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121.
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   
122.
在氧化性环境中,高于400℃时碳纤维开始氧化,限制了Cf SiC复合材料的应用。通过在Cf SiC复合材料表面制备抗氧化涂层体系,可以有效地保护碳纤维不被氧化。本实验制备了含CVD SiC粘接层、自愈合功能层和CVD SiC抗冲蚀层的三层涂层体系,并进行了氧化失重试验。氧化失重试验结果表明,仅有CVD SiC涂层的试样氧化失重率较大,不能有效地保护材料,而含有自愈合功能层的三层涂层体系的材料试样,在800℃~1200℃的氧化失重率非常小,1000℃下氧化288h的失重率仅为2.3%,弯曲强度仍保持为452.9MPa。同时实验发现,试样在氧化失重试验后,其CVD SiC涂层的表面形貌有明显改变,这主要是由SiC氧化形成SiO2薄膜所致,并且在1200℃下所生成的SiO2薄膜有表面收缩趋势,具有液相膜的部分特征。  相似文献   
123.
提出并验证了基于随机并行梯度下降(SPGD)算法的主动相位控制脉冲激光相干合成方案.利用低通滤波器滤除脉冲激光光强变化导致的性能评价函数起伏,提取出相位噪声导致的性能评价函数变化,然后将这个低通滤波后的性能评价函数用于SPGD算法的极值寻优过程,从而实现脉冲激光的锁相.对该方案进行了理论分析和数值模拟,并进行了两路脉冲激光相干合成实验.实验结果表明,当系统从闭环到开环时,系统性能评价函数均值提高到开环的1.6倍,干涉条纹长曝光对比度从0提高到0.43.在该方案中,通过增加合成脉冲激光路数,并在各路脉冲激光中引入多级功率放大器,能够得到更高的合成功率输出.  相似文献   
124.
概述了基于麦克尔逊干涉仪的光纤激光水听器的相位载波零差法(PGC)调制解调原理,通过数学推导及仿真,分析了调制信号和混频信号的频差是导致全数字化解调结果错误的主要因素之一。针对该诱导因素提供了可行的解决方案,并实现了基于DSP的1 MHz采样频率下使用PGC方法的全数字实时解调系统。对低频水声波段800Hz水声信号进行解调,实验结果表明:解调信号波形良好。  相似文献   
125.
As a key part of the pyrotechnic gas generator,the filter not only removes the particulate matter but also cools the hot gas to a safe level.This paper aims to improve the understanding of the basic heat and flow phenomenon in the gas generator.The pyrotechnic gas generator is modelling by a simplified filter structure with fiber arrays.A finite-volume model of the heat and fluid flow is proposed to simulate the detailed multi-dimensional flow and energy conversion behaviors.Several verification results are in good agreement with data in different references.Simulation results demonstrate that the filter can not only absorb heat from the gas but also cause the high intensity enhancement of the heat transfer.The per-formance difference between inline and staggered arrays is also discussed.The findings of the study put a further prediction tool for the understanding and design of the filter system with fibers.  相似文献   
126.
Particulate composites are one of the widely used materials in producing numerous state-of-the-art components in biomedical, automobile, aerospace including defence technology. Variety of modelling techniques have been adopted in the past to model mechanical behaviour of particulate composites. Due to their favourable properties, particle-based methods provide a convenient platform to model failure or fracture of these composites. Smooth particle hydrodynamics (SPH) is one of such methods which demonstrate excellent potential for modelling failure or fracture of particulate composites in a Lagrangian setting. One of the major challenges in using SPH method for modelling composite materials depends on accurate and efficient way to treat interface and boundary conditions. In this paper, a master-slave method based multi-freedom constraints is proposed to impose essential boundary conditions and interfacial displacement constraints in modelling mechanical behaviour of composite materials using SPH method. The proposed methodology enforces the above constraints more accurately and requires only smaller condition number for system stiffness matrix than the procedures based on typical penalty function approach. A minimum cut-off value-based error criteria is employed to improve the compu-tational efficiency of the proposed methodology. In addition, the proposed method is further enhanced by adopting a modified numerical interpolation scheme along the boundary to increase the accuracy and computational efficiency. The numerical examples demonstrate that the proposed master-slave approach yields better accuracy in enforcing displacement constraints and requires approximately the same computational time as that of penalty method.  相似文献   
127.
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   
128.
用能量法确定层状复合材料疲劳裂纹的扩展方向   总被引:1,自引:0,他引:1  
含裂纹体疲劳寿命的预测,必须首先了解裂纹扩展路径的全过程,而在层状复合材料中,裂纹扩展的路径非常复杂,不仅可以拐弯,而且可以分叉.因此,首先提出一个简单、适用、统一的裂纹扩展方向的相对强度准则,即应变能释放率比值判据;然后,利用有效解决高梯度问题的数值方法--任意线法,对实测试件的关键时刻(例如,拐弯或进入界面),进行了数值分析;并对典型试件进行了疲劳断裂实验研究.3方面的结果,得到相互的验证.这种一致性,不仅初步证明了这一方法的正确性和适用性,而且为疲劳裂纹扩展全过程的解决,提供了必要的基础.  相似文献   
129.
《防务技术》2019,15(3):295-299
The use of asbestos material is being avoided to manufacture the brake pads as it is harmful and toxic in nature. Further it leads to various health issues like asbestosis, mesothelioma and lung cancers. These brake pads can be replaced by natural fibers like Palm kernel (0–50%), Nile roses (0–15%) and Wheat (0–10%) with additives like aluminum oxide (5%–20%) and graphite powder (10%–35%). Phenolic resin of 35% is utilized as a binder. Particulated Nile roses are used to increase the friction coefficient and wheat powder is used to reduce the wear rate. Aluminum oxide and graphite are abrasive in nature. This helps to make brake pads with high friction co-efficient and less wear rate with low noise pollution. The wear of the proposed composites have been investigated at different speeds. Various tests like wear on pin-on-disc apparatus, hardness on the Rockwell hardness apparatus and oil absorption test have been conducted. Phenolic resin produces good bonding nature to fiber. Thus, Fibers found to have performed palatably among all commercial brake pads. The objective of the research indicates that Palm kernal shell could be a conceivable alternative for asbestos in friction coating materials.  相似文献   
130.
文中介绍了光纤光栅温度、压力、应变的基本原理及几种常用的光纤光栅传感信号解调技术。讲述了光纤光栅网络化传感技术研究进展,对几种常用传感网络进行了详细的描述。综述了光纤光栅传感器的实际应用,并着重讲述了光纤光栅传感器在军事上的应用实例。  相似文献   
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