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Oxidation Kinetics of Aluminum Powders in a Gas Fluidized Bed Reactor in the Potential Application of Surge Arresting Materials
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作者 Hong Shih 《Materials Sciences and Applications》 2019年第3期253-292,共40页
In this technical paper, the oxidation mechanism and kinetics of aluminum powders are discussed in great details. The potential applications of spherical aluminum powders after oxidation to be part of the surging arre... In this technical paper, the oxidation mechanism and kinetics of aluminum powders are discussed in great details. The potential applications of spherical aluminum powders after oxidation to be part of the surging arresting materials are discussed. Theoretical calculations of oxidation of spherical aluminum powders in a typical gas fluidization bed are demonstrated. Computer software written by the author is used to carry out the basic calculations of important parameters of a gas fluidization bed at different temperatures. A mathematical model of the dynamic system in a gas fluidization bed is developed and the analytical solution is obtained. The mathematical model can be used to estimate aluminum oxide thickness at a defined temperature. The mathematical model created in this study is evaluated and confirmed consistently with the experimental results on a gas fluidization bed. Detail technical discussion of the oxidation mechanism of aluminum is carried out. The mathematical deviations of the mathematical modeling have demonstrated in great details. This mathematical model developed in this study and validated with experimental results can bring a great value for the quantitative analysis of a gas fluidization bed in general from a theoretical point of view. It can be applied for the oxidation not only for aluminum spherical powders, but also for other spherical metal powders. The mathematical model developed can further enhance the applications of gas fluidization technology. In addition to the development of mathematical modeling of a gas fluidization bed reactor, the formation of oxide film through diffusion on both planar and spherical aluminum surfaces is analyzed through a thorough mathematical deviation using diffusion theory and Laplace transformation. The dominant defects and their impact to oxidation of aluminum are also discussed in detail. The well-controlled oxidation film on spherical metal powders such as aluminum and other metal spherical powders can potentially become an important part of switch devices of surge arresting materials, in general. 展开更多
关键词 Aluminum Spherical Power GAS FLUIDIZATION Bed Oxidation Mechanism Oxide Growth Rate gibbs free energy Ellingham Diagram Mathematical Modeling Dynamic System Plasma DIFFUSION DIFFUSION Coefficient Crystallographic Defect Vacancy Pressure Temperature Flow Laplace Transform Equation boundary Condition Fick’s Second Law Software Experimental Theoretical SURGE ARRESTING MATERIALS Analytical Solution
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金属纳米晶热稳定性和晶粒长大行为的研究 被引量:3
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作者 魏君 宋晓艳 +2 位作者 韩清超 徐文武 李凌梅 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2010年第4期603-607,共5页
推导出了金属纳米晶界的基本热力学函数,模拟计算了金属纳米晶界的吉布斯自由能随晶界过剩体积和温度的变化规律。以铜纳米晶材料为例,应用纳米晶热力学模型预测了纳米晶组织的热稳定性及纳米晶粒长大行为。将纳米晶界的热力学函数引入... 推导出了金属纳米晶界的基本热力学函数,模拟计算了金属纳米晶界的吉布斯自由能随晶界过剩体积和温度的变化规律。以铜纳米晶材料为例,应用纳米晶热力学模型预测了纳米晶组织的热稳定性及纳米晶粒长大行为。将纳米晶界的热力学函数引入元胞自动机仿真算法,利用计算机模拟研究了金属纳米晶的变温晶粒长大过程。实验证实铜纳米晶粒长大的动力学特征符合纳米晶热力学模型的计算预测结果。 展开更多
关键词 金属纳米晶 热稳定性:纳米晶粒长大 过剩体积 晶界吉布斯自由能
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Ultrafine Grained Duplex Structure Developed by ART-annealing in Cold Rolled Medium-Mn Steels 被引量:6
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作者 Jie SHI Jun HU +3 位作者 Chang WANG Cun-yu WANG Han DONG Wen-quan CAO 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2014年第2期208-214,共7页
The microstructural evolutions of the cold rolled Fe-0.1C-5Mn steel during intercritical annealing were ex- amined using combined advanced techniques. It was demonstrated that intercritical annealing results in an ult... The microstructural evolutions of the cold rolled Fe-0.1C-5Mn steel during intercritical annealing were ex- amined using combined advanced techniques. It was demonstrated that intercritical annealing results in an ultrafine granular ferrite and austenite duplex structure in cold rolled 0.1C-5Mn steel. The strong partitioning of manganese and carbon elements from ferrite to austenite was found during intercritical annealing by scanning transmission elec- tron microscopy (STEM) and X-ray diffraction (XRD). Strong effects of boundary characters on the austenite for- mation were indicated by austenite fast nucleation and growth in the high angle boundaries but sluggish nucleation and growth in the low angle boundaries. The ultrafine grained duplex structure in 0.1C-5Mn was resulted from the the sluggish Mn-diffusion and the extra high Gibbs free energy of ferrite phase. Based on the analysis of the micro- structure evolution, it was pointed out that the intercritical annealing of the medium Mn steels could be applied to fabricate an ultrafine duplex grained microstructure, which would be a promising approach to develop the 3rd genera- tion austomobile steels with excellent combination of strength and ductility. 展开更多
关键词 intercritical annealing partitioning SEGREGATION ultrafine grained duplex structure boundary character gibbs free energy
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