镍基合金600/82 NeT-TG6基准焊接件的材料表征

V. Akrivos, Michael C. Smith
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引用次数: 2

摘要

NeT-TG6项目检查了由Alloy 600基体材料和Alloy 82焊缝金属制成的三道槽焊基准的性能。本文报告了材料表征研究,作为广泛的循环活动的一部分,使用测量和模拟来表征TG6基准中的残余应力状态。另外还制作了一个带有一道、二道和三道焊缝的三槽试样,以便进行广泛的表征研究,并与实际的NeT-TG6试样进行比较,NeT-TG6试样只包含一个三道焊缝。光学金相学和化学成分研究检查了母材和焊接金属在不同稀释程度和不同热机械行为下的化学成分和微观结构的变化。采用微压痕测量获得焊接试样的硬度图,揭示了热-机械循环历史的影响。利用电子显微镜,特别是电子背散射衍射(EBSD)来估计晶粒尺寸的变化,并在变形的母材和每个焊缝中评估塑性变形的积累。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Material Characterization on the Nickel-Based Alloy 600/82 NeT-TG6 Benchmark Weldments
The NeT-TG6 project examines the behaviour of a three-pass slot-welded benchmark made from Alloy 600 base material and Alloy 82 weld metal. This paper reports the material characterization studies conducted as part of the extensive round-robin activities performed to characterise the residual stress state in the TG6 benchmark using both measurement and simulation. An additional three slot specimen with one, two and three pass welds was manufactured to allow extensive characterization studies and comparison with the actual NeT-TG6 specimen, which contains only a single three-pass weld. Optical metallography and chemical composition studies examined the variability of the chemical composition and microstructure between parent material and weld metal with varying levels of dilution and differing thermo-mechanical behaviour. Micro indentation measurements were used to acquire hardness maps of the welded samples and reveal the impact of thermo-mechanical cyclic history. Electron microscopy and in particular electron back scattered diffraction (EBSD) was used to estimate the grain size variation, and, in the deformed parent and each weld bead, to assess the accumulation of plastic deformation.
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