粉体および粉末冶金
Online ISSN : 1880-9014
Print ISSN : 0532-8799
ISSN-L : 0532-8799
58 巻, 12 号
December
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
研究
  • 井手本 康, 溝口 拓馬, 北村 尚斗
    2011 年 58 巻 12 号 p. 703-709
    発行日: 2011年
    公開日: 2012/02/01
    ジャーナル オープンアクセス
    Pb(Zr, Ti)O3 (PZT) has been widely used as an actuator, a sensor and ferroelectric memory (FeRAM) and so on, due to its high piezoelectricity and ferroelectric performance. In this study, we focused on Nb-substituted PZT, Pb(Zr, Ti, Nb)O3, with Nb contents of 10∼20 mol%. We examined the dependence of the ferroelectric property on Nb content, and investigated the crystal structure by Rietveld analysis using neutron diffraction data. As a result, it was demonstrated that sintered compacts of Pb(Zr, Ti, Nb)O3 with a single phase of the perovskite structure were successfully prepared when the Nb substitution content was up to 10 mol%. It was also found that the Nb substitution made the grain size smaller, and that the average size was 1∼2 μm. P-E hysteresis measurements clarified that the remanant polarization, Pr, was improved by the 10 mol% Nb substitution although the higher Nb content than 10 mol% resulted in the worse ferroelectric property. From the crystal structure analysis, it was indicated that a distortion in the crystal was relaxed by the Nb substitution and thus the spontaneous polarization was decreased with increasing Nb content.
  • 坂本 裕紀, 川上 雄士
    2011 年 58 巻 12 号 p. 710-714
    発行日: 2011年
    公開日: 2012/02/01
    ジャーナル オープンアクセス
    Titanium has widely been used as a biomaterial because of its excellent biocompatibility. However, problems with respect to biological reaction and fitness of elastic modulus for human bone have yet to be solved. Porous titanium is expected to be a promising material to solve these problems. The aim of this study is to clarify the effect of the porous titanium with and without annealing on the biomechanical compatibility. Porous titanium was made by spark plasma sintering. And the parts of the samples were annealed. The samples were machined from the sintered compacts for the evaluation of the mechanical properties. The tensile strength of porous titanium was 42 MPa, which is lower than half the value for human cortical bone, while the annealed samples was 95 MPa, a value somewhat close to that of the human cortical bone. We found that the mechanical properties with annealing porous titanium indicated a value close to the human bone.
特集:多様化する粉体成形の新しい展開 II
解説
  • 水内 潔, 井上 漢龍, 上利 泰幸, 川原 正和, 巻野 勇喜雄, 井藤 幹夫
    2011 年 58 巻 12 号 p. 717-726
    発行日: 2011年
    公開日: 2012/02/01
    ジャーナル オープンアクセス
    High-performance thermal management materials should have high thermal conductivities and low coefficients of thermal expansion (CTE) for maximizing heat dissipation and minimizing thermal stress and warping, which are critical issues in packaging of power semiconductors, light-emitting diodes and micro electro mechanical systems. Thermal stress and warping arise from CTE differences, which become significant in advanced electronic devices because of high heat generated, for example, when high-power laser diodes or high integration level of IC are in use. To ensure ideal or desired performance and adequate life of these electronic devices, it is necessary to decrease the junction temperature between two components to temperatures lower than: 398 K for military and automobile logic devices; and 343 K for some commercial logic devices. In the case of high-power density devices, the allowable temperature range is limited in the package base and die-attach thermal resistances. In any cases, the development of thermal management materials is significant in electronics fields.
    In order to fabricate high-performance thermal management materials with ultra-high thermal conductivities and low CTEs, we have recently initiated a series of investigations, where metal-matrix composites (MMCs) containing high thermal conductive fillers were uniquely fabricated. In our study, to avoid the damage of filler particle surfaces, spark plasma sintering (SPS) processing was used as a processing technique. In the present review, thermal properties of particle dispersed MMCs fabricated using SPS process in our recent works are introduced in comparison with those produced using various fabrication techniques by other researchers.
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