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The results show that hydrogen reduces the fracture activation energy by 74%, that is, atomic binding force decreases.
结果表明:氢的存在使断裂激活能约降低74%。这说明其减弱了原子间键合力。
But after activation, the hydrogen storage capacity and hydriding rates of these alloys have not distinction among all alloys.
但各个球磨时间的合金活化好后总吸氢量和吸氢速率没有多大区别。
It is shown that hydrogen increases the activation energy of the glass transition and crystallization, and retards the nucleation and crystal growth.
结果表明:氢提高玻璃转变和晶化激活能,延迟晶核的形成及长大。
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