首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference 2007 >EFFECT OF HYDROGEN GAS PRESSURE ON THE MECHANICAL PROPERTIES OF LOW ALLOY STEEL FOR HYDROGEN PRESSURE VESSELS
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EFFECT OF HYDROGEN GAS PRESSURE ON THE MECHANICAL PROPERTIES OF LOW ALLOY STEEL FOR HYDROGEN PRESSURE VESSELS

机译:氢气压力对氢气压力容器用低合金钢力学性能的影响

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To provide engineering data useful in design, manufacture and operation of hydrogen storage vessels in hydrogen refueling stations, fatigue test machine equipped with high-pressure hydrogen autoclave was introduced. The effect of steel's strength level, temperature effect, fracture toughness and pressure effect were evaluated in gaseous hydrogen environment. When steel's strength level exceeds around 930MPa to 1000MPa, the elongation and notch tensile properties deleteriously degraded. The elongation reduction by the effect of hydrogen increased with lowering the temperature. The same sensitivity to temperature on crack growth behavior was observed. However, it was shown that the gaseous hydrogen environment only affect the slow stable crack growth but did not affect the critical flaw growth of the steel at low temperature, i.e. fast fracture. The pressure dependence of notch tensile strength ranging from 0.1 MPa to 75MPa hydrogen pressure shows approximately 1/2 power dependence.
机译:为了提供对加氢站的储氢容器的设计,制造和运行有用的工程数据,引入了配备高压氢高压釜的疲劳试验机。在气态氢环境下,评估了钢的强度水平,温度效应,断裂韧性和压力效应的影响。当钢的强度水平超过930MPa至1000MPa左右时,伸长率和缺口拉伸性能有害地劣化。氢的作用引起的伸长率降低随着温度的降低而增加。观察到对裂纹扩展行为的温度敏感性相同。然而,已经表明,气态氢环境仅影响缓慢稳定的裂纹扩展,而没有影响钢在低温下即快速断裂时的临界缺陷增长。缺口拉伸强度在0.1 MPa至75 MPa氢气压力范围内的压力依赖性显示出大约1/2的功率依赖性。

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