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A method of manufacturing a sheet or tube of niobium-containing zirconium alloy for high burnup nuclear fuel

机译:一种用于高燃耗核燃料的含铌锆合金薄板或管的制造方法

摘要

Disclosed is a method for manufacturing a tube and a sheet of niobium-containing zirconium alloys for the high burn-up nuclear fuel. The method comprises melting Nb-added zirconium alloy to ingot; forging the ingot at beta phase range; beta -quenching the forged ingot after solution heat-treatment at 1015-1075 DEG C; hot-working the quenched ingot at 600-650 DEG C; cold-working the hot-worked ingot in three to five passes, with intermediate vacuum annealing; and final vacuum annealing the cold-worked ingot at 440-600 DEG C, wherein temperatures of intermediate vacuum annealing and final vacuum annealing after beta -quenching are changed so as to attain the condition under which precipitates in the alloy matrix are limited to an average diameter of 80 nm or smaller and the accumulated annealing parameter ( SIGMA A) is limited to 1.0 x 10-18 hr or lower, thereby yielding a tube and a sheet of Nb-containing zirconium alloys with excellent corrosion resistance and mechanical properties, capable of stably maintaining nuclear fuel in operation conditions of high temperature/high pressure of high burn-up reactor cores. Such Nb-added zirconium alloys are useful as nuclear fuel cladding tubes, grids and structures of the cores in the light water reactors and heavy water reactors. IMAGE
机译:本发明公开了一种用于高燃尽核燃料的管和含铌锆合金薄板的制造方法。该方法包括将添加Nb的锆合金熔化成锭;然后将其熔化。在β相范围内锻造铸锭;在1015-1075℃进行固溶热处理后,β淬火锻造的铸锭;在600-650℃下对淬火的锭进行热加工;在中间真空退火的情况下,对热加工的铸锭进行三到五次冷加工。然后在440-600℃下对冷加工的铸锭进行最终真空退火,其中改变中间真空退火和β-淬火后的最终真空退火的温度,以达到将合金基体中的析出物限制在平均水平的条件。直径小于等于80 nm且累积退火参数(SIGMA A)限制为1.0 x 10 -18 hr或更小,从而得到具有优异的耐腐蚀性和机械性能的管和一片含Nb的锆合金,能够在高燃尽反应堆堆芯的高温/高压运行条件下稳定保持核燃料。这种添加Nb的锆合金可用作轻水反应堆和重水反应堆中的核燃料包壳管,格栅和堆芯结构。 <图像>

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