首页> 外文会议>International Workshop on Advanced Metallic Materials and Processing Techniques for Aeronautical Applications; 20051118-20; Nanjing(CN) >Unweldable superalloy component repair using electro-spark deposition with high strength filler material
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Unweldable superalloy component repair using electro-spark deposition with high strength filler material

机译:使用高强度填充材料通过电火花沉积进行不可焊接的超级合金零件修复

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摘要

Nickel-base superalloy components with high Al + Ti content are difficult to weld repair using high strength filler materials with conventional welding methods like TIG welding. A feasibility study of electro-spark deposition (ESD) for unweldable superalloy component repair with a high strength filler material was carried out. SEM analysis reveals that a fully dense, crack-free, metallurgical bonded deposition layer can be obtained on the K24 substrate. The as-deposited microstructure characterizes fine cellular structure and the post weld heat treatment precipitates fine γ' particles. The room temperature tensile testing and 975℃, 196 MPa stress rupture life testing indicate that ESD makes positively contribution to mechanical performance of repaired specimens. Based on these results, ESD has the potential as an effective alternative to repair of damage and defects in superalloy components, but more efforts should be made before it can be applied in engineering repair.
机译:具有高Al + Ti含量的镍基高温合金部件难以通过高强度填充材料和传统的焊接方法(例如TIG焊接)进行焊接修复。进行了电火花沉积(ESD)用于用高强度填充材料修复不可焊接的超合金零件的可行性研究。 SEM分析表明,可以在K24基板上获得完全致密,无裂纹的冶金结合沉积层。所沉积的微结构表征了微孔结构,并且焊后热处理沉淀了细的γ'颗粒。室温拉伸试验以及975℃,196 MPa的应力断裂寿命试验表明,ESD对修复后的试样的机械性能有积极的贡献。基于这些结果,ESD有可能作为修复高温合金部件中的损坏和缺陷的有效替代方法,但在将其应用于工程修复之前,应做出更多努力。

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