rubber matrix

英 [ˈrʌbə(r) ˈmeɪtrɪks] 美 [ˈrʌbər ˈmeɪtrɪks]

网络  橡胶基质

化学



双语例句

  1. An aramid pulp ( AP) predispersion with short fibre well-dispersed in rubber matrix was prepared by modifying the surface of the AP superfine short fibre with the proprietary AP pretreating technology.
    采用芳纶浆粕预处理方法专利技术对芳纶浆粕超细短纤维表面进行改性处理,制备在橡胶基质中纤维分散性良好的芳纶浆粕预分散体。
  2. A finite element model for rubber matrix composite structures is developed in this paper.
    建立了一个橡胶复合材料结构有限元分析模型。
  3. Influence of polarity of rubber matrix on micro-structure and properties of RCNs with high filling clay amount
    橡胶基体极性对高填充量橡胶/黏土纳米复合材料微观结构与性能的影响
  4. The reinforcing material is added to provide strength and stiffness to the rubber and bonding to the rubber matrix is required to obtain the optimum performance.
    在复合材料中增强材料用来提供橡胶的强度及刚性,其与橡胶基体需要良好的粘接以使得增强橡胶制品具有最佳性能。
  5. Effect of diameters of filler to conductivities of rubber matrix composites Local Test Study of Vibroflotation on Hydraulic Backfilled Silty and Fine Sand without Additional Backfill Materials
    橡胶基导热复合材料中填充粉体粒径对导热性能的影响无填料振冲法加固吹填粉细砂现场试验研究
  6. Preparation and Properties of Silicon Rubber Matrix Nanocomposites with High Dielectric Permittivity and High Elastic
    硅橡胶基高介电高弹性纳米复合材料的制备及性能研究
  7. The interaction between mineral fillers and silicone rubber matrix was systematic investigated by using material physical chemistry and composite method.
    采用材料物理化学和复合材料的方法,系统地研究了8种矿物及其超细粉体和改性粉体与硅橡胶基体的相互作用。
  8. It was shown that MLPB could improve the interface combination between the organic fillers and the rubber matrix, and could increase the tear strength and the stickiness of the IIR rubbers.
    研究表明,MLPB能在一定程度上提高有机填料与橡胶基体之间的界面结合强度;同时,也能有效地提高IIR胶料的自粘性能和撕裂强度等性能指标。
  9. The TEM pictures showed that the hydrophilic component was dispersed homogeneously in rubber matrix;
    TEM研究证明,水溶性单体与橡胶共混可制得亲水组分在橡胶相中分散均匀的WSR;
  10. Large deformation finite element analysis for rubber matrix composite structures
    橡胶复合材料结构大变形有限元分析
  11. Study on the Mechanical and Aging Performances of Rubber Matrix Nanocomposites
    橡胶基纳米复合材料的力学与老化性能研究
  12. A transition layer formed in the interface of the aramid fiber and NR/ ESBR, the modulus of which lied between high modulus of aramid fiber and low modulus of rubber matrix.
    芳纶纤维与NR/ESBR的界面存在介于高模量芳纶纤维和低模量橡胶之间的过渡层。
  13. Research on dispersed states of the bulking and strengthening agents in the rubber matrix
    填充补强剂在橡胶基质中分散状态的研究
  14. Reattachment of the muscles to the bone graft area was found. Using improved silicon rubber matrix to correct mandibular
    植骨区肌附丽通过肌-骨-假体三者有机结合,形成假体-肌的真正附丽。改良硅胶假体矫治小颌畸形
  15. The effect of the epoxy-multifunction additive on the dispersion of the carbon black in the natural rubber matrix
    一种环氧基小分子多功能添加剂对炭黑在天然橡胶基体中分散性的影响
  16. Moreover, as the zeolite content is about 30 wt%, there is a change that the continuity of silicone rubber matrix in zeolite filled membrane is destroyed.
    此外,沸石填充膜的结构在30wt%填充量附近有一改变,表明膜中硅橡胶的连续性遭到破坏。
  17. Length/ Diameter Ratio of Short Fibers and Its Distribution in Rubber Matrix Composites
    橡胶基复合材料中的短纤维长径比及其分布
  18. The results showed that the layer crystal structure of MoS_2 couldn't be broken by mechanical blending, and the bonding between MoS_2 particles and rubber matrix was poor;
    结果表明,机械共混不会破坏二硫化钼的层状晶体结构,二硫化钼粒子与橡胶基体界面结合较差;
  19. SEM analysis showed that the dispersion of carbon black in P ( CR/ SRF) are better than that of CR/ SRF, which gives carbon black filled powdered polychloroprene rubber a good respect in improving the dispersion of filler in the rubber matrix.
    扫描电镜(SEM)分析表明,炭黑在P(CR/SRF)中的分散程度优于CR/SRF,采用粉末化技术有利于提高填料在橡胶基体中的分散效果。
  20. Detail analysis led to the point that the improved properties of vulcanizates are substantially due to the La3+ which improves the dispersed uniformity of carbon black particle in the rubber matrix and the adhesion between carbon black particle and rubber matrix.
    进一步分析得出,硫化胶性能得以改善的根本原因是La3+改善了炭黑粒子在橡胶基体中的分散均匀性及其与橡胶基体的黏结牢固性。
  21. The analysis on SEM showed that the N 330 dispersed uniformly in the rubber matrix without free carbon black particle.
    SEM分析表明,炭黑粒子被包埋在SBR基体中,无游离炭黑存在。
  22. The higher the dispersity of nano-magnesium hydroxide powder, the stronger the interfacial action between nano-magnesium hydroxide powder and rubber matrix, and the better the physical properties of composite;
    纳米氢氧化镁粉体分散度越高,与基体的界面作用越强,复合材料的物理性能越好;
  23. SEM showed that the modified NCC can be uniformly dispersed in natural rubber matrix, leading a good compatibility.
    SEM显示,改性NCC能在天然橡胶基体中均匀分散,且二者相容性较好。
  24. SEM results showed that the absorbers were dispersed evenly in rubber matrix.
    SEM结果表明吸波剂在复合材料中得到了良好的分散。
  25. The different polarity between rubber and water-absorbable resin caused the poor dispersion of water-absorbable resin in rubber matrix and the poor performance of WSR when the water-swelling rubber ( WSR) were prepared by physical blending.
    通过物理共混方法制备吸水膨胀橡胶(WSR)时,由于橡胶与吸水树脂的极性相差很大,导致吸水树脂在橡胶基体中的分散性不好,对WSR的性能及使用产生一定的影响。
  26. The dispersion of clay in rubber matrix determines the final properties ofrubber/ clay nanocomposites ( RCNs).
    橡胶/黏土纳米复合材料(RCNs)中,黏土在基体中的分散状态决定了材料的最终性能。
  27. Combinding with the investigation of filler dispersion status, rubber/ filler interfacial structure and filler network of the nanocomposites, the synergistic reinforcing mechanism of multiphase fillers on the rubber matrix were clarified.
    对胎面材料的粒子分散状态、界面结构、填料网络等进行了表征,并对多相纳米填料在橡胶基体中的协同增强机理进行了探讨。
  28. The mechanical properties of vulcanizates were tested through the universal material test machine and the carbon black particles dispersed in rubber matrix by scanning electron microscopy ( SEM).
    通过万能材料试验机测试硫化胶的物理机械性能,以及利用扫描电镜(SEM)观察了炭黑颗粒在橡胶基体中分散情况,提出了亲水性炭黑对天然胶乳的补强机理。
  29. When pyrophyllite was filled in rubber matrix directly or with high quantity, it was difficult to disperse uniformly which resulted in descent of the properties of composites because of their poor interfacial interaction.
    由于叶蜡石与橡胶的相容性不好,直接或大量填充时,在橡胶中难以均匀分散,且与橡胶基体的结合力很弱,导致复合材料的性能下降。