Fiber strength

美 [ˈfaɪbər streŋθ]英 [faɪbə streŋθ]
  • 网络纤维强度
Fiber strengthFiber strength
  1. The cotton fiber strength and it 's getting mechanism

    棉花纤维强度及其形成机制

  2. Evaluation of the Effect of Interfacial Treatment on Glass Fiber Strength Using Weibull Theory

    用Weibull评价表面处理对玻璃纤维强度影响

  3. Effect of Exogenous Materials on Cotton Fiber Strength Development in Low Temperature Conditions

    低温条件下外源物质对棉纤维比强度的影响

  4. Studies on Mechanism for the Fiber Strength Forming of Cotton in Xinjiang

    新疆棉区棉纤维比强度形成机理的研究

  5. The coating thickness also influences the fiber strength .

    涂层厚度对纤维强度保留率和复合材料强度也有影响,涂层厚度约为0.7μm时,效果最佳。

  6. Discussion of The Relation Between Single Fiber Strength and Bundle Fiber Strength ;

    分析了断裂强力、断裂伸长率与包覆度的关系。

  7. The fiber strength of competitive advantage could be as high as 15 % . 5 .

    断裂比强度的竞争优势可高达15%。

  8. Experiment study on the abrasion and impact performance of fiber strength latex mortar

    纤维增强聚合物水泥砂浆耐磨损及抗冲击性能的试验研究

  9. The importance of winding tension control to increase the developed fiber strength is discussed .

    讨论了缠绕张力控制对提高纤维发挥强度的重要性。

  10. The factors influencing the glass fiber strength

    玻璃纤维强度的影响因素

  11. Optical Fiber Strength and Preform Surface Treatment Techniques

    光纤强度与预制棒表面处理技术

  12. Evaluation of the effect of chemical medium on PBO fiber strength with Weibull method

    用Weibull方法评价化学介质对PBO纤维统计强度的影响

  13. Studies on the negative correlation between fiber strength and lint yield in cotton

    棉纤维强度与皮棉产量的负相关性研究

  14. While the heritability of fiber strength is low .

    比强度的狭义遗传力较低。

  15. Lipase deinking obtained the highest fiber strength and pulp yield ;

    纤维素酶脱墨对滤水性的改善最佳,但对强度略有不利影响;

  16. Genetic relationships between fiber strength and major economic characters in different generations in Upland Cotton

    不同杂交世代棉花纤维强度及主要经济性状的遗传研究

  17. The results of some experiments show that the optical fiber strength can be increased significantly by proper process .

    同时进行了对比实验,实验结果表明,正确的处理方法可显著提高光纤强度。

  18. By the test analysis of mixture design influencing on fiber strength , the paper introduces its test research for reference .

    通过对配合比设计中影响纤维强度因素的试验分析,为纤维混凝土配合比设计提供借鉴依据,便于确定最佳配合比。

  19. Model of Meteorology and Zoology on Cotton Fiber Strength

    纤维比强度气象生态模型的研究

  20. Effect of Matrix Strength and Fiber Strength Distribution on Tensile Fracture Behavior of B / A1 Composites

    基体强度和纤维强度分布对B/Al复合材料拉伸断裂特性的影响

  21. The mean of fiber strength was low , but there were several varieties possessing high fiber strength .

    比强度平均值较低,但也有少数高强力品种;马克隆值较大,纤维较粗。

  22. The results show that after the above treatments , a significant decrease of the fiber strength is observed .

    结果表明,经过上述处理后,纤维强力有较大幅度的下降。

  23. Fiber strength , Micronaire decrease with density and nitrogenous usage enhanced .

    比强度、马克隆值随密度和氮肥施量增加而减小。

  24. With the increase of cotton planting population , fiber strength changed according to a parabolic curve .

    随种植密度的增大,纤维比强度呈开口向下的抛物线变化趋势。

  25. Physiological Mechanisms of Variation in Temperature-Sensitivity of Cotton Fiber Strength Formation Between Two Cotton Cultivars

    不同棉花品种纤维比强度形成的温度敏感性差异机理研究

  26. Week treatment with NaOH solution ( 2 % ) results in 33 % decline of the fiber strength ;

    经2%的烧碱溶液处理1周后,纤维的强力下降约33%;

  27. 2.5 % span-length , uniformity and fiber strength were showed highly significant dominant effects ;

    25%跨长、整齐度和比强度还存在极显著的显性效应;

  28. Fiber strength was mainly affected by additive effects , which can be genetically improved by conventional breeding .

    比强度主要受加性效应控制,纯系育种是遗传改良的有效途径。

  29. Lint percent to fiber strength and micronaire had largest additive contribution .

    衣分对比强度和麦克隆值的加性贡献率最大。

  30. The fiber strength increased and elongation at break decreased with the solid content and the spinning pressure increases .

    随着含固量、喷丝压力增大,纤维强力提高,断裂伸长率下降。