首页> 外文会议>ASME Pressure Vessels and Piping Conference >CALIBRATING PHASE TRANSFORMATION AND GRAIN GROWTH MODELS AND MEASURING PHASE DEPENDENT MATERIAL PROPERTIES FOR USE IN FE SIMULATIONS OF WELDS
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CALIBRATING PHASE TRANSFORMATION AND GRAIN GROWTH MODELS AND MEASURING PHASE DEPENDENT MATERIAL PROPERTIES FOR USE IN FE SIMULATIONS OF WELDS

机译:校准相变和晶粒生长模型和测量相位依赖性材料性能,用于焊缝的FE模拟

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Computer modelling methods are being used to determine the residual stresses in nuclear reactor pressure vessel welds. It has been found that such models need to simulate the effects of solid state phase transformations. Transformations have an associated transformation strain which can significantly influence the evolution of residual stress. The predicted distribution of phases enables structural simulations to account for the distribution of mechanical properties throughout a weld. Factors such as heating or cooling rate and prior austenite grain size must be considered in order to accurately predict the distribution of phases during a transient thermal cycle since they influence transformation kinetics. In this paper, a model to predict the prior austenite grain size and its effects on phase transformation kinetics is presented and calibrated using free dilatometry data. Validation experiments are conducted using a Gleeble thermo-mechanical simulator and are modelled in a commercial FE package to assess the accuracy of a phase transformation model. Samples have been heat treated to possess specific microstructures and have been tested at different temperatures to establish the properties of the phases that can form during weld thermal cycles.
机译:计算机建模方法用于确定核反应堆压力容器焊缝中的残余应力。已经发现,这些模型需要模拟固态相变的影响。转化具有相关的转化应变,可以显着影响残余应力的演变。阶段的预测分布使结构模拟能够考虑整个焊缝的机械性能的分布。必须考虑加热或冷却速率和先前奥氏体晶粒尺寸的因素,以便精确地预测瞬态热循环期间相的分布,因为它们影响转化动力学。本文使用自由稀释法数据呈现和校准预测先前奥氏体晶粒尺寸及其对相变动力学的效果的模型。验证实验是使用Gleeble热机械模拟器进行的,并在商业FE包中进行建模,以评估相变模型的精度。已经热处理样品以具有特异性微观结构,并且已经在不同的温度下测试以建立在焊接热循环期间可以形成的相的性质。

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