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Adaptive composite materials with shape memory alloy actuators for cylinders and pressure vessels

机译:带有形状记忆合金执行器的自适应复合材料,用于气缸和压力容器

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Abstract: An important development in future aerospace applications is the use of thick-wall composite material high-pressure vessels. While polymer matrix composite vessels are already widely used in low- pressure applications, because of reliability and fabrication issues, composite materials have not found use in high-pressure applications. Replacing current steel pressure vessel designs with polymer matrix composite pressure vessels for high pressure applications will yield significant weight reductions. High- pressure composite pressure vessels can reduce the size and weight of fuel, hydraulic, and auxiliary systems in aerospace vehicle applications. Presented here is an investigation of adaptive hybrid composite cylinders utilizing active shape memory alloy (SMA) composite layers for use in high-pressure vessel applications. An analytical analysis using an elasticity formulation shows that the adaptive composite cylinders can carry greater pressures with thinner walls than conventional composite and metal cylinders. A more reliable pressure vessel design is attained due to lower peak stresses in the adaptive composite material vessels. With the adaptive hybrid composite material concept, cylinders which can carry greater pressure with less radial expansion can also be produced. A model for the adaptive composite material cylinder and representative stress states for various composite materials is presented. !14
机译:摘要:未来航空航天应用的重要发展是使用厚壁复合材料高压容器。尽管聚合物基复合材料容器已经在低压应用中广泛使用,但是由于可靠性和制造问题,复合材料尚未在高压应用中使用。用用于高压应用的聚合物基质复合压力容器代替当前的钢制压力容器设计将显着减轻重量。高压复合压力容器可以减少航空航天应用中的燃料,液压和辅助系统的尺寸和重量。此处介绍的是对在高压容器应用中使用的活性形状记忆合金(SMA)复合层的自适应混合复合材料气瓶的研究。使用弹性公式进行的分析分析表明,与传统的复合材料圆柱体和金属圆柱体相比,自适应复合材料圆柱体在壁更薄的情况下可以承受更大的压力。由于自适应复合材料容器中的峰值应力较低,因此可以实现更可靠的压力容器设计。利用自适应混合复合材料的概念,还可以生产出能够承受更大压力且径向膨胀较小的气缸。提出了一种自适应复合材料圆柱体的模型以及各种复合材料的代表应力状态。 !14

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