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多发酵罐自动下料系统
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作者 王乙钠 张涛 《中国仪器仪表》 2015年第3期64-66 68,共4页
本文在分析国内外称重送料装置的历史和发展的基础上,对目前国内称重送料设备自动化程度低、精度不高等现状,设计完成了一种基于AT89S51单片机控制的实现三料速精确称重和小车自动定位的多发酵罐自动送料系统。
关键词 AT89S51单片机 三料速精确称重 智能小车 自动定位
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定量电子包装秤中关键误差解决方案 被引量:6
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作者 温显超 韩震宇 《粮食与饲料工业》 CAS 北大核心 2010年第7期9-11,共3页
通过建立称重数学模型,分析在动态称重过程中产生误差的原因,并结合动态系统对称重速率和称重精度的整体要求,在国内外现有技术的基础上,提出了一套基于三料速时序控制和数字增量式PID算法的系统关键性误差解决方案。详细阐述了三料速... 通过建立称重数学模型,分析在动态称重过程中产生误差的原因,并结合动态系统对称重速率和称重精度的整体要求,在国内外现有技术的基础上,提出了一套基于三料速时序控制和数字增量式PID算法的系统关键性误差解决方案。详细阐述了三料速时序控制流程以及各参数的设定办法,并对数字增量式PID算法进行了推导和对参数设定进行了讨论,给出了该算法动态校正的程序流程。 展开更多
关键词 包装秤 动态称重 三料速 PID 动态校正
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One-step strategy to graphene/Ni(OH)2 composite hy- drogels as advanced three-dimensional supercapacitor electrode materials 被引量:28
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作者 Yuxi Xu Xiaoqing Huang +3 位作者 Zhaoyang Lin Xing Zhong Yu Huang Xiangfeng Duan 《Nano Research》 SCIE EI CAS CSCD 2013年第1期65-76,共12页
Graphene-based three-dimensional (3D) macroscopic materials have recently attracted increasing interest by virtue of their exciting potential in electrochemical energy conversion and storage. Here we report a facile... Graphene-based three-dimensional (3D) macroscopic materials have recently attracted increasing interest by virtue of their exciting potential in electrochemical energy conversion and storage. Here we report a facile one-step strategy to prepare mechanically strong and electrically conductive graphene/Ni(OH)2 composite hydrogels with an interconnected porous network. The composite hydrogels were directly used as 3D supercapacitor electrode materials without adding any other binder or conductive additives. An optimized composite hydrogel containing -82 wt.% Ni(OH)2 exhibited a specific capacitance of -1,247 F/g at a scan rate of 5 mV/s and -785 F/g at 40 mV/s (-63% capacitance retention) with excellent cycling stability. The capacity of the 3D hydrogels greatly surpasses that of a physical mixture of graphene sheets and Ni(OH)2 nanoplates (-309 F/g at 40 mV/s). The same strategy was also applied to fabricate graphene-carbon nanotube/Ni(OH)2 ternary composite hydrogels with further improved specific capacitances (-1,352 F/g at 5 mV/s) and rate capability (-66% capacitance retention at 40 mV/s). Both composite hydrogels obtained here can deliver high energy densities (-43 and -47 Wh/kg, respectively) and power densities (-8 and -9 kW/kg, respectively), making them attractive electrode materials for supercapacitor applications. This study opens a new pathway to the design and fabrication of functional 3D graphene composite materials, and can significantly impact broad areas including energy storage and beyond. 展开更多
关键词 GRAPHENE Ni(OH)2 HYDROGEL THREE-DIMENSIONAL SUPERCAPACITOR energy storage
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