1.
Improvement of Burden Structure and Operation Technology in Jinan Steel's 1750m~3 BF
济钢1750m~3高炉炉料结构及操作技术改进
2.
The Study on Blast Furnace Burden Structure with Different Basicity Sinter Ore
酸性和高碱度烧结矿合理搭配的高炉炉料结构研究
3.
Optimization of Burden Structure with High-alumina Sinter plus V-Ti Magnetite
高铝烧结矿配加钒钛磁铁矿炉料结构优化研究
4.
Point at the properties of Taigamg BF burden composition and the raw material of sintering, the necessity and outlook of using MPS technique were analyzed.
针对太钢高炉的炉料结构和烧结原料特点,分析了在该厂推广应用小球团烧结技术的必要性和前景。
5.
Heat Transfer Analysis of Several Industrial Furnace Lining Refractory Structures
工业窑炉中几种炉衬耐火材料结构的传热分析
6.
Furnace lining structure of BF have incroporated refractory, masonry and furnace lining cooling and so on.
高炉炉衬结构包括本体内衬耐火材料、筑方式、衬冷却方式。
7.
Study of Optimization Design and CAD System for the Lining Design of the P-S Converter;
铜转炉炉衬结构优化与耐火材料砖型设计CAD方法研究
8.
Research on the Optimization of Raw Material Mixture of BF Based on the Cost of Production;
面向产品成本的高炉物料结构优化研究
9.
The constracting method, applicability, selecting material and construction of oil heating furnace for aluminium tube stock are introduced.
介绍了铝管坯燃油加热炉的结构耐火,材料选择,使用性能,施工方法。
10.
The Practice of Transforming the Main Trough of Blast Furnaces with Single Taphole into Iron Store Structure with New Anti-explosive Castable Refractory
新型防爆铁沟浇注料与单铁口高炉出铁主沟储铁式结构改造实践
11.
self - supporting structure
自立式(高炉)钢结构
12.
Improvement of the Cleaning Zone Roof Structure of Nickel Flash Smelting Furnace Jinchuan
金川镍闪速炉贫化区炉顶结构的改进
13.
Research on Aerodynamic Field and Structure in Industry Boiler Furnace;
工业锅炉炉内空气动力场及结构研究
14.
Study on the Structure Optimum Design of an Incineration Boiler Furnace;
垃圾焚烧锅炉炉膛结构优化设计研究
15.
The Design and Analysis for Outside Steel Sheel of External Combustion Hot Stove
外燃式热风炉炉壳钢结构设计与分析
16.
Sliding Mode Controller of Micro-differential Pressure of Converter Mouth
转炉炉口微差压滑模变结构控制技术
17.
MECHANISM AND CONTROL OF CHARGE COHERE FOR DRI USE COAL REDUCING AGENT AND SHAFT FURNACE
煤基竖炉直接还原铁炉料粘结机理及控制
18.
It is pointed that the conductive refractory for conductive bottom electrode should be developed in China, with consideration of the structure and features of this bottom electrode.
结合导电炉底风冷底电极的结构、点,指出该种底电极用的导电耐火材料在国内开发的意义。