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Application of Small Punch Test to evaluate tensile properties of SA213T22 grade Boiler Steel

机译:小冲床试验在SA213T22级锅炉钢拉伸性能评估中的应用

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摘要

Conventional tensile test methods are used for service exposed high temperature boiler tubes to evaluate the deterioration in mechanical properties such as tensile strength, yield strength and percentage elongation. The mechanical properties are required to be evaluated periodically as the boiler components undergo material degradation due to aging phenomena. The aging phenomena occurs due to continuous exposure of tubes to high temperature & pressure steam prevailing inside the tubes and high temperature exposure to corrosive combustible gases from the external surfaces within the boiler. A recent developed new technique called small punch testing has been used to evaluate the tensile properties of SA 213T22 grade steel predominantly exists in super-heater and re-heater sections of boiler. The small punch tests have been carried out on the miniature disk shaped specimens of diameter of 8.0 mm and 0.5 mm thickness extracted from both the new and service exposed tubes. Conventional uniaxial tensile tests on standard specimens from the same tube material have also been performed for comparison. The service exposed tubes showed considerable loss in mechanical properties in both the conventional and small punch test results. Correlations of tensile properties have been obtained based on the comparative analysis of both small punch and uniaxial tensile test results. Further, the study showed that an appropriate empirical relation could be generated for new and service exposed materials between both the techniques. Conventional test methods require large quantity of material removal for test samples from in-service components whereas small punch test method needs only a miniature sample extraction. This small punch test technique could also be extended to evaluate the thicker section boiler components such as pipelines and headers in the boiler as a part of remaining life assessment study. Also this technique could be a useful tool to any metallic component where large quantity of sample removal may be difficult or may not be feasible.
机译:常规的拉伸试验方法用于维修暴露的高温锅炉管,以评估机械性能的劣化,例如拉伸强度,屈服强度和伸长率百分比。由于锅炉部件由于老化现象而发生材料降解,因此需要定期评估其机械性能。老化现象的发生是由于管子连续暴露于管子内部普遍存在的高温高压蒸汽,以及高温暴露于锅炉外表面的腐蚀性可燃气体。最近开发的一种称为小冲头试验的新技术已用于评估SA 213T22级钢的拉伸性能,该钢主要存在于锅炉的过热器和再热器部分。已对从新管和使用过的暴露管中提取的直径为8.0 mm,厚度为0.5 mm的微型圆盘状样品进行了小型冲孔测试。为了比较,还对来自相同管材的标准样品进行了常规的单轴拉伸试验。在常规和小冲头测试结果中,暴露在外的管子都显示出相当大的机械性能损失。基于对小冲头和单轴拉伸试验结果的比较分析,获得了拉伸性能的相关性。此外,研究表明,两种技术之间可以为新材料和服务暴露材料生成适当的经验关系。常规测试方法需要从在役组件中去除大量的测试样品材料,而小冲孔测试方法仅需要微型样品提取。作为剩余寿命评估研究的一部分,这种小型冲头测试技术也可以扩展到评估较厚截面的锅炉组件,例如锅炉中的管道和集管。同样,该技术对于任何难以去除或不可行的金属部件都是有用的工具。

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