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1.
以二维碳纤维布、硅树脂先驱体、SiC微粉和乙醇溶剂为原料,采用先驱体转化工艺制备了2D Cf/Si-O-C复合材料,考察了裂解温度对材料结构和性能的影响。结果表明,首周期裂解温度对制备材料的力学性能有重要影响,纤维-基体间的界面弱化是复合材料力学性能提高的主要原因;第6周期采用合适的温度裂解可提高复合材料的力学性能,其弯曲强度和断裂韧性分别达到了263.9MPa和12.8MPa.m1/2。  相似文献   

2.
以二维碳纤维布和廉价的聚硅氧烷为原料,采用先驱体转化工艺制备2D Cf/Si-O-C材料,对其力学性能进行了考察,并与以聚碳硅烷为先驱体制备的2D Cf/SiC材料在价格和性能方面进行了对比。实验表明,2D Cf/Si-O-C材料力学性能较2D Cf/SiC材料有所下降,但成本大大降低。2D Cf/Si-O-C材料弯曲强度达到157.9 MPa,断裂韧性达到8.4MPa.m1/2,剪切强度达到23.4MPa,并且在1400℃下能较好保持材料的力学性能。  相似文献   

3.
以聚碳硅烷(PCS)/二乙烯基苯(DVB)为先驱体,采用快速升温裂解制备了3D-B Cf/SiC复合材料.结果证明:裂解升温速率的提高可以大大缩短制备周期,同时可以提高材料密度和形成较好的界面结合,从而提高材料的力学性能.制备得到的Cf/SiC材料室温弯曲强度达到556.7MPa.  相似文献   

4.
测试了C/SiC复合材料在高温空气下的压缩、弯曲和拉伸性能,利用扫描电子显微镜分析复合材料在室温与高温条件下的断口微观形貌。结果表明:从室温升温到1 000 ℃测试温度时,C/SiC复合材料的压缩强度由247 MPa降低至78 MPa,性能降低68%;弯曲强度由480 MPa降低至277 MPa,性能降低42%;拉伸强度由247 MPa降低至152 MPa,性能降低38%。高温氧化导致界面退化,损伤材料基体与碳纤维结构,加剧了纤维断裂程度,改变了纤维与基体的结合状态,纤维增韧机制逐渐消失,导致复合材料性能下降。  相似文献   

5.
以粘胶基碳纤维毡为原料,经CVD沉积碳增密处理后,采用酚醛树脂浸渍-裂解对C/C预制体的密度进行调节,通过气相硅渗透反应工艺制备了C/SiC复合材料.利用SEM对C/C预制体和C/SiC复合材料的显微形貌进行了表征.研究了CVD碳和裂解碳对C/SiC微观形貌和力学性能的影响.结果表明:CVD碳含量较低时,碳纤维将受到气相硅的反应性侵蚀,反之则造成复合材料中残余碳含量过高、SiC基体相含量偏低,材料力学性能下降.当CVD碳的体积分数为17.5%、裂解碳的体积分数为12.0%时,得到的C/SiC力学性能最佳,其强度和模量分别为217MPa和209 GPa.  相似文献   

6.
粘胶基碳纤维毡经过CVD工艺进行沉积碳增密处理后,采用酚醛树脂浸渍—裂解对C/C素坯的密度进行调节,通过气相硅渗透反应工艺制备了C/SiC复合材料。研究了树脂浸渍—裂解对C/C素坯密度和气孔率的影响规律,分析了树脂裂解碳对C/SiC显微形貌和力学性能的影响。结果表明:随着树脂浸渍—裂解循环次数的增加,素坯密度增加,孔隙率降低;裂解碳含量为27wt%时,C/SiC复合材料的强度和模量达到最大,分别为231MPa和209GPa。通过控制裂解碳含量,可以实现对C/SiC复合材料力学性能和微观结构的裁剪。  相似文献   

7.
不同裂解温度对制备SiCf/Si-O-C复合材料性能研究   总被引:3,自引:2,他引:1       下载免费PDF全文
以聚硅氧烷为先驱体,研究先驱体转化过程中在不同的裂解温度下对制备SiCf/Si-O-C复合材料性能影响.结果表明,当裂解温度在700℃、800℃时,陶瓷基复合材料的弯曲强度分别为255.2 MPa、309.0 MPa;当裂解温度在1000℃时,陶瓷基复合材料的弯曲强度为45.3 MPa.对SiCf/Si-O-C复合材料的微观结构及载荷-位移曲线进行分析,发现界面结构是影响SiCf/Si-O-C复合材料性能的主要因素.  相似文献   

8.
本文以聚碳硅烷(PCS)为先驱体,SiC晶须,SiC微粉或C纤维为增强剂,热解转化制得SiC/SiC或C/SiC复合材料,研究其制备工艺过程对材料的力学和热物理性能的影响。结果表明:PCS在1300℃下转化为β-SiC微晶并将未烧结的增强剂网络在一起形成SiC/SiC或C/SiC复合材料。该SiC基复合材料具有较好的常温和高温机械强度,优异的耐热疲劳和抗热震性能,在1300℃空气中具有良好的抗氧化性。  相似文献   

9.
不同类别的阻燃剂配合使用能产生协效作用,大大提高阻燃效果。在甲基丙烯酸类不饱和聚酯树脂9001基体中,添加微囊化红磷/氢氧化铝/三氧化二锑/甲基膦酸二甲酯(MRP/Al(OH)3/Sb2O3/DMMP)阻燃剂体系,对其树脂体系固化物及玻璃纤维织物复合材料的力学性能和阻燃性能进行了实验研究,提出了一种有望用于列车复合材料大尺寸构件制造的性能优异、价格低廉的新体系。结果表明,当质量添加比例分别为12%MRP、50%Al(OH)3、2%Sb2O3时,树脂体系室温粘度100mPa.s左右,凝胶时间超过80min,适用于RTM和VIMP等大尺寸构件成型工艺;复合材料拉伸强度215.4MPa,弯曲强度177.15MPa,拉伸模量13.85GPa,弯曲模量13.36GPa,氧指数39.7。  相似文献   

10.
为了改善聚氨酯(PU)材料的阻燃性能,首先在PU中加入阻燃剂膨胀石墨(EG)、氢氧化铝(ATH)与阻燃协效剂磷酸三乙酯(TEP)、硼酸锌(ZB)和磷酸硼(BP);然后,通过氧指数仪、垂直燃烧测定装置和电子拉力试验机等表征了材料的性能;最后,用体式显微镜、扫描电子显微镜研究了阻燃材料的微观结构和燃烧后的碳层形貌,分析了材料力学性能下降的原因和燃烧机理。结果表明:随着PU中阻燃剂EG、ATH的添加量的增加,PU的阻燃性能逐渐提高,力学性能却逐渐减弱;TEP、ZB、BP对EG/ATH/PU体系的阻燃性能的协效作用明显,其中TEP协效作用最明显;综合考虑力学性能和阻燃性能,EG/ATH/协效剂/PU的最优配方为10gEG/50gATH/5gTEP/100gPU,其氧指数为34.3%,阻燃等级为V-0,拉伸强度为1.95MPa,断裂伸长率为140%。  相似文献   

11.
通过研究材料的氧化前后质量的改变和强度减少及氧化前后微观结构的变化,研究了先驱体转化法制备的SiCf/Si-O-C复合材料的抗氧化、抗热震性能。结果表明SiCf/Si-O-C复合材料具有良好的抗氧化、抗热震性能。对所得材料微观结构进行了分析讨论,发现界面结构的变化是影响SiCf/Si-O-C复合材料抗氧化、抗热震性能的主要原因。  相似文献   

12.
以聚硅氧烷为先驱体,采用先驱体转化法制备了SiCf/S i-O-C陶瓷复合材料.研究了惰性填料(SiC、SiO2及SiO2空心微珠)对材料的力学性能及热性能的影响.微观结构的分析表明,填料引起的界面结构与密度的变化是影响SiCf /Si-O-C复合材料性能的主要原因.  相似文献   

13.
《防务技术》2020,16(4):762-776
The cellulosic bast fibers are recognized as a justifiable and biodegradable substitute for producing moderate strength polymer composite materials because of their characteristics of renewability, eco-friendliness, and higher specific strength. Hence the aim of this research work is to fabricate Himalayan bast fibers (Nettle fiber (NF)/bauhinia vahlii fiber (BF)) based mono/hybrid epoxy composites at varying weight percentage of 2–6 wt% and evaluate the physical (void fraction and water absorption), mechanical (tensile strength, flexural strength, hardness) and sliding wear properties of as-fabricated composites. The 6 wt% NBF reinforced composites exhibited higher mechanical properties as compared to NF and BF composites with tensile strength of 34.04 MPa, flexural strength of 42.45 MPa, and hardness of 37.01 Hv respectively. The influence of various control factors (sliding velocity, NF/BF/NBF contents, normal load and sliding distance) on specific sliding wear rate of composites was evaluated by Taguchi (three factors at three levels) experimental design and the percentage contribution of these selected parameters on sliding wear performance was examined by Analysis of variance (ANOVA). The sliding wear property of as-developed composites was found to be greatly influenced by sliding velocity and the wear resistance was observed to be improved with the NF/BF/NBF contents. The wear mechanism of the as-fabricated composites has been elucidated by scanning electron microscopy analysis. The research outcomes demonstrated that the hybridization of Bauhinia vahlii fiber with Nettle fiber led to improve the mechanical and wear properties of epoxy composites.  相似文献   

14.
《防务技术》2014,10(4):375-383
The influence of three factors, such as volume percentage of reinforcement particles (i.e. Al2O3), tool tilt angle and concave angle of shoulder, on the mechanical properties of Cu–Al2O3 surface composites fabricated via friction stir processing was studied. Taguchi method was used to optimize these factors for maximizing the mechanical properties of surface composites. The fabricated surface composites were examined by optical microscope for dispersion of reinforcement particles. It was found that Al2O3 particles are uniformly dispersed in the stir zone. The tensile properties of the surface composites increased with the increase in the volume percentage of the Al2O3 reinforcement particles. This is due to the addition of the reinforcement particles which increases the temperature of recrystallization by pinning the grain boundaries of the copper matrix and blocking the movement of the dislocations. The observed mechanical properties are correlated with microstructure and fracture features.  相似文献   

15.
采用磁控溅射法结合结晶化热处理工艺在碳化硅(Silicon Carbide, SiC)颗粒表面成功制备了金属钼(Molybdenum, Mo)涂层,分析了Mo涂层的成分和形貌;然后采用热压烧结工艺制备了SiCp/Cu复合材料,重点对比分析了Mo界面阻挡层厚度对复合材料导热性能的影响。结果表明:磁控溅射法能够在SiC颗粒表面沉积得到Mo 涂层,随溅射时间的延长Mo涂层的厚度增加、粗糙度增大,且磁控溅射后SiC颗粒表面直接得到的Mo涂层为非晶态,结晶化热处理后,变为致密平整的晶态Mo涂层。磁控溅射时间即Mo涂层厚度对复合材料导热性能影响明显,随磁控溅射时间的增加,复合材料的热导率呈现先增后减趋势,采用磁控溅射9h镀Mo改性并经过800℃结晶化热处理的SiC复合粉体在850℃下热压烧结制备的SiCp/Cu复合材料(VSiC=50%),其热导率达到了最高值274.056W/(m·K)。  相似文献   

16.
The mechanical, thermal and ablation properties of carbon phenolic (C-Ph) composites (Type-I) rein-forced with different weight percentages of organo-modified montmorillonite (o-MMT) nanoclay have been studied experimentally. Ball milling was used to disperse different weight (wt) percentages (0, 1,2,4,6 wt.%) of nanoclay into phenolic resin. Viscosity changes to resin due to nanoclay was studied. On the other hand, nanoclay added phenolic matrix composites (Type-II) were prepared to study the dispersion of nanoclay in phenolic matrix by small angle X-ray scattering and thermal stability changes to the matrix by thermogravimetric analyser (TGA). This data was used to understand the mechanical, thermal and ablation properties of Type-I composites. Inter laminar shear strength (ILSS), flexural strength and flexural modulus of Type I composites increased by about 29%, 12%and 7%respectively at 2 wt.% addition of nanoclay beyond which these properties decreased. This was attributed to reduced fiber volume fraction (%Vf) of Type-I composites due to nanoclay addition at such high loadings. Mass ablation rate of Type-I composites was evaluated using oxy acetylene torch test at low heat flux (125 W/cm2) and high heat flux levels (500 W/cm2). Mass ablation rates have increased at both flux levels marginally up to 2 wt.% addition of nanoclay beyond which it has increased significantly. This is in contrast to increased thermal stability observed for Type-I and Type-Ⅱ composites up to 2 wt.%addition of nanoclay. Increased ablation rates due to nanoclay addition was attributed to higher insulation effi-ciency of nanolcay, which accumulates more heat energy in limited area behind the ablation front and self-propagating ablation mechanisms triggered by thermal decomposition of organic part of nanoclay.  相似文献   

17.
本文研究了溶胶-凝胶(Sol-gel)法制备碳纤维三维编织物增强氧化铝(Al2O3)基复合材料的成型工艺及其力学性能,研究了两种主要起始物Al(NO3)3、AlCl3配制的氧化铝溶胶对复合材料成型工艺和力学性能的影响。分别以Al(NO3)3和AlCl3为起始物,制备得到Ⅰ#、I#复合材料。研究表明,以Al(NO3)3为起始物配制的溶胶粘度较小,利于材料的致密化。经过溶胶浸渍、凝胶、裂解13个周期后,Ⅰ#材料的密度和室温三点弯曲强度分别为1.86g/cm3和145.2MPa,而II#材料的密度和室温三点弯曲强度分别为1.63g/cm3和104.1MPa,材料均呈典型的韧性断裂模式。用扫描电子显微镜(SEM)观察试样的断口形貌,发现断口表面有大量的纤维拔出,纤维表现了较好的增韧效果。  相似文献   

18.
《防务技术》2022,18(11):2000-2007
The design of astonishing combinations of benzoxazine resins with various fillers is nowadays of great interest for high quality products, especially in ballistic armors. The objective of this study is to investigate a new hybrid material prepared as multi-layered composite plate by hand lay-up technique. Different composites were manufactured from Kevlar fabrics reinforced polybenzoxazine, which was filled with silane treated microcrystalline cellulose (MCC Si) at various amounts in the interlayers. The developed materials were tested for their flexural, dynamic mechanical and ballistic performance. The aim was to highlight the effect of adding different amounts of MCC Si on the behavior of the different plates. Compared to the baseline, the dynamic mechanical and bending tests revealed an obvious decrease of the glass transition of 21 °C and a notable increase in storage modulus and flexural strength of about 180 %and17%, respectively, upon adding 1% MMC Si as filler. Similarly, the ballistic test exhibited an enhancement in kinetic energy absorption for which the composite supplemented with 1% MCC Si had the maximal energy absorption of 166.60 J. These results indicated that the developed panels, with interesting mechanical and ballistic features, are suitable to be employed as raw materials to produce body armor.  相似文献   

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