The FGH95 powder was produced with the plasma rotating electrode process (PREP).
采用等离子旋转电极工艺(PREP)制取镍基高温合金FGH95粉末。
A plasma rotating electrode process (PREP) equipment, process parameters and powder forming mechanism were introduced.
介绍了等离子旋转电极工艺(PREP)制粉设备、主要工艺参数和粉末形成机理。
The high nitrogen steels (HNS) were produced by plasma rotating electrode process (PREP), and the properties of HNS specimens were examined.
为了寻求高效、经济的高氮钢生产工艺,用等离子旋转电极工艺(PREP)生产高氮钢并测试了所生产的几种典型高氮钢的性能。
Rotating disk electrode system is used to study the coating roughness in high-speed zinc plating.
将旋转圆盘电极体系应用于高速镀锌层粗糙度的研究。
The technical verification has demonstrated that model XYD-3 rotating ring-disk electrode is an ideal instrument which can be applied in electrochemical research.
通过技术鉴定证明,XYD - 3型旋转圆环-圆盘电极可以作为理想的测试仪器在电化学研究中应用。
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。
Cathodic polarization curve and cyclic voltammetric curve of sulfate copper plating solution are determined with 1286 electrochemical interface and rotating disc electrode.
采用1286电化学接口及旋转圆盘电极测定了硫酸铜镀液阴极极化曲线和循环伏安曲线。
The effect of the rotating grounding electrode on dielectric barrier discharge is determined.
首次确定了接地电极转动对介质阻挡放电的影响。
A new calculation method was used in order to avoid increasing calculation error in the data processing of the rotating disc electrode.
本文在旋转圆盘电极数据处理中,为避免增大计算误差,采用了新的计算方法。
A rotating disc electrode system was designed to recover Cd and the current efficiency was over 90%.
设计出新型旋转圆盘电极体系回收金属镉,电流效率达到90%以上。
The first electrode area of the fixed part is electrically connected with one of the second electrode areas through the first contact electrode and the second contact electrode of the rotating part.
固定件的第一电极区通过旋转件的第一接触电极及第二接触电极与其中一个第二电极区电性连接。
The first electrode area is distributed in the area covered by the first contact electrode which rotates on the fixed part around the rotating center of the rotating part.
第一电极区分布在第一接触电极绕旋转件的旋转中心在固定件上旋转所覆盖的区域。
The second electrode areas are distributed in the area covered by the second contact electrode which rotates on the fixed part around the rotating center of the rotating part.
第二电极区分布在第二接触电极绕旋转件的旋转中心在固定件上旋转所覆盖的区域。
Graphite electrode soaked with paraffin was chosen as the basal electrode, on which the mechanism of oxygen reduction in alkaline solution was examined using a rotating ring-disk technique.
选择浸蜡石墨作基体电极,用旋转环-盘技术,考察了碱性溶液中基体电极上的氧还原机理。
A new process of the bio-electrode rotating contactor (BERC) for denitrification was developed, and study was made for autotrophic denitrification by using hydrogen as electron donor.
采用旋转电极型生物反应器(B ERC)脱氮,对以氢气作为电子供体的自养反硝化进行了研究。
An electrodeposition process of copper under a laser beam was studied by using a rotating disk electrode.
用旋转圆盘电极法研究了激光照射下铜的电沉积过程。
Kinetic experiments of Br - oxidation on a rotating disk platinum electrode in acid solution were carried out.
在酸性溶液中,使用旋转圆盘电极,研究了溴离子电极氧化反应的动力学特性。
The rotating part comprises a first contact electrode and a second contact electrode.
旋转件包括一个第一接触电极及一个第二接触电极。
The electrode is connected with a slip ring through a conducting wire. The slip ring and a rotating shaft rotate synchronously and the slip ring is connected with a data acquisition system.
电极通过导线连接滑环,滑环与转轴同步旋转,滑环连接数据采集系统。
This PaPer describes the fundamentals of Rotating Ring-Disk Electrode and methods of studying the dynamics of oxygen reduction.
本文从应用的角度叙述了旋转环盘电极的基本原理以及在研究氧的还原反应动力学规律中所采用的方法。
In this paper the electrochemical reduction mechanism of selenious acid(H 2SeO 3) in phosphoric acid solution was studied by rotating ring-disc electrode and cyclic voltammetry techniques.
利用旋转环-盘电极方法开结合循环伏安技术研究了磷酸溶液中亚硒酸的电化学还原机理。
The electrode is connected with a slip ring through a conducting wire. The slip ring and a rotating shaft rotate synchronously. The slip ring is connected with a data acquisition system.
电极通过导线连接滑环,滑环与转轴同步旋转,滑环连接数据采集系统。
The electrode is connected with a slip ring through a conducting wire. The slip ring and a rotating shaft rotate synchronously. The slip ring is connected with a data acquisition system.
电极通过导线连接滑环,滑环与转轴同步旋转,滑环连接数据采集系统。
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