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首页> 外文期刊>Metallurgical and Materials Transactions A >Fabrication of Porous Copper with Directional Pores through Thermal Decomposition of Compounds
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Fabrication of Porous Copper with Directional Pores through Thermal Decomposition of Compounds

机译:通过化合物的热分解制备具有定向孔的多孔铜

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摘要

Lotus-type porous copper with aligned long cylindrical pores was fabricated by unidirectional solidification in an argon atmosphere. The hydrogen dissolved in molten copper through thermal decomposition of titanium hydride contained in the mold, which then formed hydrogen gas that evolved into the gas pores in the solidified copper. On the other hand, titanium may form oxides in the melt that serve as nucleation sites for insoluble hydrogen. The porosity and pore size decreased with increasing atmospheric argon pressure during the solidification, which can be explained by the Boyle–Charles law and the possible suppression of the decomposition due to external pressure. The addition of titanium hydride was more effective when it was added just before the melt solidified than when it was added to the melt. Moreover, the thermal decomposition method (TDM) is superior to the conventional fabrication method, which requires high pressure hydrogen gas. Thus, TDM is a promising fabrication technique for various lotus metals.
机译:通过在氩气气氛中进行单向凝固,制造出具有对齐的长圆柱孔的莲花型多孔铜。氢通过模具中包含的氢化钛的热分解而溶解在熔融铜中,然后形成氢气,并在凝固的铜中形成气孔。另一方面,钛可在熔体中形成氧化物,用作不溶氢的成核位点。凝固过程中,孔隙率和孔径随大气氩气压力的增加而减小,这可以用博伊尔-查尔斯定律以及由于外部压力引起的分解抑制来解释。当氢化钛刚好在熔体凝固之前添加时,氢化钛的添加比添加至熔体中时更有效。而且,热分解方法(TDM)优于需要高压氢气的常规制造方法。因此,TDM是一种用于各种莲花金属的有前途的制造技术。

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  • 来源
    《Metallurgical and Materials Transactions A 》 |2008年第2期| 390-394| 共5页
  • 作者

    Hideo Nakajima; Takuya Ide;

  • 作者单位

    The Institute of Scientific and Industrial Research Osaka University Ibaraki Osaka 567-0047 Japan;

    The Institute of Scientific and Industrial Research Osaka University Ibaraki Osaka 567-0047 Japan;

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  • 正文语种 eng
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