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tzp

  • 网络氧化锆;陶瓷;氧化锆陶瓷
tzptzp
  1. Development and Application of the Wire Drawing Die of TZP Ceramics

    TZP陶瓷拉丝模的开发与应用

  2. The Wear Mechanisms Transition Map of TZP Ceramics under Dry Sliding

    TZP陶瓷在干摩条件下的磨损机制转变图

  3. The High Temperature Wear Mechanisms of TZP Ceramics

    TZP陶瓷的高温磨损机理研究

  4. Studies on TZP Ceramics Mould by Nanometer Powder Composite

    纳米复合TZP陶瓷模具的研制

  5. Preparation and mechanical properties of Y TZP toughening ceramics

    Y-TZP增韧陶瓷的制备及力学性能

  6. Study on Friction-Wear Properties and Wear Mechanism of Diamond Particulate Dispersed TZP Ceramics

    金刚石弥散TZP陶瓷的摩擦和磨损性能及其磨损机制的研究

  7. Application of TZP / TiC / Al 2O 3 Ceramic Composite in Drawing Die

    TZP/TiC/Al2O3陶瓷复合材料在模具中的应用

  8. Y - TZP Low - Temperature Aging

    Y-TZP材料低温老化研究进展

  9. Influence of mullite on friction and wear of Y - TZP ceramics

    莫来石对Y-TZP陶瓷摩擦磨损性能的影响

  10. The effect of y_2o_3 and ceo_2 composite additives on mechanical property of TZP

    Y2O3,CeO2复合稳定剂对TZP性能的影响

  11. Nanometer Composite Powder Characterization of 3Y - TZP Prepared by Co-precipitation Method

    共沉淀法制备3Y-TZP纳米复合粉的性能表征

  12. Quantitative Adsorption of Ammonium Salt of Polyacrylic Acid on Nano size Y TZP

    聚丙烯酸铵在纳米Y-TZP上的定量吸附研究

  13. Experimental Investigation on the Microstructures and Mechanical Properties of Ce - TZP / Al_2O_3 Composite Ceramics

    Ce-TZP/Al2O3复相陶瓷组织与力学性能的试验研究

  14. High Temperature Lubrication of TZP Ceramics

    TZP陶瓷的高温润滑研究

  15. The preparing processes for ceramic foam filters of TZP ( Al2O3 ) were investigated .

    研究了TZP(A12O3)材质泡沫陶瓷过滤器的制备工艺。

  16. Sintering and properties of Y - tzp / glass composite as dental All-ceramics materials

    Y&TZP/玻璃复相牙科全瓷材料的烧结与性能

  17. Densification and mechanical properties of al_2o_3 / 3y – tzp composites prepared by liquid phase sintering

    液相烧结Al2O3/3Y–TZP复相材料的致密化与力学性能

  18. Kinetics of electrode reaction for electrophoretic deposition ofsic_w / tzp ceramic composites

    SiCw/TZP陶瓷复合材料电泳沉积电极反应动力学研究

  19. XPS and IR study on chemical bonds at the interfaces of sic_w / coatings / tzp Composites

    SiCw/涂层/TZP陶瓷复合材料界面化学键的XPS和IR研究

  20. Interfacial and Compositional Design and Mechanical Properties of SiC ( w ) / TZP + mullite ( p ) Composites

    SiC(w)/TZP+mullite陶瓷复合材料界面和组成设计与力学性能

  21. Finally , phase contents of TZP ce - ramics are determined after several heating-cooling cycles .

    并测定了经过热-冷循环后的TZP陶瓷的相组成,观察TZP陶瓷相组成的稳定性。

  22. Effect of the coatings on whisker surface on the mechanical proper-ties and interface structure of SiC whisker / tzp ceramic composites

    晶须表面涂层对SiCw/TZP陶瓷复合材料力学性能和界面结构的影响

  23. Transformation Toughening in Ce & TZP

    Ce&TZP材料的相变增韧

  24. The addition of second phase particles to TZP matrix as a ceramic composite is an effective way to improve the toughness and high temperature properties of TZP .

    在TZP基体中加入第二相粒子成为复合材料,是提高TZP韧性和高温力学性能的有效方法。

  25. The wear and damage behaviour of the drawing die and the influences of TZP transformation and TiC particles on wear and damage resistence are studied .

    探讨了复合材料在用作螺旋丝拉拔模具时的磨损和破损行为,研究了TZP和TiC对模具磨损和破损性能的影响。

  26. Effect of mullite whisker contents on the microstructure and mechanical proper-ties of mullite ( w ) / TZP ceramic composites were studied .

    研究了mullite(w)含量对mullite(w)/TZP复合材料显微结构和力学性能的影响。

  27. Tetragonal Zirconia Polycrystal ( TZP ) stabilized with Y_2O_3 ( Y-TZP ) is widely used because of its good mechanical properties .

    氧化钇稳定的四方多晶氧化锆(Y-TZP)增韧陶瓷是一种力学性能优越,应用十分广泛的结构陶瓷。

  28. The paper studies the erosion behavior of two groups of toughened ceramics , ZTA and TZP , at the ambient temperature , 320 and 500 C respectively .

    本文研究了在室温、320℃、500℃等三种温度下两类陶瓷(氧化锆增韧氧化铝陶瓷,ZTA,与四方氧化锆多晶陶瓷,TZP)的冲蚀性能。

  29. The optimum deformation temperature , initial strain rate and the maximum elongation of Y & TZP ceramics are determined and the value of strain rate sensitivity m is obtained experimentally .

    通过实验找出Y-TZP陶瓷超塑性变形的最佳温度、初始应变速率及最大的变形量,并求出应变速率敏感性指数m值。

  30. Tetragonal Zirconia Polycrystals ( TZP ) with superfine grains and high flexural strength were obtained by adding certain additives into 3Y-TZP power and sintering at low temperature .

    通过在3YTZP(TetragonalZirconiaPolycrystalsstabilizedwith3mol%Y2O3)中加入适当含量的硅酸盐玻璃添加剂,使其烧结温度明显降低,并且制备出具有细晶粒、高强度的四方相氧化锆增韧陶瓷材料。