potassium titanate

美 [pəˈtæsiəm ˈtaɪtəˌneɪt]

网络  钛酸钾

机械



双语例句

  1. Effect of potassium titanate whiskers on compressibility and friction properties of NAO friction material
    钛酸钾晶须对无石棉有机摩擦材料性能的影响
  2. Tribological Properties of Potassium Titanate Whisker Filled Epoxy Composite
    钛酸钾晶须填充环氧树脂复合材料的摩擦磨损特性
  3. Potassium titanate whisker modified by silane coupling agent to enhance the bending strength of dental composite resin
    硅烷偶联剂的用量对钛酸钾晶须增强复合树脂的抗弯强度的影响
  4. Modification of Polypropylene Composite Containing Potassium Titanate Whisker and Talcum
    钛酸钾晶须及滑石粉复合增强聚丙烯
  5. Study on friction and wear properties of potassium titanate Whiskers-Reinforced PTFE Composites
    钛酸钾晶须增强聚四氟乙烯复合材料的摩擦磨损性能
  6. Potassium titanate whisker is an advanced material with micrometers length.
    钛酸钾晶须是一种尺寸在微米级的高性能先进材料。
  7. Nylon 66 was effectively toughened with potassium titanate whiskers which were surface modified with an elastic epoxy resin.
    钛酸钾晶须用弹性体表面改性后实现了对尼龙66的有效增韧。
  8. The Interface Properties of Potassium Titanate Whiskers
    钛酸钾晶须界面性质研究
  9. Aluminum matrix composites reinforced with potassium titanate whiskers were prepared by squeezing casting process. The thermal expansion and dimensional stability of such composites were investigated.
    用挤压铸造工艺制备了钛酸钾晶须增强铝基复合材料,研究了其热膨胀系数和热循环尺寸稳定性。
  10. Properties of Potassium Titanate Whiskers and Calcium Sulphate Whiskers Modified Epoxy Resin
    钛酸钾晶须及硫酸钙晶须改性环氧树脂
  11. Synthesis of Potassium Titanate Fibers by the KDC Method
    KDC法合成钛酸钾纤维的研究
  12. Developments of Inorganic Whisker Research: Preparation and Application of Potassium Titanate Whisker
    无机晶须研究进展Ⅰ:钛酸钾晶须的制备及应用
  13. In this paper, the effect of potassium titanate whisker/ polychloroprene on the physical and mechanical performance of ruber composites have been studied.
    本文研究了钛酸钾晶须对氯丁橡胶复合材料物理机械性能的影响。
  14. The physical property of whisker and its reinforcement on plastics were presented brief-fly The compounding technology of resin and whisker such as potassium titanate calcium carbonate, aluminium borate etc. was discussed, and the application of the composite plastics material was also presented.
    简述了晶须材料的物理性能及对塑料材料的增强作用,着重介绍了钛酸钾、碳酸钙、硼酸铝等晶须材料与树脂的复合工艺及塑料复合材料的应用。
  15. The technology for the plasma spraying of potassium titanate thermal barrier coating was investigated using orthogonal test.
    为了探索六钛酸钾热障涂层的制备工艺,通过正交试验分析方法,采用等离子喷涂工艺制备了钛酸钾热障涂层。
  16. In all the potassium titanate coating blood-compatibility surpasses the titanium alloy.
    钛酸钾涂层的血液相容性更优于钛合金合金。
  17. Researches and applications of potassium titanate whisker
    钛酸钾晶须的研究及应用
  18. The Study of the Surface Modification and Characterization and Interface Property of Potassium Titanate Whiskers
    钛酸钾晶须的表面改性和表征及界面性质的研究
  19. Effect of PP/ IIR composite added with potassium titanate whisker and wollastonite was studied.
    研究了六钛酸钾晶须、针状硅灰石对PP/IIR(聚丙烯/丁基橡胶)复合体系力学性能的影响。
  20. KOH sub-molten salt method was studied for preparing potassium titanate whiskers and titanium dioxide by using titaniferous slag as the raw material. The effects of reaction temperature, reaction time, initial KOH concentration and mass ratio of alkali-to-slag on the morphology of the products were investigated.
    研究了以高钛渣为原料、采用KOH亚熔盐法制备钛酸钾晶须和二氧化钛的新方法,探讨了反应温度、初始KOH浓度、反应时间和碱矿比等因素对钛酸钾晶须形貌的影响。
  21. TEM was used to analyze the microstructure, the result indicated that the high quality potassium titanate whiskers with good crystallinity and high output were gained.
    利用TEM对晶须的微结构进行分析和表征。结果表明,晶须的结晶度和外观质量好,收率高。
  22. Study on Potassium Titanate Whisker/ A-90 Rubber Composites
    钛酸钾晶须/A-90橡胶复合材料的研究
  23. Study on property of PP Modified with potassium titanate whisker
    钛酸钾晶须改性聚丙烯的性能研究
  24. Treating Surface and Applications of Potassium Titanate Whiskers in Polymer
    六钛酸钾晶须的表面处理及其在高分子材料中的应用
  25. With its wind tunnel structure, potassium titanate whiskers will have structural heat insulation properties.
    由于六钛酸钾晶须的风洞状结构,使其具有结构隔热性能。
  26. The microstructure and phase composition of potassium titanate sinters were analysed using SEM and XRD. The surface energy of potassium titanate was tested by capillarity osmosis process.
    使用SEM、XRD等观察和分析钛酸钾晶须形态、烧结体的微观结构与其相组成,通过毛细渗透法对钛酸钾晶须的表面能进行了研究。