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Growth fusion of submicron spherical boron carbide particles by repetitive pulsed laser irradiation in liquid media

机译:液态介质中重复脉冲激光辐照对亚微米球形碳化硼颗粒的生长融合

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摘要

We studied the fabrication of B_4C submicron particles by laser irradiation of boron nanoparticles dispersed in an organic solvent. The spherical shape of the formed particles suggests that instantaneous melt formation and solidification by quenching are involved in the particle-forming process. B_4C particles gradually became larger with irradiation time at relatively low laser fluence (1.5 J cm~(-2) pulse~(-1)) by repetitive melting and fusion of the particles, and the B_4C yield increased with irradiation time to 90% for 600 min of irradiation. At higher laser fluences, the B_4C yield decreased due to the explosive ablation of boron or B_4C to form H_3BO_3, and thus only the larger B_4C particles were observed. The dielectric constant of the organic solvent also affected the generated B_4C particle size, probably due to the degree of particle aggregation. Thus, this technique can provide a new approach for fabricating spherical submicron particles of ceramic materials, such as carbides, with simple and safe processes.
机译:我们研究了通过分散在有机溶剂中的硼纳米粒子的激光辐照来制造B_4C亚微米粒子。所形成的颗粒的球形形状表明,在颗粒形成过程中涉及瞬时熔体形成和淬火固化。 B_4C粒子通过重复熔化和熔融在相对较低的激光通量(1.5 J cm〜(-2)脉冲〜(-1))下随照射时间逐渐变大,并且B_4C的产率随照射时间增加至90%。照射600分钟。在较高的激光注量下,由于硼或B_4C的爆炸性烧蚀形成H_3BO_3,B_4C的产量下降,因此仅观察到较大的B_4C颗粒。有机溶剂的介电常数也影响生成的B_4C粒度,这可能是由于颗粒聚集的程度所致。因此,该技术可以提供一种简单且安全的方法来制造陶瓷材料(例如碳化物)的球形亚微米颗粒的新方法。

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    Department of Advanced Materials Science, Faculty of Engineering, Kagawa University, 2217-20 Hayashi-cho, Takamatsu, Kagawa 761-0396, Japan;

    rnDepartment of Advanced Materials Science, Faculty of Engineering, Kagawa University, 2217-20 Hayashi-cho, Takamatsu, Kagawa 761-0396, Japan;

    rnNanosystem Research Institute (NRI), National Institute of Advanced Industrial Science and Technology (AIST), Central 5, 1-1-1 Higashi, Tsukuba, Ibaraki 305-8565, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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