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A 70 MPa hydrogen environment fatigue test system has been designed and applied in the manufacture of a hydrogen storage vessel. Key equipment is the 80 MPa flat steel ribbon wound high pressure hydrogen storage vessel. A reasonable stress distribution has been realized, that is low stress in the liner of the pressure vessel and even stress in the flat ribbon layers. This optimal stress distribution is achieved through the adjustment of the prestress in flat steel ribbons. A control system for the fatigue test system has also been designed. It consists of a double control model, i.e. manual control and automatic control, to satisfy different experimental requirements. The system is the unique one that can be used in the real hydrogen environmental fatigue test system in China. An experiment for the 70 MPa onboard composite material hydrogen vessel has been carried out on the system. The experimental result from this test is in close agreement with the practical operating conditions.  相似文献   
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真空膜蒸馏技术可用于分离水溶液中的有机挥发性化合物(VOCs),是一种治理遭受VOCs污染工业废水的新方法.对低浓度乙醇水溶液二元体系下的真空膜蒸馏过程展开了模拟分析,膜内的传质按Knudsen扩散原理考虑,界面上的平衡关系按Van Laar活度系数法给出.模拟结果表明:过程的操作参数对分离效率有较大的影响,进口温度、料液流量、浓度和真空度增加,膜通量将增加;分离因子随进口温度、真空度、浓度增加而减少,料液流量对分离因子影响与真空侧流动形式有关.真空侧流动形式对分离因子有一定的影响,并流条件下,分离因子最大.  相似文献   
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