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21.
采用热重-差热(TG-DTA)、红外(IR)等分析测试手段,研究了聚碳硅烷(PCS)的裂解及化学转化过程,从理论上验证了先驱体聚碳硅烷(PCS)600℃裂解产物的准陶瓷特性.先驱体聚碳硅烷在600℃呈现一种半有机、半无机状态,其产物具有准陶瓷的特征,在大约750℃出现无机化转变高峰,固称其为准陶瓷.以碳布、准三维编织体、三维编织体为增强体,采用先驱体浸渍裂解(PIP)工艺在600℃制备了碳纤维增强碳化硅(Cf/SiC)准陶瓷基复合材料.结果表明,以三维编织体增强的准陶瓷Cf/SiC复合材料获得了较理想的结构、性能,所制备3D-Cf/SiC复合材料密度仅有1.27g/cm3,弯曲强度达到193.69MPa,室温拉伸强度为197.69MPa,600℃拉伸强度为167.33MPa.复合材料断口形貌分析表明,在低温600℃制备的准陶瓷Cf/SiC复合材料呈现明显的韧性断裂特征.  相似文献   
22.
深圳星河世纪结构方案优选   总被引:2,自引:0,他引:2  
高楼结构设计,包含结构方案选定、构件内力计算、杆件和节点构造措施等三 部分内容。工程实践经验表明,高楼结构设计能否做到安全、经济、合理,关键在于选定的结 构方案是否恰当。围绕结构方案优化这一主题,探讨了以深圳星河世纪A栋办公楼为例, 就其有关的安全、经济、合理各方面进行系统的阐述,以供同类建筑在确定结构方案时参考。  相似文献   
23.
碳化硼涂覆的碳纤维的抗热氧化性研究   总被引:3,自引:0,他引:3       下载免费PDF全文
用自己合成的裂解能得到碳化硼的聚碳硼烷,对碳纤维进行涂层,并详细测试了涂层碳纤维的抗热氧化性能。  相似文献   
24.
《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   
25.
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   
26.
《防务技术》2022,18(9):1715-1726
High efficiency, environmental protection and sustainability have become the main theme of the development of the protection engineering, requiring that the components not only meet the basic functions, but also have chemical properties such as acid and alkali corrosion resistance and aging resistance. Polyisocyanate-oxazodone (POZD) polymer has the above characteristics, it also has the advantages of strong toughness, high strength and high elongation. The concrete slab sprayed with POZD material has excellent anti-blast performance. In order to explore the damage characteristics of POZD sprayed concrete slabs under the action of contact explosion thoroughly, the contact explosion test of POZD concrete slabs with different charges were carried out. On the basis of experimental verification, numerical simulation were used to study the influence of the thickness of the POZD on the blast resistance of the concrete slab. According to the test and numerical simulation results that as the thickness of the coating increases, the anti-blast performance of the concrete slab gradually increases, and the TNT equivalent required for critical failure is larger. Based on the above analysis, empirical expressions on normalized crater diameter, the normalized spall diameter and normalized spall diameter are obtained.  相似文献   
27.
Force chains based mesoscale simulation is conducted to investigate the response behavior of aluminum-polytetrafluoroethylene (Al-PTFE) granular composites under a low-velocity impact. A two-dimensional model followed the randomly normal distribution of real Al particles size is developed. The dynamic compressive process of Al-PTFE composites with varied Al mass fraction is simulated and validated against the experiments. The results indicate that, force chains behavior governed by the number and the size of agglomerated Al particles, significantly affects the impact response of the material. The failure mode of the material evolves from shear failure of matrix to debonding failure of particles with increasing density. A high crack area of the material is critical mechanism to arouse the initiation re-action. The damage maintained by force chains during large plastic strain builds up more local stresses concentration to enhance a possible reaction performance. In addition, simulation is performed with identical mass fraction but various Al size distribution to explore the effects of size centralization and dispersion on the mechanical properties of materials. It is found that smaller sized Al particle of com-posites are more preferred than its bulky material in ultimate strength. Increasing dispersed degree is facilitated to create stable force chains in samples with comparable particle number. The simulation studies provide further insights into the plastic deformation, failure mechanism, and possible energy release capacity for Al-PTFE composites, which is helpful for further design and application of reactive materials.  相似文献   
28.
PIP工艺制备的C/SiC复合材料中SiC基体富碳,因此增强体和基体均容易氧化。碳纤维和无涂层保护C/SiC复合材料试样在400~1300℃的氧化速率随温度升高而加快,低温为反应控制,高温为扩散控制。CVD-SiC涂层保护C/SiC复合材料和由CVD-SiC层、自愈合层、CVD-SiC层三层涂层保护C/SiC复合材料在400~1300℃的氧化先随温度升高而加快,然后减慢。三层涂层在800~1300℃有非常好的保护效果。扫描电镜照片显示自愈合层的玻璃态物质进入涂层裂纹中,填充裂纹且阻挡氧的通过,从而有良好的抗氧化保护效果。  相似文献   
29.
UHMWPE复合材料抗爆实验研究   总被引:1,自引:0,他引:1  
运用定制的聚偏四氟乙烯(PVDF)压电传感器,直接测量爆炸载荷下UHMWPE层叠无纬布和PU基体的UHMWPE复合材料内部冲击波压力峰值,对其冲击波衰减特性进行了实验研究。实验结果表明:UHMWPE复合材料对爆炸冲击波有很好的衰减作用,含有PU基体的UHMWPE复合材料比UHMWPE层叠无纬布对爆炸冲击波有更好的衰减效果。UHMWPE复合材料具有轻质、吸收冲击波效率高等特性,在爆炸冲击波防护领域有很好的应用前景。  相似文献   
30.
主要对多种纳米结构炭材料(超级活性炭、多壁碳纳米管,纳米碳纤堆,纳米石墨纤堆、纳米石墨球等)在常温、10-13MPa的氢气压力下的储放氢量进行了测定(其中包括经过一系列物化处理的样品),井对其结构和比表面积分别采用SEM、TEM、HRTEM、ASAP2010吸附测试仪(BET)进行了分析.实验结果表明:经过处理的纳米碳样品的储放氢量有所提高,但没有一种样品在温和的实验每件下的储放氢量超过1.0wt%,离DOE目标(6.5wt%)相距甚远。  相似文献   
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