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镀镍碳纳米管对Ti(C、N)-Co金属陶瓷材料力学性能的影响分析
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作者 艾江 《陶瓷》 CAS 2017年第10期24-29,共6页
研究了镀镍碳纳米管对Ti(C、N)-Ni金属陶瓷材料显微结构和力学性能的影响。通过真空烧结方法制备出了Ti(C、N)-Ni金属陶瓷。其显微结构存在两种晶粒组织结构,一种是黑芯/灰环,另一种是白芯/灰环。且随着镀镍碳纳米管添加量的增加,显微... 研究了镀镍碳纳米管对Ti(C、N)-Ni金属陶瓷材料显微结构和力学性能的影响。通过真空烧结方法制备出了Ti(C、N)-Ni金属陶瓷。其显微结构存在两种晶粒组织结构,一种是黑芯/灰环,另一种是白芯/灰环。且随着镀镍碳纳米管添加量的增加,显微结构呈现粗化的趋势。镀镍碳纳米管对金属陶瓷力学性能的影响是显著的。结果表明,抗弯强度和硬度随着碳纳米管添加量的增加呈现先增加后减小的趋势,抗弯强度和断裂韧性分别在添加量为1wt%和2.5wt%时达到最大值,而断裂韧性在镀镍碳纳米管添加量为0~2.5wt%范围内随镀镍碳纳米管添加量的增大而增大且在2.5wt%时达最大值。 展开更多
关键词 镀镍碳纳米管 金属陶瓷 晶粒组织结构 抗弯强度 断裂韧性
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Self-assembled flower-like microstructure in Zn_(1-x)Cd_xO nanoparticles
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作者 R.SANTHI C.SHANTHI +1 位作者 M.SATHYA K.PUSHPANATHAN 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2017年第9期2031-2042,共12页
The structural and optical characterization of cadmium-doped zinc oxide nanoparticles synthesized by precipitation method was studied.X-ray diffraction study confirmed the substitution of cadmium dopant without distur... The structural and optical characterization of cadmium-doped zinc oxide nanoparticles synthesized by precipitation method was studied.X-ray diffraction study confirmed the substitution of cadmium dopant without disturbing the basic wurtzite structure of zinc oxide.The average crystalline size,lattice constants and unit cell volume also increased up to4%of cadmium doping.Energy gaps of the samples were determined from the ultraviolet?visible absorption spectrum as well as Tauc’s plot which infers that the energy gap decreases with the increase of cadmium content.Fourier transformation infrared spectrum confirms the cadmium dopant through peak shifting from485to563cm?1.Photoluminescence spectrum also defines the cadmium dopant by intensity increase.The broad Raman peak at437cm?1indicates that the wurtzite structure of zinc oxide is weakened by5%cadmium doping.Field emission scanning electron microscope study also confirms the existence of particles in nanometer size and it indentifies the microstructure transformation from nanoparticles to jasmine flower-like structure on5%cadmium doping. 展开更多
关键词 Cd doping ZnO nanoparticles energy gap crystal structure MICROSTRUCTURE photoluminescence
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