1) bamboo fiber mc pipe

竹纤维MC尼龙
2) MC nylon reinforced with carbon fiber

碳纤维增强MC尼龙
3) nylon fiber

尼龙纤维
1.
The interface properties of nylon fiber-rubber composites were studied by using single fiber pull-out method.
采用单纤维拔出的方法,研究了不同温度下尼龙纤维-橡胶复合材料的界面特性。
2.
The mixture of carbon fiber and nylon fiber can not only enhance the flexural strength,but also improve significantly the impact toughness of cement matrix.
碳纤维尼龙纤维混杂改性,既可提高水泥强度又可提高其韧性。
4) nylon fibre

尼龙纤维
1.
The results of experiments showed that when ceramic fibre was added to mortar with the volume fraction of 3%, the compression strength could be improved by about 44%, flexural strength could be improved by 7%~8%, impact strength could be improved by about 16%, when the volume fraction of nylon fibre was 0.
研究了单一陶瓷纤维、单一尼龙纤维及陶瓷尼龙混杂纤维水泥基复合材料的力学性能。
2.
A study of the carbon and nylon fibre mixture modified cement has been conducted by the authors, which shows that this way is the most effective method to enhance the strength and toughness of the mixture modified cement.
对碳纤维─尼龙纤维混杂改性水泥基复合材料研究表明,该方法是提高水泥基复合材料强度和韧性的最有效方法。
5) MC nylon

MC尼龙
1.
Impacts of nano-ZnO on the structure and properties of MC nylon;

纳米ZnO对MC尼龙结构和性能的影响
2.
Preparation and DSC analyses of MC nylon modified by copoly merization;

共聚改性MC尼龙的制备和DSC分析
3.
Preparation and Characterization of MC Nylon 6/SiO_2 Nano-meter Composites;

MC尼龙6/SiO_2纳米复合材料的制备与表征
6) MC nylon 6

MC尼龙6
1.
Non-isothermal Crystallization Kinetics of Silica/MC Nylon 6 In-situ Nano-scale Composites;
纳米二氧化硅/MC尼龙6原位复合材料非等温结晶动力学的研究
2.
Study of discrete relaxation time spectrum of MC nylon 6/Kevlar fiber compos-ite melts;

MC尼龙6/Kevlar纤维复合材料松弛时间谱的计算研究
3.
A new method of synthesizing carbon fiber(CF,whose surface is grafted by nylon 6)/MC nylon 6 in-situ composites is proposed and the composites are characterized.
提出一种表面接枝尼龙6的碳纤维/MC尼龙6原位复合材料的制备方法并加以表征。
补充资料:玻璃纤维增强尼龙
分子式:
CAS号:
性质:GFR-nylon 在尼龙树脂中加入一定量的玻璃纤维进行增强而得到的塑料(FR-PA)。可分为用包覆法制得的长玻璃纤维增强尼龙(纤维和塑料颗粒等长,一般约10mm)和以短切纤维经混炼,或连续纤维导入双螺杆挤出机连续剪切混炼制得的短玻璃纤维增强尼龙(玻纤长度约0.2~0.7mm)。与纯尼龙相比,其机械强度、刚性、耐热性、耐蠕变性和耐疲劳强度大幅度提高,伸长率、模塑收缩率、吸湿性、耐磨性下降。性能主要决定于纤维与树脂的黏合强度、含量、长径比和取向度。可注塑和挤出成型。广泛用于宇航、汽车、机械、化工等领域制造耐热受力结构塑料零部件
CAS号:
性质:GFR-nylon 在尼龙树脂中加入一定量的玻璃纤维进行增强而得到的塑料(FR-PA)。可分为用包覆法制得的长玻璃纤维增强尼龙(纤维和塑料颗粒等长,一般约10mm)和以短切纤维经混炼,或连续纤维导入双螺杆挤出机连续剪切混炼制得的短玻璃纤维增强尼龙(玻纤长度约0.2~0.7mm)。与纯尼龙相比,其机械强度、刚性、耐热性、耐蠕变性和耐疲劳强度大幅度提高,伸长率、模塑收缩率、吸湿性、耐磨性下降。性能主要决定于纤维与树脂的黏合强度、含量、长径比和取向度。可注塑和挤出成型。广泛用于宇航、汽车、机械、化工等领域制造耐热受力结构塑料零部件
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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