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1.
以聚酯型热塑性聚氨酯(thermoplastic polyurethane,TPU)、玻璃纤维(glass fiber,GF)和玻璃微珠(glass bead,GB)为主要原料制备了TPU/GF、TPU/GB共混物,考察了复合体系的热性能、微观结构、动态流变特性.研究发现,TPU是温敏型聚合物,其温敏性与材料的硬段含量有关,在加工过程中,除考虑剪切速率的影响外,需重点考虑温度对其加工性能的影响;GF,GB填充TPU体系具有良好的分散形态和界面结合牢度,GF和GB的加入能够增加体系的黏度,降低TPU的温敏性,加宽TPU的加工温度窗口,从而改善其成型加工性,并能一定程度地提高其耐热性.研究还发现,复合体系黏度的增加程度不仅和填料的含量有关,而且与填料的形状有关,可用等效直径表征.另外,从比表面积的角度比较了玻璃纤维和玻璃微珠对体系热稳定性的影响.  相似文献   

2.
用Raman光谱研究碳纤维/聚醚醚酮复合材料的界面结构   总被引:3,自引:0,他引:3  
用Raman光谱研究碳纤维/聚醚醚酮复合材料的界面结构李铁骑章明秋曾汉民(中山大学材料科学研究所聚合物复合材料及功能材料国家教委开放研究实验室广州510275)关键词界面结构,Raman光谱,碳纤维/聚醚醚酮复合材料随着近年来热塑性聚合物的加工...  相似文献   

3.
4.
本文采用扫描电子显微镜观察经氩等离子刻蚀后PEEK/碳纤维复合材料的界面层结构和PEEK树脂的结晶形态。无论是从熔体还是从橡胶体结晶,PEEK树脂的结晶都是从碳纤维表面诱导开始,最后形成横穿晶体结构。在高碳纤维含量的复合材料中,PEEK的球晶尺寸主要由碳纤维之间的距离控制,受温度的影响较小。在PEEK/碳纤维复合材料的结晶过程中,第一片晶片在碳纤维表面取向生长方式为:晶体的ā轴(厚度方向)平行于维纤径 向。b轴(晶片生长方向)与纤维最小圆截面的切线重合,(?)轴(垂直晶片平面的方向)平行于纤维轴向。由于球晶成核过程是取向生长,因而生成的球晶也按一定的方式取向。  相似文献   

5.
高分子复合材料界面结构研究   总被引:1,自引:0,他引:1  
高分子材料表、界面的结构变化或化学反应常影响该材料的性能。聚合物的表面结构及复合物的界面结构研究,对于工程材料、粘合及涂料工业都有重要的意义。近十几年来迅速发展起来的光谱技术,使这项研究工作可以普及到许多实验室去进行。其中X射线光电子能谱(XPS或称为ESCA)、俄歇电子能谱(AES)、离子散射光谱(ISS)、穆斯  相似文献   

6.
热塑性淀粉/蒙脱石复合材料性能研究   总被引:2,自引:0,他引:2  
用柠檬酸活化蒙脱石(CMMT),用尿素和甲酰胺塑化热塑性淀粉(UFTPS),制备了热塑性淀粉/蒙脱石(UFTPS/CMMT)复合材料.广角X-ray衍射(WAXD)、透射电子显微镜(TEM)表明,UFTPS和CMMT形成复合材料.CMMT质量分数2%~10%时,将复合材料在相对湿度50%(RH=50%)的环境下保存10 d,力学测试得出,复合材料的最大拉伸应力达到24.86 MPa,应变为134.50%,杨氏模量和断裂活化能分别由UFTPS的87.25MPa,1.87 N.m上升到复合材料625.25 MPa,2.45 N.m;可以看出,和纯UFTPS相比,复合材料强度明显提高;流变行为研究得出,通过改变加工温度和螺杆挤出机速度可以调整复合材料的流变行为;与传统的甘油体系相比,复合材料很好的抑制了材料长时间放置的结晶行为;并且该材料比纯UFTPS具有很好的耐水性能和热稳定性.  相似文献   

7.
热塑性树脂的增强:从原位复合材料到原位混杂复合材料   总被引:8,自引:0,他引:8  
何嘉松 《高分子通报》1997,(4):197-202,237
综述了两类增强的热塑性树脂的基本方面。一类是由原位形成的热致液晶聚合物微纤增强的原位复合材料。从实验上研究了获得有效增强效果的两个关键因素;致热液晶聚合物的基体树脂中的成纤,以及在液晶聚合物与基体树脂不相容共混物中的增容作用。另一类是由作者发明的原位混杂复合材料,这一类材料是用直径在两个数量级上的纤维和原位形成的微纤混杂增强的。  相似文献   

8.
含氰基的酚醛树脂,具有优异的耐高温性能和高温下的机械强度,在315℃下性能变化甚小;不着火,发烟量低,有良好的加工成型性能。热固化过程中氰基成三嗪环而交联,没有小分子脱出,是一类具有广泛发展前景的新型热固性树脂。  相似文献   

9.
金属基复合材料的界面分析   总被引:3,自引:0,他引:3  
用透射电镜、扫描电镜、X射线能谱仪和电子探针研究了碳化硅颗粒(SiCp)增强Al2014复合材料的微观结构和界面。鉴定了界面上和基体中三种主要的沉淀相:CuAl2、Cu2Mg8Si6Al5、(Mn,Fe)3SiAl12和高温下形成的条状Al4C3。试验指出,碳化硅和基体间的界面上没有Si和Al的相互扩散,并观察分析了SiCp/Al2014界面周围的无析出带和高密度位错  相似文献   

10.
聚丙烯基纳米碳纤维复合材料结晶行为研究   总被引:2,自引:0,他引:2  
采用示差扫描量热法(DSC)研究了纳米碳纤维对PP/CNF复合材料中PP结晶行为的影响。结果表明:纳米碳纤雏可提高PP的结晶温度,但略降低其结晶速率和结晶度。提高纳米碳纤雏含量或减小纳米碳纤雏直径,PP结晶行为的上述变化更为明显,但结晶速率随纳米碳纤维含量出现先减小后增大的趋势。  相似文献   

11.

Long glass fiber reinforced poly(butylene terephthalate) composites (LGF/PBT) were prepared by a new process. PBT oligomers with low melt viscosity were impregnated into the reinforcing glass fiber and then grafted to the reinforcing glass fiber surface treated with a silane coupling agent during solid‐state polymerization. The reinforcing glass fiber, after removing ungrafted PBT from LGF/PBT, was investigated with the result showing the presence of a grafted PBT layer on the surface of treated glass fiber. The mechanical properties of the composites were significantly improved owing to the grafting of the PBT macromolecules. The fiber length distribution and fiber arrangement in the injection molded composites were also studied and the results showed that a small amount long glass fiber could be connected at junction points in the composites, which were of benefit to the mechanical properties of the composites.  相似文献   

12.
贾航  乔越  张玉  孟庆鑫  刘程  蹇锡高 《化学进展》2020,32(9):1307-1315
近年来,工业界和学术界都将注意力聚焦在可持续天然纤维复合材料的开发上。玄武岩纤维具有高强度、高模量、耐高温、耐酸碱、隔热隔音、热振稳定性好、介电性能优异、绿色无污染及成本低等优点,玄武岩纤维增强树脂基复合材料凭借其优异的机械性能和可设计性被广泛地应用于飞行器、汽车、船舶、建筑、石油化工管道及风力发电机叶片等领域。然而,玄武岩纤维与聚合物基底间差的相容性导致玄武岩纤维增强树脂基复合材料存在诸多缺陷和不足。其中,界面强度不够高、界面相易被破坏的问题成为制约玄武岩纤维增强树脂基复合材料发展的瓶颈之一,因此许多玄武岩纤维增强树脂基复合材料研究工作集中在提高其界面结合能力上。本文介绍了玄武岩纤维增强树脂基复合材料的主要研究方向,以及几种常见的复合材料界面作用机理,并综述了近年来国内外关于玄武岩纤维增强树脂基复合材料界面增强改性方面的研究工作。  相似文献   

13.
报道了一种将短切碳纤维(CF)自发焊接成三维网络结构的新方法.研究发现,尼龙6(PA6)与CF具有较强的相互作用,SEM照片及储能模量高温平台表明,添加少量PA6能够在PS基体中形成耐高温的CFPA6自焊接骨架结构,PA6用量越多,高温储能模量越高,自焊接骨架结构强度越大.研究证明,这种自焊接骨架结构能够大幅度提高PS/CF复合体系的热变形温度,碳纤维具有优异的导电导热性能,碳纤维骨架结构能够降低导电临界浓度,增强面内导热系数.进一步分析表明,PA6在碳纤维表面定向聚集是一个动力学过程,CF-PA6自焊接骨架强度与PA6黏附率NPA6呈线性关系;扩大PA6与PS的黏度差,延长热压时间均有利于提高NPA6,进而大幅提高网络结构强度.  相似文献   

14.
碳纤维树脂复合材料回收再利用是碳纤维产业可持续发展的重要一环,因此受到学术界及产业界的广泛关注。 超临界流体回收碳纤维方法是一种高效、清洁,并且对碳纤维性能损伤较小的回收方法。 本文回顾了超临界流体回收碳纤维树脂复合材料研究进展,系统讨论超临界体系、反应条件、催化剂等对树脂降解率、回收碳纤维性能的影响,并对超临界流体回收碳纤维树脂复合材料的未来发展进行了展望。  相似文献   

15.
Polyacrylonitrile (PAN)‐based carbon fibers were electrochemically oxidized in aqueous ammonium bicarbonate with increasing current density. The electrochemical treatment led to significant changes of surface physical properties and chemical structures. The oxidized fibers showed much cleaner surfaces and increased levels of oxygen functionalities. However, it was found that there was no correlation between surface roughness and the fiber/resin bond strength, i.e. mechanical interlocking did not play a major role in fiber/resin adhesion. Increases in surface chemical functionality resulted in improved fiber/resin bonding and increased interlaminar shear strength (ILSS) of carbon fiber reinforced epoxy composites. The relationship between fiber surface functionality and the hydrothermal aging behavior of carbon fiber/epoxy composites was investigated. The existence of free volume resulted from poor wetting of carbon fibers by the epoxy matrix and the interfacial chemical structure were the governing factors in the moisture absorption process of carbon fiber/epoxy composites. Copyright © 2016 John Wiley & Sons, Ltd.  相似文献   

16.
碳纤维三向织物/环氧树脂复合材料的制备与力学性能   总被引:1,自引:0,他引:1  
选择不同纱线间距[即二经(纬)纱之间的中心距]尺寸的碳纤维三向织物,采用热压成型技术制备了碳纤维三向织物/环氧树脂复合材料.研究了纱线间距及样品裁剪角度等对力学性能的影响,并与碳纤维二向织物/环氧树脂复合材料的力学性能进行对比.结果表明,随着纱线间距尺寸从2 mm增加到6 mm,0°方向断裂强度从221. 7 MPa下降到148. 1 MPa,撕裂强力从1000 N下降到600 N; 90°方向断裂强度从50. 0MPa下降到22. 1 MPa,撕裂强力从330 N下降到100 N;顶破强力从424 N下降到216 N.这些力学性能的逐渐降低是单位面积的碳纤维增强体含量减少和织物的孔洞增大共同作用的结果.纱线间距为2 mm的碳纤维三向织物复合材料在0°(以纬纱为基准),30°,45°,60°和90°方向的断裂强度分别为221. 7,48. 5,44. 3,227. 7和50. 0 MPa,即断裂强度在0°和60°方向大于在30°,45°及90°方向.由三向织物的编织原理可知,0°与60°方向完全相同,因此其断裂强度相似,且样品中有一组纱线与外加载荷平行,对形变破坏具有一定的约束作用,而...  相似文献   

17.
The most fundamental parameter that controls the properties of fiber/epoxy composites is fiber content. Thus, exact calculation of carbon fiber content is important for product quality control and process optimization. In this study, four methods for calculating fiber content of continuous carbon fiber/epoxy composites were investigated. These four methods are processing statistical (PS), optical microscopy (OM), thermogravimetric analysis (TGA), and carbonization-in-nitrogen (CIN). The results show that the CIN and PS methods have high repeatability with no more than 4.7 wt.% deviation, and a relatively exact estimation of fiber content can be obtained by using both of them. A larger difference was generated when the TGA and OM methods were used to determine the fiber content. This is because the small amount of samples required by these methods is not sufficiently representative of the whole carbon fiber composite structure. The PS and CIN methods can be used as approved ways to calculate fiber content of carbon fiber/epoxy composites effectively.  相似文献   

18.
In this work, composite samples were prepared using Borassus fibers and a high-density polyethylene matrix. Alternatively, a chemically modified matrix (maleic anhydride grafted HDPE) was also used to improve fiber-matrix compatibility. The effect of fiber loading on the mechanical properties was investigated. Borassus fiber/modified HDPE composites exhibited improved mechanical performance as compared to pure HDPE composites. SEM studies on the fractured specimens of unmodified HDPE fiber composites reveal the poor fiber-matrix interaction, whereas the interaction is strong with enhanced mechanical properties for modified HDPE fiber composites. This is due to an improvement of the chemical bonding between the modified HDPE matrix and the Borassus fiber as also supported by Fourier transform infrared spectroscopy results. Thermal stability was also found to be enhanced slightly for modified HDPE composites.  相似文献   

19.
天然植物纤维增强可生物降解复合材料是一类性能优良、环境友好、可自然降解的绿色环保复合材料。众多天然植物纤维中,竹纤维不仅资源丰富、有优异的力学性能,还具有天然抗菌、除臭、吸湿放湿、抗紫外线等优点,广泛应用于复合材料的制备。本文对竹纤维增强可生物降解复合材料的增强体材料和基体材料特性、改性预处理方法、成型工艺和生物降解特性等性能评价的国内外研究现状进行了综述,同时还对竹纤维增强可生物降解复合材料的未来研究和发展趋势进行了展望。  相似文献   

20.
The mechanical properties and dynamic behavior of thermoplastic composites based on polypropylene/glass fibers and polypropylene/natural fibers (i.e. kenaf, hemp, flax) are presented. A survey is given on some aspects, crucial for the use of these composites in structural and non-structural components such as their vibration-damping response, in relation to the composite compaction level and the manufacturing procedure. In order to investigate a wide vibration frequency range, including acoustic frequencies, different testing techniques, both with forced and free vibrations, were applied. A comparison between natural fiber and glass fiber reinforced laminates is presented. Compaction levels, allowing to obtain the best compromise between mechanical performance and damping response, are investigated.  相似文献   

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