 100 and to temper the S/CMV martensite resulted in little stress relief on the S/CMV side of the weld.
机译:异种合金的焊接被越来越多地视为提高现代航空发动机效率的一种方法,因为它允许人们在整个零件上定制不同的材料性能要求。两种高强度钢Aermet 100和S / CMV的异质惯性摩擦焊接(IFW)已被确定为旋转燃气轮机部件的可能接头,本文对这种焊缝进行了研究。为了理解焊接过程的影响并预测此类结构的预期寿命,需要详细了解焊接组件中存在的残余应力场。通过结合能量色散同步加速器X射线衍射(EDSXRD)和中子衍射,可以在两个管状Aermet 100-S / CMV惯性摩擦焊缝的两侧绘制铁素体相的晶格间距变化(如焊接和后焊热处理状态),壁厚为37毫米。需要基于实验室的XRD测量,以考虑到整个焊接区域无应变d间距的变化。结果发现,在热影响区(HAZ)稍微远离焊接线的地方,残余应力场显示出张应力在朝向焊接线的环向方向上最大地增加。靠近焊接线,在塑性影响区,在两侧都观察到残余应力的急剧下降,尽管在S / CMV中更为明显。除了残余应力测绘外,还进行了同步加速器XRD测量,以测绘从焊缝上切下来的薄片的显微组织变化。通过研究200-α衍射峰的衍射峰不对称性,可以证明S / CMV中的马氏体相变是导致靠近焊缝处应力显着降低的原因。选择焊后热处理(PWHT)可以避免Aermet 100的任何过时并回火S / CMV马氏体,从而在焊缝的S / CMV侧几乎没有应力释放。

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