首页> 外文会议>ASME Pressure Vessels and Piping Conference >EVALUATION OF HYDROGEN ENVIRONMENT EMBRITTLEMENT AND FATIGUE PROPERTIES OF STAINLESS STEELS IN HIGH PRESSURE GASEOUS HYDROGEN (INVESTIGATION OF MATERIALS PROPERTIES IN HIGH PRESSURE GASEOUS HYDROGEN-2)
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EVALUATION OF HYDROGEN ENVIRONMENT EMBRITTLEMENT AND FATIGUE PROPERTIES OF STAINLESS STEELS IN HIGH PRESSURE GASEOUS HYDROGEN (INVESTIGATION OF MATERIALS PROPERTIES IN HIGH PRESSURE GASEOUS HYDROGEN-2)

机译:高压气态氢气环境脆性和疲劳性能评价(高压气态氢气中材料性能的研究)

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Hydrogen environment embrittlement (HEE) susceptibility in high pressure gaseous hydrogen was investigated on 300 series austenitic stainless steels and A6061-T6 aluminum alloy. Tensile properties of these materials were evaluated by Slow Strain Rate Testing (SSRT) in gaseous hydrogen pressurized up to 90MPa (13053 psig) in the temperature range from -40 to 85 degrees C (-40 to 185 degrees F). HEE susceptibilities of austenitic stainless steels strongly depended upon the chemical compositions and testing temperatures. A6061-T6 aluminum alloy showed no degradation by hydrogen. Fatigue properties in high pressure gaseous hydrogen were evaluated by the external cyclic pressurization test using tubular specimens. The tubular specimen was filled with high pressure hydrogen gas, and the outside of the specimen was cyclically pressurized with water. Type 304 showed a decrease in the fatigue life in hydrogen gas, while as for type 316L and A6061-T6 the difference of the fatigue life between hydrogen and argon environments was small. HEE susceptibility of investigated materials was discussed based on the stability of an austenitic structure.
机译:在300系列奥氏体不锈钢和A6061-T6铝合金上研究了高压气态氢气中的氢环境脆性(HEE)敏感性。通过在-40至85℃(-40至185摄氏度)的温度范围内加压高达90MPa(13053psig)的气态氢气慢应变速率测试(SSRT)评估这些材料的拉伸性能。奥氏体不锈钢的呼吸敏感性强烈地依赖于化学成分和测试温度。 A6061-T6铝合金显示出氢气没有降解。通过使用管状标本通过外部循环加压试验评估高压气态氢气中的疲劳性能。管状试样填充有高压氢气,并用水循环加压外部。型式304显示氢气中疲劳寿命的减少,而对于316L型和A6061-T6,氢气和氩气环境之间的疲劳寿命差异很小。基于奥氏体结构的稳定性讨论了研究的研究敏感性。

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