Electrical Characterization of Carbon Nanotube Reinforced Silver and Copper Composites for Switching Contacts

被引:3
|
作者
Alderete, Bruno [1 ]
Muecklich, Frank [1 ]
Suarez, Sebastian [1 ]
机构
[1] Saarland Univ, Chair Funct Mat, Campus D 3-3, D-66123 Saarbrucken, Germany
来源
JOURNAL OF COMPOSITES SCIENCE | 2023年 / 7卷 / 07期
关键词
carbon nanotubes; electrical switches; hot uniaxial pressing; metal matrix composites; powder metallurgy; SELF-DIFFUSION; THERMAL-CONDUCTIVITY; BALLISTIC TRANSPORT; BULK COMPOSITES; DISPERSION; FRICTION;
D O I
10.3390/jcs7070284
中图分类号
TB33 [复合材料];
学科分类号
摘要
Carbon nanotube (CNT)-reinforced silver and copper metal matrix composites-at three different reinforcement phase concentrations (0.5 wt.%, 0.75 wt.%, and 1 wt.%)-were produced via powder metallurgy and sintered via hot uniaxial pressing. Optical and electron microscopy techniques were used to characterize the powder mixtures and sintered composites. The latter were also electrically characterized via load-dependent electrical contact resistance (ECR) and surface fatigue tests. Particle size and morphology play a crucial role in CNT deposition onto the metallic powder. CNT were deposited exceptionally well onto the dendritic copper powder regardless of its larger size (compared with the silver flakes) due to the higher surface area caused by the grooves and edges of the dendritic structures. The addition of CNT to the metallic matrices improved their electrical performance, in general outperforming the reference material. Higher CNT concentrations produced consistently low ECR values. In addition, high CNT concentrations (i.e., 1 wt.%) show exceptional contact repeatability due to the elastic restitutive properties of the CNT. The reproducibility of the contact surface was further evaluated by the fatigue tests, where the composites also showed lower ECR than the reference material, rapidly reaching steady-state ECR within the 20 fatigue cycles analyzed.
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页数:17
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