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Investigation of a discus-milling process using a powder mixture of Al and TiO2

机译:Al和TiO2粉末混合物的铁饼研磨工艺研究

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摘要

In this study, a powder mixture of Al and TiO2 was employed to investigate the milling process in a discus mill. In this first report on this novel mechanical mill, several variables, including the milling time and powder charge and their effects on the microstructural evolution of powder particles, are monitored and studied. The study reveals that the dominant parameters of the milling process are the milling time and the starting powder charge, similar to the other high-energy ball-milling processes. The longer the milling time and the smaller the starting powder charge, the more homogeneous the mixing and the finer the microstructure of the powder particles. The reaction between Al and TiO2 was not observed with a milling period as long as 6 hours, for the present materials. However, the reaction between Al and TiO2, during the subsequent heat treatment, is influenced by the milling condition. The powders with the longer milling times and finer mixing microstructures also form a finer microstructure, after the reaction between Al and TiO2 during heat treatment. The methods for achieving an optimal milling efficiency for the Al-TiO2 system are discussed.
机译:在这项研究中,使用Al和TiO2的粉末混合物来研究铁饼磨的研磨过程。在关于这种新型机械研磨机的第一份报告中,监测和研究了多个变量,包括研磨时间和粉末装料量及其对粉末颗粒微观结构演变的影响。研究表明,与其他高能球磨工艺类似,铣削工艺的主要参数是铣削时间和起始粉末进料。研磨时间越长,起始粉末进料越少,混合越均匀,粉末颗粒的微观结构越细。对于本材料,经过长达6个小时的研磨,未观察到Al和TiO2 之间的反应。但是,在随后的热处理过程中,Al和TiO2 之间的反应受研磨条件的影响。在热处理过程中,Al和TiO2 反应后,具有更长研磨时间和更精细混合结构的粉末也形成了更精细的组织。讨论了实现Al-TiO2 体系最佳研磨效率的方法。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2006年第1期|225-233|共9页
  • 作者单位

    the Materials ampamp Process Engineering Department The University of Waikato Hamilton New Zealand;

    the Materials ampamp Process Engineering Department The University of Waikato Hamilton New Zealand;

    the Materials ampamp Process Engineering Department The University of Waikato Hamilton New Zealand;

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  • 正文语种 eng
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