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tài
  • titanium
钛
[tài]
  • 一种金属元素,灰色,能在氮气中燃烧,熔点高。钝钛和以钛为主的合金是新型的结构材料,主要用于航天工业和航海工业。

[tài]
  1. 该公司生产钛合金。

    The company produces titanium alloy .

  2. 由于钛isextremely强,可耐刮伤,凹陷,和弯曲

    Because titanium isextremely strong , it is resistant to scratching , denting , and bending .

  3. 使用过的其它试剂有亚钛离子、亚铁离子氧,抗坏血酸和乙四胺四乙酸混合物。

    Among other reagents used have been titanousion , a mixture of ferrous ion , oxygen , ascorbic acid , and ethylenetetraaminetetraacetic acid .

  4. 通过浸渍法制备镧和镧钛改性膨润土吸附剂,探讨了处理含磷废水的最佳条件

    Bentonite absorbent modified by La and La-Ti was prepared with maceration method .

  5. ManB&W镍铬钛排气阀的检修铬镍渗碳钢的残余奥氏体

    Inspection and maintenance for MAN B & W nickel-chromium-titanium exhaust valve

  6. 钛基燃烧催化剂CO氧化活性的研究

    A study on the activity for CO oxidation of titania-based combustion catalysts

  7. 共析元素Fe在亚稳定β钛合金中的行为

    Effect of Fe-Eutectic Element on Property of Metastable β - Titanium Alloys

  8. 用盐酸调节反萃液pH为1,加热水解除钛;

    Adjusting the pH of stripping solution to 1 with HCl ; the Ti removed by hydrolysis ;

  9. 目的:探讨CT引导下经皮空心钛合金拉力螺钉内固定治疗骶髂关节损伤的临床疗效。

    Objective : To explore the clinical results of the percutaneous internal fixation of sacroiliac joint trauma by CT guided technique .

  10. 采用溶胶-凝胶(Sol-Gel)工艺在金属钛基底上制备SiO2薄膜。

    Silica films were prepared on titanium substrate by a sol-gel method .

  11. T.三种钛合金的高温渗氧行为

    Oxygen Permeation Behaviors of Three Titanium Alloys at High Temperature

  12. TiC颗粒增强非晶钛合金基复合材料的热稳定性

    Thermal stability of TiC Particulate Reinforced amorphous Ti alloy-based composite

  13. 钛Ⅳ催化考马斯亮蓝G褪色光度法测定痕量钛

    Kinetic spectrophotometric determination of trace titanium based on the catalytic effect of titanium ⅳ on the discoloring of coomassie brilliant blue G

  14. 熔盐电解还原TiO2制取海绵钛新技术研究

    Study on the Direct Electrolysis Reduction of Titanium Dioxide to Sponge Titanium

  15. 钛基Co中间层SnO2电催化电极的制备及性能研究

    Preparation and investigation of Ti-based SnO_2 electrode with an inter layer containing Co element

  16. 钛峰高与浓度在0.005-0.05μg/mL有线性关系。

    The polarographic peak height maintained a linear relation with the Ti concentration over 0 . 005-0 . 05 μ g / mL.

  17. 微细粒级钛铁矿浮选捕收剂ROB的作用机理

    Action Mechanism of Collector ROB in Panzhihua Ultrafine Ilmenite Flotation

  18. 以聚氧乙烯十二烷基醚为模板剂,钛酸四丁酯为钛源制备了中孔TiO2,探讨了焙烧温度和掺杂对中孔TiO2结构的影响。

    Mesoporous TiO_2 was prepared using polyoxyethylene-dodecyl-ether as a template and tetrabutyl titanate as a titanium source .

  19. 钛渣中TiO2作晶核剂对玻璃晶化的影响

    Effect of TiO_2 in slags bearing titanium on nucleation and crystallization of glass

  20. 钛宝石泵浦Cr,Nd:YAG微片的自调Q激光特性

    Ti : Sapphire Laser Pumped Cr ~ ( 4 + ), Nd ~ ( 3 + ): YAG Self-Q-Switched Microchip Laser

  21. 以四氯化钛和氨水为原料,在低温下制备锐钛矿型纳米TiO2溶胶。

    Anatase nano-TiO2 sol was prepared at low temperature with titanium tetrachloride and ammonia water as raw material .

  22. 钛基SiO2薄膜的制备及生物活性

    Preparation and Bioactivity of Silica Films Coated on Titanium

  23. SEM分析结果表明铱钽钛金属氧化物阳极涂层呈现多孔多裂纹形貌结构。

    The SEM results indicated that all coatings were of a porous and cracked_mud microstructure influenced greatly by the composition of coatings .

  24. 控制流过金属钛的电流密度,可以在表面形成TiO2薄膜。

    TiO2 thin film was prepared by electrothermal oxidation of metal titanium sheet through control of the current density .

  25. 硫酸钛水解制备TiO2纳米粒子载荷添加剂

    Preparation of loading additive with nano-sized titania particles from titanium sulfate using inorganic salt hydrolysis method

  26. TiC、TiB增强钛基复合材料的高温氧化性能及微观结构

    Oxidation Resistance and Microstructure of TiB / Ti 、 TiC / Ti Matrix Composites

  27. 钛基底HAP涂层生体活性材料的改性研究

    Denaturation Research on HAP / Ti Biomedical Material

  28. 目的:观察钛板加强固定的骨髓基质细胞(BoneMarrowStromalcells,BMSCs)和珊瑚复合物修复股骨缺损的能力。

    AIM : To observe the ability of bone marrow stromal cells ( BMSCs ) and coral composites strengthened by titanium plank in the repair of bone defect .

  29. 钛基Ti-Mn合金阳极在EMD生产中的应用

    Industrial Application of Titanium Based Ti-Mn Alloy Electrodes in EMD Production

  30. 以石墨为电极,采用电火花沉积的方法,在TC1钛合金表面制备了TiC涂层。

    TiC coating on TCI titanium alloy is deposited by electrospark process using the graphite electrode .