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OBSERVATIONS ARISING FROM EXPONENTIAL FITTING METHODS TO A CHARPY V-NOTCH ENERGY DATABASE FROM TATA STEEL

机译:从Tata Steel从指数拟合方法产生指数拟合方法的观察

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Charpy testing across a range of temperatures is a cost effective way to characterise the ductile-to-brittle transition region. It is often convenient to fit a curve to Charpy data through the transition region: a commonly used method is to use a continuous tan-h fit, a single mathematical expression that links lower shelf, transition region and ductile upper shelf behaviour in one continuous curve. Using this method, the temperature dependence of Charpy energy is a unique feature of each individual steel with some steels exhibiting steep transition curves and some shallow curves. In contrast to Charpy data, fracture toughness data are usually analysed by partitioning upper shelf and transition region data. The transition region data is generally accepted to fit a universal temperature dependence, the Master Curve, as proposed by Wallin [1] and standardised in ASTM E1921 [2]. Recent research on nuclear pressure vessel steels [3, 4] has indicated that when Charpy data is assessed using a similar method to that used for fracture toughness data, a common exponential temperature dependence is observed. This paper presents the current results from an on-going investigation aimed at assessing the effect of exponential curve fitting methods on a large dataset of Charpy V-notch energy data from Tata Steel. The Tata Steel data cover a wide range of parent plate steels. The results are compared to the recent studies on nuclear pressure vessel steels and a similar exponential temperature dependence is observed.
机译:在一系列温度上的夏比测试是表征韧性到脆性过渡区域的成本有效的方法。它通常通过过渡区域将曲线拟合到Charpy数据:常用的方法是使用连续的Tan-H拟合,单个数学表达,将较低的搁板,过渡区域和延展性上架行为链接在一个连续曲线中。使用这种方法,夏比能量的温度依赖性是每个单独的钢的独特特征,具有呈现陡峭过渡曲线和一些浅曲线的一些钢。与Charpy数据相反,通常通过划分上架和转换区域数据来分析断裂韧性数据。通常接受过渡区域数据以适应普通温度依赖性,主曲线,如瓦林[1]所提出的,并在ASTM E1921中标准化[2]。最近对核压力容器钢的研究表明,当使用类似方法评估用于断裂韧性数据的夏比数据时,观察到常见的指数温度依赖性。本文介绍了旨在评估从塔塔钢的大型曲线V-intch能量数据的大型数据集的指数曲线拟合方法的开展调查。塔塔钢数据涵盖各种母板钢。将结果与最近对核压力容器钢的研究进行比较,并且观察到类似的指数温度依赖性。

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