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Fe_(73.2)Si_(16.2)B_(6.6)Nb_(3)Cu_(1)非晶合金粉体吸波性能研究 被引量:4
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作者 吴佳丽 周秉文 +4 位作者 霍利山 孟令刚 亚斌 张环月 张兴国 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2022年第2期622-628,共7页
为防控电磁污染问题,亟待开发更好的吸波材料。设计了成分为Fe_(73.2)Si_(16.2)B_(6.6)Nb_(3)Cu_(1)的合金并制备了非晶合金条带,经过高能球磨处理得到非晶合金粉体。研究了球磨处理时间对合金粉体软磁性能、微观结构、形貌和电磁波吸... 为防控电磁污染问题,亟待开发更好的吸波材料。设计了成分为Fe_(73.2)Si_(16.2)B_(6.6)Nb_(3)Cu_(1)的合金并制备了非晶合金条带,经过高能球磨处理得到非晶合金粉体。研究了球磨处理时间对合金粉体软磁性能、微观结构、形貌和电磁波吸收性能的影响。结果表明,非晶合金粉体球磨后产生了α-(Fe,Si)相,提高了软磁性能,饱和磁化强度最高可达137.94 A·m^(2)·kg^(-1)。非晶粉体形貌为椭球状,随球磨时间增加,合金粉体粒径减小,最小平均粒径为8.42μm。合金具有优异的电磁波吸收性能,电磁波损耗机制主要为磁损耗。球磨50 h后的非晶合金粉体具有最佳的电磁波吸收性能,在频率为4.57 GHz处取得的最小反射损耗达到–42.26 dB,吸波剂厚度为2.5 mm时的最大有效吸收(<–10 dB)带宽高达5.78 GHz。 展开更多
关键词 铁基非晶合金 吸波性能 电磁屏蔽 软磁性能
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Toward an ideal electrical resistance strain gauge using a bare and single straight strand metallic glassy fiber 被引量:5
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作者 YI Jun huo lishan +3 位作者 ZHAO DeQian PAN MinXiang BAI HaiYang WANG WeiHua 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2012年第4期609-613,共5页
Electrical resistance strain gauges(SGs) are useful tools for experimental stress analysis and the strain sensing elements in many electromechanical transducers including load cells,pressure transducers,torque meters,... Electrical resistance strain gauges(SGs) are useful tools for experimental stress analysis and the strain sensing elements in many electromechanical transducers including load cells,pressure transducers,torque meters,accelerometers,force cells,displacement transducers and so forth.The commonly used commercial crystalline strain sensing materials of SGs are in the form of wire or foil of which performance and reliability is not good enough due to their low electrical resistivity and incapacity to get thin thickness.Smaller SGs with single straight strand strain sensing materials,which are called ideal SG,are highly desirable for more than seven decades since the first SG was invented.Here,we show the development of a type of minuscule length scale strain gauge by using a bare and single straight strand metallic glassy fiber(MGF) with high resistivity,much smaller lengthscale,high elastic limits(2.16%) and especially the super piezoresistance effect.We anticipate that our metallic glassy fiber strain gauge(MGFSG),which moves toward the ideal SGs,would have wide applications for electromechanical transducers and stress analysis and catalyze development of more micro-and nanoscale metallic glass applications. 展开更多
关键词 metallic glassy fiber strain gauge strain sensing material metallic glassy fiber strain gauge
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