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空气中三介质层脉冲DBD对聚四氟乙烯的亲水性改善 被引量:2
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作者 李喜 李杰 +3 位作者 章林文 谢宇彤 董攀 龙继东 《高电压技术》 EI CAS CSCD 北大核心 2015年第12期4048-4054,共7页
为了研究多层脉冲介质阻挡放电(dielectric barrier discharge,DBD)对聚四氟乙烯薄膜表面亲水性改善的影响,采用3层介质层阻挡的结构,在大气压空气中使用亚微秒级重复频率单极性脉冲电源驱动产生放电低温等离子体。在一定的处理时间条件... 为了研究多层脉冲介质阻挡放电(dielectric barrier discharge,DBD)对聚四氟乙烯薄膜表面亲水性改善的影响,采用3层介质层阻挡的结构,在大气压空气中使用亚微秒级重复频率单极性脉冲电源驱动产生放电低温等离子体。在一定的处理时间条件下,通过改变薄膜所处介质层方式、施加电压幅值、电源频率及气隙间距进行聚四氟乙烯薄膜表面处理实验,并测量处理前后薄膜的表面水接触角。结果显示当3层介质层上均贴有薄膜样品时水接触角变化最大,处理效果较好;随电压幅值及频率的增加薄膜表面水接触角减小并趋于饱和,气隙间距1 mm时薄膜表面水接触角从118°变化最小可到72°左右;而对处理后薄膜进行酒精清洗,发现频率过大或过小时、气隙间距过大或过小时薄膜表面处理效果不明显,在电压40 k V、频率500 Hz、气隙间距1 mm时的薄膜表面亲水性改善效果最佳,清洗后其表面水接触角最小可达85°左右,并可进行多层薄膜同时处理。与双层介质层放电等离子体表面效果相比,该放电结构具有很好的PTFE薄膜亲水性改善效果,能够增加薄膜处理面积,为实际应用提供了可靠的数据参考及可行路线。 展开更多
关键词 多介质层 介质阻挡放电 亚微秒脉冲 常压空气 聚四氟乙烯 低温等离子体 表面处理
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Simulation of thermal field induced by concave spherical transducer in multi-layer media 被引量:5
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作者 丁亚军 钱盛友 廖志远 《Journal of Central South University》 SCIE EI CAS 2013年第11期3166-3170,共5页
High intensity focused ultrasound(HIFU)therapy is an effective method in clinical treatment of tumors,in order to explore the bio-heat conduction mechanism of in multi-layer media by concave spherical transducer,tempe... High intensity focused ultrasound(HIFU)therapy is an effective method in clinical treatment of tumors,in order to explore the bio-heat conduction mechanism of in multi-layer media by concave spherical transducer,temperature field induced by this kind of transducer in multi-layer media will be simulated through solving Pennes equation with finite difference method,and the influence of initial sound pressure,absorption coefficient,and thickness of different layers of biological tissue as well as thermal conductivity parameter on sound focus and temperature distribution will be analyzed,respectively.The results show that the temperature in focus area increases faster while the initial sound pressure and thermal conductivity increase.The absorption coefficient is smaller,the ultrasound intensity in the focus area is bigger,and the size of the focus area is increasing.When the thicknesses of different layers of tissue change,the focus position changes slightly,but the sound intensity of the focus area will change obviously.The temperature in focus area will rise quickly before reaching a threshold,and then the temperature will keep in the threshold range. 展开更多
关键词 multi-layer media concave spherical transducer high intensity focused ultrasound thermal field
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Effect of absorption boundary layer on nonlinear flow in low permeability porous media 被引量:6
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作者 王学武 杨正明 +1 位作者 齐亚东 黄延章 《Journal of Central South University》 SCIE EI CAS 2011年第4期1299-1303,共5页
Taking low permeability cores of Daqing oilfield for example,the flow characteristics at low velocity were studied with the self-designed micro-flux measuring instrument.Considering the throat distribution and capilla... Taking low permeability cores of Daqing oilfield for example,the flow characteristics at low velocity were studied with the self-designed micro-flux measuring instrument.Considering the throat distribution and capillary model,the thickness of fluid boundary layer under different pressure gradients was calculated,and the mechanism and influencing factors of nonlinear percolation were discussed.The results show that the percolation curve of ultra-low rocks is nonlinear,and apparent permeability is not a constant which increases with pressure gradient.The absorption boundary layer decreases with the increase of pressure gradient,and changes significantly especially in low pressure gradient,which is the essence of nonlinear percolation.The absorption boundary layer is also found to be impacted by the surface property of rocks. 展开更多
关键词 low permeability reservoirs PERCOLATION absorption boundary layer capillary model
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