fiber morphology

美 [ˈfaɪbər mɔːrˈfɑːlədʒi]英 [faɪbə mɔːˈfɒlədʒi]
  • 网络纤维形态
fiber morphologyfiber morphology
  1. Effect of Recycling on Fiber Morphology and Pulp Strength Property

    纸浆回用对纤维形态及强度性能的影响

  2. With the computer image analysis technology to make fiber morphology of the rapid measurement of parameters possible .

    随着计算机影像分析技术的发展,使纤维形态参数的快速测量成为可能。

  3. Influences of ultrasonic treatment on fiber morphology structure in bleaching process

    漂白中超声波处理对纤维结构及性能的影响

  4. Fiber Morphology and Basic Density of Fast growing Chinese Fir From Zhejiang

    浙江省速生杉木纤维形态及基本密度

  5. SWNTs concentration was important factor which could affect the fiber morphology .

    其中SWNTs的浓度对纤维的形貌有重要影响。

  6. Fiber morphology and chemical composition were determined .

    测定了它们的纤维形态和化学组成;

  7. Analysis on fiber morphology of soybean protein fiber and wool in the blended product

    大豆蛋白纤维在羊毛混纺产品中的形态变化

  8. Effect of recycling on fiber morphology and strength property of wood pulp was investigated .

    探讨了纸浆回用对纤维形态结构和主要物理强度性能的影响。

  9. Study on the Relation between Mechanical Properties and Fiber Morphology of Chinese Fir Wood from Plantations

    杉木人工林木材力学性质与纤维形态关系的研究

  10. Fiber Morphology of Some Scattered Bamboos and Main Properties of Physics and Chemistry

    部分散生竹材纤维形态及主要理化性能

  11. Comparative Study on Wood Fiber Morphology and Chemical Composition Between Different Fertilized Conditions in Poplar 69

    不同施肥条件下I-69杨木材纤维形态和化学成分的比较研究

  12. Effects of Beating on the Physical Properties and Fiber Morphology of High-Yield Pulps

    打浆对高得率浆物理性能及纤维形态的影响

  13. SEM Analysis of Fiber Morphology of Enzymatic Deinked Pulp of Mixed Office Waste

    混合办公废纸酶法脱墨浆纤维形态的电镜分析

  14. Fiber morphology , chemical composition and lignin characteristics of the tobacco stems studied were presented .

    本文研究了烟秆原料的纤维形态、化学组成和木素特性。

  15. The properties of chemical fiber morphology and structure make itself a wide use material for cloths and industry .

    化学纤维形态、结构和性能上的特点使其成为用途广泛的服用和产业用材料;

  16. The effects of the solution system and the rotating speed of cylinder on the fiber morphology were analysed .

    分析了溶液体系和滚筒转速对纤维形态结构的影响。

  17. Wood Properties and Fiber Morphology of Paulownia Hybrid Clones

    三种泡桐无性系木材材性及纤维形态的研究

  18. Study on the Within Tree Variation of Bark Deduction and Bark Fiber Morphology of Eucalyptus

    桉树树皮率及树皮纤维形态的株内变异研究

  19. The fiber morphology can be concisely summarized .

    可以对棉纤维的形态结构进行扼要地归纳。

  20. Study on the Fiber Morphology and Pulping and Papermaking Performance of a Fast-Growing Kenaf

    速生红麻纤维形态和制浆造纸性能研究

  21. The results show that voltage , polymer concentration , receiving distance and even environmental factors could impact on the fiber morphology .

    结果表明,外加电压的强度、高分子溶液的浓度、接收距离甚至是环境因素都会对纤维的形貌产生影响。

  22. Study on the Fiber Morphology , Tissue Ratios and Chemical Components of in the thick Roots of Cassava

    木薯粗根纤维形态、组织比量及化学成分的研究

  23. Effects of PFI beating on the fiber morphology and physical properties of Eucalyptus CTMP

    PFI打浆对桉木CTMP纤维形态和物理性能的影响

  24. Fiber Morphology and Pulping Properties of the Triploid of Populus Tomentosa at Different Ages

    不同树龄三倍体毛白杨纤维形态与制浆性能

  25. Effect of enzyme-aided bleaching of bagasse pulp on fiber morphology and pollutant generation

    蔗渣浆酶促漂白预处理对纤维形态性质和污染物发生的影响

  26. Analysis and comparison of rice , wheat straw fiber morphology and properties were undertaken before and after pretreatments .

    分析比较了稻、麦秸秆纤维预处理前后表面化学成分、表面形貌、吸湿性及浸润性能的变化情况。

  27. Influence of Age on Chemical Components , Fiber Morphology and Pulping Properties of Broussonetia papyrifera Bark

    不同年龄构树皮的纤维、化学特性与制浆性能研究

  28. SEM observation of polyblend fiber morphology

    共混纤维相形态的扫描电镜观察

  29. The fiber morphology and pore structure were characterized by scanning electron microscopy . The specific surface areas were measured by the BET method .

    通过SEM表征了纤维表面多孔的形态和大小,BET方法测定了多孔纤维的比表面积。

  30. The effects of process parameters on the fiber morphology were analyzed , such as spinning solution concentration , voltage , deposition distance , extrusion rate .

    分析了纺丝液浓度、电压、接收距离、挤出速度等因素对纤维形态的影响。