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Multi-objective optimal design of composite rotorcraft driveshaft including strain rate and temperature effects

机译:应变速率和温度影响的复合材料旋翼机传动轴多目标优化设计

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摘要

Single-piece composite driveshafts offer the potential to reduce weight, parts inventory, and maintenance costs in rotorcraft, compared to multi-segmented drivelines with flexible connectors. This innovative application of composites is enabled by the high cyclic strain capacity of composites, which allows operation under misaligned conditions. Trade space visualization was used to demonstrate how material, ambient temperature, bending strain, and torque/speed combination (for constant power) affect the design space. Design variables included stacking sequence and number of layers and hanger bearings. Failure criteria included overheating, whirl instability, torsional buckling, and material failure. The design goals minimized mass and maximized the lowest factor of safety by adaptively generating solutions to the multi-objective problem. Rate- and temperature-dependent viscoelastic properties and temperature-dependent strengths of five composites were experimentally characterized and used as model inputs. Design space inspection highlighted shaft whirling as a common limiting factor in addition to fiber direction compressive strength for flexible composites. Mass reductions of 15.15 and 13.65 kg were realized for rigid and flexible composite driveshafts respectively (original mass of 31.3 kg) in a case study, primarily due to the elimination of mid-span flexible couplers and one hanger bearing. Larger mass reductions were demonstrated by trading operating speed and torque. Published by Elsevier Ltd.
机译:与具有柔性连接器的多段式传动系统相比,单件式复合传动轴具有减轻旋翼飞机重量,减少零件库存和维护成本的潜力。复合材料的这一创新应用是由于复合材料的高循环应变能力而实现的,该能力允许在未对准条件下运行。交易空间可视化用于演示材料,环境温度,弯曲应变和扭矩/速度组合(对于恒定功率)如何影响设计空间。设计变量包括堆叠顺序,层数和吊架轴承。失效标准包括过热,旋转不稳定,扭转屈曲和材料失效。通过自适应地生成多目标问题的解决方案,设计目标使质量最小化并使最低安全系数最大化。对五个复合材料的速率和温度相关的粘弹性和温度相关的强度进行了实验表征,并用作模型输入。设计空间检查强调了轴回旋是除了挠性复合材料的纤维方向抗压强度之外的常见限制因素。在案例研究中,刚性和挠性复合驱动轴的质量分别减少了15.15 kg和13.65 kg(原始质量为31.3 kg),这主要是因为取消了中跨挠性联轴器和一个吊架轴承。通过权衡运行速度和扭矩证明了更大的质量减少。由Elsevier Ltd.发布

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