首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到17条相似文献,搜索用时 187 毫秒
1.
以Si3N4和BN为原料,叔丁醇为溶剂,SiO2、Y2O3和Al2O3为烧结助剂,采用凝胶注模成型工艺制备具有高强度、低介电常数多孔Si3N4/BN复合陶瓷。研究了Y2O3和Al2O3含量对多孔陶瓷气孔率、孔径分布、物相组成、显微结构、抗弯强度和介电常数的影响。结果表明:通过调节Y2O3和Al2O3含量,多孔Si3N4/BN复合陶瓷的气孔率由55%增加到68%,气孔尺寸呈单峰分布,平均孔径为0.89~1.02μm;抗弯强度和相对介电常数随Y2O3和Al2O3含量的增加而单调增大,抗弯强度和相对介电常数的变化范围分别为29.9~60.9 MPa和2.30~2.85;通过调节Y2O3和Al2O3含量调控气孔率,能够获得介电性能和力学性能可调的高性能透波材料。  相似文献   

2.
SiO2/(Si3N4+BN)透波材料表面涂层的防潮性能和透波性能研究   总被引:1,自引:0,他引:1  
SiO2/(Si3N4+BN)复合材料是近几年发展起来的综合性能优良的适用于高马赫数的导弹天线罩材料。本文分析了SiO2/(Si3N4+BN)复合材料的吸潮机理。采用有机硅树脂在SiO2/(Si3N4+BN)复合材料表面制备了防潮涂层,取得较好的防潮效果。涂装后SiO2/(Si3N4+BN)复合材料在40℃、90%的高温高湿条件下放置15d的吸水率约0.30%;在大气环境下(温度27-30℃,湿度45-60%)的吸水率小于0.01%。涂层对SiO2/(Si3N4+BN)复合材料的透波率影响较小,涂装后材料的透波率仍然能保持在85%以上。  相似文献   

3.
周宏霞  王明明 《粘接》2012,(11):52-55
分别采用氮化硼(BN)、氧化铝(Al2O3)和复配BN/Al2O3作为导热填料制备环氧树脂导热复合材料。结果表明,环氧树脂热导率随导热填料用量的增加而增大;同等用量下,BN/Al2O3/环氧树脂复合材料的导热性能均优于BN/环氧树脂和Al2O3/环氧树脂。当BN/Al2O3质量分4~50%[m(BN)/m(Al2O3)=3/1J,复合材料热导率为08194W/mK。此外,随BN/Al2O3用量的增加,环氧树脂的介电常数和介电损耗角正切增加,而弯曲强度和冲击强度则先增加后降低。  相似文献   

4.
无压烧结Al2O3/Si3N4纳米复合陶瓷的力学性能   总被引:4,自引:0,他引:4  
本文对Al2O3/Si3N4体系进行无压烧结。获得试样相对密度大于98%,采用物相分析,烧结体中并没有Si3N4颗粒存在而是形成SIALON相。Si3N4和Al2O3反应生成的β-SIALON相颗粒不仅分布在Al2O3晶粒晶界处也存在于Al2O3晶粒内部,形成独特的“内晶型”结构。当受到外力时既能诱发穿晶断裂,又能引起裂纹偏转,从而起到增强的作用。由于产生晶界滑移,韧性有所下降。  相似文献   

5.
对Al2O3/Si3N4体系进行无压烧结。获得试样相对密度大于98%,物相分析烧结体中并没有Si3N4颗粒存在而是形成SIALON相。Si3N4和Al2O3反应生成的β-SIALON相颗粒不仅分布在Al2O3晶粒晶界处也存在于Al2O3晶粒内部,形成独特的“内晶型”结构。当受到外力时既能诱发穿晶断裂,又能引起裂纹偏转,从而起到增强的作用。由于产生晶界滑移,韧性有所下降。  相似文献   

6.
将纳米Al2O3-SiO2、Si3N4分别均匀分散于聚酰亚胺(PI)前驱体聚酰胺酸中,经过热亚胺化制备了PI/纳米Al2O3-SiO2和PI/纳米鼠N4杂化材料。通过傅里叶变换红外光谱仪、X射线衍射仪、高温微量热天平、静态热机械分析仪和差示热分析仪对杂化材料的微观结构及热性能进行了研究,结果表明,杂化材料中聚酰亚胺和无机纳米粒子之间存在相互作用,形成了复合相态结构;加入纳米Al2O3,SiO2、Si3N4后杂化材料的热稳定性均高于纯聚酰亚胺,但并不完全随无机纳米粒子含量的增加而提高;与纯PI相比,在90~130℃的温度范围内PI-8%Al2O3-SiO2、PI-8%鼠Si3N4热膨胀系数分别降低了约11%和47%,加入8%纳米Al2O3-SiO2、Si3N4后杂化材料的热导率分别提高了约8%和13%。PI/纳米Al2O3-SiO2、Si3N4杂化材料不仅保留了PI原有的优异性能,而且充分发挥了纳米无机粒子对PI的特殊改性性能。  相似文献   

7.
通过对Al2O3/Si3N4体系进行无压烧结,获得的试样相对密度大于98%,物相分析烧结体中没有Si3N4颗粒存在,而是形成β-SiAlON相。Si3N4和Al2O3反应生成的β-SiAlON相颗粒不仅分布在Al2O3晶粒晶界处,也存在于Al2O3晶粒内部,形成独特的“内晶型”结构。当受到外力时既能诱发穿晶断裂,又能引起裂纹偏转,起增强作用,但由于产生晶界滑移,材料韧性有所下降。  相似文献   

8.
刘春侠  黄志刚  李愿  袁昌龙 《陶瓷》2007,(10):36-39
概述了不同结合方式的碳化硅(SiC)质窑具材料的抗热震性能.表明Si2N2O结合SiC窑具材料的抗热震性优于其它结合方式的SiC窑具材料。并对Si2N2O结合SiC窑具材料抗热震性的影响因素进行了较系统的研究。结果表明:当Si2N2O含量≤20%时,增加Si2N2O含量.可提高Si2N2o结合SiC试样的抗热震性;当Si2N2O含量超过20%时,试样的抗热震性能反而变差,Si2N2O结合SiC试样的抗热震性优于Si3N4结合SiC试样。固定试样中Si2N2O的含量为25%,当Si/SiO2(摩尔分数)在2.7%~3.3%范围内时,增加Si/SiO2(摩尔分数)可提高试样的抗热震性,而当Si/SiO2(摩尔分数)在3.3%~4%范围内时.增加Si/SiO2(摩尔分数)对试样抗热震性的影响规律不明显。  相似文献   

9.
以微米级Si3N4和h-BN粉末为原料,CaF2–Al2O3–Y2O3为烧结助剂,采用常压烧结工艺制备了BN体积含量为25%的Si3N4/BN复相陶瓷。研究了CaF2添加量对Si3N4/BN复相陶瓷材料力学性能的影响,并通过X射线衍射和场发射扫描电镜分析了复相陶瓷的物相组成和显微组织。结果表明:随着CaF2添加量增加,制备的Si3N4/BN复相陶瓷材料气孔率逐渐增大,收缩率变小,相对密度减小。添加量为2%(质量分数)时,Si3N4/BN复相陶瓷的室温抗弯强度达145.5MPa。添加适量的CaF2可在Si3N4/BN复相陶瓷材料常压烧结过程中较大程度地破坏h-BN的卡片房式结构,将微米级的h-BN颗粒变成纳米级颗粒。  相似文献   

10.
以Si3N4和BN粉末为原料,Si3N4-BN复合粉末中BN的体积分数分别选定为10%、20%和30%,采用质量分数为2%的Al2O3和6%的Y2O3作为烧结助剂,分别在1500、1600和1650℃,压力50 MPa,保温5 min的条件下,采用放电等离子体烧结法制备了致密Si3N4-BN复合陶瓷。XRD结果和SEM分析表明:当煅烧温度为1650℃时,复合陶瓷中的α-Si3N4已完全转变为β-Si3N4;BN的加入抑制了复合陶瓷中Si3N4晶粒的生长而使结构细化;复合陶瓷的维氏硬度和断裂韧性随BN含量的增加而逐渐降低。  相似文献   

11.
Based on a biomimetic design, Si3N4/BN composites with laminated structures have been prepared and investigated through composition control and structure design. To further improve the mechanical properties of the composites, Si3N4 matrix layers were reinforced by SiC whiskers and BN separating layers were modified by adding Si3N4 or Al2O3. The results showed that the addition of SiC whiskers in the Si3N4 matrix layers could greatly improve the apparent fracture toughness (reaching 28.1 MPa·m1/2), at the same time keeping the higher bending strength (reaching 651.5 MPa) of the composites. Additions of 50 wt% Al2O3 or 10 wt% Si3N4 to BN interfacial layers had a beneficial effect on the strength and toughness of the laminated Si3N4/BN composites. Through observation of microstructure by SEM, multilevel toughening mechanisms contributing to high toughness of the laminated Si3N4/BN composites were present as the first-level toughening mechanisms from BN interfacial layers as crack deflection, bifurcation, and pull-out of matrix sheets, and the secondary toughening mechanism from whiskers in matrix layers.  相似文献   

12.
以微米级Si3N4和h-BN粉末为原料,Yb2O3-Al2O3-Y2O3为烧结助剂,采用常压烧结工艺制备了BN体积含量为25%的多孔Si3N4/25%h-BN复相陶瓷。研究了Yb2O3添加量对Si3N4/25%BN复相陶瓷力学性能的影响,通过X射线衍射和扫描电子显微镜分析了复相陶瓷的物相组成和显微结构。结果表明:随着Yb2O3添加量增加,制备的Si3N4/25%BN复相陶瓷的气孔率逐渐增大,收缩率变小,相对密度减小。Yb2O3添加量为2%(质量分数)时,Si3N4/25%BN复相陶瓷的气孔率为15.1%,相对密度为72.8%;当Yb2O3添加量提高至15%时复相陶瓷的气孔率增加至32.1%,相对密度则降至60.3%。同时随着Yb2O3添加量增加,复相陶瓷的室温抗弯强度先增大后减小,Yb2O3含量为4%时,室温抗弯强度呈现最大值,可达264.3MPa。  相似文献   

13.
用扫描电子显微镜、电子能谱仪、X射线衍射等研究了在Ar气氛中,经1150℃,10h等温热处理后,Si3N4/Fe,Si3N4/Fe3Al平而偶界面固相反应区的形貌、成分分布、显微结构及相组成.结果表明:Si3N4/Fe界面固相反应形成约120μn厚的反应区,Fe含量从Si3N4侧到Fe侧逐渐增加,反应区中的Si成分约为5%(原子分数),反应区主要由Fe(Si)固溶体构成,其中均匀地分御着细小的孔洞:Si3NdFe3Al界面固相反应形成约3μm厚的反应区,反应区具有比Fe3Al高得多的Al含量,反应区由FeAl,Fc(Al,Si)固溶体及三元化合物AlgFeSi3构成.Si3NdFe3Al具有比Si3N4/Fe高得多的 界面化学相容性.  相似文献   

14.
Relations between fracture toughness and fiber/matrix interphases were examined on various SiC/SiC composites made by chemical vapor infiltration (CVI) and reinforced with woven fiber bundles. Strong and weak fiber/matrix bondings were obtained using multilayered interphases consisting of various combinations of carbon and SiC layers of different thickness and using fibers which had been previously treated. Fracture toughness was estimated using the J - integral and using strain energy release rate computed with a model taking into account the presence of a process zone of matrix microcracks. Both approaches evidenced similar trends. It appeared that higher toughness was obtained with those composites possessing strong interphases and subject to dense matrix microcracking.  相似文献   

15.
The influence of a strong/weak interface ratio on the mechanical properties of Si3N4/BN-based layered composites was studied. The ratio was controlled by the number of BN spots between the adjacent Si3N4 layers. By increasing the BN interface area from 0% to 72%, fracture toughness increased from 7.7 to 10.9 MPa·m1/2, and bending strength decreased from 1275 to 982 MPa. Fracture toughness was improved from 8.6 to 10.1 MPa·m1/2 by additional heat treatment of samples containing 2 vol%β-Si3N4 seed particles. The bending strength of samples with 35% weak BN interfaces, measured perpendicular and parallel to layer alignment, was 1260 and 1240 MPa, respectively. This confirmed the two-directional isotropy of layered samples.  相似文献   

16.
R -curve behavior of Si3N4–BN composites and monolithic Si3N4 for comparison was investigated. Si3N4–BN composites showed a slowly rising R -curve behavior in contrast with a steep R -curve of monolithic Si3N4. BN platelets in the composites seem to decrease the crack bridging effects of rod-shaped Si3N4 grains for small cracks, but enhanced the toughness for long cracks as they increased the crack bridging scale. Therefore, fracture toughness of the composites was relatively low for the small cracks, but it increased significantly to ∼8 MPa·m1/2 when the crack grew longer than 700 μm, becoming even higher than that of the monolithic Si3N4.  相似文献   

17.
以SiC和Si微米粉为添加剂,采用无压烧结工艺制备了纳米SiC增韧的Al2O3陶瓷复合材料,探讨了SiC含量、烧结气氛和烧结温度对复合材料的烧成收缩率、微观形貌、抗弯强度、维氏硬度及断裂韧性的影响。结果显示:SiC的添加使复合材料的烧成收缩率下降,惰性气氛下复合材料的收缩率要大于氧化气氛和还原气氛时的收缩率。在氧化性气氛下烧结时,当SiC添加量为4%时,复合陶瓷的体积密度为3.80 g·cm^-3,抗弯强度、断裂韧性及维氏硬度均达到最大值,分别为480 MPa、5.12 MPa·m1/2、16.2 GPa。添加SiC后所得复合材料的基体颗粒为椭圆状,粒径为2μm左右,颗粒与颗粒之间结合紧密,颗粒形状的改变可能是因为烧结机理发生变化所致。纳米SiC颗粒位于晶界处,形成了由Al2O3-SiC-Al2O3搭桥联结的晶界,提高了晶界强度,导致裂纹只能在晶内传播。  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号