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1.
 用含Cn+和H+、加速电压250 kV、脉冲宽度70 ns、束流密度160 A/cm2的强流脉冲离子束辐照DZ4合金,辐照次数分别为2,5,10,15。实验结果表明:辐照后样品的表面出现了熔坑,多次脉冲辐照后样品的表面熔坑边缘模糊甚至消失。近表面存在厚1~2 mm的重熔层,晶粒较细,晶界模糊;熔坑周围富集Cr和Mo等元素;强流脉冲离子束辐照处理后DZ4合金的耐腐蚀性能明显提高,腐蚀速率下降,这是由于辐照减弱了由于晶界和晶粒本体的成分差异而引起的晶界腐蚀;同时离子束辐照后的DZ4合金在高温氧化时更容易形成一层连续的保护性氧化物,其主要成分是致密的Al2O3,使得DZ4合金的耐高温氧化性能也有所改善。  相似文献   

2.
The aim of this study is to analyze the effect of proton and ion beam treatment on injection molded plastic parts. We employed cyclic olefin copolymers (COCs) as a resin for the manufacturing. A light guide panel was designed and fabricated via injection molding. The size and fluence of ions were changed for the analysis. The physical and chemical properties of the samples irradiated with proton and nitrogen ion beams were investigated through UV–Vis spectroscopy, FT-IR, differential scanning calorimetry (DSC), nanoindentation, residual stress, and electrical analyses. The penetration behavior of ion beams was modeled numerically, and the injection molding process was simulated. The finding showed that the irradiation of proton and nitrogen ion beams led to a change in the chemical structure and energy level of the samples. We anticipate that this study could provide a meaningful strategic way to engineer a polymeric part for broader applications using proton and ion beams.  相似文献   

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