等离子体电解氧化,plasma electrolytic oxidation
1)plasma electrolytic oxidation等离子体电解氧化
1.Technology research of plasma electrolytic oxidation ceramic coatings;等离子体电解氧化陶瓷膜的工艺研究
2.Study of the heat effect of single steady-state microdischarge during plasma electrolytic oxidation;等离子体电解氧化过程中单个稳态微放电的热效应研究
3.Process and Coating Characterization in Plasma Electrolytic Oxidation of Magnesium Alloy in Two Group Electrolytes;两种电解液中镁合金等离子体电解氧化过程及膜层特性研究
英文短句/例句

1.Prepare and Formation Mechanism of the Zirconia Coating on Aluminium Alloy by Plasma Electrolytic Oxidation铝合金表面氧化锆等离子体电解氧化涂层的制备及形成机理研究
2.Process and Coating Characterization in Plasma Electrolytic Oxidation of Magnesium Alloy in Two Group Electrolytes;两种电解液中镁合金等离子体电解氧化过程及膜层特性研究
3.Electrochemical Impedance Spectroscopy during the Process of Plasma Electrolytic Oxidation等离子体电解氧化陶瓷膜生长过程的电化学阻抗谱研究
4.Characteristics of plasma electrolytic oxidation on cast aluminum-silicon alloy铸态Al-Si合金等离子体电解氧化过程放电特征研究
5.Optimization of Plasma Electrolytic Oxidation Process and Corrosion Resistance of Oxide Coatings镁合金的等离子体电解氧化工艺优化及膜的耐腐蚀性
6.Technical Optimization and Corrosion Resistance of Plasma Electrolytic Oxidation Films等离子体电解氧化膜的工艺优化及耐腐蚀性能评价
7.Research on Process and Coating Formation Mechanism in Plasma Electrolytic Oxidation of ZL101;ZL101等离子体电解氧化工艺及膜层形成机理的研究
8.The Research on the Environment-friendly Plasma Electrolytic Oxidation Process of Magnesium Alloy and Properties of the Coating;镁合金环保型等离子体电解氧化工艺及膜层性能研究
9.Impedance Characteristic of Ceramic Coating on Titianium Alloy during Plasma Electrolytic Oxidation Process钛合金等离子体电解氧化过程中陶瓷膜阻抗特性研究
10.The Investigation on the Combined Mechanism of Environment Friendly Plasma Electrolytic Oxide Film on Magnesium Alloy镁合金环保型等离子体电解氧化膜层结合机理的研究
11.Study on Color Coating on the Aluminum Alloys by Micro-plasma Oxidation;铝合金电解液中微等离子体氧化着色工艺研究
12.Determination of trace elements in titanium oxide by microwave digestion inductively coupled plasma mass spectrometry微波消解-电感耦合等离子体质谱法测定二氧化钛中痕量元素
13.PERFORMANCE EVALUATION AND PREPARATION OF MODIFIED PLASMA ELECTROLYTIC OXIDATION OF ZIRCONIA CERAMIC COATINGS改进的等离子体电解工艺制备氧化锆陶瓷薄膜及其性能
14.STUDY ON CORONA DISCHARGE FOR CARBON DIOXIDE CONVERSION USING COLD PLASMA REACTION电晕放电二氧化碳冷等离子体转化特性研究
15.gas plasma oxidizer气体等离子氧化装置
16.Preparation of Nano-structure Oxide Powder by DC Arc Plasma and Sintered by Spark Plasma Sintering Technique;氧化物纳米粉末的直流电弧等离子体制备及放电等离子(SPS)烧结
17.Treatment of NOx by Plasma Based on Dielectric Barrier Discharge;介质阻挡放电等离子体净化氮氧化物研究
18.Mechanism of Ionic Conduction of ZrO2 Base Solid Electrolyte氧化锆基固体电解质离子导电的基本原理
相关短句/例句

plasma electrolytic oxidation等离子电解氧化
1.Effects of NaF additive on oxide ceramic coatings formed on aluminum alloys by plasma electrolytic oxidation;NaF添加剂对铝合金等离子电解氧化陶瓷膜形成的影响
2.The plasma electrolytic oxidation (PEO) method for the decorative coating of aluminum alloy was investigated. 对铝表面制备装饰膜的等离子电解氧化方法进行了研究。
3)power supply/micro-plasma oxidation电源/微等离子体氧化
4)oxygen plasma oxidization氧等离子体氧化
5)plasma electrolysis等离子体电解
1.Meanwhile,the development of plasma electrolysis in surface engineering is prospected.等离子体电解过程可以产生多种物理化学效应,利用其效应发展了各种新兴的现代表面技术。
2.In this dissertation, plasma electrolysis carburising, nitriding andcarbonitriding technique in solution was applied to improve the wear resistanceand anti-corrosion properties of steel for Q235 steel at open environment andgiven electrolyte.本文以实现在开放的大气环境下、特定的电解液中应用液相等离子体电解渗透技术对钢件进行快速渗氮、渗碳、碳氮共渗处理来提高其工件的耐磨、耐蚀性能为目的。
6)Micro-plasma oxidation微等离子体氧化
1.Effects of micro-plasma oxidation ceramic coatings on the galvanic corrosion of TC4 alloy;微等离子体氧化陶瓷膜对钛合金接触腐蚀的影响
2.Effect of phosphate on structure and anticorrosive properties of ceramic film grown on Ti alloy by micro-plasma oxidation;磷酸盐对钛合金微等离子体氧化陶瓷膜结构和耐蚀性的影响
3.Study on the performance of TiO_2 film preparation by micro-plasma oxidation;微等离子体氧化法制备TiO_2薄膜的性能研究
延伸阅读

电解食盐水溶液离子膜电解槽所用的膜材料之一分子式:CAS号:性质:又称全氟羧酸-磺酸复合离子膜 Rf-COOH-Rf-SO3H 电解食盐水溶液离子膜电解槽所用的膜材料之一。使用时,将较薄的羧酸层面向阴极,较厚的磺酸层面向阳极,因而兼有羧酸膜和磺酸膜的优点。由于Rf-COOH层的存在,可阻挡氢氧离子返迁移到阳极室,确保了高的电流效率(96%),因Rf-SO3层的电阻低,能在高电流密度下运行,且阴极液可用盐酸中和,产品氯气中氧含量低,氢氧化钠浓度可达33%~35%。可在全氟磺酸膜上涂敷一层全氟羧酸的聚合物,或是将磺酸膜和羧酸膜进行层压,或是采用化学方法处理而制得的复合膜。现以采用化学方法处理者质量最佳。