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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >The Role of the Slope Out Region on Fatigue Crack Initiation in Electron Beam Welded Waspaloy
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The Role of the Slope Out Region on Fatigue Crack Initiation in Electron Beam Welded Waspaloy

机译:倾斜区对电子束焊接Waspaloy疲劳裂纹萌生的作用

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摘要

Electron beam (EB) welding can be used to produce compressor drum assemblies for gas turbine aero-engines. The compressor disc components are fatigue limited and the weld has been identified as a fatigue susceptible region. Electron beam welds in forged and double-heat-treated WASPALOY have been characterized in terms of microstructure, hardness, and fatigue initiation for the base metal, full penetration, and partial penetration (slope-out) weld metal. It has been found that the grain size increases from the base metal through the full penetration weld to the partial penetration weld metal, being largest at the end of full penetration (EOP). Fatigue initiation was found to occur preferentially at the EOP and was associated with the presence of large sulfides at, or close to, the weld surface. The sulfides arise from free surface segregation of sulfur, from the fused metal and surface contamination (arising from a preweld sulfuric acid etching stage), into the slope-out region during weld power down. The sulfides provide fatigue initiation sites and also modify the local composition, changing the type and number density of grain-boundary carbides and y' precipitates, in the slope-out region near EOP, resulting in lower hardness regions. Removal of the sulfuric acid etching stage resulted in a more uniform microstructure.
机译:电子束(EB)焊接可用于生产用于燃气轮机航空发动机的压缩机鼓组件。压缩机盘部件受疲劳限制,并且焊缝已被确定为易疲劳区域。锻造和双热处理WASPALOY中的电子束焊缝的特征在于母材的显微组织,硬度和疲劳引发,全熔透和部分熔透(倾斜)焊缝金属。已经发现,晶粒尺寸从基础金属到全熔透焊缝到部分熔透焊缝金属增加,在全熔透(EOP)结束时最大。发现疲劳引发优先发生在EOP上,并且与在焊缝表面或附近出现大的硫化物有关。硫化物是由于硫的自由表面偏析,熔化的金属和表面污染(从预焊接的硫酸蚀刻阶段产生)进入焊接功率下降期间进入倾斜区域而产生的。在EOP附近的倾斜区域中,硫化物提供了疲劳引发点,还改变了局部成分,改变了晶界碳化物和y'析出物的类型和数量密度,从而导致了较低的硬度区域。去除硫酸蚀刻阶段导致更均匀的微观结构。

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