首页> 外文会议>Modeling of Casting, Welding and Advanced Solidification Processes XI vol.1 >IN-SITU OBSERVATIONS OF PHASE TRANSFORMATIONS DURING WELDING OF 1045 STEEL USING SPATIALLY RESOLVED AND TIME RESOLVED X-RAY DIFFRACTION
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IN-SITU OBSERVATIONS OF PHASE TRANSFORMATIONS DURING WELDING OF 1045 STEEL USING SPATIALLY RESOLVED AND TIME RESOLVED X-RAY DIFFRACTION

机译:利用空间分辨和时间分辨X射线衍射对1045钢焊接过程中的相变进行原位观察

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摘要

Synchrotron-based methods have been developed at Lawrence Livermore National Laboratory (LLNL) for the direct observation of microstructure evolution during welding. These techniques, known as spatially resolved (SRXRD) and time resolved (TRXRD) x-ray diffraction, allow in-situ experiments to be performed during welding, and provide direct observations of high temperature phases that form under the intense thermal cycles that occur. This paper presents observations of microstructural evolution that occur during the welding of a medium carbon AISI 1045 steel, using SRXRD to map the phases that are present during welding, and TRXRD to dynamically observe transformations during rapid heating and cooling. SRXRD was further used to determine the influence of welding heat input on the size of the high temperature austenite region, and the time required to completely homogenize this region during welding. These data can be used to determine the kinetics of phase transformations under the steep thermal gradients of welds, as well as to benchmark and verify phase transformation models.
机译:劳伦斯·利弗莫尔国家实验室(LLNL)已开发出基于同步加速器的方法,用于直接观察焊接过程中微观组织的演变。这些技术称为空间分辨(SRXRD)和时间分辨(TRXRD)X射线衍射,可以在焊接过程中进行原位实验,并提供对发生的强烈热循环下形成的高温相的直接观察。本文介绍了观察中碳AISI 1045钢焊接过程中发生的微观组织演变的观察结果,使用SRXRD绘制了焊接过程中存在的相图,并使用TRXRD动态观察了快速加热和冷却过程中的相变。 SRXRD还用于确定焊接热量输入对高温奥氏体区域尺寸的影响,以及在焊接过程中完全均匀化该区域所需的时间。这些数据可用于确定焊缝陡峭的热梯度下的相变动力学,以及用于基准测试和验证相变模型。

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