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1.
通过模压工艺制备了酚醛-石英混织纤维增强苯并噁嗪复合材料(P-Q/BZ)试样,考察了其力学性能、烧蚀性能和耐冲刷性能,分析了该试样在高温环境中的主要失效特征,研究其在高温环境中的适用性。结果表明,未经热处理的P-Q/BZ试样平均弯曲强度、弯曲模量和层间剪切强度分别为283 MPa、10.8 GPa和22.6 MPa;经300℃,N_2处理15 min后,试样均匀膨胀,厚度增加22%,弯曲强度、弯曲模量和层间剪切强度分别下降58%、41%和58%;在氧乙炔焰的平均质量烧蚀率和线烧蚀率分别为0.048 4 g/s和-0.081 mm/s,烧蚀后试样宏观不分层,表面炭层微观分层严重,酚醛纤维热解炭、树脂基体热解炭、熔融石英纤维以及碳硅氧化产物相互分离;该试样耐冲刷能力差,在发动机尾焰烧蚀平台模拟的热-力耦合环境中的质量损失率高达59%。P-Q/BZ复合材料需要解决热解膨胀问题,进一步提高抗冲刷性能。  相似文献   

2.
石英纤维增强苯并噁嗪树脂复合材料研究   总被引:1,自引:0,他引:1       下载免费PDF全文
对苯并(啞心)嗪树脂应用于RTM工艺制备石英纤维增强复合材料进行了研究.系统考察了该树脂的工艺性能及力学性能,制备并测试了石英/苯并(啞心)嗪复合材料的力学性能及耐烧蚀性能,并将相关性能与钡酚醛与石英/钡酚醛进行了比较.结果表明,在85℃~145℃温度区间内苯并(啞心)嗪树脂粘度保持在800mPa·s以下,树脂具有较宽的低粘度温度平台和较长的低粘度保持时间.力学性能及耐烧蚀性能研究表明,石英/苯并(啞心)嗪复合材料的层间剪切强达到了61.5MPa,拉伸强度和弯曲强度显著优于石英,钡酚醛复合材料,质量烧蚀率和线烧蚀率分别为0.0510g·s-1和0.032mm·s-1.石英/苯并(啞心)嗪复合材料是一种可采用RTM工艺制备的耐烧蚀材料.  相似文献   

3.
采用液相浸渍法结合反应熔渗法快速制备改性C/C复合材料,研究其微观组织及在氧乙炔焰和高频等离子体风洞环境中的烧蚀行为。结果表明:改性C/C复合材料主要含有Hf C,Zr C,Ta C等高熔点陶瓷改性相,其密度为3.83 g/cm3,开孔率仅为4.71%。氧乙炔焰烧蚀360 s后,改性C/C复合材料表面形成一层主要由Hf O2,Zr O2,Ta2O5组成的致密氧化物层,材料的线烧蚀率为0.005 18 mm/s。使用高频等离子体风洞考核改性C/C复合材料球头模型,在热流量3.5 MW/m2、驻点温度2293℃的条件下考核180 s后,模型表面生成致密光滑的氧化物保护层,与基体结合牢固,模型形状及尺寸无明显改变,去掉氧化物后测得其线烧蚀率为0.001 72 mm/s。  相似文献   

4.
采用液相浸渍法结合反应熔渗法快速制备了改性C/C复合材料,研究其微观组织及在氧乙炔焰和高频等离子体风洞环境中的烧蚀行为。结果表明:改性C/C复合材料主要含有HfC、ZrC、TaC等高熔点陶瓷改性相,其密度为3.83g/cm3,开孔率仅为4.71%。氧乙炔焰烧蚀360s后,改性C/C复合材料表面形成一层主要由HfO2、ZrO2、Ta2O5组成的致密氧化物层,材料的线烧蚀率为0.00518mm/s。使用高频等离子体风洞考核改性C/C复合材料球头模型,在热流量3.5MW/m2、驻点温度2293℃的条件下考核180s后,模型表面生成致密光滑的氧化物保护层,与基体结合牢固,模型形状及尺寸无明显改变,去掉氧化物后测得其线烧蚀率为0.00172mm/s。  相似文献   

5.
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   

6.
烧结温度对 Cf/SiC 复合材料界面的影响   总被引:4,自引:0,他引:4       下载免费PDF全文
系统地研究了烧结温度对Cf/SiC复合材料界面和力学性能的影响.结果表明,烧结温度较低(1700℃)时,由于复合材料的烧结性差,纤维与基体间仅仅为一种机械结合,因此纤维与基体间结合很弱,从而导致复合材料力学性能低.烧结温度提高至1800℃后,由于适量的富碳界面相不仅可避免纤维与基体间的直接结合,而且使纤维与基体间的结合强度适中,因而复合材料具有很好的力学性能.进一步提高烧结温度至1850℃或更高温度时,由于界面相与纤维间的反应加重,纤维本身性能大大降低.同时,纤维与基体间结合强度提高,因此复合材料的力学性能大大降低.  相似文献   

7.
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   

8.
基于纤维方向的C/SiC复合材料端面磨削实验研究   总被引:1,自引:0,他引:1  
采用小直径金刚石砂轮对气相渗硅反应烧结工艺(Gaseous Si Infiltration,GSI)方法制备的C/Si C复合材料进行了端面磨削实验研究,探究了不同纤维方向的磨削性能,讨论了磨削用量对磨削力和磨削表面粗糙度的影响规律,采用扫描电子显微镜(Scanning Electron Microscope,SEM)对磨削表面形貌进行观测,分析了磨削损伤和磨削加工机理。结果表明:C/Si C复合材料不同纤维方向磨削性能不同,正常纤维方向磨削力最大,粗糙度最小;纵向纤维方向磨削力最小,粗糙度最大。材料以脆性断裂形式去除,磨削面损伤主要为纤维断裂、分层,Si C基体微裂纹,界面层失粘。通过理论分析推测碳纤维层主要作用是减弱微裂纹扩展程度和改变微裂纹扩展方向。  相似文献   

9.
考虑基体材料的不同增韧特性,针对两种不同的玻纤织物增强复合材料/钢复合结构进行低速冲击实验,采用超声波探伤仪对玻璃钢损伤区域进行了探测.结果表明,采用增韧基体的玻璃钢/钢复合结构在低速冲击下玻璃钢层的抗冲击能力更强,相同能量冲击下的损伤面积更小;损伤面积近似呈正方形分布,正方形对角线与纤维方向一致.  相似文献   

10.
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   

11.
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   

12.
《防务技术》2015,11(2)
This paper presents a study on surface roughness generated by high speed milling of high volume fraction(65%) silicon carbide particlereinforced aluminum matrix(Si Cp/Al) composites.Typical 2D(Raand Rz) and 3D(Saand Sq) surface roughness parameters were selected to evaluate the influence of the milling parameters on the surface quality in comparison with aluminum alloy.The 3D topography of the milled surface was studied as well.The results indicate that 3D parameters(Saand Sq) are more capable to describe the influence of the milling parameters on the surface quality,and among them Sqis preferable due to its good sensitivity.Sqdecreases with milling speed and increases with feed rate.The influence of axial depth of cut(ADOC) is negligible.  相似文献   

13.
Some ablation experiments of Ethylene-Propylene-Diene Monomer(EPDM)insulator were carried out in quasi-static low temperature gas environment,gas-phase environment,two-phase environment with Al2O3 grain and high concentration Al2O3 grain gas environments.Their charring ablation rate,thickness,surface morphology and main ingredient of the charring layer were analyzed.The experiment results show that the main influent factors for the charring ablation rate are the gas temperature,grain concentration and state of grain impact;the main influent factors for the charring layer thickness are the gas velocity and environment pressure;and the process of SiO2 migrating in the charring layer occur commonly in different gas environments.They provide a foundation for the ablation mechanism research and modeling of EPDM insulator.  相似文献   

14.
本文通过热压的方法分别制得以Y2O3-Al2O3和Y2O3-La2O3为烧结助剂的SiCw/Si3N4陶瓷基复合材料,对比了采用不同种类及含量的烧结助剂的SiCw/Si3N4复合材料的性能结果,发现烧结助剂的种类及含量对SiCw/Si3N4复合材料的弯曲强度和断裂韧性有明显的影响,对高温弯曲强度的影响尤为显著。  相似文献   

15.
本文介绍了抗超高速撞击多层结构复合材料的设计、制备和实验,并对结果进行了讨论,实验证明,以SiC陶瓷基复合材料为防护层、以空心微珠或多孔变密度复合材料为缓冲层、以编织物复合材料为结构层的多层结构复合材料,具有面密度低、抗撞击速度范围宽、抗撞击性能好的特点。  相似文献   

16.
《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   

17.
纳米Si-C-N粒子增强Si3N4 复合材料的结构与性能   总被引:2,自引:0,他引:2       下载免费PDF全文
本文用Si-C-N纳米微粉做增强相,Si3N4微粉为基相,采用热压的方法制备了SiCp/Si3N4纳米复相陶瓷,所得的SiCp/Si3N4复合材料的室温弯曲强度为878.5MPa,断裂韧性达11.96MPam1/2,同时应用扫描电镜(SEM)、高分辨透射电镜(HRTEM)对其结构进行了观察,讨论了结构与性能之间的关系。  相似文献   

18.
纤维增强SiO2气凝胶隔热复合材料的制备及其性能   总被引:7,自引:0,他引:7       下载免费PDF全文
将无机陶瓷纤维与SiO2溶胶混合,经超临界干燥制备了SiO2气凝胶隔热复合材料。SiO2气凝胶纤细的骨架颗粒减少了固态热传导,纳米级孔减少了气体热传导和对流传热,同时无机陶瓷纤维减少了辐射传热。SiO2气凝胶复合材料具有良好的隔热性能,其200℃和800℃的热导率分别为0.017W/m.K和0.042W/m.K。纤维的加入提供了力学支撑,高温处理增强了气凝胶骨架强度,材料在常温和高温下均具有良好的力学性能,其常温的拉伸、弯曲和抗压强度分别为1.44MPa、1.31MPa和0.98MPa(10%应变),800℃的拉伸、弯曲和抗压强度分别为1.95MPa、1.80MPa和1.42MPa(10%应变)。  相似文献   

19.
添加SiC微粉对硅树脂先驱体转化3D Cf/Si-O-C材料性能的影响   总被引:1,自引:0,他引:1  
以三维碳纤维织物和廉价的硅树脂为原料,采用先驱体转化工艺制备3D G/Si-O-C材料,考察了浸渍液中添加SiC填料对材料微观结构、力学性能和抗氧化性能影响.结果表明:添加适量的SiC填料有助于减少基体孔隙,改善界面结合,从而提高材料的力学性能;而SiC含量过高时,容易在材料内部形成闭孔,从而导致材料力学性能下降.当SiC微粉含量为18.2%时,材料具有最好的力学性能,弯曲强度和断裂韧度分别为421.3MPa和13.0 MPa·m1/2;而材料的抗氧化性能随着SiC微粉含量的增加而增加,当SiC微粉含量为25.0%时,材料的弯曲强度保留率最高,达到了89.5%.  相似文献   

20.
Polymer matrix composites (PMC) are extensively been used in many engineering applications. Various natural fibers have emerged as potential replacements to synthetic fibers as reinforcing materials composites owing to their fairly better mechanical properties, low cost, environment friendliness and biodegradability. Selection of appropriate constituents of composites for a particular application is a tedious task for a designer/engineer. Impact loading has emerged as the serious threat for the composites used in structural or secondary structural application and demands the usage of appropriate fiber and matrix combination to enhance the energy absorption and mitigate the failure. The objective of the present review is to explore the composite with various fiber and matrix combination used for impact applications, identify the gap in the literature and suggest the potential naturally available fiber and matrix combination of composites for future work in the field of impact loading. The novelty of the present study lies in exploring the combination of naturally available fiber and matrix combination which can help in better energy absorption and mitigate the failure when subjected to impact loading. In addition, the application of multi attributes decision making (MADM) tools is demonstrated for selection of fiber and matrix materials which can serve as a benchmark study for the researchers in future.  相似文献   

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