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particle morphology meaning in Chinese

微粒形态学

Examples

  1. The effects of electroless nickel plating on the particles morphology and the electrochemical properties of low - co hydrogen storage alloy were investigated
    摘要研究了化学镀镍对低钴贮氢合金粉末颗粒形态和电化学性能的影响。
  2. Through those approaches and with the information of the particles morphologies , it was possible to predict the percolation threshold of the nanocomposite
    通过这些理论手段以及利用石墨薄片外观形态上的信息,可很好地估计体系的渗滤阈值。
  3. The sheet structure of pvc was found in the rupture partical of pvc . the nanocrystalline pvc formed through jet - mill crashing . different crash condition had effect on particle morphology and melting point and crystallinity and particle size distribution
    纳米晶pvc是由气流磨粉碎形成的,不同的粉碎条件对纳米晶pvc的颗粒形态、熔点、结晶度、粒径分布形成不同的影响。
  4. The main achievements in this paper are as following : 1 based on the systematical study about physical properties , particle morphologies and micro - mechanism of ultra - fine fly ash , cufa ii products are successly developed by means of optimizing the particle gradation and activation technique . hprrc composed of cufa ii products and with the strength grade no less than 32 . 5r ordinary portland cement can meet the minimum strength index demands . at present , cufa ii has been produced commercially and applied to engineering
    本文主要研究成果如下: 1 、在系统研究了超细粉煤灰的物理性能、形貌、粉体效应微观机理的基础上,采用粉体优化组合、活化激发技术,复配的cufa产品与32 . 5r及以上的普通硅酸盐水泥配制的hprrc可达到12 48h开放交通所需的最低强度指标要求;该产品己工业化生产并推广应用。
  5. The evolution on particle morphology , microstructure , grain size and microstrain of the mixture of ti and al elemental powders during mm has been investigated . it was found that the nanocrystalline composite powders with extremely fine ti / al alternative lamellar structure ( lamella spacing about 0 . 1 ~ 0 . 5 m ) could be prepared by mm using proper processing parameters
    研究了ti 、 al单质元素混合粉在机械球磨过程中的颗粒形貌特征、组织结构、晶粒尺寸以及微观应变的变化规律,表明在适当的球磨工艺条件下可获得具有极细层片间距( 0 . 1 ~ 0 . 5 m )的纳米晶ti / al机械复合粉。
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Related Words

  1. blood cell morphology
  2. subatomic particle
  3. ultimate particles
  4. injecting particle
  5. bombarding particle
  6. coated particle
  7. inhale particle
  8. particle production
  9. particle recovery
  10. particle failure
  11. particle microstructure
  12. particle momentum
  13. particle motion
  14. particle motion filter
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