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TENSILE TESTING OF CARBON STEEL IN HIGH PRESSURE HYDROGEN

机译:高压氢气中碳钢的拉伸测试

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摘要

An infrastructure of new and existing pipelines and systems will be required to carry and to deliver hydrogen as an alternative energy source under the hydrogen economy. Carbon and low alloy steels of moderate strength are currently used in hydrogen delivery systems as well as in the existing natural gas systems. It is critical to understand the material response of these standard pipeline materials when they are subjected to pressurized hydrogen environments. The methods and results from a testing program to quantify hydrogen effects on mechanical properties of carbon steel pipeline and pipeline weld materials are provided. Tensile properties of one type of steel (A106 Grade B) in base metal, welded and heat affected zone conditions were tested at room temperature in air and high pressure (10.34 MPa or 1500 psig) hydrogen. A general reduction in the materials ability to plastically deform was noted in this material when specimens were tested in hydrogen. Furthermore, the primary mode of fracture was changed from ductile rupture in air to cleavage with secondary tearing in hydrogen. The mechanical test results will be applied in future analyses to evaluate service life of the pipelines. The results are also envisioned to be part of the bases for construction codes and structural integrity demonstrations for hydrogen service pipeline and vessels.
机译:在氢经济条件下,将需要新的和现有的管道和系统的基础设施来运载和输送氢作为替代能源。目前,中等强度的碳钢和低合金钢已用于氢气输送系统以及现有的天然气系统中。了解这些标准管道材料在加压氢气环境中的材料响应至关重要。提供了用于量化氢对碳钢管道和管道焊接材料的机械性能的影响的测试程序的方法和结果。在室温,空气和高压(10.34 MPa或1500 psig)的氢气中,测试了一种类型的钢(A106 B级)在贱金属,焊接和热影响区的条件下的拉伸性能。当在氢气中测试样品时,注意到这种材料的材料塑性变形能力普遍下降。此外,断裂的主要方式从空气中的韧性断裂转变为伴随氢的二次撕裂而断裂。机械测试结果将用于将来的分析中,以评估管道的使用寿命。还可以预想结果将成为氢气服务管道和容器的建筑规范和结构完整性演示基础的一部分。

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