电炉

diàn lú
  • electric furnace;electric stove;hot plate;electric fire
电炉电炉
电炉 [diàn lú]
  • [electric fire;electric stove] 供房间内用的用电能作热源的炉子

  • [electric furnace] 一种用电流加热至很高温度的炉子,工业上用于熔化合金和难熔物料

电炉[diàn lú]
  1. 基于动态BP网络的实验电炉温度控制系统

    DBP Neural Network Control System for Experimental Electric Stove

  2. 在工业电炉的控制过程中,由于被控参数具有时变、非线性、不确定等因素,常规PID控制算法难以满足控制要求。

    In industry electric stove control process , because controlled the parameter has time changes , the nonlinearity , not firmly and other factors , the conventional PID control algorithm is satisfied with the control request with difficulty .

  3. DC电炉底电极用耐火材料特性的研究

    Investigation on characteristics of the refractory for DC - EAF

  4. 电炉设计CAD局域网络系统

    CAD Local Area Netware System for Electric Furnace Design

  5. 光电光谱分析电炉钢中微量Ca

    Analysis of Trace Calcium in EAF Steel by Photoelectric Spectrometer

  6. 从电炉炼钢烟尘制取高纯Fe2O3粉的研究

    Production of high purity fe_2o_3 powder from electric arc furnace dust

  7. 实践结果表明,普通锰硅合金电炉Mn回收率达85%。

    In practice , common manganese silicon alloy recovery ratio can reach 85 % .

  8. 电炉法CS2废气的治理

    Treatment of Waste Gas Discharged by CS_2 plant Using Eletric Furnace Process

  9. DCS在多台电炉控制中的开发和应用

    The Development and Application of the DCS Technology to Many Sets Furnaces Control

  10. 电炉CSP流程微Ti低碳高强汽车用钢板的开发研究

    Development of Ti-microalloyed Low Carbon Steel for Automobile Frames by EAF-CSP Process

  11. PSA制氧设备在电炉炼钢的应用

    Application of PSA Oxygen Making Machine in Electric Furnace Steelmaking

  12. IPC在铁合金电炉配料系统中的应用

    The application of IPC to burden system in ferroalloy electric furnace

  13. 电炉CSP流程低碳高强汽车大梁钢的开发

    The Development of HSLC Plate for Automobile Frames by EAF-CSP Process

  14. 电炉CSP流程综合成材率分析

    An analysis of the finished product rate of CSP process with arc furnace

  15. SH3-3000/10电炉变压器原理分析

    Principle Analysis of Transformer of SH 3 & 3000 / 10 Electric Furnace

  16. 电炉炼钢工艺中对Ca的成分有一定的要求,特别是微量Ca元素的快速炉前分析。

    There is requirement to know the amounts of calcium in EAF steel-making process and fast analyzing trace calcium on time in front of furnace .

  17. 电炉渣在不添加任何其它试剂的情况下,渣中Al2O3含量不宜高于9%;

    More than 9 % Al 2O 3 in the slag is not suitable for electro-furnace slag under without additions ;

  18. 电炉CSP工艺开发无取向硅钢热带钢的技术可行性探讨

    The Feasibility Discussion on the process of EAF - CSP exploiting non - orientation Si steel hot rolled strip

  19. 交流和直流炼钢电炉UHP电极冶炼消耗比较与技术分析

    Comparison and technology analysis of UHP electrode performance in AC and DC electric arc furnaces

  20. 电炉冶炼含Ni-Al废触媒制备Ni-B合金

    Refining Ni-B Alloy by Induction Furnace from Waste Ni-Al Catalyst

  21. 石钢30t电炉烟气治理改造实践

    Practice of smoke gas treatment for 30 ton electric furnace

  22. 150t竖式电炉工艺优化实践

    Practice on Process Optimization of 150t Shaft EAF

  23. 20tEBT电炉喷粉造泡沫渣试验

    Test of Making Foamed Slag With Injecting Powder in 20t EBT Electric Arc Furnace

  24. 利用模块化思想,以区段赋时弧有色Petri网为工具,说明了如何建立一个电炉炼钢连铸过程的实时调度模型。

    Based on modular idea , how to establish the scheduling model of an electric arc furnace steelmaking continuous casting process by coloured Petri nets with interval timed arcs is specified .

  25. Welten60R钢的电炉冶炼模铸工艺技术分析

    Analysis of Arc Furnace Melting-Mould Casting Process Technology for Wel-ten 60R Steel

  26. 50t电炉热装铁水工艺研究与应用

    Research and application of hot metal charging into 50t EAF

  27. 对某高SiO2低CaO铜钴氧化矿电炉还原熔炼的渣型进行了研究。

    The characters of slag produced by reductive smelting in arc furnace for treating copper and cobalt ore with high SiO 2 and low CaO content were studied .

  28. 通过微型电炉实验、差热分析(DSC)和热失重分析(TG),研究了烷基磷酸酯胺盐的酯化率对超薄型钢结构防火涂料的影响。

    The effect of the esterification degree of amine salt of alkyl phosphate on the intumescent coating was studied through the small scale fire tests , TG and DSC method .

  29. 70t电炉热装铁水的实践与进步

    Practicing and Progressing of Hot Charging Melted Iron in 70t Electric Furnace

  30. 采用电炉冶炼含镍铝催化剂废料制备NiB合金,合金中的硼来源于硼酐。

    Ni B alloy was prepared by electrical refining in induction furnace from waste Ni Al catalyst and boron oxide .