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1.
The Study and Application of Ceramic Burner for Hot Blast Stove;
高炉热风炉陶瓷燃烧器的研究与应用
2.
The Fabrication of Ti_3AlC_2 Ceramic Material by Self-propagating High Temperature Reaction Synthesis;
Ti_3AlC_2陶瓷材料的燃烧合成
3.
Simulations of Natural Gas Premixed Combustion in Ported Ceramic Plaque Radiator;
天燃气在多孔陶瓷板辐射器中预混燃烧的数值模拟
4.
U37NG Natural gas furnace; combustor ;SIT Valve ; ceramic simulation logs; Ceramic simulation ashes; brick plate; large straight front high temperature resistance glass window; Flame regulator.
U37NG天然气炉体;燃烧室;SIT阀体;陶瓷仿真圆木;陶瓷仿真灰烬;火焰调节器。
5.
Investigation of Contaminants Emission and Heat Transfer Characteristic of Catalytic Combustion in Ceramic Prous Monolith of Natural GAS Burner;
天然气灶多孔陶瓷板催化燃烧器的污染物排放及其传热特性研究
6.
Durability of Ceramic Matrix Composites in Combustion Environments
燃烧环境中陶瓷基复合材料的耐用性
7.
Research on the Combustion Synthesis of TiB_2/Al_2O_3 Composite Ceramic;
燃烧合成法制备TiB_2/Al_2O_3复相陶瓷的研究
8.
Application of Dynamic Burning Bunnel kiln in the Ceramic Production;
动态燃烧隧道窑在陶瓷生产中的应用
9.
Fabrication of Densified YAG Ceramics by Combustion Synthesis under Ultra-High Gravity
超重力辅助燃烧合成制备致密YAG陶瓷
10.
Synthesis of YAG nano-powders used for transparent ceramics by low temperature combustion
低温燃烧法制备YAG透明陶瓷纳米粉体
11.
COMBUSTION SYNTHESIS OF NiAl/TiC
NiAl/TiC金属陶瓷的燃烧合成
12.
Preparation of polycrystalline Nd∶GGG nanopowders via low temperature combustion method
低温燃烧法合成Nd∶GGG纳米陶瓷粉体
13.
Preparation of Polycrystalline Nd:YAG Nanopowders via Gel Combustion Method
凝胶燃烧法合成Nd:YAG纳米陶瓷粉体
14.
The Experiment Research of Heating Ceramic with High Temperature Air Combustion Technology;
应用于陶瓷烧成的高温空气燃烧技术实验研究
15.
Study on Improving Combustion Efficiency of Oil by Using Room-temperature Far-infrared Ceramic Materials
常温远红外陶瓷材料提高燃油燃烧效果的研究
16.
Research on Desulfurization in CWS Combustion in a Ceramic Rolling Kiln
水煤浆在陶瓷辊道窑上燃烧的脱硫过程研究
17.
Combustion Synthesis and Properties of Al(Cr)_2O_3-Cr(Mo) Cermets;
Al(Cr)_2O_3-Cr(Mo)金属陶瓷的燃烧合成与性能
18.
Combustion and In-Situ Reaction Synthesis of Dual-phase Ceramic Reinforced Copper-based Composites;
燃烧反应原位合成双相陶瓷增强铜基复合材料