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多孔TC4鈦合金吸氫規律

Hydrogenation behavior of a porous Ti-6AI-4V alloy

  • 摘要: 利用管式氫處理爐采取固態氣相滲氫法進行置氫實驗,以研究多孔TC4鈦合金置氫過程中吸氫量隨置氫溫度、置氫時間和相對密度的變化規律,并建立了相應的數學模型.結果表明:當多孔鈦合金的相對密度較低時,吸氫量隨置氫溫度的升高而增加;當相對密度較高時,吸氫量與置氫溫度的關系遵循Sievert's定律,與致密鈦合金的吸氫特性一致;多孔鈦合金隨置氫時間的延長,吸氫量增加;隨著多孔鈦合金相對密度的增加,吸氫量降低.

     

    Abstract: Hydrogenation experiments that involved gas-solid hydrogenated method with a tube-hydrogen treatment furnace were conducted to investigate the change in hydrogen content of porous Ti-6A1-4V alloy with temperature, time and its relative density, and some corresponding mathematical models were proposed on the base of experimental data. It is shown that, for the porous titanium alloy with low relative density, the hydrogen content increases at a higher hydrogenation temperature; as for the porous titanium with high relative density, the relationship between hydrogen content and temperature obeys the Sievert's law, which is consistent with that of a compact titanium alloy. The hydrogen absorption capacity increases as the hydrogenation holding time prolongs, while it decreases as the relative density of the porous titanium alloy increases.

     

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