The Diffusion of Hydrogen in Metal Glass Fe39Ni39Si8B12Mn2 and the Effect of Hydrogen on its Young’s Modulus
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摘要: 用排水集氣法分別測量了淬態和退火處理Fe39Ni39Si8B12Mn2金屬玻璃在室溫附近不同溫度下的氫的擴散系數,由此計算出擴散激活能。退火處理導致的結構弛豫均使頻率因子D0和激活能變小。測量了樣品在彎曲振動模式下共振頻率,發現氫可以降低金屬玻璃的楊氏模量,且充氫后時效過程中共振頻率隨時間的變化規律和時效過程中樣品含氫量的曲線相似,即由氫降低的楊氏模量和含氫量成正比。Abstract: The diffusivities of hydrogen in as-quenched and annealed metallic glass Fe39Ni39Si8B12Mn2 were measured by volumenometric methode under different temperatures near room temperature. The activation energy of diffusion was calculated from the results obtained. The structural relaxation caused by annealing tends to decrease the frequency's factor DO and the activation energy, The resonant frequencies of the flexural vibration of the samples during the aging were also measared after charging hydrogen. Some closs relation between the resonant frequencies and the hydrogen contents was observed. It shows that the existence of hydrogen in metallic glass tends to decrease the value of roung's modulus and the reduction of which is proportional to the hydrogen content in sample.
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Key words:
- hydrogen /
- metallic glass /
- diffusivity /
- activation energy /
- roung’s modulus /
- structural relaxation
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