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1.
为了避免采用金属频率选择表面制备的天线罩中存在的热残余应力和弱黏接界面等问题,采用与聚合物基复合材料罩壁结构相容性好的碳纤维增强聚合物基复合材料制备频率选择表面,利用自由空间法对试样的电磁传输性能进行测试,并采用数值分析模型对碳纤维复合材料频率选择表面的电磁传输机制和电磁传输影响因子进行分析。结果表明:碳纤维复合材料频率选择表面具有频率选择功能,但谐振频率处的电磁传输损耗较大;通过改变复合材料频率选择表面的单元缝隙率、厚度、电导率以及介电常数可以实现对其电磁传输性能的调节。  相似文献   

2.
短切碳纤维混凝土电磁屏蔽规律的实验研究   总被引:1,自引:0,他引:1  
随着电子产品普及和大功率电气设备数量的增加,导致电磁环境急剧恶化,从而带来了一系列隐患。简要阐述了电磁屏蔽的原理,介绍了碳纤维的性能,并对短切碳纤维水泥基复合材料的屏蔽性能进行了实验研究,制备出碳纤维吸波混凝土,测试了样品的电磁屏蔽性能,并比较3mm与6mm短切碳纤维在吸波混凝土中的屏蔽效能,分析、总结了实验样品中反映出来的规律,为设计高性能电磁屏蔽混凝土提供了依据。  相似文献   

3.
不同增强体镁基复合材料的阻尼性能   总被引:4,自引:0,他引:4       下载免费PDF全文
研究了短切碳纤维、碳化硅晶须、硼酸铝晶须为增强体的镁基复合材料在外加载荷下的阻尼性能,测量了它们的力学性能与断口特性。研究表明:增强体不同的镁基复合材料,阻尼性能不同;在所研究的几种增强体复合材料中,以短切碳纤维增强镁基复合材料的阻尼效果最好;短切碳纤维增强铁基复合材料界面对内耗有明显的影响。  相似文献   

4.
3维C/SiC-ZrC复合材料的制备及其性能研究   总被引:1,自引:1,他引:0       下载免费PDF全文
针对超高温环境应用需求,采用化学气相渗透工艺(CVI)与先驱体浸渍-裂解工艺(PIP)联用制备了3维碳纤维增强SiC-ZrC基复合材料(C/SiC-zrC),并研究了SiC含量对C/SiC-ZrC复合材料力学性能、抗氧化性能和抗烧蚀性能的影响.结果表明,随着SiC含量的增加,C/SiC-ZrC复合材料的强度逐渐降低,静...  相似文献   

5.
T300和JC2#纤维增强C/SiC复合材料力学性能对比   总被引:1,自引:0,他引:1       下载免费PDF全文
以聚碳硅烷(PCS)为先驱体,采用聚合物浸渍裂解法(PIP)分别制备得到T300碳纤维和JC2#碳纤维增强C/SiC复合材料。JC2#C/SiC复合材料具有优异的力学性能,抗弯强度和断裂韧性分别达到662MPa和19.5MPa.m1/2;T300 C/SiC复合材料表现出低强度、高脆性,其抗弯强度和断裂韧性不足前者的四分之一。T300 C/SiC复合材料低性能的根本原因在于T300纤维在PCS裂解过程中性能严重下降,复合材料中纤维与基体间存在强界面结合是另一个影响因素。  相似文献   

6.
实验研究了靶材表面存在和不存在切向空气气流时,975nm连续激光对碳纤维增强树脂基复合材料的辐照效应,发现切向气流的加载有利于激光对碳纤维复合材料的破坏.从理论上对激光辐照下碳纤维复合材料的破坏机理进行了初步分析,基于碳的氧化特性和氧化反应机理,推导了碳纤维的氧化速率方程.采用改进的光滑粒子方法,对激光辐照下复合材料树...  相似文献   

7.
本文主要探索了以有机硅先驱体聚碳硅烷为粘结剂、采用热压烧结的方法制备Cf/SiC陶瓷基复合材料及碳化硅防氧化涂层的一体化工艺,探讨了聚碳硅烷含量、热压温度和压力对涂层防氧化效果的影响,并对涂层前后的Cf/SiC复合材料的防氧化性能进行了比较。结果表明:采用该工艺制备的SiC涂层Cf/SiC复合材料的防氧化性能显著提高。  相似文献   

8.
对碳纤维树脂基复合材料在航空航天领域的应用情况进行了介绍。基于防空导弹应用背景,对碳纤维树脂基复合材料在导弹舱体结构、发动机壳体结构以及舵翼面结构应用中的相关问题进行了分析。从强度、刚度、成型工艺、制造成本、结构质量等方面对该类复合材料在防空导弹结构上的适用性进行了讨论。  相似文献   

9.
为了分析内嵌环氧树脂基微胶囊的碳纤维增强复合材料(CFRP)的力学性能,开展了材料在准静态载荷条件下力学性能试验研究,对比分析了有、无微胶囊时碳纤维增强复合材料的静态力学性能,详细探究了微胶囊的质量分数对碳纤维增强复合材料的力学性能和自修复性能的影响,分析了材料的拉伸强度,弹性模量,断裂伸长率以及自修复性能情况。在相同冲击能量下,采用落锤法对不同微胶囊含量的层合板进行冲击试验,研究其在冲击载荷作用下的动态力学响应。结果表明,微胶囊具有增韧效果和自修复能力。随着微胶囊质量分数的增加,自修复碳纤维增强复合材料的拉伸强度降低,弹性模量先略微升高后降低,断裂伸长率先降低后升高,但总体变化不大,修复效率随微胶囊含量的增加而升高。在相同冲击能量下,微胶囊含量越大,最大冲击力越小,材料的冲击力-位移曲线斜率越小,抗冲击性能越差。研究结果可以为推动自修复型CFRP材料的实际工程应用和理论研究提供相关参考。  相似文献   

10.
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   

11.
测试了国产T300级碳纤维的单丝和复丝拉伸强度,并用Weibull分布来描述碳纤维单丝平均拉伸强度。采用拉挤工艺制备出国产碳纤维复合线芯,测试了国产碳纤维复合线芯的弯曲强度和短梁剪切强度性能。结果表明:国产T300级碳纤维单丝拉伸强度性能达到东丽T300碳纤维水平,且分散性更小;复丝强度略低。国产T300级碳纤维集束性较差,在拉挤抽纱过程中,容易夹纱和起毛。在纤维体积含量基本相同情况下,国产T300级碳纤维复合线芯力学性能与东丽T700碳纤维复合线芯力学性能相差不大。  相似文献   

12.
《防务技术》2022,18(10):1822-1833
High-performance ballistic fibers, such as aramid fiber and ultra-high-molecular-weight polyethylene (UHMWPE), are commonly used in anti-ballistic structures due to their low density, high tensile strength and high specific modulus. However, their low modulus in the thickness direction and insufficient shear strength limits their application in certain ballistic structure. In contrast, carbon fiber reinforced epoxy resin matrix composites (CFRP) have the characteristics of high modulus in the thickness direction and high shear resistance. However, carbon fibers are rarely used and applied for protection purposes. A hybridization with aramid fiber reinforced epoxy resin matrix composites (AFRP) and CFRP has the potential to improve the stiffness and the ballistic property of the typical ballistic fiber composites. The hybrid effects on the flexural property and ballistic performance of the hybrid CFRP/AFRP laminates were investigated. Through conducting mechanical property tests and ballistic tests, two sets of reliable simulation parameters for AFRP and CFRP were established using LS-DYNA software, respectively. The experimental results suggested that by increasing the content of CFRP that the flexural properties of hybrid CFRP/AFRP laminates were enhanced. The ballistic tests’ results and the simulation illustrated that the specific energy absorption by the perforation method of CFRP achieved 77.7% of AFRP. When CFRP was on the striking face, the shear resistance of the laminates and the resistance force to the projectiles was promoted at the initial penetration stage. The proportion of fiber tensile failures in the AFRP layers was also enhanced with the addition of CFRP during the penetration process. These improvements resulted in the ballistic performance of hybrid CFRP/AFRP laminates was better than AFRP when the CFRP content was 20 wt% and 30 wt%.  相似文献   

13.
波速测量层合复合材料冲击损伤实验   总被引:1,自引:0,他引:1       下载免费PDF全文
在层合复合材料横向冲击试验中,用应变片记录层合板表层在冲击过程中的应变响应,根据波的传播理论和连续损伤力学,从波速变化间接测得冲击下材料的损伤及损伤率。通过实验测得玻璃纤维/环氧(GE)正交层合板的动态损伤阈值,并证实了GE复合材料在拉伸阶段比在压缩阶段有更快的损伤扩展速率  相似文献   

14.
《防务技术》2020,16(5):1051-1061
This research was aimed to study the effect winding orientation on the crashworthiness performance of hybrid tube. The specimens tested under quasi-static compression load involve of three winding parameters (θ = 30°, 45° and 70°) of hybrid kenaf/glass fiber reinforced epoxy and glass fiber reinforced epoxy as contrast specimen. The automated filament winding technique has been used in fabrication of hybrid and non-hybrid composite tube and crashworthiness performance was investigated experimentally. The effects of winding orientation on energy absorption capabilities and crashworthiness characteristic were investigated through quasi-static compression load and the result are compared with the glass fiber composite tube to justify the capability of hybrid natural/synthetic as energy absorption application. Hybridized samples proved to enhancing the progressive crushing capability as combination of local buckling, delaminate and brittle fracturing as progressive crushing modes.In the view of winding orientation aspect, the results of high winding orientation of hybrid composite tube elevated the crush load efficiency, specific energy absorption and energy absorption capability compared to glass composite tube (GFRP). The hybrid kenaf/glass composite tube with high winding orientation showed the best winding orientation to enhance the energy absorber characteristics as energy absorption application.  相似文献   

15.
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   

16.
舒楠  张厚  李圭源  徐海洋 《现代防御技术》2011,39(1):138-140,156
为了提高X波段雷达的带外抑制能力,在传统方形环孔的基础上,设计了一种新型带通FSS单元。运用谱域法对这种新型单元的传输系数进行了数值计算。计算结果表明:该新型频率选择表面(FSS)的工作带宽为8~12 GHz,该新型单元具有极好的角度稳定性。入射角度φ从0°到90°变化时,工作带宽漂移量不超过100 MHz;入射角度θ从0°到45°变化时,工作带宽漂移量不超过400 MHz。应用于X波段(8~12 GHz)雷达天线上,可提高其带外抗干扰的能力。  相似文献   

17.
轻质复合材料及其结构以其优异的力学性能在航天航空飞行器上得到了广泛应用。考察玻璃纤维/环氧复合材料方形截面桁架在典型弯曲载荷工况条件下的非线性结构承载性能。采用Isight集成平台对桁架结构进行多参数优化设计,获得满足结构刚度和承载性能要求的最轻质桁架结构的几何参数,并分析最优化结构在载荷作用下的结构非线性响应行为。结果表明采用Isight平台对桁架结构进行多参数优化设计具有较高的效率和可信度。  相似文献   

18.
C/SiC复合材料残余应力的电火花小孔法测定研究   总被引:1,自引:0,他引:1  
进行了C/SiC复合材料残余应力的小孔法表征.基于现有小孔法的不足以及材料的较好电导率,提出了电火花打孔法的残余应力测量方法,建立了相应的残余应力测量流程.进行了不同平整表面样品的残余应力测量.结果表明电火花打孔法具有较好的区分性,也表明C/SiC复合材料具有较小的本征残余应力和机加工应力,这说明:C/SiC复合材料作为反射镜材料具有很好的面形稳定性的优势.  相似文献   

19.
《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   

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