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TiCrVMo alloys with high dissociation pressure for high-pressure MH tank

机译:高离解压力的TiCrVMo合金,用于高压MH储罐

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摘要

High-pressure metal hydride (MH) tank is a possible hydrogen storage system for fuel cell vehicles. The merit of the high-pressure MH tank system is improved by the use of a metal hydride with high dissociation pressure. In this study, TiCrV and TiCrVMo alloys with BCC structure has been developed for the high-pressure MH tank system. The developed TiCrVMo alloy shows 2.4 mass% of effective hydrogen capacity between 0.1 MPa and 33 MPa at 298 K, which has a dissociation pressure of 2.3 MPa at 298 K. By investigating the dissociation pressures of the synthesized metal hydrides, it is found that Mo has a special effect to increase dissociation pressure of the metal hydrides. This effect is probably attributed to the large bulk modulus of Mo compared to other elements.
机译:高压金属氢化物(MH)罐是燃料电池汽车可能的储氢系统。通过使用具有高离解压力的金属氢化物,可以改善高压MH储罐系统的优点。在这项研究中,已开发出具有BCC结构的TiCrV和TiCrVMo合金用于高压MH储罐系统。所开发的TiCrVMo合金在298 K时显示0.1 MPa至33 MPa之间有效氢容量的2.4质量%,在298 K时具有2.3 MPa的解离压力。通过研究合成金属氢化物的解离压力,发现Mo对增加金属氢化物的解离压力具有特殊作用。与其他元素相比,该效应可能归因于Mo的大体积模量。

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