A Study on Carbon Pick-up in Ultra Low Carbon Molten Steel in Mold during Continuous Casting;
连铸时超低碳钢结晶器内钢液增碳的研究
Analysis on carbon pick-up of liquid steel in CSP processing route in Magang;
马钢CSP流程钢水增碳现象的分析
Progress in research on the influence of MgOC, Al2O3-C and ZrO2-C refractory upon carbon pick-up of molten steel is summarized.
叙述了MgO-C、Al2O3-C和ZrO2-C材料对熔钢增碳方面的研究进展;描述了MgO-C、Al2O3-C材料的增碳机理;指出了今后含碳耐火材料对熔钢增碳影响方面的研究重点。
Carburization of Al-bearing MgO-SiC composite to molten steel;
含铝粉的MgO-SiC材料对钢水的增碳行为
Applying the mass and momentum transfer theory,the carburization mechanism of ultra low carbon steel melt caused by the carbon containing flux has been investigated Results show that,in spite of low carbon content of mold powder used for the ultra low carbon steel and low solubility of carbon in flux,the carbon of flux has a considerable influence on the carburization of the steel mel
应用质量和动量传输理论,对连铸结晶器内含碳熔渣所引起的超低碳钢钢水增碳的机理进行了研究。
By means of thermodynamics calculation and analysis for samples,the carburization was further researched.
钢中的碳对超低碳钢的性能有很大的影响,针对鞍钢 ASP 中薄板坯连铸生产超低碳钢异钢种连浇过程中铸坯增碳的问题,通过理论计算和取样分析,对异钢种连浇过程铸坯增碳进行了研究,并对工艺进行改进。
During recarburization of the semi-steel,the bath temperature be effectively controlled by plasma heating,carbon content of semi-steel could be increased from 1.
在150 kW 等离子体感应炉内,进行了加热半钢升温、增碳和脱硫的实验。
Major factors affecting liquid steel decarburization and recarburization in the process of RH vacuum treatment and continuous casting of extra low carbon steel were analytically studied based on datum obtained from the previous experiments and measures to be taken for promoting liquid steel decarburization and preventing it from recarburization recommended as well.
根据试验数据分析并研究了超低碳钢在RH真空处理和连铸过程中,影响钢水脱碳与增碳的主要工艺因素。
Results show that one of the reasons causing transverse crack is recarburization in wire rod surface.
采用扫描电镜、大型金相显微镜对拉拔横裂纹试样进行观察并分析,结果表明:造成横裂纹的原因之一是盘条表面增碳。
This article mainly researches on the causes and controlling of ultra-low carbon steel carburetion.
重点研究了鞍钢二炼钢厂超低碳钢增碳原因及控制措施。
Through production practice of the perrin process,we have a new recognization on carbonization mechanism for producing simplex carbon ferrochrome with the stacking process.
通过"热兑法"生产实践,对"堆底法"生产微碳铬铁的增碳机理有了新的认识,"热兑法"是在炉外加硅铬合金,其脱硅反应没有电极参与,增碳少,可炼出含C≤0。
Using carburizing agent and devulcanized agent,experiment of carburisation and desulphuration for semisteel which in smelting high titanium slag by electric cooker has been studied.
用增碳剂和脱硫剂对冶炼高钛渣副产半钢进行了增碳脱硫试验研究。
The Experiment of Recarburization in Spraying the Molten Steel with Coke-powder and Taking Oxygen as Carrier in Electric-arc Furnace
炼钢电弧炉氧气载体喷焦碳粉增碳试验
Practice on control of carburet upon completion of vacuum treatment of IF steel
IF钢真空处理结束后控制增碳的实践
carbon fiber reinforced composite
碳纤维增强复合材料
carbon fibre reinforced thermoplastic
碳纤维增强热塑性塑料
carbide fuelled breeder
碳化物燃料增殖反应堆
glass fiber reinfoyced polycarbonate
玻璃纤维增强聚碳酸酯
Densification methods for C/C composites and their characteristics
碳纤维增强碳基复合材料增密方法及其特点
Preparation on Carbon Nanotubes Grafted Carbon Fiber Milti-Reinforce;
碳纳米管接枝碳纤维复合增强体的制备
Study on Microstructure and Performance of Carbon Nanotube/Carbon Fiber Multiscale Reinforcement;
碳纳米管/碳纤维多尺度增强体组织性能研究
Research Progress of Carbon Nanotube and Continuous Carbon Fiber Reinforced Composites
碳纳米管及连续碳纤维增强复合材料研究进展
Carbon reinforced materials would be even better.
碳增强材料的性能则更优。
testing methods for compressive properties of carbon fiber reinforcedplastics
纤维增强碳塑料压缩特性的试验方法
carbon fibre reinforced polymer composite
碳纤维增强聚合物复合材料
Some Researches on Drilling Carbon Fiber Reinforced Composites;
碳纤维增强复合材料钻削的若干研究
Compatibilizing Effect of Nano-CaCO_3 on Immiscible PVC/LDPE Blends;
纳米碳酸钙增容PVC/LDPE共混体系的研究
Study on the α-tricalcium Phosphate Bone Cement Reinforced by Carbon Fibers;
碳纤维增强α-磷酸三钙骨水泥的研究
The Research of Carbon Nanotubes-reinforced AM60 Magnesium Matrix Composites;
碳纳米管增强AM60镁基复合材料的研究
Fabrication of TiC-TiB_2-Fe_xAl_y Locally Reinforced Carbon Steel Composite;
TiC-TiB_2-Fe_xAl_y局部增强碳钢复合材料的制备
CopyRight © 2020-2024 优校网[www.youxiaow.com]版权所有 All Rights Reserved. ICP备案号:浙ICP备2024058711号