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1.
短切炭纤维增强沥青基C/C复合材料的组织特征   总被引:4,自引:8,他引:4  
利用新型、高效的模压半炭化成型工艺,在大气环境下制备出了短切炭纤维增强沥青基C/C复合材料制品,并借助光学显做镜和扫描电镜对其微观组织和断口形貌进行了观察。通过分析,解释了短切炭纤维增强沥青基C/C复合材料中炭纤维损伤的形成机制,提出了作为增强体相的短切炭纤维和焦炭颗粒与基体炭之间独特的界而结构模型。研究还表明:复合材料中明显存在着基体相和颗粒相一基体相的显微结构不仅呈层片状,而且层片状的结构好像数层桔子皮,将颗粒相包裹起来,这种“桔皮包裹”式的结构与炭纤维表面的POG结构基本相似。  相似文献   

2.
短切炭纤维增强沥青基C/C复合材料的力学性能   总被引:9,自引:7,他引:9  
利用模压半炭化成型工艺在大气环境下制备出了短切炭纤维增强沥青基C/C复合材料(简称SCFRC)。研究了短切炭纤维的体积分数对SCFRC材料的体积密度和力学性能的影响规律。借助光学显微镜和扫描电镜对其微观组织和断口形貌进行了观察,分析了短切炭纤维对SCFRC材料的增强机制。结果表明,当短切炭纤维的体积分数由0%增大到11.8%时,SCFRC材料的力学性能随之呈线性增加;短切炭纤维增强SCFRC材料的机制主要有裂纹偏转效应、桥联效应以及脱粘和拔出效应。  相似文献   

3.
粉末冶金法炭纤维/Mg复合材料的界面对其力学性能的影响   总被引:1,自引:0,他引:1  
采用表面化学镀镍前后的短炭纤维(Cf)做为增强体,纯镁粉为基体金属,通过粉末冶金法和热挤压制备镁基复合材料.采用SEM-EDS、TEM、XRD和拉伸等测试手段表征短炭纤维增强镁基复合材料的微观形貌、元素组成、物相组成及其力学性能.结果表明:炭纤维在复合材料中分布均匀且沿挤压方向定向排列;采用经过表面化学镀镍处理的短炭纤维与金属镁复合后界面结合状态优良,Mg2Ni物相的存在表明润湿性的改善是通过金属镁与涂层发生反应而实现;对比屈服强度测试值和理论计算值的大小,表明涂层炭纤维增强镁基复合材料的增强机理主要是界面载荷传递效应.  相似文献   

4.
采用热压机层压成型工艺制备了苎麻短纤维(SRF)层间增韧碳纤维/环氧树脂(CF/EP)复合材料层压板,研究了SRF的长度、面密度及其表面偶联处理对CF/EP复合材料层间断裂韧性的影响,并进一步研究了SRF的铺入对复合材料弯曲、拉伸性能的影响。研究结果表明,层间SRF的铺入明显改善了CF/EP复合材料的I型和II型层间断裂韧性(G_(IC)和G_(IIC)),当表面偶联处理的纤维长度为6mm、面密度为12g·m~(-2)时,增韧效果最佳,GIC由497.48J·m~(-2)增加到667.54J·m~(-2),提高了34.24%;GIIC由508.52J·m~(-2)增加到862.11J·m~(-2),提高了69.54%。此外,铺入SRF对复合材料的弯曲、拉伸性能也有一定程度的提高。通过SEM观察发现,SRF的增韧机制与其层间桥联以及裂纹扩展过程中从基体中拔出与劈裂等现象有关。  相似文献   

5.
Shape memory alloys (SMAs) possess both sensing and actuating functions due to their shape memory effect, pseudo-elasticity, high damping capability and other remarkable characteristics. Combining the unique properties of SMAs with other materials can create intelligent or smart composites. In this paper, epoxy resin composites filled with Ni–Ti alloy short fibers were developed. Microstructure was observed using digital HF microscope. The dynamic mechanical properties were investigated by measuring the first vibration mode of clamped cantilever beams and by dynamic mechanical analysis (DMA). Moreover, the natural frequency of SMA composites was predicted theoretically. As a result, the temperature dependency of vibration property and DMA characteristics is affected largely due to the addition of SMA short fibers. The vibrational characteristics of SMA composites can be improved by the addition of small amounts of SMA short fibers. The addition of 3.5 wt.% of SMA short fiber content to epoxy resin resulted in the maximum increment in both natural frequency and storage modulus. This suggested that there exists an optimum SMA fiber content for vibration characteristics.  相似文献   

6.
以电解铜粉和酚醛树脂包覆的毫米级短碳纤维为原料,通过球磨-冷压-加压烧结制备了微米级短碳纤维/铜复合材料,研究了短碳纤维长度和分散程度对材料力学和摩擦性能的影响.结果 表明:球磨工艺可有效缩短碳纤维长度,制备均匀分散且长度均匀(20 ~40 μm)的微米级碳纤维,进而保证了材料在摩擦过程中可连续产生均匀细小的碳颗粒以阻碍材料的黏着,改善材料的摩擦稳定性和耐磨性.球磨时间不足时,短碳纤维长度差异大且局部存在纤维缠结,摩擦过程中富铜区黏着加剧,易产生片状脱落,磨损较大(2.32×10-4mm3/(m· N));球磨时间过长时,短碳纤维损伤严重,产生大量碳颗粒与短碳纤维共存,过多的碳铜界面和缺陷促进了材料摩擦过程中疲劳损伤导致的大量剥层磨损,耐磨性降低;球磨3h制备的复合材料综合性能较好,弯曲强度和体积磨损率达到332.9 MPa和1.00×10-4mm3/(m·N),摩擦系数波动范围宽度约为0.0834.  相似文献   

7.
通过钩针工艺将活性碳纤维(ACF)和玻璃纤维(GF)混编,提高了频率选择性表面(FSS)的可设计性和复杂性,制备了ACF钩针结构单元电路屏碳纤维/环氧树脂(ACF/EP)复合材料。研究了不同编织结构和ACF质量分数对复合材料吸波性能的影响。结果表明:ACF质量分数为100%的4针枣形FSS的ACF/EP复合材料和质量分数为50%的16针枣形FSS复合材料的最大反射损耗(RL)可以达到-50dB以上,有效吸收带宽(RL-10dB)达10GHz以上。复杂的钩针设计使ACF/EP复合材料的多孔结构增多,有效吸收带宽变宽,4针枣形结构具有较多不规整孔径使吸波效果显著。适量的ACF质量分数结合编织结构有利于获得理想的CF/EP吸波复合材料。  相似文献   

8.
纤维增强聚合物复合材料的压缩性能与聚合物基体力学性质密切相关。本文利用连续碳纤维(CF)和含有均匀分散的SiO2纳米颗粒改性的环氧树脂基体,制备了CF-nano SiO2/Epoxy微纳米多相复合材料单向层合板,并对其轴向压缩性能进行了系统的研究。试验表明,将纳米颗粒引入基体能够有效提高纤维增强聚合物基复合材料的压缩强度,占nano SiO2/Epoxy体积为8.7%的纳米颗粒可将复合材料的压缩强度提升约62.7%。基于单向层合板的弹塑性微屈曲模型对纳米颗粒的增强效应进行了理论分析。根据含纳米颗粒的环氧树脂在压缩过程中的损伤行为,提出了一套基于加卸载试验建立纳米复合材料基体压缩本构关系的方法。将模型获得的基体本构关系与经典复合材料弹塑性微屈曲模型耦合,能够较为准确地预测本研究制备的微纳米多相复合材料的压缩强度。经试验检验,预测结果与实测数值达到很好的一致性。   相似文献   

9.
Polyimide (PI) composites filled with short carbon fibers (SCFs), micro SiO2, and graphite (Gr) particles were prepared by means of hot press molding technique. The friction and wear properties of the resulting composites sliding against GCr15 steel were investigated on a model ring-on-block test rig. Experimental results revealed that single incorporation of graphite and SCF significantly improve the tribological properties of the PI composites, but micro SiO2 was harmful to the improvement of the friction and wear behavior of the PI composite. It is found that a combinative addition of Gr, SCF and micro SiO2 was the most effective in improving the friction-reducing and anti-wear abilities of the PI composites. Research results also show that the filled PI composites exhibited better tribological properties under higher PV-product.  相似文献   

10.
A series of short carbon fiber (CF) and micro hollow glass bead (HGB) filled polyurethane (PU)/epoxy resin (EP) graft interpenetrating polymer network (IPN) composites were prepared. The damping properties, thermal stability properties as well as tensile and impact strength of IPN composites were studied systematically. Results revealed that the addition of short carbon fiber and micro HGB can significantly improve the damping properties of pure PU/EP IPN and can improve the thermal decomposition temperature. Mechanical tests showed that the tensile strength of the IPN composites could be improved after the incorporation of short carbon fiber and micro HGB, while the impact resistance of the composites was impaired after the addition of micro HGB. It is expected that the carbon fiber and micro HGB filled IPN composites may be used as structural damping materials.  相似文献   

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