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Flow-rate Characteristics Measurement of Regulators Based on the Pressure Response in an Isothermal Tank 被引量:1
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作者 FAN Wei ZHANG Hongli +2 位作者 WANG Tao peng guangzheng ONEYAMA Naotake 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2009年第5期633-638,共6页
Regulators are important components in pneumatic system, and their flow-rate characteristics are the key parameters for designers. According to the correlatively international standard and national standard of China, ... Regulators are important components in pneumatic system, and their flow-rate characteristics are the key parameters for designers. According to the correlatively international standard and national standard of China, which describe the flow-rate characteristics measurement method of pneumatic regulators, the pressure and the flow are measured point by point, and then the flow-rate characteristics curve is plotted point to point. This method has some disadvantages, such as equipment complexity, much air consumption, and low efficiency. To settle the problems presented above, this paper puts forward a new high efficient and energy saving flow-rate characteristics measurement method of regulators, which is based on the pressure response when charging and discharging to an isothermal tank without any flow meters. The measurement principle, the system and the steps are introduced. And the tracking differentiator is used for the data processing of the pressure difference. Two typical kinds of regulators were experimentally investigated, and their flow-rate characteristics curves were obtained with the new and the conventional method, respectively. Comparatively, it's proved that this new method is feasible because it is not only able to meet the demand of the measurement precision, but also to save energy and improve efficiency. Compared to the conventional method, the new method takes only about 1/10 amount of time and consumes about only 1/30 amount of air. Hopefully it will be able to serve as an international standard of flow-rate characteristics measurement method of regulators. 展开更多
关键词 regulator flow-rate characteristics isothermal tank charging and discharging once pressure response tracking differentiator energy saving and high efficiency
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CeNdxOy:Eu^3+纳米管阵列可控制备及荧光特性
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作者 彭广政 张通 袁孝友 《安徽大学学报(自然科学版)》 CAS 北大核心 2020年第3期78-83,共6页
依据化学共沉积原理,在阳极氧化铝(AAO)纳米阵列孔模板中,用负压抽滤法可控合成了CeNdxOyEu^3+纳米管阵列结构材料.分别用SEM,TEM,XRD,SAED对其形貌、结构进行表征,并以EDS谱和荧光光谱仪(FL)测定该纳米管结构的元素组成和荧光性能.结... 依据化学共沉积原理,在阳极氧化铝(AAO)纳米阵列孔模板中,用负压抽滤法可控合成了CeNdxOyEu^3+纳米管阵列结构材料.分别用SEM,TEM,XRD,SAED对其形貌、结构进行表征,并以EDS谱和荧光光谱仪(FL)测定该纳米管结构的元素组成和荧光性能.结果表明:CeNdxOyEu^3+纳米管阵列材料为非晶结构,其纳米管阵列形貌与AAO模板纳米孔阵列结构一致.在室温下,以450 nm波长光激发CeNdxOyEu^3+纳米管阵列,分别在516 nm和777 nm出现荧光发射峰,其荧光强度与Eu^3+掺杂量有关,当Eu^3+掺杂质量比为6%时,其荧光强度最强. 展开更多
关键词 AAO模板 纳米管阵列 EU^3+掺杂 荧光性能
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