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转复 conversion英语短句 例句大全

时间:2024-04-07 10:55:54

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转复 conversion英语短句 例句大全

转复,conversion

1)conversion[英][k?n"v?:?n][美][k?n"v???n]转复

1.Clinical observation of the effects of amiodarone and propafenone on theconversion of atrial fibrillation and maintenance of sinus rhythm;胺碘酮与普罗帕酮对于心房颤动转复与维持窦性心律的临床观察

2)combined blowing converter复吹转炉

1.Water-Oil Model for Volumetric Mass Transfer Coefficient between Slag and Metal in Combined Blowing Converter;复吹转炉钢-渣间容量传质系数的水-油模型

2.Process of smelting low phosphorus steel incombined blowing converter复吹转炉冶炼低磷钢工艺

3.Based on the mechanism analysis of steelmaking process incombined blowing converter,a kinetic model to describe the process was developed with the aid of thermodynamics,macrokinetics,transfer theory and reaction engineering.在分析复吹转炉冶炼过程机理的基础上,应用冶金热力学、动力学、传输原理和反应工程学理论,建立了描述冶炼过程的动力学模型,确定了模型的有关参数。

英文短句/例句

1.Research and Application on Bottom Blowing System of Top-bottom Combined Blown Converter复吹转炉底吹供气制度的研究与应用

2.Exploitation and Practice of Annular Gap Bottom Blowing Elements in Combined-blowing Converter复吹转炉环缝式底吹供气元件的开发及应用

3.Practice of 100 Ton Top-bottom Combined Blowing Converters Process at An-Steel鞍钢100t复吹转炉生产工艺实践

4.Control of Phosphorus Content at Smelting High-medium Carbon Steel Process in LBE复吹转炉冶炼中高碳钢脱磷过程控制

5.RESEARCH ON THE DEPHOSPHORIZATION OF REFINING PIPELINE STEEL X65 IN COMBINED BLOWING CONVERTER复吹转炉冶炼X65管线钢脱磷工艺研究

6.Research and Application of Fettling with Slag in 30 t Top and Bottom Combined Blown Converter30t顶底复吹转炉黏渣护炉技术的研究与应用

7.Practice on lining protection of the Top and Bottom Combined Blown Converter in the No.2 Steelmaking Plant of Angang鞍钢二炼钢顶底复吹转炉护炉工艺实践

8.MULTIPLE JET CHARACTERISTICS OF THE POST COMBUSTION DUAL OXYGEN FLOW LANCE FOR THE 15t CONVERTER15吨复吹转炉双流道氧枪射流特性实测研究

9.DEVELOPMENT OF SINGLE CIRCUIT AND DUAL-FLOW OXYGEN LANCE NOZZLE FOR 150 t BOFAT ANSHAN IRON AND STEEL CO.鞍钢150吨复吹转炉单流道双流氧枪喷头的研制

10.PRODUCTION PRACTICE ON OXYGEN LANCE POSITION AUTO CONTROL SYSTEM OF THE COMBINED BLOWN CONVERTER复吹转炉氧枪枪位自控系统的生产实践

11.Mathematical simulation of steelmaking process of BOF with combined blowing: kinetic model复吹转炉炼钢过程数学模拟:动力学模型

12.The Study on Long Life Mechanism and Control Technology of Top and Bottom Combined Blown Converter in CISC重钢复吹转炉长寿化机理及控制技术研究

13.Physical and Mathematical Simulation of Gas-Liquid Two Phase Flow in a Duplex Combined Blown Converter双联复吹转炉内气液两相流动的数理模拟研究

14.Research on Lance Nozzle Optimization of 120t Combined Blown Converter at Tonghua Steel Plant通钢120t复吹转炉氧枪喷头改进的技术研究

15.Analysis and Practice of Optimization of Oxygen Lance Height During Catch Carbon Process in 260 t Combined Blowing Converter260t顶底复吹转炉调整拉碳枪位的分析与实践

16.Kinetic Modeling of Direct Alloying with Manganese Ore in Top and Bottom Combined Blown Converter顶底复吹转炉内锰矿直接合金化的动力学模型

17.Process Practice for Spring Steel 65Mn Produced by 80t Combined Blown Converter-LF-CC Flow Sheet80t复吹转炉-LF-CC流程生产65Mn弹簧钢的工艺实践

18.Simulation Experiment Study of Gas-Liquid Two Phase Flow in a 210t Duplex Combined Blown Converter210t双联复吹转炉炉内气液两相流动的模拟实验研究

相关短句/例句

combined blowing converter复吹转炉

1.Water-Oil Model for Volumetric Mass Transfer Coefficient between Slag and Metal in Combined Blowing Converter;复吹转炉钢-渣间容量传质系数的水-油模型

2.Process of smelting low phosphorus steel incombined blowing converter复吹转炉冶炼低磷钢工艺

3.Based on the mechanism analysis of steelmaking process incombined blowing converter,a kinetic model to describe the process was developed with the aid of thermodynamics,macrokinetics,transfer theory and reaction engineering.在分析复吹转炉冶炼过程机理的基础上,应用冶金热力学、动力学、传输原理和反应工程学理论,建立了描述冶炼过程的动力学模型,确定了模型的有关参数。

3)combined blown converter复吹转炉

1.Discussion on bottom tuyere configuration optimization of top and bottomcombined blown converters;复吹转炉底枪布置优化探讨

2.Study on refiing high phosphorus hot metal bycombined blown converter;复吹转炉冶炼高磷铁水的试验研究

3.Optimization and application of bottom blown process in 90t top-bottomcombined blown converter;90t复吹转炉底吹工艺优化与应用

4)rotate speed repetition转速重复

5)Repeat speeds重复转速

6)round trip feedthough反复转馈

延伸阅读

高分子电荷转移复合物分子式:CAS号:性质:是由电子给体与电子受体两部分所组成,由给体向受体转移部分电荷,形成相互作用的整体,即电荷转移复合物。给体和受体可以在同一个大分子内——分子内电荷转移复合物,也可以在分子间由两种价键各自饱和的分子作用形成——分子间电荷转移复合物。聚乙烯基咔唑是一种给体,与三硝基芴酮的电荷转移复合物是一种光导材料。通过形成电荷转移复合物的方法,可增加材料的光导敏感性。

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