粉体および粉末冶金
Online ISSN : 1880-9014
Print ISSN : 0532-8799
ISSN-L : 0532-8799
64 巻, 3 号
March
選択された号の論文の10件中1~10を表示しています
研究論文
研究論文
  • 神田 康行, 福本 功
    2017 年 64 巻 3 号 p. 91-99
    発行日: 2017/03/15
    公開日: 2017/03/30
    ジャーナル オープンアクセス

    Alumite sludge is a precipitation that is generated by anodizing of aluminum sash products. The crystal structure of alumite sludge is changed to α-alumina (α-alumina sludge) by heat treatment. For effective utilization of alumite sludge, we attempted to improve the sintered body mechanical strength by applying milled α-alumina sludge to spark plasma sintering. The raw (no milling) material has a cuboid particle shape. By milling the raw material, the particle shape is changed from cuboid to cube, and the particle size is decreased. The changing particle shapes improved flexural strength to a maximum of 403 MPa at low firing temperatures. Observation of the fracture surface using SEM revealed that the fracture originated from a rectangular pore remaining in the sintered body. The shape factor of the rectangular pore (area, pore ratio, inclination angle) decreased with the change in particle shape. In order to ascertain the experimental result, the effect of rectangular pore shape on crack occurrence was investigated by using finite element method. The principal stress value around the rectangular pore decreased with the change in particle shape. Thus, crack occurrence at the fracture origin is inhibited by the change in particle shape.

研究ノート
特集:機能性複合材料としての元素ブロックならびに元素ブロック高分子
受賞記念講演
  • 大原 智, 山本 和広
    2017 年 64 巻 3 号 p. 109-115
    発行日: 2017/03/15
    公開日: 2017/03/30
    ジャーナル オープンアクセス

    To fine-tune the properties of ceramics, they can now be processed into uniform-size nanocrystals with spherical, cube, sheet, rod, wire shapes. Another trend in research aims at arranging individual nanocrystals into superlattices and investigating their unique properties. Despite these recent advances, controlling the shape, crystal structure, and surface characteristics of ceramic nanocrystals is still a difficult task. Here, we report an approach to tailor-made ceramic nanocrystals by means of organic ligand-assisted hydrothermal method. We succeeded in the synthesis of the ceramic nanocrystals such as ceria (CeO2) nanocubes and titania (TiO2) nanosheets. Also importantly, the use of water, instead of an organic solvent, provides an environmentally benign “green” chemistry route to nano building blocks for advanced materials and devices.

総説
  • 香村 惇夫, 井戸田 直和, 菅原 義之
    2017 年 64 巻 3 号 p. 116-120
    発行日: 2017/03/15
    公開日: 2017/03/30
    ジャーナル オープンアクセス

    Element blocks, which are composed of various elements, have been widely studied due to their potential application in electric, optical, magnetic and biological fields. Element blocks can be used as functional materials without any further modifications, but it is also possible to polymerize them to prepare element block polymer materials, which are expected to be a series of new functional materials. Magnetite is one of the well-known magnetic oxides, and magnetite nanoparticles are known to exhibit superparamagnetism. In this review, we focus on surface-modified magnetite nanoparticles which can be considered as element blocks. Surface modification of magnetite nanoparticles has been achieved by using silane coupling agents, phosphorus coupling agents, carboxylic acids or alkyl amines based on according to purpose and application to improve their dispersibility and biocompatibility. And magnetite nanoparticles with grafted polymers are potentially useful to the fabrication of magnetite-based medical and biomedical materials. These element blocks prepared from magnetite nanoparticles via surface modification can be applicable to various applications including drug delivery system, hyperthermia and separation of biological matters or heavy metal ions. Examples are demonstrated for typical applications.

解説
  • 藤井 秀司, 武内 誠治, 枝廣 雅美, 吉見 聡, 小暮 亮雅, 垂井 泰郎, 笠原 萌恵, 安居 嘉秀, 中村 吉伸
    2017 年 64 巻 3 号 p. 121-125
    発行日: 2017/03/15
    公開日: 2017/03/30
    ジャーナル オープンアクセス

    Pressure-sensitive adhesive (PSA) powder consists of millimeter-sized particles with a soft sticky polymer core and a hard solid nanoparticle shell morphology (adhesive liquid marbles), and shows no adhesion in its original form and flows like a powder through a funnel. Only after application of external mechanical stress, it acts as an adhesive. Adhesion can be induced by rupture of the nanoparticle coating of the liquid marble and outflow of the inner soft polymer. This article gives an exposition of fabrication and characterization of surface structure/chemistry, morphology and adhesive properties of PSA powder and adhesive liquid marble.

  • 佐藤 尚人, 和田 宏明, 下嶋 敦, 黒田 一幸
    2017 年 64 巻 3 号 p. 126-129
    発行日: 2017/03/15
    公開日: 2017/03/30
    ジャーナル オープンアクセス

    Construction of nanoarchitectures using cage siloxane oligomers as element blocks is of much interest because of its excellent potential for creating novel porous materials. In this review, our recent work on the fabrication of siloxane-based nanostructures from cage siloxanes is presented. The arrangement of cage siloxanes units is controlled by various methods, including amphiphilic self-assembly and hydrogen bonding of silanol groups, toward the preparation of well-defined porous siloxane-based materials.

  • 郡司 天博, 速水 良平, 塚田 学
    2017 年 64 巻 3 号 p. 130-133
    発行日: 2017/03/15
    公開日: 2017/03/30
    ジャーナル オープンアクセス

    Titanium tetraisopropoxide and phenylphosphonic acid were mixed in tetrahydrofuran and subjected to hydrolysis to provide a white crystal of titanium phosphonate with a formula of [Ti43-O)(OiPr)5(μ-OiPr)3(PhPO3)3]·thf. The titanium phosphonate was mixed with poly(methyl methacrylate) (PMMA) to form a hybrid film. The content of the titanium phosphonate in the resulting mixture was less than 30 wt% and yellow. The degradation temperature increased about 30°C by the hybridization of a titanium phosphonate cluster with PMMA. On the other hand, titanium phosphonate was mixed with poly(vinyl alcohol) (PVA) to form a hybrid film. The content of titanium phosphonate in the mixture was less than 50 wt% and colorless. Isopropyl alcohol was formed in this reaction, which suggests the formation of hybrid by the reaction of PVA with an isopropoxy group in titanium phosphonate.

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