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A seal device as an important component of aeroengines has decisive influence on per- formance, reliability, and working life of aeroengines. With the development of aeroengines, demands on the performance characteristics of seal devices are made strictly. Finger seal as a novel kind of sealing device, recently attracts more and more attentions in academic circles and engineer- ing fields at home and abroad. Research on finger seals has been extensively developed, especially on leakage and wear performances under dynamic conditions. However, it is a pity that the work on finger seals has been limited with a single approach that is improving the performance by structural optimization; in addition, the technology of dynamic analysis on finger seals is weak. Aiming at the problems mentioned above, a distributed mass equivalent dynamic model of finger seals considering the coupling effect of overlaid laminates is established in the present paper, the dynamic perfor- mance of 2.5 dimension C/C composite finger seal is analyzed with the model, and then the effects of fiber bundle density and fiber bundle preparation direction on finger seal's dynamic performance are discussed, as well as compared with those of Co-based alloy finger seal. The current work is about dynamic analysis of finger seals and application of C/C composite in this paper may have much academic significance and many engineering values for improving research level of finger seal dynamics and exploring feasibility of C/C composite being used for finger seals. 相似文献
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基于广义应力 广义强度分布干涉理论和单一失效模式下扭簧可靠性计算模型,建立了多失效模式下扭簧可靠度优化数学模型,采用规格化加权法进行各失效模式影响相同(等失效效应)和有差异(非等失效效应)两种情况下的扭簧可靠度计算。在给定扭簧结构和工况约束条件下,应用提出的计算模型和技术进行了失效模式影响相同和有差异的基于可靠度最大的扭簧结构优化,与非优化结构的扭簧可靠度的比较,以及这两种情况下的扭簧可靠度比较。结果表明,提出的可靠度优化模型和方法是可靠和有效的,对于航天工程中零部件的可靠性优化分析具有很好的借鉴作用。 相似文献
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应用有限元法对某模拟固体火箭发动机的热烤试验过程进行了数值模拟研究,对比分析了在相同的外界条件下,考虑接触热阻与不考虑接触热阻时推进剂的起始燃烧时间。结果表明,考虑接触热阻的影响对于准确预测发动机的烤燃时间有重要的影响。 相似文献
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运动油滴/固体壁面斜碰撞的状态辨识及特征分析 总被引:2,自引:1,他引:1
航空发动机轴承腔油气两相流动与换热研究是轴承腔润滑与换热设计的重要基础工作,而运动油滴与轴承腔壁面的碰撞状态辨识及特征分析是轴承腔油气两相流动与换热研究的组成部分。基于VOF方法建立了运动油滴与固体壁面斜碰撞数值仿真模型,实现了运动油滴与固体壁面斜碰撞状态的数值模拟,分析了碰撞油滴直径、入射角和碰撞速度对沉积油膜铺展长度、油膜堆积厚度和溅射油滴数目等碰撞状态特征参数的影响规律,提出了运动油滴与固体壁面斜碰撞条件下的状态判断准则,并得到了文献的物理试验工作的支持。研究结果表明:随着油滴入射角减小,沉积油膜铺展长度和油膜堆积厚度增大,溅射油滴数目减少;随着碰撞速度和油滴直径的增大,沉积油膜铺展长度和溅射油滴数目均增大,但油膜堆积厚度对应前者呈减小趋势、对应后者仍呈增大趋势。 相似文献
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中介轴承环下流道滑油流动及润滑效率分析 总被引:1,自引:0,他引:1
航空发动机主轴轴承(中介轴承)大多采用环下供油方式进行润滑,滑油在环下供油流道中的流动特性影响着轴承润滑效率,为了改善迄今滑油流动分析与喷射-收纳滑油分析相割裂及未考虑环下供油孔与滚动体相对位置变化所产生滑油输出时变性影响的不足,提出了考虑滑油输出时变性影响的喷油-收油与滑油流动集成分析方法。首先,将进入环下供油流道的滑油分解为直接喷入收油孔的滑油和沉积于收油环壁面上并沿周向流入收油孔的滑油,通过计算这两部分滑油流量获得进入环下供油流道的滑油流量;然后,基于环下供油孔和滚动体相对位置变化规律确定供油孔出口的时变边界条件,将其嵌入滑油流动瞬态分析模型,进行模型求解后得到环下供油流道各出口的滑油流量及轴承润滑效率。所提出的滑油流动分析方法较为系统也更符合工程实际,为中介轴承润滑效率的准确计算提供了技术方法和基础数据,有助于中介轴承润滑系统的精确设计。 相似文献
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Hydrodynamic journal bearings are used to support the planetary gears in the transmission system of a Geared Turbo Fan engine, and they operate under severe working conditions, such as misalignment, high speed, and heavy load. Surface texture is regarded as an effective approach to improve mechanical properties under severe working conditions. However, the effects of surface texture on misaligned journal bearings under severe conditions have not been well studied. Therefore, a thermoelastohydrodynamic(TEHD) lubricating model with a textured and misaligned journal is presented in this study. Solid deformation, heat transfer between oil and the bearing, and heat convection between air and the bearing are considered in the model. The effects of cavitation and viscosity-temperature are also taken into account. The impacts of surface texture parameters and the misalignment angle on lubricating properties are investigated in the model. Results indicate that the bearing lubricating performance is greatly improved by optimal surface texture considering journal misalignment. The maximum oil film pressure and load-carrying capacity of a journal bearing increase with journal misalignment. Meanwhile, the oil film temperature increases sharply while considering misalignment. 相似文献
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基于POD降阶模型的非接触端面密封动态监测原理及仿真 总被引:1,自引:1,他引:1
端面密封动态性能模型的多维求解复杂性限制了对密封的实时动态监测,为此建立了基于本征正交分解(POD)方法的密封性能求解降阶模型,以获取实时的密封性能特征参数,包括非接触密封微小间隙产生的液膜轴向力及沿着不同方向的液膜力矩.基于降解模型提出了非接触端面密封动态监测的原理,并分析了不同液膜振动频率下的降阶模型的计算误差,完成了对一组不同密封间隙及液膜振动频率下的水润滑端面液膜轴向力及力矩的数值仿真.研究结果表明提出的基于POD降阶模型的非接触端面密封动态监测能达到较高的分析精度,这对于非接触端面密封的动态控制及研究瞬态启动过程中的密封动静特性具有重要的作用. 相似文献
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轴承腔油滴沉积特性及油膜流动特征分析 总被引:1,自引:1,他引:1
轴承腔的润滑和换热设计依赖于对腔内油气两相流动和换热状态的准确理解。针对先前研究工作的不足,在包含油滴碰撞腔壁热量交换、沉积热量以及油膜温度即考虑温度效应的条件下,开展了油滴沉积特性及油膜流动特征分析。首先分析了单个油滴碰撞腔壁沉积特性,确定了油滴的沉积质量、动量和热量。其次在考虑油滴尺寸分布的条件下,通过离散油滴尺寸范围的方式确定了腔内所有油滴碰撞腔壁的沉积油膜质量、动量和热量。最后借助力学平衡和质量守恒条件,以上述参数为基础计算了腔壁油膜温度以及速度和厚度的分布情况。计算结果表明,随着转子转速的增加,油滴的质量、动量和热量沉积率有所降低,一次沉积油膜质量、沉积油膜动量、沉积油膜热量以及油膜速度均有所增加,而油膜厚度降低。通过与试验数据的对比表明,提出的轴承腔油滴沉积特性及油膜流动特征分析方法是较为可靠的,并且考虑温度效应使油膜厚度的计算更为准确。分析工作为轴承腔的润滑和换热设计提供了一定的参考依据。 相似文献