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Containment of soft wall casing wrapped with Kevlar fabric 总被引:3,自引:0,他引:3
Aramid fabrics have been commonly used in the civil turbofan engine fan blade containment system for its excellent performance. To investigate the behavior and capability of soft wall containment casing, a series of fan blade released tests were conducted on the high-speed spin tester.The soft wall casing was fabricated by wrapping multiple layers of Kevlar49 plain woven fabric around a thin steel ring. Casings with different inner metal ring and outer fabric layers number were compared. The method of using the explicit dynamic software LS-DYNA to establish the finite element analysis model for the quantitative analysis of the containment process was developed and conducted. The simulation results are in good agreement with the test results. It is shown that the containment process of the soft wall casing can be divided into three impact stages. The casing with low-stiffness inner metal ring will get severe overall deformation and lose the structural integrity when it suffers the blade impact. Kevlar fabric layers will appear large bulge on outside surface and absorb the most impact dynamic energy of the high speed released fan blade. By summing up the results of the test and simulation, an empirical critical equation was derived to describe the relationship between the released blade dynamic energy and the Kevlar fabric thickness. 相似文献
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在实际工程中,系统常常是由串联、并联、旁联和表决等模型混合而成的复杂可修系统,目前此类系统的可靠性分配方法多采用等分分配等方法,得到的分配结果往往误差较大。本文提出了一种考虑维修、故障逻辑等多因素影响的可修系统任务可靠性分配方法。该方法以系统故障率为待分配指标,首先对包含维修影响的故障率进行转换,然后利用考虑故障逻辑的评分分配法进行分配,最后通过备件系数进行修正,获得分配结果。新方法能够为在实际工程中可修系统的任务可靠性分配提供一种简便易行的方法。 相似文献
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航空发动机性能的提高对涡轮叶片耐热极限提出了更高的要求,为了更准确地分析涡轮叶片的传热特性,选取某型气冷涡轮动叶10%、50%和90%叶高的特征型面通过低导热光敏树脂材料经过3D打印而成,通过叶片表面粘贴厚度为0.02mm康铜加热膜接通恒定电流加热,使用红外热像系统精确测量叶片壁面温度,在平面叶栅中研究了吹风比(M)和雷诺数(Re)对气膜绝热冷却效率和努塞尔数(Nu)的影响(试验中基于弦长的进口雷诺数Re为8.0×104-16.7×104,吹风比M为1-3)。试验结果表明:M=1时气膜能够较好附着在叶片表面,叶片表面得到较好冷却;随着主流雷诺数的增加,绝热壁面温度逐渐升高,绝热效率逐渐降低;吹风比对涡轮叶片的传热特性的影响与气膜孔出流角度有关,随着吹风比的增大,压力面绝热冷却效率逐渐增大,由于吸力面的气膜孔出流角较大,吹风比增大使得吸力面的绝热冷却效率逐渐减小;随着吹风比的增加,对流换热系数增大。 相似文献
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固液捆绑火箭通常气动外形复杂,跨声速飞行动压大,因此脉动压力抖振载荷严酷。针对某型固液捆绑火箭,为了获取较为准确的跨声速脉动压力特性,在研制阶段开展了脉动压力风洞试验,火箭飞行时也进行了脉动压力测量,以评估飞行状态抖振载荷。采用脉动压力风洞试验和飞行试验进行对比,结果显示,飞行试验各测点脉动压力系数随马赫数变化趋势与风洞试验值一致,峰值大小基本相同,合成功率谱密度函数遥测峰值与设计值相当。研究结果首次验证了固液捆绑火箭跨声速脉动压力设计方法的有效性。 相似文献