passivating 中文意思是什麼

passivating 解釋
被動化
  1. In the work, it was systemically studied that the effects of two suggested modifying ways on electrochemical characteristics of lithium metal electrode and its behaviors in lithium cell. finally, the action mechanisms of these two modifying ways were analyzed. through the study on pretreatment effects of different cyclic ether on lithium electrode, it was found that 1, 4 - dioxane ( doa ) and 1, 3 - dioxolane ( dol ), both could form a favorable passivating sei film on lithium electrode surface through

    研究不同環醚對鋰電極的預處理作用發現, 1 , 4 -二氧六環( doa )和1 , 3 -二氧五環( dol )對金屬鋰電極的表面預處理均可以在金屬鋰表面形成一層良好的sei鈍化膜,對鋰金屬電極起到了保護性作用,使鋰電極具有較小的界面阻抗,有效地提高了金屬鋰電極的充放電循環效率,改善了鋰金屬電極在循環過程中的表面形貌;而doa和dol對金屬鋰電極的表面預處理,不會明顯的影響鋰電極的動力學性能。
  2. The relationship between capacitance and corrosion conditions in the enlargement of tunnels justifies the latter competition mechanism the varied etching conditions were implemented by enhancing the passivating characteristics and viscosity, changing the a13 + concentration, temperature of etchants and current pulsation. passivating acid in the etchant is conducive to the instant passivation of exposed areas on the foil surface, and hence sustains the balance of competition between aggressive anions and passivators, providing pit nucleatiori sites continuously

    通過侵蝕液中添加草酸、硫酸、乙二醇,改變侵蝕液al ~ ( 3 + )濃度和電流紋波等方法,研究了不同的侵蝕條件對隧道孔形貌和比容的影響,結果表明:草酸和硫酸既保護了鋁箔表面又促進了隧道孔孔壁的迅速鈍化,增加發孔密度。
  3. The activation effect of zn2 + modification, including enhancement of emission intensity, slowing of luminescence decay and increasing of quantum yields, results from the formation of zns shell outside the nanoparticles, which is passivating the surface of nanoparticles, eliminating the surface quenching centers, so as to block the nonradiative transition pathways through these kind of quenching centers

    Zn ~ ( 2 + )表面修飾在納米顆粒表面形成了zns殼層,鈍化了納米顆粒的表面,消除了表面猝滅中心,阻塞了通過表面猝滅中心進行無輻射躍遷的通道,從而使得發光強度增加,衰減變慢,量子效率提高。
  4. Chromium - free passivating technology for zinc plating

    鍍鋅層無鉻鈍化工藝研究
  5. Metallic and other inorganic coatings - electropolishing as a means of smoothing and passivating stainless steel

    金屬和其他無機塗層.採用電解拋光精加工和鈍化不銹鋼
  6. A final cleaning by pickling / passivating is necessary

    因而要進行最後一道工序:酸洗鈍化。
  7. Chromate passivating of 55 al - zn alloy hot dipped sheet steel

    鋁鋅合金鍍層鋼板的鉻酸鹽鈍化試驗
  8. Chromium - free passivating technology for electrolytic manganese

    電解錳無鉻鈍化劑的研究
  9. Fault solving of yellowing in passivating coating of copper and its alloys

    銅及銅合金鈍化膜發黃故障的解決
  10. The performance of concrete in marine environment is studied thropgh material and x - ray microstructural examination. the uneven distribution of chloride in concrete around the reinforcing bar in fullscale are obtained through ion chromatography method. based on faiadi ' s theory, and chloride ' s influence on passivating film, pre - determine model of reinforcing bar uneven corrosion model was established, which can determine the corrosion amount of the reinforcing bar

    對取自海邊的足尺混凝土梁中縱筋周圍的混凝土進行了氯離子的含量測定,確定了氯離子在鋼筋周圍的不均勻分佈:然後,從法拉第定律和氯離子對鈍化膜的影響入手,建立了鋼筋不均勻銹蝕的模型,可以計算出任意時刻鋼筋的銹蝕量。
  11. After pickling / passivating, a layer of chromic oxide forms on the surface, whick impoves the corrosion resistance dramatically

    酸洗鈍化后在不銹鋼表面形成一層均勻的鉻的氧化物層,顯著地提高了不銹鋼的防腐性能。
  12. Chemical polishing and passivating for copper and its alloys

    銅及銅合金化學拋光及鈍化
  13. Technology optimization of chromium - free passivating galvanized product

    無鉻鈍化環保鍍鋅產品工藝優化
  14. Blackening reason and countermeasure in passivating of stainless steel parts

    不銹鋼零件鈍化變黑成因及對策
  15. Environmental friendly chemical polishing and passivating technology of copper and its alloys

    環保型銅及銅合金化學拋光與鈍化工藝
  16. Further requirements such as higher electrochemical capacity and better reversibility are advanced to lithium ion battery with the development of our society. in the first cycle of lithium ion battery, solvent decomposition reaction on the surface of electrode will lead to the formation of a passivating layer, commonly named solid electrolyte interface film ( sei film )

    在鋰離子電池的充放電過程中,電極和電解質界面區由於電解質與電極材料之間的相互作用而在電極表面形成一層厚度在幾個納米范圍的表面層,這個表面層被稱為固體電解質中間相( solidelectrolyteinterfacefilm ,簡稱sei膜) 。
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