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oxidation kinetics meaning in Chinese

防氧化剂
氧化动力学

Examples

  1. Study on oxidation kinetics of high temperature carbon of mesophase pitches
    中间相沥青高温炭的氧化动力学研究
  2. The conclusions are reported as following : the oxidation kinetics curves ( aw - t ) of uranium has been gained at 60 70 % rh condition after its surface was treated with scco2
    主要结果如下:采用重量法,我们得到了表面经超临界co _ 2处理后的铀试样在60 、 70 rh条件下的氧化动力学曲线( w - t ) 。
  3. The main results are : grinding is favorable to improve surface smooth degree , while nitrided and slow deposition makes sic granules fine ; the width of coatings gap increased in order of grinding , nitrided and vacuum heat treatment , but gap defects in multilayer coatings could be removed by slow deposition ; temperature of maximum weight loss could be decrease to 600 by grinding , vacuum heat treatment or slow deposition , but it will increased to 800 after nitrided ; oxidation kinetics curves all varied with the coating modifications
    主要有:磨削改性有利于提高涂层表面平整度,氮化和慢沉积使涂层表面颗粒细化。涂层间隙宽度按磨削改性、高温氮化、真空热处理依次增大,而慢沉积可获得无面缺陷的多层涂层。磨削改性、真空热处理及慢沉积均使最大氧化失重温度点提前至600 ,而高温氮化则使最大失重点后移至800 。
  4. The oxidation mechanisms of 3d c / sic composites in air , in water vapor and in oxygen / water vapor coupling environment have been clarified on the basis of oxidation behaviors and microstructure analysis of c / sic composites . the oxidation kinetics models of the composites in oxygen and in oxygen / water vapor have been established respectively based on the theories of chemical reaction kinetics and mass transport . the software platform of factorization for analysis of c / sic composites oxidation behaviors has been developed
    本文以3dc sic复合材料氧化行为的实验研究为基础,结合复合材料的显微结构分析,系统地阐明了复合材料在空气、水蒸汽和氧水耦合环境中的氧化机理,并运用化学反应动力学和传质学的基本理论,建立了复合材料在氧气环境和氧水耦合环境中的氧化动力学模型。

Related Words

  1. sintering kinetics
  2. wear oxidation
  3. marginal oxidation
  4. heterogeneous oxidation
  5. oxidation rate
  6. oxidation stage
  7. spontaneous oxidation
  8. oxidation reaction
  9. cellular oxidation
  10. controlled oxidation
  11. oxidation inhibitor
  12. oxidation injection
  13. oxidation lagoon
  14. oxidation loss
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