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DUPLEX CLADDINGS PERFORMANCE AT HIGH BURN-UP

机译:高燃尽的双相涂层性能

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There is a desire for the nuclear industry to extend the discharge burn-up of the fuel, combined with power uprates, and extended operating cycles, whereby the fuel cycle costs can be reduced. However, this implies new, and more severe operating regimes that change the conditions for corrosion, hydriding and irradiation induced growth of Zr-based materials. For PWR operation, various types of Duplex cladding have been developed to meet the new requirements, and the resulting performance has generally been successful.rnTwo types of Westinghouse Duplex claddings, irradiated at KWG, Germany, to a rod average burn-up close to 70 MWd/kgU have been Post-Irradiation Examined at the Institute for Transuranium Elements, Karlsruhe. The two Duplex rods reveal low irradiation induced rod growth of 0.45%, excellent corrosion resistance with a maximum oxide thickness of only 35 urn and a low concentration of hydrides with no radial hydrides detected. There is only a slight accumulation of hydrides in the bonding zone between the inner and outer components. None of the studied cladding parameters reveal any tendency towards an accelerated mode at high burn-uprnWe conclude that both types of Duplex cladding have demonstrated an excellent performance with a significant margin, and are thus capable of irradiation to even higher burnup levels.
机译:期望核工业扩大燃料的放电燃烧,结合功率提高和延长的运行周期,从而可以降低燃料周期成本。然而,这意味着新的,更严格的操作方式会改变腐蚀,氢化和辐照诱导Zr基材料生长的条件。对于PWR操作,已开发出各种类型的双相熔覆层以满足新的要求,并且最终获得了成功的性能。两种类型的Westinghouse双相熔覆层,在德国KWG进行了辐照,其棒材平均燃耗接近70 MWd / kgU已在卡尔斯鲁厄的铀元素研究所进行了辐照后检查。两根双相棒显示出低辐射诱导的棒增长0.45%,优异的耐腐蚀性,最大氧化物厚度仅为35 urn,氢化物浓度低,未检测到径向氢化物。内部和外部组件之间的结合区域中只有少量氢化物堆积。没有研究的包层参数显示出在高燃耗下加速模式的任何趋势。我们的结论是,两种类型的双层覆层都表现出出色的性能,并且具有显着的余量,因此能够辐射到更高的燃耗水平。

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