机械合成铪酸铕和铈粉末预制体的成型工艺和固结研究

Z. Eremeeva, E. Ageev, G. Sharipzyanova, Yu. Y. Kaplansky, N. Nitkin, A. Akhmetov, V. L. Orlov, A. A. Saenko
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引用次数: 0

摘要

研究目的。研究了机械合成的铪化铕和铈粉末的成型和固结过程。在行星式离心磨机中,以氧化铕、氧化铪和氧化铈为原料,采用机械化学合成方法合成了铪化铕eu2hfo5和铪化铈Ce2HfO5配合物。在氩气环境中,研磨盘的转速为600 - 900转/分,滚筒的转速为1000 - 1800转/分,研磨体与粉末装药质量之比(35 - 45)为1。合成持续5 - 120分钟。x射线相分析表明Eu2HfO5和Ce2HfO5的形成;并对所得粉末的颗粒形态、工艺性能、颗粒组成、成形性和压实性以及固结过程进行了研究。通过对机械合成的半酸铕和半酸铈粉末的成型过程和预坯的固结进行实验研究,揭示了半酸铕和半酸铕的最佳合成方式。我们用机械活化的方法得到了粒径为30- 100nm的铪酸铈粉末和粒径为40- 70nm的铪酸铕粉末。采用x射线物相分析、透射电镜和扫描电镜等方法,对机械合成的半酸镧粉体的混合结构进行了研究。测定和研究了机械合成的铈和铪酸铕粉末的工艺性能,以及压制和烧结后的压实性和成形性。在900 ~ 1200℃的固结温度和30 ~ 120 min的等温保温时间下,铪酸铕粉末样品的相对密度高于铪酸铈粉末样品。烧结后对铪酸镧样品显微硬度的研究表明,铪酸铕样品的硬度高于铪酸铈样品。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of Molding Process and Consolidation of Preforms from Mechanically Synthesized Powders of Europium and Cerium Hafnates
Purpose of research. To study the process of molding and consolidation of preforms from mechanically synthesized powders of europium and cerium hafnates.Methods. Complex compounds of europium hafnateEu2HfO5 and cerium hafnate Ce2HfO5 have been synthesized from europium, hafnate and cerium oxides using mechanochemical synthesis in a planetary centrifugal mill. The rotational speed of the disk was 600 - 900 rpm and the rotational speed of the drums is 1000 - 1800 rpm, with the ratio of grinding bodies to the mass of the powder charge (35 - 45): 1, in an argon atmosphere. Synthesis lasts 5 - 120 minutes.Results. An X-ray phase analysis has been performed showing the formation of Eu2HfO5 and Ce2HfO5; as well as the study of the morphology of particles of the obtained powders, their technological properties, granulometric composition, formability and compaction, as well as the process of their consolidation.Conclusion. On the basis of the experimental studies aimed at studying the molding process and consolidation of preforms from mechanically synthesized powders of europium and cerium hafnates, it has been revealed the optimal mode of synthesis of cerium and europium hafnates. We have obtained a cerium hafnate powder with a particle size of 30-100 nm and a europium hafnate powder with a particle size of 40-70 nm by the method of mechanical activation. Using X-ray phase analysis, TEM and SEM methods, the mixed structure of lanthanide hafnates powders obtained by mechanosynthesis have been studied. The technological properties of mechanically synthesized powders of cerium and europium hafnate, as well as, their compaction and formability after pressing and sintering have been determined and studied. Samples from europium hafnate powder have a relative density higher than samples from cerium hafnate powder after consolidation at temperatures of 900-1200 ° C and isothermal holding time from 30 to 120 min. A study of the microhardness of lanthanide hafnate samples after sintering has shown that europium hafnate samples have greater hardness than cerium hafnate samples .
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