抗菌不锈钢

  • 网络antibacterial stainless steel
抗菌不锈钢抗菌不锈钢
  1. 含铜1Cr13型低碳马氏体抗菌不锈钢的组织和性能

    Structure and Properties of Containing Copper 1 Cr 1 3 Type Low Carbon Martensite Antibacterial Stainless Steel

  2. 常温制备抗菌不锈钢的研究查耳酮的制备Ⅱ氯苯制造的研究

    Study on antibacterial stainless steel preparation at normal temperature

  3. 抗菌不锈钢在饮食装备中的应用

    The Research on Application of Anti-Bacteria Stainless Steal to Catering Equipment

  4. 研究了铁素体和奥氏体含铜抗菌不锈钢的抗菌特性及相关机制。

    Precipitation behavior of antibacterial phase in copper-bearing ferrite antibacterial stainless steel ;

  5. 文章综述了抗菌不锈钢材料的开发现状。

    Development status of antimicrobial stainless steels is reviewed .

  6. 抗菌不锈钢是目前材料领域研究的热点。

    At present , antibacterial stainless steel attracts great attention from many researchers .

  7. 马氏体抗菌不锈钢的微观组织及其抗菌性能

    Microstructure and Antibacterial Properties of Antibacterial Martensite Stainless Steel

  8. 双层辉光法制备含银抗菌不锈钢层工艺

    Preparation of Antibacterial Stainless Layer with Silver by Double Glow Plasma Surface Alloying Technology

  9. 抗菌不锈钢的研究及应用展望

    Study and application prospect of antibacterial stainless steels

  10. 铁素体抗菌不锈钢耐盐雾腐蚀性能影响因素研究

    Influence on the Corrosion Resistance of Antibacterial Ferrite Stainless Steel in Salt Spay Test

  11. 沉积扩散法制备含银抗菌不锈钢工艺研究

    Corrosion Resistance and Microstructure of Ag-Based Antibacterial Coating on Stainless Steel Substrate Prepared by Deposition-Diffusion

  12. 抗菌不锈钢材料及其发展现状

    Anti-Bacterium Stainless Steels and Its Development

  13. 含银抗菌不锈钢的杀菌率可达到100%,耐蚀性能没有降低;

    The antibacterial rate is 100 % , and the corrosion resistance is equal to one without being treated .

  14. 介绍抗菌不锈钢的制备方法及应用,并讨论了抗菌不锈钢的抗菌机理。

    The article introduces the preparation and application of antibacterial stainless steel and discusses the antibacterial mechanism of the very steel .

  15. 包括加铜和加银的抗菌不锈钢,表面涂层抗菌不锈钢以及抗菌复合不锈钢板。

    The antimicrobial materials include the antimicrobial Cu bearing stainless steel , antimicrobial Ag bearing stainless steel , antimicrobial coated stainless steel and antimicrobial composite steels .

  16. 制备表面抗菌不锈钢的方法有化学热处理、磁控溅射、离子注入、溶胶-凝胶和化学沉积。

    There are various methods to obtain antibacterial surface on stainless steels , such as chemical heat treatment , magnetron sputtering , ion implantation , Sol-Gel , and chemical deposition .

  17. 结论,抗菌不锈钢是非溶出性抗菌材料,只有采用薄膜附着法定量抑菌试验才显示出明显的抑菌效果,其它试验方法均不显示出有效的抗菌作用。

    Conclusion : The antibacterial stainless steel is an undissolving antibacterial material and only thin-film adhering quantitative bacteriostasis test can show its antibacterial efficacy , while all other tests can not show its antibacterial effect .

  18. 本课题采用MEVVA离子源在不锈钢中注入Cu离子制备含铜奥氏体抗菌耐蚀不锈钢。

    Metal vapor arc ( MEVVA ) sources have been used for copper ion implantation to prepare the antibacterial stainless steel in this dissertation .

  19. 抗菌性不锈钢的开发与应用

    The Development and Application of the Antibiotic Stainless steel

  20. 用生物电子显微镜观察了抗菌处理前后不锈钢表面大肠杆菌的变化,讨论了Cu离子与细菌的作用机理。

    The changes of Escherichia coli on stainless steel were observed by bio-TEM .

  21. 含铜抗菌马氏体不锈钢的组织与性能

    Structure and Properties of Cu-Contained Antibacterial Martensitic Stainless Steel

  22. 本课题研究不锈钢的表面抗菌化,在不锈钢表面制备两种性质不同的抗菌膜层,即掺银TiO2、SiO2无机抗菌薄膜和掺银有机硅烷抗菌薄膜。

    This thesis is researching the surface antibacterial application in stainless steel . Preparing two antibacterial films that have different properties in the surface of stainless steel , silver doped TiO2 or SiO2 films and silver doped SCA ( Silane Coupling Agents ) film .

  23. 开发抗菌铁素体不锈钢可行性研究

    The feasibility study on exploiting germ resistance ferrite stainless steel

  24. 但经过抗菌处理后,不锈钢的耐腐蚀性能又得以恢复,使其具有与普通不锈钢同等的耐腐蚀性能。

    So stainless steel with antibacterial property has identical corrosion resistance of common stainless steel .

  25. 简要介绍了抗菌材料的分类、抗菌原理及其应用,综述了抗菌不锈钢发展现状及其特点、抗菌原理和应用情况,并对抗菌材料研究进行了展望。

    The classification , antibacterial principle and applications of antibacterial materials are briefly summarized . In addition , the history and current status , characteristics , antibacterial principle and applications of antibacterial stainless steels are reviewed . Moreover , prospects for future development in this area are suggested .