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根据某无人直升机可靠性数据,基于AMSAA模型,对该型无人直升机可靠性进行了评估,得到该无人直升机系统可靠性指标,评判该无人直升机现阶段可靠性水平增长的趋势。该方法可以为其它型号的无人直升机的可靠性评估提供借鉴。  相似文献   
2.
旋翼是直升机的关键部件[1],其不仅是直升机的升力面,也是直升机的操纵面[2].在直升机领域,流传着一句话,"一代旋翼,一代直升机".因此,直升机技术的进步总是伴随着旋翼技术的进步.早期的直升机旋翼桨叶是由金属(甚至航空木材)设计、加工而成.由于复合材料具有高的比强度、比刚度以及可设计等诸多特点,现代直升机的旋翼桨叶都普遍采用复合材料进行设计和制作[3].  相似文献   
3.
A high cycle fatigue reliability analysis approach to helicopter rotor hub is proposed under working load spectrum. Automatic calculation for the approach is implemented through writing the calculating programs. In the system, the modification of geometric model of rotor hub is controlled by several parameters, and finite element method and S-N curve method are then employed to solve the fatigue life by automatically assigned parameters. A database between assigned parameters and fatigue life is obtained via Latin Hypercube Sampling (LHS) on toler- ance zone of rotor hub. Different data-fitting technologies are used and compared to determine a highest-precision approximation for this database. The parameters are assumed to he independent of each other and follow normal distributions. Fatigue reliability is then computed by the Monte Carlo (MC) method and the mean-value first order second moment (MFOSM) method. Results show that the approach has high efficiency and precision, and is suit- able for engineering application.  相似文献   
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