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气溶胶喷射打印系统成形宽度影响因素分析 被引量:3
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作者 舒霞云 吴常健 +2 位作者 常雪峰 张晓城 刘波 《厦门理工学院学报》 2020年第3期1-8,共8页
在分析气溶胶喷射打印技术工作原理的基础上,利用商用压电陶瓷雾化片和自行设计制造的喷印头,构建出由气溶胶喷射打印装置、温度控制装置和运动控制装置3部分构成的气溶胶喷射打印系统。以纳米银导电油墨为对象,采用单参量对比实验分析... 在分析气溶胶喷射打印技术工作原理的基础上,利用商用压电陶瓷雾化片和自行设计制造的喷印头,构建出由气溶胶喷射打印装置、温度控制装置和运动控制装置3部分构成的气溶胶喷射打印系统。以纳米银导电油墨为对象,采用单参量对比实验分析法,研究鞘气流量、载气流量、喷嘴与衬底间距、打印速度、打印层数等因素对打印成形宽度的影响。结果表明:随着载气流量增大、层数增加,纳米银导电油墨沉积成形宽度增加;在实验参数范围内,载气流量和打印层数对成形线宽影响明显,且呈正相关;线宽随着鞘气流量的增大先减小后增大;喷嘴与衬底间距在1.5~4.5 mm范围内对线宽无明显影响;在喷嘴直径为200μm,鞘气流量为50 mL·min^-1,载气流量为3 mL·min^-1,喷嘴与衬底间距为3 mm,衬底移动速度为3 mm·s^-1,打印层数为6~8层,加热板温度为80℃时,可获得最小宽度为26μm,高度为7μm的均匀线条,这也是纳米银导电油墨喷射打印的最优工艺参数。 展开更多
关键词 气溶胶喷射打印系统 成形宽度 控制变量法 纳米银导电油墨 单参量对比实验
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Preparation of low-temperature sintered high conductivity inks based on nanosilver self-assembled on surface of graphene 被引量:5
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作者 LIU Piao HE Wen-qiang LU An-xian 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第11期2953-2960,共8页
Finer nanoplates of silver are prepared by self-assembly on the surface of graphene,and the low-temperature sintered high conductivity ink containing the silver nanoplates is prepared.Most importantly,graphene is adde... Finer nanoplates of silver are prepared by self-assembly on the surface of graphene,and the low-temperature sintered high conductivity ink containing the silver nanoplates is prepared.Most importantly,graphene is added to the solution before the chemical reduction reaction occurs.Firstly,it is found that silver nanoplates have self-assembly phenomenon on the surface of graphene.Secondly,the Ag nano hexagonal platelets(AgNHPs)with small particle sizes(10 nm),narrow distribution and good dispersion are prepared.Especially,smaller sizes(10 nm)and narrower particle size distribution of AgNHPs particles can be easily controlled by using this process.Finally,the conductivity of the ink is excellent.For example,when the printed patterns were sintering at 150℃,the resistivity of the ink(GE:0.15 g/L)reached the minimum value of 2.2×10^-6 cm.And the resistivity value was 3.7×10^-6Ωcm,when it was sintered at 100℃ for 30 min.The conductive ink prepared can be used for the field of printing electronics as ink-jet printing ink. 展开更多
关键词 Ag nanoparticles GRAPHENE self-assembly conductive ink electrical properties
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