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首页> 外文期刊>Welding in the World: Journal of the International Institute of Welding: Journal of the International Institute of Welding >Hydrogen determination in welded specimens by carrier gas hot extractiona review on the main parameters and their effects on hydrogen measurement
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Hydrogen determination in welded specimens by carrier gas hot extractiona review on the main parameters and their effects on hydrogen measurement

机译:载气热萃取液对焊接试样的氢气测定对主要参数的回顾及其对氢气测量的影响

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摘要

Carrier gas hot extraction (CGHE) is a commonly applied technique for determination of hydrogen in weld joints using a thermal conductivity detector (TCD) for hydrogen measurement. The CGHE is based on the accelerated hydrogen effusion due to thermal activation at elevated temperatures. The ISO 3690 standard suggests different specimen geometries as well as necessary minimum extraction time vs. temperature. They have the biggest influence on precise hydrogen determination. The present study summarizes the results and experience of numerous test runs with different specimen temperatures, geometries (ISO 3690 type B and small cylindrical samples), and factors that additionally influence hydrogen determination. They are namely specimen surface (polished/as-welded), limited TCD sensitivity vs. specimen volume, temperature measurement vs. effects of PI-furnace controller, as well as errors due to insufficient data assessment. Summarized, the temperature is the driving force of the CGHE. Two different methods are suggested to increase the heating rate up to the desired extraction temperature without changing the experimental equipment. Suggestions are made to improve the reliability of hydrogen determination depended on the hydrogen signal stability during extraction accompanied by evaluation of the recorded data. Generally, independent temperature measurement with dummy specimens is useful for further data analysis, especially if this data is used for calculation of trapping kinetics by thermal desorption analysis (TDA).
机译:载气热萃取(CGHE)是一种常用的技术,用于使用导热探测器(TCD)来测定焊接接头中的氢气的氢气测量。由于在升高温度下,CGHE基于加速氢积液。 ISO 3690标准表明不同的样品几何形状以及必要的最小提取时间与温度。它们对精确氢气测定具有最大的影响。本研究总结了许多试验运行的结果和经验,具有不同的样本温度,几何形状(ISO 3690型B和小圆柱形样品),以及另外影响氢测定的因素。它们是标本表面(抛光/焊接),有限的TCD灵敏度与样品体积,温度测量与PI-Furnace控制器的效果,以及由于数据评估不足导致的误差。总结,温度是CGHE的驱动力。建议两种不同的方法将加热速率提高到所需的提取温度而不改变实验设备。提出建议以提高氢测定的可靠性,依赖于萃取期间的氢气信号稳定性伴随着记录数据的评估。通常,使用虚拟标本的独立温度测量可用于进一步的数据分析,特别是如果该数据用于通过热解吸分析(TDA)计算捕获动力学。

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