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Breakage Behavior Characterization of Micron-Scale Particles

机译:微米级颗粒的断裂行为表征

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A method for quantitative characterization of breakage of particulate material is presented.The approach developed uses a 3-D population balance(PB)breakage model,which describes the changing population of particles in a "origin-size-toughness" domain,to extract breakage parameters from dynamic tracer and size evolution experimental data.The breakage behavior is captured in terms of the model parameters of breakage rate and breakage distribution function.It is shown that utilization of the dynamic tracer distribution information contributes significantly to the accuracy and robustness of the breakage parameter estimation.The method is validated by demonstrating good agreement of the model with measured dynamic particle size distributions and tracer distributions.It is also demonstrated that the 3-D PB breakage model better captures the highly distributed nature of the dynamic experimental data than an equivalent 2-D model.The usefulness of the technique for characterization of breakdown characteristics is demonstrated using commercial aluminium oxides; both for quantitatively differentiating the breakage behaviors and also for providing insights into the fundamentals of the breakage mechanisms."Breakage maps" and "breakage activity" plots are introduced as useful formats for presenting the complex breakage information.
机译:提出了一种定量表征颗粒材料破损的方法。所开发的方法是使用3-D种群平衡(PB)破损模型,该模型描述了“原始尺寸-韧性”域中变化的颗粒种群,以提取破损从动态示踪剂和尺寸演化实验数据中获取参数,根据破损率和破损分布函数的模型参数捕获破损行为,表明利用动态示踪剂分布信息对破损的准确性和鲁棒性做出了重要贡献通过证明该模型与测得的动态粒径分布和示踪剂分布具有良好的一致性来验证该方法,还证明了3-D PB破损模型比等效模型更好地捕获了动态实验数据的高度分布性质2-D模型。技术对断层特征的有用性使用市售氧化铝证明了n特性;既可以定量区分破损行为,也可以提供对破损机理基础的见识。引入了“破损图”和“破损活动”图作为表示复杂破损信息的有用格式。

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