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1.
Preparation of AlN Powder by Microwave Carbon Thermal Reduction
微波碳热还原法制备氮化铝粉末的工艺研究
2.
Synthesis and the Nature of Hexagonal Nano-Aluminum Nitride Powder at Low-temperature;
六方结构纳米氮化铝粉末的低温合成及物相表征
3.
Powder injection molding of high thermal conductivity aluminum nitride ceramics
高导热氮化铝陶瓷的粉末注射成形技术
4.
Properties of APS alumina coating with different alumina particle distributions as feedstock
不同氧化铝粉末等离子喷涂氧化铝涂层的性能
5.
SYNTHESIS OF VANADIUM NITRIDE (VN) NANOPOWDERS BY CARBURIZING AND NITRIDING OF THE PRECURSOR
前驱体碳化/氮化法制备纳米氮化钒粉末
6.
methods for chemical analysis of fine silicon nitride powers for fine ceramics
细陶瓷用氮化硅粉末化学分析法
7.
Aluminium oxide powders--Determination of apparent density
GB/T6522-1986氧化铝粉末松装密度的测定
8.
Aluminium oxide powders--Measurement of the angle of repose
GB/T6521-1986氧化铝粉末安息角的测定
9.
Preraration of Alumina Ultrafine Powder by Utrasonic Precipitation Method;
超声波—沉淀法制备氧化铝超细粉末
10.
Preparation and properties of doped-ZAO powders
掺铝氧化锌粉末的制备及其性能研究
11.
Preparation of Spinel-Corundum-Sialon Composite Materials from Aluminum Dross and Fly Ash by Aluminothermic Reduction-Nitradation
利用铝灰和粉煤灰铝热还原氮化制备镁铝尖晶石-刚玉-Sialon复相材料
12.
Study on Integrated Optimal Control System for Aluminum Powder Nitrogen Atomizing & Classifying Process;
铝粉氮气雾化分级过程集成优化控制系统研究
13.
Aluminium oxide powders--Determination of effective density--pycnometer method
GB/T6523-1986氧化铝粉末有效密度的测定比重瓶法
14.
The Characteristics of Up-Conversion Emissions of Rare Earth Doped Al_2O_3 Powders;
稀土掺杂氧化铝粉末的上转换发光特性研究
15.
Technology Conditions Optimization of the Powder Coating on an Aluminium Alloy Profile by Static Spraying
铝型材粉末静电喷涂生产工艺条件优化
16.
The Design of the Aluminium Powder Nitrogen Atomization Classification Monitoring System Based on iFIX;
基于iFIX的铝粉氮气雾化分级过程监控系统设计
17.
Supervision System Design for Aluminum Powder Nitrogen Atomization and Classification Process Based on WinCC
基于WinCC的铝粉氮气雾化分级过程监控系统设计
18.
The atomizing nitrogen pressure is the key factor of influencing the super-tiny spherical aluminum powder rate in aluminum powder atomization process.
铝粉雾化生产过程中,雾化氮气压力是保障雾化铝粉的成型率和细粉率的关键参数。