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eco-material
相关语句
  环境材料
    RESEARCH AND DEVELOPMENT OF WOODCERAMICS-A NEW ECO-MATERIAL
    新型环境材料——木质陶瓷的研究
短句来源
    Recent progress in research on a new kind of eco-material, woodceramics, is reviewed.
    回顾了一类新型环境材料—木材陶瓷的研究进展。
短句来源
    Recent research progress of a new eco-material, woodceramics, was reviewed.
    本文综述了一类新型环境材料——木质陶瓷在国内外的研究进展。
短句来源
  环境材料
    RESEARCH AND DEVELOPMENT OF WOODCERAMICS-A NEW ECO-MATERIAL
    新型环境材料——木质陶瓷的研究
短句来源
    Recent progress in research on a new kind of eco-material, woodceramics, is reviewed.
    回顾了一类新型环境材料—木材陶瓷的研究进展。
短句来源
    Recent research progress of a new eco-material, woodceramics, was reviewed.
    本文综述了一类新型环境材料——木质陶瓷在国内外的研究进展。
短句来源
  “eco-material”译为未确定词的双语例句
    Expanded graphite, a novel eco-material, can be applied extensively to the field of replacement and rebabilitation of environment because of its good properties of chemistry,physics and excellent fitness of environment.
    膨胀石墨以其优异的物理化学性能和良好的环境协调性可广泛用于环境替代、环境修复等领域,是一种极有发展潜力的环境工程矿物材料。
短句来源
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  eco-material
The results show that the eco-material microstructure simulated by a computer has an idealized porous structure.
      
The eco-material samples were taken for computer image analysis, and its particle numbers and appearance parameters were measured.
      
The eco-material composition is not well-distributed in preparation.
      
Powder mixing simulation using random walk model in eco-material preparation
      


Expanded graphite, a novel eco-material, can be applied extensively to the field of replacement and rebabilitation of environment because of its good properties of chemistry,physics and excellent fitness of environment. In this paper,the recent advancement in expanded graphite was reviewed and the prospect of the potential application is presented.

 膨胀石墨以其优异的物理化学性能和良好的环境协调性可广泛用于环境替代、环境修复等领域,是一种极有发展潜力的环境工程矿物材料。本文主要就此方面的研究现状及应用前景作一论述。

Recent progress in research on a new kind of eco-material, woodceramics, is reviewed. Because of its unusual abrasive, sensitive and electromagnetic shielding properties, as well as unique structure, woodceramics will probably be widely applied as functional ceramics. The preparation methods, structure, performances, and preparing mechanisms of carbon woodceramics and SiC woodceramics are summarized. For an example of preparing β-SiC, the infiltration mechanism of Si into C preform and the corresponding...

Recent progress in research on a new kind of eco-material, woodceramics, is reviewed. Because of its unusual abrasive, sensitive and electromagnetic shielding properties, as well as unique structure, woodceramics will probably be widely applied as functional ceramics. The preparation methods, structure, performances, and preparing mechanisms of carbon woodceramics and SiC woodceramics are summarized. For an example of preparing β-SiC, the infiltration mechanism of Si into C preform and the corresponding infiltration-reaction models are presented. Besides the above-mentioned two kinds of woodceramics, other carbide woodceramics and oxide woodceramics are also introduced in brief. Finally, the existing problems and countermeasures of woodceramics are discussed and suggested, and their application prospects are proposed.

回顾了一类新型环境材料—木材陶瓷的研究进展。木材陶瓷具有电磁屏蔽、温度-湿度传感和耐磨擦性能等优异性能,以及特殊的结构特征,使其在功能陶瓷方面具有美好的应用前景。介绍了碳木材陶瓷和SiC木材陶瓷的制备方法、结构和各种性能,以及制备机理。以制备β-SiC为例,详细介绍了Si在碳模板中的渗入和反应机理,并提供了相应的渗入-反应模型。对其他碳化物和氧化物木材陶瓷的研究进行了简要介绍。最后,探讨了木材陶瓷目前存在的问题与相应对策,并对其发展前景进行了展望。

Recent research progress of a new eco-material, woodceramics, was reviewed.Different preparation processes, selection of raw materials and varieties of impregnating agents were discussed in detail. Because of its unusual electromagnetic shielding properties, sensitivity to temperature and humidity and abrasiveness, as well as unique microstructure, woodceramics will be widely applied as structural and functional ceramics. Finally, prospects of its research and application were predicted.

本文综述了一类新型环境材料——木质陶瓷在国内外的研究进展。针对木质陶瓷制备过程的不同工艺路线、原材料选取、熔融浸渍体种类等方面做了详细论述,并介绍了木质陶瓷的微观结构。木质陶瓷具有优异的电磁屏蔽、温度-湿度传感、摩擦学性能等,以及特殊的结构特征。作为一种新型的结构和功能材料,其有着广阔的应用前景。本文最后总结了木质陶瓷的应用及其发展方向。

 

 


 
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