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ZIRLO#8482; - An Alloy Development Success

机译:Zirlo™ - 合金发展成功

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摘要

Significant data and milestones in the development of the ZIRLO alloy for PWR applications are reviewed. From humble beginnings as an R&D program, an approach to improving the corrosion resistance of zirconium-based alloys was developed. The corrosion resistance of dilute alloys is controlled by the microstructure, and both solid solution and precipitate effects impact corrosion performance. Several transition metals are beneficial for corrosion at low concentrations, but the most favorable alloy system is zirconium-niobium, because it offers flexibility in processing options. Strength of the binary alloys can be improved by additions of tin, which, in combination with low levels of iron, provide corrosion resistance in lithium hydroxide solutions. Numerous experimental ingots, thermo-mechanical processing routes, corrosion tests, and materials characterizations were performed along the path to the final alloy composition. The resulting material, ZIRLO, has proven itself as a successful alloy for PWR fuel cladding and structural applications.
机译:综述了PWR申请Zirlo合金开发中的重要数据和里程碑。从谦逊的开始作为研发程序,开发了一种提高锆基合金耐腐蚀性的方法。稀合金的耐腐蚀性由微观结构控制,固体溶液和沉淀作用影响腐蚀性能。几种过渡金属有利于低浓度的腐蚀,但最有利的合金系统是锆 - 铌,因为它在加工选项中提供了灵活性。通过添加锡可以改善二元合金的强度,即与低水平的铁相结合,提供氢氧化锂溶液中的耐腐蚀性。沿着最终合金组合物的路径进行多种实验锭,热机械加工途径,腐蚀试验和材料表征。所得材料Zirlo已被证明是PWR燃料包层和结构应用的成功合金。

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