首页> 外文会议>International Conference on The Mechanical Behavior of Materials >IRRADIATION EFFECT ON MECHANICAL PROPERTIES AND OXIDATION BEHAVIOR OF NANG-FILAMENTARY COPPER-SILVER COMPOSITES
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IRRADIATION EFFECT ON MECHANICAL PROPERTIES AND OXIDATION BEHAVIOR OF NANG-FILAMENTARY COPPER-SILVER COMPOSITES

机译:Nang-丝铜银复合材料力学性能和氧化行为的辐照影响

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Quasi-nano filamentary copper-silver composites were irradiated and annealed to study irradiation degradation behavior. The specimen was irradiated in CT hole of HANARO of KAERI for 36 days at 320 deg C with the maximum neutron flux of 4.8 X 10~(20)n/cm~2 (E>1.0 MeV). The gamma heating rate was in the range of 2.0-6.45 W/gm. Irradiation embrittlement was observed. Hardness determined by nano-indentation technique were 32.3 GPA for as-received condition, however, it decreased 24.6 GPa due to gamma heating, which was above the value of the specimen with same annealing effect without irradiation. Weight change of specimen with oxidation increased with annealing time, temperature and amount of dose 0.21-0.27 mR/h. Hardness change of the irradiated specimen followed by annealing was significantly dependent upon amount of dose of the specimen.
机译:辐照拟纳米丝丝状铜银复合材料,以研究辐照降解行为。将试样在Kaeri Hanaro的CT孔中以320℃的36天照射,最大中子通量为4.8×10〜(20)n / cm〜2(e> 1.0mev)。伽马加热速率为2.0-6.45W / gm。观察到辐照脆化。由于纳米缩进技术确定的硬度为32.3GPa,但由于γ加热,它降低了24.6GPa,其上高于标本的值,而没有照射。用氧化的试样的重量变化随着退火时间,温度和剂量的0.21-0.27 mr / h。辐照标本随后退火的硬度变化显着依赖于样本剂量的量。

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