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1.
The internal causes of latent-crimp were analyzed bystudying the supermolecular structures of the standardpolyester fibers(PET),copolyester fibers(IPET)andtheir side-by-side composite fibers(PET/IPET)inthis paper.It is concluded that IPET and PET/IPEThave better latent-crimp ability because of their asym-metric supermolecular structures.At the same time,they have good dyeability and mechanical properties.Soit is a simple and low cost process to manufacture latent-crimp continuous fibers by melt-spinning of the co-polyester IPET.  相似文献   

2.
PVA composites fibers with a large fraction of multi-walled carbon nanotubes modified by both covalent and non-covalent functionalization were produced by a wet-spinning process.Model XQ-1 tensile tester,thermogravimetric analysis,scanning electron microscopy,differential scanning calorimetry,and wide-angle X-ray diffraction were used to characterize the properties of PVA/MWNT composite fibers.The TGA results suggested that MWNTs content in composite fibers were ranged from 5.3 wt%to 27.6 wt%.The mechanical properties of PVA/MWNT composite fibers were obviously superior to pure PVA fiber.The Young's modulus of composite fibers enhanced with increasing the content of MWNTs,and it rised gradually from 6.7 GPa for the pure PVA fiber to 12.8 GPa for the composite fibers with 27.6 wt%MWNTs.Meanwhile,the tensile strength increased gradually from 0.39 GPa for the pure PVA fiber to 0.74 GPa for the composite fibers with 14.4 wt%MWNTs.Nevertheless,the tensile strength of the composite fibers decreased as the MWNTs content up to 27.6 wt%.SEM results indicated that the MWNTs homogeneously dispersed in the composite fibers,however some agglomerates also existed when the content of MWNTs reached27.6 wt%.DSC results proved strong interfacial interaction between MWNTs and PVA chain,which benefited composite fibers in the efficient stress-transfer.WXAD characterization showed that the orientation of PVA molecules declined from 94.1%to 90.9%with the increasing of MWNTs content.The good dispersibility of MWNTs throughout PVA matrix and efficient stress-transfer between MWNTs and PVA matrix may contributed to significant enhancement in the mechanical properties.  相似文献   

3.
以聚乙烯醇纤维和维尼纶纤维为增强纤维,研究了水化时间、养护方式和纤维对水泥石力学性能的影响。发现:随着水化时间的延长,水泥石力学性能提高;养护方式影响素水泥石的力学性能,但较小影响纤维增强水泥石的力学性能;少量纤维加入到水泥基体中,能有效提高水泥石的力学性能;较高强度模量的聚乙烯醇纤维的增强增韧效果优于较低强度模量的维尼纶纤维。  相似文献   

4.
黄先桃  谢青青  申波  刘凯  陈松  邓懋 《科学技术与工程》2022,22(35):15735-15741
为研究石粉含量和纤维掺量对C80混凝土基本力学性能(包括立方体抗压强度、轴心抗压强度、抗折强度、劈裂抗拉强度和弹性模量)的影响,本文结合Digimat和Abaqus建立2D随机骨料模型、3D纤维混凝土细观模型。将不同石粉含量、纤维掺量下混凝土的数值模拟与同等条件下基本力学试验结果进行对比分析:2D随机骨料模型中过高(石粉含量大于5%时称为高石粉含量)的石粉含量会降低混凝土的整体力学性能,石粉含量越低模拟值与试验值越接近,当石粉含量为5%时混凝土的整体力学性能达到最佳。3D纤维混凝土细观模型中不同纤维类型对高石粉含量混凝土的强度有不同影响,与玄武岩纤维相比,铜镀纤维的掺入对高石粉含量下混凝土力学性能的增幅更明显。铜镀纤维体积分数为4%和6%时均能提高混凝土力学性能,当体积分数为6%时,混凝土数值模拟与试验结果误差小于7.1%且力学性能达到最优;玄武岩纤维混凝土的抗压性能随纤维体积率的增加而降低,当纤维体积率为1 kg/m3时数值模拟结果与试验结果误差范围在0.4%-8.7%,但对混凝土整体力学性能的提升较小。  相似文献   

5.
采用纳米材料增加碳纤维(CF)的表面粗糙度及活性官能团,不仅可以改善CF增强复合材料的界面结合状态,而且不会对CF本体造成损伤,是一种极具发展潜力的新型CF表面改性手段。使用电泳沉积技术(EPD)将碳纳米管(CNTs)沉积在高模CF表面,然后与环氧树脂(EP)复合,制备了单向纤维增强层压板(CF/EP复合材料)。使用万能拉力机测试CF/EP复合材料的层间剪切强度(ILSS),结果表明,在电压为6 V时制备的CF/EP复合材料的ILSS为58.9 MPa,与未经EPD处理的CF/EP复合材料(ILSS=52.2 MPa)相比提高了12.8%。同时,通过EPD制备了海藻酸钠与CNTs共沉积修饰的高模CF,海藻酸钠的加入增加了CNTs与CF表面的黏附性及氧含量,提高了纤维表面对树脂基体的浸润性。当CNTs的质量浓度为0.3 mg/mL、海藻酸钠的质量浓度为1 mg/mL、EPD电压为8 V时,所制备的CF/EP复合材料的ILSS可达68.3 MPa,与未经EPD处理的CF/EP复合材料相比提高了30.8%。  相似文献   

6.
采用纳米材料增加碳纤维(CF)的表面粗糙度及活性官能团,不仅可以改善CF增强复合材料的界面结合状态,而且不会对CF本体造成损伤,是一种极具发展潜力的新型CF表面改性手段。使用电泳沉积技术(EPD)将碳纳米管(CNTs)沉积在高模CF表面,然后与环氧树脂(EP)复合,制备了单向纤维增强层压板(CF/EP复合材料)。使用万能拉力机测试CF/EP复合材料的层间剪切强度(ILSS),结果表明,在电压为6 V时制备的CF/EP复合材料的ILSS为58.9 MPa,与未经EPD处理的CF/EP复合材料(ILSS=52.2 MPa)相比提高了12.8%。同时,通过EPD制备了海藻酸钠与CNTs共沉积修饰的高模CF,海藻酸钠的加入增加了CNTs与CF表面的黏附性及氧含量,提高了纤维表面对树脂基体的浸润性。当CNTs的质量浓度为0.3 mg/mL、海藻酸钠的质量浓度为1 mg/mL、EPD电压为8 V时,所制备的CF/EP复合材料的ILSS可达68.3 MPa,与未经EPD处理的CF/EP复合材料相比提高了30.8%。  相似文献   

7.
采用平板模压成型方法制备聚对苯二甲酸乙二醇酯是(PET)废纤/竹原纤维增强不饱和聚酯复合材料,研究纤维梳理方式及不同质量比对复合材料力学性能与吸水性能的影响。结果表明:相同纤维比例、不同纤维梳理方式的复合材料拉伸强度无显著差异;纤维混合梳理的复合材料弯曲强度和弯曲模量均显著高于分别梳理的复合材料;纤维分别梳理的复合材料耐水性能优于纤维混合梳理的复合材料。动态机械热分析显示:复合材料储能模量随竹原纤维含量增加而增加,PET纤维含量的增加使复合材料阻尼效应增加。复合材料吸水动力学表明:水分在竹原纤维比例高且分别梳理的复合材料内部的扩散符合Fick定律;而水分在竹原纤维比例低且纤维混合梳理的复合材料内部的扩散行为不符合Fick定律。  相似文献   

8.
Biodegradable polylactide acid (PLA) resin can be combined with flax fibers to produce biodegradable composite materials. In our study, commercial PLA fibers were mixed with flax fibers by a non-woven method so as to make non- woven pre-forms, which can be generated into flax fiber reinforced PLA environmental friendly composites by heat pressing technology. The tensile, flexural and impact properties are tested in order to evaluate the basic physical properties of the composites, and the influenced factors listed as making technology of the pre-forms, weight ratio of flax fibers and heat pressing technology are discussed and optimized, which can be described as weight ratio of flax fibers and PLA fibers is 50/50, heating temperature, time and pressure are respectively 195℃, 20 rain and 12.5 Mpa. Preliminary results show that mechanical properties of the flax/PLA composites are quite promising compared with flax/PP composites in coclrnon commercial automotive use. Scanning electron microscope (SEM) is used to analyze the tensile specimen fracture surfaces, which shows voids and gaps occurring between flax fibers and PLA matrix and sign of fiber pull.out, the strength of flax/PLA interface can be further improved.  相似文献   

9.
为了研究碳纤维增强复合材料(CFRP)在雷电流作用下的烧蚀损伤,对CFRP进行了雷电流电-热耦合效应仿真和不同参数影响分析。首先,对试件进行了电-热耦合有限元分析;并在温度叠加法的基础上进行改进,完善了温度引起复合材料的性能变化;利用ABAQUS软件进行了碳纤维增强复合材料雷击损伤电-热耦合仿真模拟,和实验结果对比验证了仿真的有效性。结果表明:相同波形雷击电流,峰值越高,损伤面积越大,损伤深度越大。之后,利用改进方法分别研究不同因素对雷击作用下CFRP烧蚀损伤的影响,结果表明复合材料的电导率、比热、密度是影响烧蚀损伤的重要因素。  相似文献   

10.
郭靓 《科技信息》2011,(3):328-329
在混凝土中,掺杂纤维常常用来改善基体的韧性与塑性。单掺纤维混凝土改善混凝土性能有限。混杂纤维混凝土是由两种或者两种以上的纤维按一定比例混掺,既发挥不同纤维的优点,又能体现它们协同效应。混杂纤维水泥基复合材料可以发挥两种纤维的优点。第一种纤维强度高,可以提高整体的初始开裂强度和极限强度,第二种纤维延性、塑性好,可以提高后期开裂阶段的韧性和塑性。本文分析了混杂纤维混凝土的增强机理及研究方法,回顾总结了目前混杂纤维增强混凝土的研究现状。对其应用前景进行了初步探讨争展望。  相似文献   

11.
碳纤维复合材料是通过双螺杆反应挤出机复合制备,研究了复合材料的微结构和力学性能,碳纤维的扫描电镜照片显示,处理后的碳纤维较未处理碳纤维有更好的表面粗糙度。复合材料断面照片显示处理后的碳纤维和基体尼龙6材料有着很好的界面结合。复合材料的力学性能得到提高,其拉伸强度和拉伸模量分别提高了33%和50%。  相似文献   

12.
A new technique was proposed to enhance the adhesive strength of ultrahigh molecular weight polyethylene (UHMWPE) fibers. Polar polymer was implanted into UHMWE gel fibers during extracting process and can then be trapped on the surface of the fibers after subsequent ultra-drawing. The physical and chemical changes in the fiber structure were examined with scanning electron microscopy (SEM) and Fourier transform infrared (FTIR) spectroscopy. The mechanical and interfacial adhesion properties of UHMWPE fibers were investigated with tensile testing. The results showed that there were polar groups on the smface of pretreated UHMWPE fiber. The interracial shear strength of UHMWPE fibers with epoxy resin was greatly improved without sacrificing the excellent mechanical p~perties of fibers. After pretreated with ethylene/vinyl acetate copolymer (EVA), the shear strength of the interface between fiber and epoxy resin increased from 1.06 to 2.49 MPa, while the integrated mechanical properties d the pretreated UHMWPE fibers were still optimal.  相似文献   

13.
以尼龙(PA)为基体树脂,通过不同黏度的PA复合,优化选择了具有较好加工性能和机械强度的基体材料。同时,选择不同直径的玻璃纤维,研究玻璃纤维种类和含量对复合材料性能的影响,对比普通玻璃纤维和无碱玻璃纤维对复合材料的耐醇解性能影响,使复合材料具有优异的耐高温性能和较好的耐醇解性能。为了提高抗氧剂的物理损耗性能,制备了纳米二氧化硅表面负载抗氧剂,并采用红外光谱法研究了接枝结构。  相似文献   

14.
邱虎  童谷生 《江西科学》2010,28(4):481-486
碳纤维混凝土是集结构性能和多种功能于一体的复合材料,具有良好的压敏性、温敏性和电磁屏蔽特性。结合近年来对碳纤维混凝土复合材料的研究和普通混凝土材料尺寸效应的研究,综述了碳纤维混凝土复合材料的力电性能及其尺寸效应的影响,同时提出碳纤维混凝土研究所存在的问题,旨在为碳纤维混凝土复合材料的研究提供一定的参考。  相似文献   

15.
In this study, the carbon fibers treated by three methods were selected as a reinforcement to investigate the influence on the properties of composite bipolar plates. The properties and microstructure of the composite bipolar plate were characterized by the four-point probe, universal test machine, contact angle tester and scanning electron microscopy. The optimum treatment methods and the fiber content were analysed. The results showed that the carbon fibers treated by Fenton reagent for 2 ​h exhibited the best performance, which could improve the electrical conductivity and the flexural strength for composite bipolar plate. Besides, the optimal content content of carbon fibers treated by Fenton reagent was 4%. The maximum power density of the PEMFC with the composite bipolar plates could reach 662.75 ​mW ​cm−2 in H2-air conditions. Therefore, the phenolic resin/graphite composite bipolar plate modified by doping carbon fibers was a promising candidate for bipolar plate materials for PEMFC.  相似文献   

16.
In this paper, we describe the fabrication of a new biodegradable porous scaffold composed of polycaprolactone(PCL) and magnesium(Mg)micro-particles. The compressive modulus of PCL porous scaffold was increased to at least 150% by incorporating 29% Mg particles with the porosity of 74% using Micro-CT analysis. Surprisingly, the compressive modulus of this scaffold was further increased to at least 236% when the silane-coupled Mg particles were added. In terms of cell viability, the scaffold modified with Mg particles significantly convinced the attachment and growth of osteoblasts as compared with the pure PCL scaffold. In addition, the hybrid scaffold was able to attract the formation of apatite layer over its surface after 7 days of immersion in normal culture medium, whereas it was not observed on the pure PCL scaffold. This in vitro result indicated the enhanced bioactivity of the modified scaffold. Moreover, enhanced bone forming ability was also observed in the rat model after 3 months of implantation. Though bony in-growth was found in all the implanted scaffolds. High volume of new bone formation could be found in the Mg/PCL hybrid scaffolds when compared to the pure PCL scaffold. Both pure PCL and Mg/PCL hybrid scaffolds were degraded after 3 months. However, no tissue inflammation was observed. In conclusion, these promising results suggested that the incorporation of Mg micro-particles into PCL porous scaffold could significantly enhance its mechanical and biological properties. This modified porous bio-scaffold may potentially apply in the surgical management of large bone defect fixation.  相似文献   

17.
基于有限元方法的CF/PTFE复合材料界面应力   总被引:1,自引:0,他引:1       下载免费PDF全文
经表面改性和未经改性的碳纤维(CF)增强聚四氟乙烯(PTFE)复合材料的弹性强度均随着碳纤维含量的增加而增强.以碳纤维增强聚四氟乙烯(CF/PTFE)复合材料弯曲强度试验结果作为依据,开展CF/PTFE复合材料界面应力的研究工作.采用各向异性等参单元,推导出在平面载荷作用下多层纤维增强复合板的层间应力分布.进一步利用有限元方法对CF/PT—FE复合材料的界面进行应力分析,并得到与试验结果相一致的结论.  相似文献   

18.
Due to current trend and increasing interest towards natural based fiber products, Kenaf (Hibiscus cannabinus) fibers have been used for the developments of many products. Therefore, Kenaf fiber-reinforced composites have been widely used in engineering and industrial applications. The present work deals with the fabricating and characterization of untreated and treated kenaf/polypropylene (PP)-reinforced composites. Composites of PP reinforced with treated and untreated kenaf fibers were fabricated using the injection molding technique. Different fiber loadings of 10, 20, 30, 40, 50 wt% treated and untreated kenaf composites were also prepared. X-ray diffraction (XRD), scanning electron microscopy (SEM), Fourier transform infrared (FTIR) spectroscopy and thermo gravimetric analysis (TGA) were performed on the treated, untreated kenaf fibers and kenaf/PP composites. Moreover, the alkaline-treated kenaf composites exhibit better physical, morphological, and mechanical properties because of the compatibility of kenaf with PP. However, variations in tensile and flexural properties depend on treatment and kenaf fiber contents. The percentage increase in the mechanical properties of the treated kenaf/PP composites relative to that of PP was also measured. In addition, 40 wt% kenaf fiber loading resulted in higher mechanical properties. By contrast, kenaf/PP composite with 50% fiber loading was not successfully prepared because of improper mixing and the burning of kenaf fibers in the PP matrix. To conclude, 40% kenaf/PP composites with superior physical and mechanical properties may be used in variety of applications such as automotive, sports, construction, animal bedding, and mass production industries.  相似文献   

19.
混杂钢纤维增强超高性能水泥基材料力学性能分析   总被引:4,自引:0,他引:4  
采用平直型超细钢纤维与压痕型中长钢纤维混杂,系统研究了混杂比例对超高性能水泥基复合材料(UHPCC)流动性能、力学行为的影响,以及纤维外形对界面粘结力的影响.研究表明,随压痕型钢纤维掺入量增加,新拌浆体的流动度下降;在纤维体积率一定时,2种纤维等比例混杂,材料的抗压、拉伸、弯曲强度与弯曲韧性等力学性能为最佳;当水胶比固定时,压痕钢纤维与基体界面粘结力大于平直型超细钢纤维.试验还表明,2种纤维混杂在不同结构、不同尺度和不同时间层次对抑制裂缝的生成和扩展分别发挥作用,两者协同作用使材料总体力学性能显著提升.  相似文献   

20.
Properties and Chemical Treatment of Banana Fiber   总被引:1,自引:0,他引:1  
Comparing to some other fibers,the mechanical andsome physical properties of banana fiber,constituent ofbanana fiber have been studied in this paper,mean-while,for improving some characteristics of banana fi-ber,the chemical treatments were used to modify the fi-ber.The results show that the coarse and brittle bananafiber,will be difficult to process in traditional spinningsystem.  相似文献   

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