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1)  solid bottom
实炉底
1.
The reason that caused slag accumulating too quickly on solid bottom of the furnace heat-balance section is analysed.
分析了造成加热炉均热段实炉底积渣上涨过快原因,并从燃料燃烧、砌筑方法、现场操作几方面着手,采取了针对性的措施,取得了良好效果。
2)  Furnace bottom
炉底
1.
The reasons of CaSi furnace bottom rising are analysed,the operation procedure to prolong smelting CaSi period in 1MVA electric furnace and the remarkable results achieved are expounded.
对硅钙电炉炉底上涨原因进行了分析,并阐述了延长 1MVA硅钙电炉生产周期的工艺操作方法及所取得的明显效果。
2.
On the basis of analysis to the operation of first generation of comprehensive furnace bottom made with loam brick and carbon brick in No.
对宣钢8 号高炉第一代粘土砖与炭砖综合炉底使用情况进行分析后提出了大修中采用半石墨化自焙炭砖—陶瓷杯复合炉缸炉底结构的必要性及其具体改进方案。
3.
This isothermal line can be regarded as the final decision line to termine the corrosion inside the blast furnace bottom.
用有限元方法计算了宝钢三号高炉炉缸、炉底的二维稳态传热过程,得到了该高炉的1 150℃等温线,该等温线可以看作高炉炉底的侵蚀终止判定线。
3)  bottom [英]['bɔtəm]  [美]['bɑtəm]
炉底
1.
Optimization of Bottom Ramming Material of MgO-CaO-Fe_2O_3 System for Electric Arc Furnace;
MgO-CaO-Fe_2O_3系电弧炉底捣打料的优化
2.
Experiment on Properties of Conductive Ramming Mixes for DC-EAF Bottom;
直流电弧炉炉底导电捣打料的性能试验
3.
Laboratory Steelmaking Test of Conductive Brick for DC Arc Furnace Bottom;
直流电弧炉炉底导电砖的炼钢试验
4)  hearth bottom
炉底
1.
The hearth and hearth bottom life of blast furnace is one of the key factors affecting blast furnace life.
高炉炉缸和炉底的寿命是影响高炉长寿的关键因素之一。
5)  hearth [英][hɑ:θ]  [美][hɑrθ]
炉底
6)  hearth bottom
炉缸炉底
1.
Analysis of “heat transfer method” hearth and “heat isolation method” ceramic cup synthetic hearth bottom;
“传热法”炉缸和“隔热法”陶瓷杯复合炉缸炉底分析
2.
According to the theory of heat transfer,based on the calculated temperature distribution in hearth bottom,it is clear that all the brick layers in hearth bottom can not be considered as a whole one for different structures result in different temperature distribution though total heat resistance is the same.
从传热学的角度出发,通过对炉缸炉底温度场的分析计算,论证了炉底全部砖层的热阻并不只是一个统一的整体,总热阻相同而结构不同的炉底,温度场分布也不同,阐明了全炭砖炉底和陶瓷杯复合炉缸炉底存在的弊端及其根本原因,进而根据铁水和冷却水的不同影响范围,提出“避热”和“扬冷”的概念。
3.
The mathematical model of heat transfer at hearth bottom was established.
建立了炉缸炉底传热学模型,应用该模型的计算结果表明:在生产初期,合适的陶瓷垫参数能够提高炉底的抗侵蚀能力,减缓炉底的侵蚀速度,延长高炉寿命。
补充资料:实底
1.底细,真实的情况。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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