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Determination of Steel Cleanliness in Ultra Low Carbon Steel by Pulse Discrimination Analysis-Optical Emission Spectroscopy Technique

机译:脉冲鉴别分析-发射光谱技术测定超低碳钢中的钢净度

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Traditional techniques of inclusion size determination are time consuming and cannot be implemented for on-line quality control. With the development of pulse discrimination analysis – optical emission spectroscopy (PDA-OES), the on-line determination of inclusions has become possible. However, PDA-OES measures only the number of inclusions present in the steel irrespective of size. In the present paper, the potential of PDA to determine the inclusion size is evaluated by employing two methodologies: (i) obtaining the average inclusion size by dividing the difference of total and soluble aluminium concentration by the number of Al based inclusions for 200 industrial ULC heats and (ii) measuring the Al concentration for individual peak intensity for specific heats, giving the inclusion size distribution. The methodologies of inclusion size measurement by PDA-OES as well as the possible causes of the discrepancies obtained after comparison with the inclusion extraction technique are explained in detail.
机译:确定夹杂物大小的传统技术非常耗时,无法用于在线质量控制。随着脉冲鉴别分析–发射光谱(PDA-OES)的发展,在线测定夹杂物成为可能。但是,PDA-OES仅测量钢中存在的夹杂物数量,而与尺寸无关。在本文中,通过两种方法评估了PDA确定夹杂物尺寸的潜力:(i)用200种工业ULC的总铝和可溶性铝浓度之差除以铝基夹杂物的数量获得平均夹杂物尺寸。加热;(ii)测量特定加热的单个峰值强度的Al浓度,得出夹杂物尺寸分布。详细解释了通过PDA-OES进行夹杂物尺寸测量的方法,以及与夹杂物提取技术进行比较后得出的差异的可能原因。

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