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首页> 外文期刊>Materials & design >Study of microstructure, mechanical properties and residual stresses in full penetration electron beam welded Ti-5Al-2.5Sn alloy sheet
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Study of microstructure, mechanical properties and residual stresses in full penetration electron beam welded Ti-5Al-2.5Sn alloy sheet

机译:全熔透电子束焊接Ti-5Al-2.5Sn合金薄板的组织,力学性能和残余应力的研究

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Protection of the molten pool from gaseous contamination has always been of prime importance in welding of titanium alloys. A vacuum environment in electron beam welding serves this purpose and eliminates the use of shielding gas during the joining process. However, this may lead to variation in microstructure, mechanical properties, residual stress distribution and distortions compared to the widely used laser and TIG welding operations. In the present work, EBW was used to weld Ti-5Al-2.5Sn alloy sheet with welding current ranging from 14 mA to 20 mA. Owing to vacuum environment, oxygen contents in the fusion zone were very low for all the welding currents. However, welding current had a significant influence on the weld pool width, micro-hardness and grain size in the FZ. A complete martensitic transformation was not observed in the FZ at any of the welding currents used. Furthermore, maximum residual stresses upto 280 MPa (compressive) and 320 MPa (tensile) were found in the longitudinal direction near the weld centerline. The measured high residual stresses, distortions and partial martensitic transformations in FZ were attributed to a reduced cooling rate due to the absence of shielding gas in electron beam welding. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在钛合金焊接中,保护熔池免受气体污染一直是最重要的。电子束焊接中的真空环境可达到此目的,并且在连接过程中无需使用保护气体。但是,与广泛使用的激光和TIG焊接操作相比,这可能会导致组织,机械性能,残余应力分布和变形发生变化。在目前的工作中,EBW用于焊接Ti-5Al-2.5Sn合金薄板,焊接电流范围为14 mA至20 mA。由于真空环境,对于所有焊接电流,熔合区的氧气含量都非常低。但是,焊接电流对FZ中的熔池宽度,显微硬度和晶粒尺寸有重大影响。在所使用的任何焊接电流下,FZ均未观察到完全马氏体相变。此外,在焊接中心线附近的长度方向上发现了最大残余应力达280 MPa(压缩)和320 MPa(拉伸)。在FZ中测得的高残余应力,变形和部分马氏体相变归因于电子束焊接中由于没有保护气体而导致冷却速度降低。 (C)2017 Elsevier Ltd.保留所有权利。

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