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铁磁材料制造工艺对金属磁记忆信号的影响 被引量:3
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作者 董丽虹 徐滨士 +2 位作者 董世运 曲美霞 王丹 《中国表面工程》 EI CAS CSCD 北大核心 2010年第4期82-86,共5页
在采用金属磁记忆信号对铁磁材料进行损伤评价时,为排除制造工艺引入的冗余干扰信号,本研究针对两种铁磁性特种钢,采用EMS2003型金属磁记忆仪检测了锻造、铣削、磨削加工及热处理工艺后试件表面磁记忆信号的变化,并比较了交流电退磁与... 在采用金属磁记忆信号对铁磁材料进行损伤评价时,为排除制造工艺引入的冗余干扰信号,本研究针对两种铁磁性特种钢,采用EMS2003型金属磁记忆仪检测了锻造、铣削、磨削加工及热处理工艺后试件表面磁记忆信号的变化,并比较了交流电退磁与热处理退磁不同的退磁效果。结果显示:各机加工工序将引入不同形式的外载荷,导致磁记忆信号呈无规律杂乱分布,磨削工序引入外加激励磁场,产生强烈的干扰信号。经过交流电退磁后,试件表面依然存在残余磁场,而采用超过铁磁材料居里点的高温热处理退磁可以获得纯净的磁记忆信号。这一结果可以为利用磁记忆信号对铁磁材料进行损伤评价提供基础实验依据。 展开更多
关键词 金属磁记忆 锻造 铣削 磨削 交流电退磁 热处理退磁
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Ag nanoparticles preparation and their light trapping performance 被引量:2
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作者 BAI YiMing WANG Jun +7 位作者 YIN ZhiGang CHEN NuoFu ZHANG XingWang FU Zhen YAO JianXi LI Ning HE HaiYang GULI MiNa 《Science China(Technological Sciences)》 SCIE EI CAS 2013年第1期109-114,共6页
Ag nanoparticles were fabricated on Si substrates by radio-frequency magnetron sputtering and thermal annealing treatments.It was found that Ag nanoparticles are ellipsoid at low annealing temperature,but the axis rat... Ag nanoparticles were fabricated on Si substrates by radio-frequency magnetron sputtering and thermal annealing treatments.It was found that Ag nanoparticles are ellipsoid at low annealing temperature,but the axis ratio decreases with the increase of annealing temperature,and a shape transformation from ellipsoid to sphere occurs when the temperature increases to a critical point.The experimental results showed that the surface plasmon resonances depend greatly on the nanoparticles'shape and size,which is in accordance with the theoretical calculation based on discrete dipole approximation.The results of forward-scattering efficiency(FSE) and light trapping spectrum(LTS) showed that Ag nanoparticles annealed at 400°C could strongly enhance the light harvest than those annealed at 300 and 500°C,and that the LTS peak intensity of the former is 1.7 and 1.5 times stronger than those of the later two samples,respectively.The conclusions obtained in this paper showed that Ag ellipsoid nanoparticles with appropriate size is more favorable for enhancing the light trapping. 展开更多
关键词 thin film solar cells light trapping structure plasmonic nanoparticles
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