首页> 外文期刊>Journal de Physique, IV: Proceedings of International Conference >Alpha Rays Emitting Impurities in Ultra Pure Aluminum Evolution Through the Successive Refining Steps
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Alpha Rays Emitting Impurities in Ultra Pure Aluminum Evolution Through the Successive Refining Steps

机译:通过连续的精炼步骤,Al射线会在超纯铝的演变过程中发出杂质

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摘要

Alpha rays are a major source of software errors in integrated circuits, especially in DRAM memories. A major aim of refining techniques used for the production of Ultra-pure aluminium alloys is therefore to eliminate radioactive impurities. This elimination was studied all along the refining steps from the ore (bauxite) to Ultra-pure aluminium. A major observation is that Radium isotopes accumulate in the caustic soda liquor, used for production of alumina from bauxite and in the cryolithic melt used for production of primary aluminium from alumina. Accumulated isotope Radium 228, which has a rather short half-life, disintegrates by B-emission to Thorium 228, which then transfers immediately to cathodic aluminium metal. This induces a strong disequilibrium in the decay chain of Thorium 232, and, as a result, more than 80 % of the total alpha-emission of Ultra-pure aluminium comes from alpha-decay of Thorium 228 and its daughters, which are not in equilibrium with Thorium 232. As a consequence, the content of Aluminium in U 238 and Th 232 (the only isotopes measured by GDMS or ICP/MS) can just give a rough order of magnitude of Alpha-emission, the Th 232 family being by far the most deleterious as regards software errors.
机译:α射线是集成电路中软件错误的主要来源,尤其是在DRAM存储器中。因此,用于生产超纯铝合金的精炼技术的主要目标是消除放射性杂质。从矿石(铝土矿)到超纯铝的精炼步骤一直在研究这种消除方法。一个主要的观察结果是,镭同位素积累在用于从铝土矿生产氧化铝的苛性苏打液中和在用于从氧化铝生产初级铝的冰晶熔体中。半衰期很短的累积同位素Radium 228通过B发射而分解为Thorium 228,后者立即转移到阴极铝金属上。这会在Thorium 232的衰变链中引起强烈的不平衡,结果,超纯铝的总α排放的80%以上来自Thorium 228及其子代的α衰变。因此,U 238和Th 232中的铝含量(通过GDMS或ICP / MS测得的唯一同位素)仅能给出大致的Alpha发射量级,Th 232族是关于软件错误,这是最有害的。

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