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15篇 您的检索式:作者名="Rhamdhani"
    题名 作者 年代 出处 被引量
1Metal extraction process for electronic waste and existing industrial routes:A review and Australian perspective 显示文摘KHALIG A RHAMDHANI M A BROOKS G MASOOD S 2014Resources2014,3,:1
2Analysis of thesource of dynamic interfacial phenomena during reaction be-tween metal droplets and slag显示文摘Rhamdhani M A Coley K S Brooks G A 2005Metallurgical and Materi-als Transactions :B2005,36,5:1
3Nickel laterite (Part 1): Microstructure and phase characterizations during reduction roasting and leaching显示文摘RHAMDHANI M A HAYES P C JAK E 2009Transactions of the Institutions of Mining and Metallurgy2009,118,3:1
4Nickel laterite (Part 2): Thermodynamic analysis of phase characterizations during reduction roasting显示文摘RHAMDHANI M A HAYES P C JAK E 2009Transactions of the Institutions of Mining and Metallurgy2009,118,3:1
5Nickel laterite Part 1-microstructure and phase characterisations during reduction roasting and leaching显示文摘RHAMDHANI M A HAYES P C JAK E 2009Mineral Processing and Extractive Metallurgy2009,118,3:1
6Comprehensive model of oxygen steel making part 1: model development and validation 显示文摘Dogan N Brooks G A Rhamdhani M A 2011The Iron and Steel Institute of Japan International2011,51,7:1
7General heat balance for oxygen steelmaking显示文摘Energy balances are a general fundamental approach for analyzing the heat requirements for metallurgical processes.The formulation of heat balance equations was involved by computing the various components of heat going in and coming out of the oxygen steelmaking furnace.The developed model was validated against the calculations of Healy and McBride.The overall heat losses that have not been analyzed in previous studies were quantified by back-calculating heat loss from 35 industrial data provided by Tata Steel.The results from the model infer that the heat losses range from 1.3%to 5.9%of the total heat input and it can be controlled by optimizing the silicon in hot metal,the amount of scrap added and the postcombustion ratio.The model prediction shows that sensible heat available from the hot metal accounts for around 66%of total heat input and the rest from the exothermic oxidation reactions.Out of 34%of the heat from exothermic reactions,between 20%and 25%of heat is evolved from the oxidation of carbon to carbon monoxide and carbon dioxide.This model can be applied to predict the heat balance of any top blown oxygen steelmaking technology but needs further validation for a range of oxygen steelmaking operations and conditions.N.Madhavan G.A. Brooks M.A. Rhamdhani B.K. Rout A. Overbosch 2021Journal of Iron and Steel Research(International)2021,28,5:1
8Subsolidus Phase Equilibria of the Fe-Ni-O System显示文摘M.A. Rhamdhani P.C. Hayes E. Jak 2008Metallurgical and Materials Transactions B2008,,5:1
9Subsolidus phase equilibria of the Fe-Ni-O system 显示文摘RHAMDHANI M A HAYES P C JAK E 2008Metallurgical and Materials Transactions B2008,39,5:1
10The kinetics of reduction of dense synthetic nickel oxide in H2-N2 and H2-H2O atmospheres显示文摘Hidayat T Rhamdhani M A Jak E 2009Metallurgical and Materials Transactions B2009,40,1:1
11Alternative Al Production Methods:Part 2-Thermodynamic Analyses of Indirect Carbothermal Routes显示文摘Dewan M A Rhamdhani M A Brooks G A 2013Mineral Processing and Extractive Metallurgy2013,122,2:1
12Alternative Al Production Methods显示文摘Dewan M A Rhamdhani M A Brooks G A 2013Mineral Processing and Extractive Metallurgy2013,122,12:1
13Comprehensive model of oxygen steelmaking part 1 : model development and validation 显示文摘Dogan N Brooks G A Rhamdhani M A 2011ISIJ International2011,51,7:1
14Alternative Al Production Methods:Part 1-a Review of Indirect Carbothermal Routes显示文摘Rhamdhani M A Dewan M A Brooks G A 2013Mineral Processing and Extractive Metallurgy2013,122,2:1
15转炉炼钢的热平衡计算显示文摘我们建立了孩性氧气转炉(BOF)殊钢过程的动力学模型,用来定量地损述吹炼过程中的精炼动力学和热流的变化。以前的研究已经开发了通用模型来指述转炉炼钢过程的动力学和反应机型。对精炼期间热流的了解有助子从能源消耗和减少整体过剧热量(热损失)的角度优化工巴。目前的工作旨在开发一种方法,一旦知道了精炼曲线,就可以知道吹炼期间的热流。在本研究中,解时热是根据Cicutti等人的工业试验和Imphos的试验工厂数据所对应的精炼曲线计算照。我们开发的模型揭示了,通过识别总体过刻热量形成的时间技,来进行过积优化的各种可能压。通过分杯Cicui的数据,可知,在6到14分钟的吹炼期间,平均产生7.5MJ/min/铁水的过剧热量,此外,本研究表明,废钢量、助效剂添加量和氧气流量等因数对精炼过程中整体过剂热量的优化利用起着重安作用。Nirmal MADHAVAN Geoffrey Alan BROOKS Muhammad Akbar RHAMDHANI Bapin Kumar ROUT Aart OVERBOSCH 魏福龙 高长益 叶雅妮 吴学林 张东升 2022水钢科技2022,,4:0
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