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活化处理对W-1.5%TiC复合粉体烧结行为影响规律研究
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国际热核聚变实验堆 (ITER) 计划专项资助项目 (2010GB109004);国家自然科学基金青年资助项目 (51204064)


Activation Pretreatment of W-1.5wt%TiC Composite Powder and Its Sintering Behavior
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    摘要:

    本工作通过氢氟酸和氟化铵混合液为活化液的常温超声波辅助活化处理,使其在W粉和TiC粉表面获得均匀分布的缺陷(吸附质岛或台阶等),增加了粉体的表面活性。通过粉末冶金方法制备 W-1.5%TiC(质量分数)复合材料,采用场发射扫描显微镜(FE-SEM)研究分析了原始烧结粉体、活化预处理后烧结粉体和烧结后W-1.5%TiC复合材料表面与断口形貌,对烧结机理进行了探讨。结果发现,相同烧结工艺条件下,经过活化处理后烧结粉获得的复合材料比原始粉相对密度提高7%,组织更致密

    Abstract:

    Tungsten (W) powder was subjected to chemical activation pretreatment by immersion into an aqueous solution of hydrofluoric acid and ammonium fluoride, and then was reinforced with an ultrasonic wave at room temperature to obtain uniform distribution of defects (adsorbate island or steps, etc.) on the surface of W and TiC powder, increasing the surface activity of powder. W-1.5wt% TiC composites were prepared by a powder metallurgy method. A field emission electron microscope was employed to observe the surface topography of the original and chemically pretreated powder and fracture morphologies of W-1.5wt%TiC composites, and the sintering mechanism was discussed. The results show that under the condition of the same sintering process, the W-1.5wt%TiC composites after activation treatment of sintered powder achieve a relative density 7% higher than that of the original powder and more compact organization

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丁孝禹,罗来马,黄丽枚,罗广南,昝 祥,朱晓勇,吴玉程.活化处理对W-1.5%TiC复合粉体烧结行为影响规律研究[J].稀有金属材料与工程,2015,44(8):2063~2066.[Ding Xiaoyu, Luo Laima, Huang Limei, Luo Guangnan, Zan Xiang, Zhu Xiaoyong, Wu Yucheng. Activation Pretreatment of W-1.5wt%TiC Composite Powder and Its Sintering Behavior[J]. Rare Metal Materials and Engineering,2015,44(8):2063~2066.]
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  • 收稿日期:2014-08-25
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  • 在线发布日期: 2016-02-25
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