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Interface geometry modification to trap plasticized flash for improved joint strength of dissimilar rotary friction welds
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作者 Neeraj Kumar Mishra S.G.K.Manikandan +1 位作者 Suresh Meshram Amber Shrivastava 《Defence Technology(防务技术)》 2025年第4期71-78,共8页
Rotary friction welding is a highly effective solid-state technique for joining dissimilar materials,which offers the potential for significant weight reduction without compromising strength.Traditionally,during rotar... Rotary friction welding is a highly effective solid-state technique for joining dissimilar materials,which offers the potential for significant weight reduction without compromising strength.Traditionally,during rotary friction welding,the severely deformed material,or flash,is expelled from the interface and machined away to achieve the desired joint geometry.However,this work introduces a novel approach:trapping the flash within the joint to improve joint properties.The study investigates two different interface geometry combinationsdflat-flat and flat-taper interfaces.Previous research shows that Ni interlayer between steel and titanium can enhance the joint strength.This study builds on the existing knowledge(effect of Ni interlayer)by examining the influence of interface geometry to further improve the dissimilar joint performance.The experimental results,including tensile testing and microstructural characterization,highlight the superior performance of the flat-taper interface.The modified geometry minimizes flash loss,providing a cavity that retains both the flash and the Ni interlayer within the joint.This retention promotes dynamic recrystallization,resulting in refined grain structures near the interface.Moreover,the trapped Ni interlayer effectively prevents the formation of brittle Fe-Ti intermetallic compounds at the dissimilar material interface.The findings reveal that the flat-taper interface improved joint strength by an impressive 105%compared to the flat-flat interface.This innovative geometry modification demonstrates the potential to enhance mechanical properties of dissimilar joints through better flash and interlayer management. 展开更多
关键词 Geometry modification Microstructure Electron back scattered diffraction Intermetallic compounds FRACTOGRAPHY ss321 TI6AL4V
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连续重整装置再生单元电加热器管束腐蚀开裂失效分析 被引量:1
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作者 钟建华 刘媛媛 王春生 《石油化工设备》 CAS 2020年第5期73-79,共7页
基于对连续重整装置再生单元失效电加热器的宏观检验、无损检测及理化分析结果,结合生产工艺状况及设备结构存在的腐蚀环境,参考有关金属材料失效机理经验理论,对电加热器管束腐蚀开裂的原因进行综合失效分析。结果表明,SS321不锈钢加... 基于对连续重整装置再生单元失效电加热器的宏观检验、无损检测及理化分析结果,结合生产工艺状况及设备结构存在的腐蚀环境,参考有关金属材料失效机理经验理论,对电加热器管束腐蚀开裂的原因进行综合失效分析。结果表明,SS321不锈钢加热管开裂机理为氯化氢应力腐蚀开裂,加热管金属组织中形变马氏体的存在对应力腐蚀开裂起到了促进作用,腐蚀介质来源于设备结构设计不当引起的微量氯化氢及水在加热管局部的冷凝聚集。 展开更多
关键词 电加热器 加热管 ss321 形变马氏体 氯化氢腐蚀 失效
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