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- A popular use of Kevlar aramid fibers is in the manufacture of tire cord. 凯夫拉纤维多用于轮胎帘子布的生产。
- Tribological properties of acrylonitrile-butadiene rubber reinforced with Kevlar aramid fiber 芳纶纤维增强丁腈橡胶的摩擦性能
- The most popular aramid fiber on the world market is Kevlar. 世界市场上最常用的芳纶纤维是凯夫拉纤维。
- Kevlar aramid fiber 芳纶纤维
- Kevlar aramid fiber has an extremely high tenacity, approximately 22 grams per denier, which is more than five times the strength of a steel wire of the same weight and more than twice the strength of high -tenacity industrial nylon 凯夫拉纤维具有极高的强度,约为22克力/旦尼尔,该强度是相同重量钢丝的五倍以上,是高强工业尼龙的两倍以上。
- Reinforcement: Single braid of Kevlar aramid yarn or equivalent to fulfill the physical requirements of this standard. 加强件:单件开夫拉尔尼龙编织物或同等材料,能够满足本标准的物理要求。
- This model can be used to predict the tensile properties of aramid fiber. 此模型对芳纶的抗拉伸性能有预测作用。
- Meanwhile,the hook strength and the knot strength of aramid fiber are also introduced. 同时,对芳纶的抗钩接强度和抗打结强度也作了简介。
- The sisal pulp and aramid fiber were chose to fabricate the wet paper-base friction materials. 本文采用高性能芳纶纤维和剑麻纤维为原料制备湿式纸基摩擦材料。
- It was the important reason that the aramid fiber improved the tribological behaviors of NBR. 加入芳纶对NBR摩擦磨损形式的改变是NBR摩擦性能提高的重要原因。
- The results show that the Aramid fiber pretreated by RFL latex reinforced sealing material is perfect. 结果表明:用RFL乳液处理过的芳纶纤维增强橡胶基复合密封材料的性能最佳。
- As the special structure of Aramid fiber, it is difficult to adhere to resin because of a lower hydrophilicity. 但是由于芳纶纤维特殊的组织结构,其表面较低的浸润性和极性是影响与树脂胶体相粘结的主要原因。
- The bending and torsional properties of Aramid fiber are tested and are compared with other fibers. Their breaking mechanism is also discussed. 对芳纶纤维的弯曲和扭转疲劳进行了测试分析;并与其它纤维进行比较;对它们的破坏机理作了探讨.
- Aramid Fiber reinforced plastic sheet (AFS) applied in concrete structures is a new retrofit method in the field of civil engineering. 芳纶纤维布加固混凝土梁结构是一种新型结构加固方法。
- Aramid fiber was developed first and realized industrialisation production earliestly by America Dupont company in the sixties of the 20th century. 芳族聚酰胺纤维由美国杜邦公司于20世纪60年代首先开发并最早实现工业化生产。
- The chemical composition of the surface of aramid fiber treated by plasma was characterized by using X-ray photoelectron spectroscopy(XPS). 采用XPS表面表征技术对等离子体处理的芳纶纤维表面化学组成进行了分析。
- The results show that the maximum load of CFRP-cement and AFRP-cement increases obviously after carbon and aramid fiber sheets were modified by plasma. FRP被拉断,纤维高强的特点得到充分发挥。
- The paper-based fiber composite was studied.The sisal pulp and aramid fiber were chosen as the composition of base paper. 对纸基纤维复合材料的成型及有关影响因素进行了初步研究。
- Take high quality homemade or import advanced carbon fiber ad the basic material to wrap high strength Aramid fiber and made it by critically intertexture. 采用国产或进口优质碳纤维为基础材料,四角包覆高强芳纶纤维,精密交插编织而成。
- Abstract:It carries out an experimental research on shear-resistant experiments of brick masonry walls reinforced by aramid fiber reinforced polymer (AFRP). [摘要]通过芳纶纤维复合材料(AFRP)加固砖砌墙体的抗剪试验,探讨了AFRP加固砖砌墙体的抗剪受力机理。