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Influence of surface state on hydrogen sorption by zirconium alloy Zr1Nb

机译:表面状态对锆合金Zr1Nb吸附氢的影响

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摘要

This work is focused on the investigation of hydrogen sorption behavior by zirconium alloy Zr1Nb with different surface states. Zirconium alloy samples in initial state, after ion cleaning with subsequent nickel deposition and after treatment by Low Energy High Current Pulsed Electron Beam (LEHCPEB) were hydrogenated at constant pressure and different temperatures. Hydrogen sorption rates as well as the energy of hydrogen adsorption by zirconium alloy with different surface states have been evaluated. It was shown, that ion cleaning with subsequent nickel deposition leads to the hydrogen sorption rate increasing at temperatures 350 – 550 °C, while the energy of hydrogen adsorption by zirconium alloy reduces on 15%. Modification by LEHCPEB leads to the hydrogen sorption rate decreasing at temperatures 350 – 550 °C, while the energy of hydrogen adsorption by zirconium alloy grows on 15%.
机译:这项工作的重点是研究具有不同表面状态的锆合金Zr1Nb的氢吸附行为。在恒定压力和不同温度下,对处于初始状态的锆合金样品进行离子清洗,随后进行镍沉积,然后通过低能大电流脉冲电子束(LEHCPEB)处理。评估了不同表面态的锆合金的氢吸附速率以及氢吸附能量。结果表明,在随后的镍沉积过程中进行离子清洗会导致在350 – 550°C的温度下氢的吸附速率增加,而锆合金的氢吸附能量降低了15%。 LEHCPEB的改性导致在350 – 550°C的温度下氢的吸附速率降低,而锆合金的氢吸附能量增长15%。

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