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步进电机细分驱动在喷膜机中的应用 被引量:6
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作者 李翠敏 高有行 《计算机测量与控制》 CSCD 2003年第8期618-620,共3页
现在已有专用的步进电机细分驱动器 ,但是对于一些小型产品 ,采用专用的细分驱动器将会增加成本 ,这里以四细分驱动在喷膜机中的应用为例 ,介绍了一种用软件实现步进电机细分驱动的方法 ,该方法在喷膜机中取得了良好的效果。
关键词 步进电 细分驱动 喷膜机 保护电路 开环控制系统
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需要心理与面膜喷制机设计
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作者 韩春明 陈琛 《科技与企业》 2012年第5期262-262,264,共2页
需要心理作为设计心理学的一部分,在产品设计中起着重要作用,本文通过对面膜喷制机开发设计中需要心理的研究,从面膜产品需要的特性和面膜喷制机的功能需要两方面进行分析,以理论结合实践的方式总结了需要心理在面膜喷制机设计中的价值。
关键词 需要心理 设计
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ZP-128型防枣裂果喷液膜机的设计
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作者 董雅倩 《当代农机》 2014年第2期72-73,共2页
介绍了国外喷雾机械的发展现状,阐述了ZP-128型防枣裂果喷液膜机的工作原理和主要部件的设计。
关键词 红枣 裂果 轴流式风
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Direct writing of graphene patterns and devices on graphene oxide films by inkjet reduction 被引量:1
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作者 Yang Su Shuai Jia Jinhong Du Jiangtan Yuan Chang Liu Wencai Ren Huiming Cheng 《Nano Research》 SCIE EI CAS CSCD 2015年第12期3954-3962,共9页
Direct writing of graphene patterns and devices may significantly facilitate the application of graphene-based flexible electronics. In terms of scalability and cost efficiency, inkjet printing is very competitive ove... Direct writing of graphene patterns and devices may significantly facilitate the application of graphene-based flexible electronics. In terms of scalability and cost efficiency, inkjet printing is very competitive over other existing direct- writing methods. However, it has been challenging to obtain highly stable and clog-free graphene-based ink. Here, we report an alternative and highly efficient technique to directly print a reducing reagent on graphene oxide film to form conductive graphene patterns. By this "inkjet reduction" method, without using any other microfabrication technique, conductive graphene patterns and devices for various applications are obtained. The ionic nature of the reductant ink makes it clog-free and stable for continuous and large-area printing. The method shows self-limited reduction feature, which enables electrical conductivity of graphene patterns to be tuned within 5 orders of magnitude, reaching as high as 8,000 S.m-1. Furthermore, this method can be extended to produce noble metal/graphene composite patterns. The devices, including transistors, biosensors, and surface- enhanced Raman scattering substrates, demonstrate excellent functionalities. This work provides a new strategy to prepare large-area graphene-based devices that is low-cost and highly efficient, promising to advance research on graphene- based flexible electronics. 展开更多
关键词 GRAPHENE graphene oxide direct writing inkier printing REDUCTION
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