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NEW DEVELOPMENTS IN GLASS SHELLS FROM SiGDP - RESIDUAL GASES, GAS FILLING AND TAILORED HALF-LIVES

机译:SiGDP制成的玻璃壳的新发展-残余气体,天然气充填和定制半生命

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Progress has been made in reducing and quantifying residual gases in shells manufactured by the silicon doped glow discharge polymer (SiGDP) to glass process. Previously, glass shells were made using a high temperature, open-air box oven. If the temperature profile used was sufficient, clear, colorless shells were obtained which had ~ 1/3 of an atmosphere of residual gas consisting of a mixture of N_2, O_2, CO and CO_2 with generally N_2 and CO_2 being the major constituents. Improvements to the process were made by utilizing a controlled atmosphere, high temperature oven and developing an improved temperature profile for the SiGDP to glass conversion process. It is now possible to manufacture clear, colorless glass shells containing noble gas(es), which is a first for the ICF program. In addition, the improvements in our process has led to shells containing less residual gas (N_2, CO, and CO_2) than previously obtainable. Tailored deuterium half-lifes are also possible by adjusting the final sintering temperature which results in glass that is very near but not full density which allows in some cases for fielding of glass shells with half-lives which can be more suitable to the experimentalist.
机译:在减少和量化由掺硅辉光放电聚合物(SiGDP)制成的玻璃制壳中的残留气体方面已经取得了进展。以前,玻璃壳是使用高温露天箱式烤箱制成的。如果使用的温度曲线足够,则获得透明,无色的外壳,该外壳具有约1/3的残余气体气氛,该残余气体由N_2,O_2,CO和CO_2的混合物组成,通常N_2和CO_2为主要成分。通过利用受控气氛,高温烘箱并为SiGDP到玻璃的转化工艺开发了改进的温度曲线,对该工艺进行了改进。现在有可能制造包含惰性气体的透明,无色的玻璃壳,这是ICF程序的第一个应用。另外,我们工艺的改进导致壳体中残留的气体(N_2,CO和CO_2)少于以前获得的气体。通过调节最终的烧结温度,还可以定制氘的半衰期,最终玻璃的温度非常接近,但密度却不高,这在某些情况下允许半衰期的玻璃壳进入现场,这更适合实验者。

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