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- It indicates that dielectric barrier discharge air plasma has degradation effect on polymers. 介质阻挡放电空气等离子体能对有机聚合物产生降解作用。
- Research on the dielectric barrier discharge nitrogen nitriding at atmospheric pressure have consumedly progressed. 利用介质阻挡放电进行常压氮气渗氮研究取得突破性进展。
- The article explores the feasibility of grafting of acrylic acid onto linen by initiating dielectric barrier discharge plasma at atmospheric pressure. 结果表明,大气压介质阻挡放电可以引发亚麻接枝丙烯酸,并且很好地改善了染色性能。
- The effects of corona, dielectric barrier discharge and glow discharge on the heat transfer coefficients with a heated copperplate are compared. 文中对比研究了电晕、介质阻挡以及辉光放电对空气-金属之间对流传热系数的影响作用。
- Using dielectric barrier discharge (DBD) effect,atmospheric pressure non equilibrium plasma nitriding is carried on at self made equipment. 利用介质阻挡放电原理,在自行研制的设备上进行了常压非平衡等离子体渗氮。
- Decomposition of dimethyl sulfide(DMS)by non-thermal plasma induced by dielectric barrier discharge(DBD)in a wire-tube reactor was investigated. 在线-筒式反应器中,应用介质阻挡放电低温等离子体对甲硫醚的降解进行实验研究。
- Chang, M. B., Kushner, M. J., and Rood, M. J., “Gas-phase Removal of NO from Gas Streams via Dielectric Barrier Discharge,”Environ. Sci. Technol., Vol. 26, pp. 777-781.1992. 张木彬,“以介电质放电技术去除中小型锅炉氮氧化物之初步研究”,燃烧季刊,第37期.
- Nonequilibrium Plasma nitriding at atmosphere pressure was carried out through dielectric barrier discharge (DBD).Effects of technology parameters were discussed. 摘要利用介质阻挡放电,进行了常压非平衡等离子体渗氮,着重讨论了有关工艺参数的影响情况。
- An approach to treat nitrogen oxide (NO) in simulated engine exhaust with the non-equilibrium plasma generated by the dielectric barrier discharge is investigated experimentally. 利用介质阻挡放电在常压下产生的非平衡等离子体,对模拟尾气中的NO进行了净化试验研究。
- Using plasma generated by dielectric barrier discharge (DBD) to initiate the grafting between flax fiber and acrylic acid can considerably improve the dyeing behavior. 文章研究了不同气氛下大气压介质阻挡放电引发亚麻织物接枝丙烯酸的效果与差异。
- The method of experimentation is used to research the ionization efficiency in dielectric barrier discharge ion source in condition of gas s different flux. 采用实验方法研究了介质阻挡放电离子源对乙醇样品标准气在不同的流量条件下离子源电离效率的问题。
- The use of dielectric barrier discharge(DBD) for surface modification of insulating materials is the main research topics in the field of plasma and material modification. 介质阻挡放电(DBD)用于绝缘材料表面改性是当前等离子体和材料改性领域的热点研究问题之一。
- In order to study the effect of atmospheric pressure air plasma on insulating material surface modification, using dielectric barrier discharge to modify polystyrene surface. 为了研究大气压空气等离子体对绝缘材料表面改性的影响,采用介质阻挡放电对聚苯乙烯进行了表面改性。
- In this paper,we studied the anti-impact property and mechanism of concrete composites reinforced by PP fiber,including dielectric barrier discharge(DBD) treated and untreated. 研究了介质阻挡放电改性聚丙烯纤维与未改性聚丙烯纤维的掺量、长度以及改性纤维的介质阻挡放电处理条件对纤维增强混凝土抗冲击性能的影响和机理。
- The experimental results indicate that the dielectric barrier discharge will show different forms and discharge current waveforms by fixing or rotating the grounding electrode. 实验的结果表明:接地电极静止或转动介质阻挡放电将呈现不同的放电形式和电流波形。
- Non-thermal plasma produced by a dielectric barrier discharge (DBD) of benzene at low pressure was investigated by tunable synchrotron radiation single-photon ionization and molecular-beam mass spectrometry techniques. 摘要利用同步辐射真空紫外单光子电离技术和分子束取样,研究了低压下苯的介质阻挡放电产生的低温等离子体。
- In this paper high concentration ozone gas is generated with dielectric barrier discharge technology and then dissolved into water with venture tube mixer and gas-liquid dissolving equipment, thus high concentration ozone water is generated. 摘要采用介质阻挡强电离放电技术制取高浓度臭氧,使用射流器和气液溶液分离器溶解臭氧制取高浓度臭氧水。
- The kinetic models were founded on the base of the different characteristics of RFD (radio frequency discharge) and DBD (dielectric barrier discharge) plasma, and the rate constants were gained to simulate the set of kinetic equations. 根据射频放电和介质阻挡放电特点,分别对其中甲烷的裂解过程建立动力学模型,得到裂解反应速率常数,并对描述反应进程的动力学方程组进行了数值模拟。
- Dimethyl ether (DME) conversion with dielectric barrier discharge (DBD) plasma and rotary corona discharge (RCD) plasma was investigated.The obvious differences in reaction results were found. 摘要采用介质阻挡放电(DBD)和旋转电晕放电(RCD)技术研究了二甲醚的转化,发现两者差异很大。