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Passive damping of composite blades using embedded piezoelectric modules or shape memory alloy wires: A comparative study

机译:使用嵌入式压电模块或形状记忆合金线的复合材料叶片的被动阻尼:比较研究

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Emission reduction from civil aviation has been intensively addressed in the scientific community in recent years. The combined use of novel aircraft engine architectures such as open rotor engines and lightweight materials offer the potential for fuel savings, which could contribute significantly in reaching gas emissions targets, but suffer from vibration and noise issues. We investigated the potential improvement of mechanical damping of open rotor composite fan blades by comparing two integrated passive damping systems: shape memory alloy wires and piezoelectric shunt circuits. Passive damping concepts were first validated on carbon fibre reinforced epoxy composite plates and then implemented in a 1:5 model of an open rotor blade manufactured by resin transfer moulding (RTM). A two-step process was proposed for the structural integration of the damping devices into a full composite fan blade. Forced vibration measurements of the plates and blade prototypes quantified the efficiency of both approaches, and their related weight penalty.
机译:近年来,科学界广泛关注减少民用航空的排放。新型飞机发动机架构(例如开放式转子发动机)和轻质材料的组合使用具有节省燃料的潜力,这可能对实现气体排放目标做出重大贡献,但会遇到振动和噪音问题。通过比较两个集成的被动阻尼系统:形状记忆合金线和压电分流电路,我们研究了开放式转子复合风扇叶片机械阻尼的潜在改进。被动阻尼概念首先在碳纤维增强环氧复合材料板上得到验证,然后在通过树脂传递模塑(RTM)制造的开放式转子叶片的1:5模型中实施。提出了将阻尼装置结构集成到完整复合风扇叶片中的两步过程。平板和叶片原型的强制振动测量量化了两种方法的效率及其相关的重量损失。

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