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Fracture Behaviour of Laser Beam Welded Titanium Alloys

机译:激光束焊接钛合金的断裂行为

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Titanium alloys are choosen for many high temperature and high performance applications because they offer an unique combination of high strength, low density (about half of steel) and high corrosion resistance. There is an increasing interest on the laser beam welding of titanium alloys to expand their fields of application. Laser beam welding (LBW) has become an attractive competitor to the well established gas tungsten arc welding process (GTAW) in the recent years. It offers major advantages over GTAW, which are attributed to the low energy input (and hence lower distortions and residual stress levels) of this process. However, there is a need to establish the laser beam fusion zone microstructure and properties relationship for various Ti-alloys. This paper examines the microstructural development in the fusion zone and its influence on the fracture toughness properties.
机译:选择钛合金,适用于许多高温和高性能的应用,因为它们提供了高强度,低密度(钢的约一半)和高耐腐蚀性的独特组合。对钛合金的激光束焊接越来越兴趣以扩大其应用领域。激光束焊接(LBW)近年来已成为良好的煤气钨弧焊工艺(GTAW)成为一个有吸引力的竞争对手。它具有优于GTAW的主要优点,这归因于该过程的低能量输入(以及较低的畸变和残余应力水平)。然而,需要建立用于各种Ti合金的激光束融合区微结构和性质关系。本文研究了融合区的微观结构发展及其对裂缝韧性特性的影响。

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