首页> 外文期刊>Journal of intelligent material systems and structures >Adaptive pitch control of full-scale ship composite propeller using shape memory alloy to enhance propulsive efficiency in off-design conditions
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Adaptive pitch control of full-scale ship composite propeller using shape memory alloy to enhance propulsive efficiency in off-design conditions

机译:使用形状记忆合金的全尺寸船用复合材料螺旋桨自适应变桨控制,以提高非设计状态下的推进效率

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In this study, we investigate the use of shape memory alloy for adaptive control of twist of the propeller blade for a full-scale marine composite propeller of actual blade geometry, to offset the reduction in its hydrodynamic efficiency in off-design conditions. A full-scale ship propeller of 4.2m diameter, made of graphite-epoxy laminate integrated with Nitinol fibre-reinforced hybrid composite (shape memory alloy hybrid composite) patches, is considered. The shape memory alloy hybrid composite patches are placed such that the recovery stress induced on heating the pre-strained shape memory alloy fibres embedded in martensite phase to the austenite phase causes twisting deformation in the propeller blade. The open water performance is estimated from the flow solution obtained using the finite volume method considering viscous flow and fluid structure interaction, while the deformation analysis is performed using the finite element method based on the first-order shear deformation theory, considering the nonlinearity due to large deformation. It is shown for the first time for a ship propeller of actual size and shape that the heating of the shape memory alloy fibres generates sufficient twist in the propeller to cause appreciable improvement (up to 6.3%) in its hydrodynamic efficiency in off-design conditions with lower advance ratios, thereby enhancing its fuel efficiency.
机译:在这项研究中,我们调查了形状记忆合金在实际叶片几何形状的全尺寸船用复合材料螺旋桨中对螺旋桨叶片扭曲的自适应控制的应用,以抵消其在非设计条件下流体动力效率的降低。考虑使用直径为4.2m的全尺寸船用螺旋桨,该螺旋桨由石墨-环氧树脂层压板与镍钛诺纤维增强混合复合材料(形状记忆合金混合复合材料)贴片制成。放置形状记忆合金混合复合材料贴片,使得将嵌入马氏体相的预应变形状记忆合金纤维加热到奥氏体相时产生的恢复应力在螺旋桨叶片中引起扭曲变形。考虑粘性流和流体结构相互作用,从使用有限体积方法获得的流动解中估计开放水性能,同时考虑到由于非线性引起的非线性,使用基于一阶剪切变形理论的有限元方法进行变形分析。大变形。首次显示出实际尺寸和形状的船用螺旋桨,形状记忆合金纤维的加热会在螺旋桨中产生足够的扭曲,从而在非设计条件下显着改善其流体动力效率(最高6.3%)具有较低的前进比,从而提高了燃油效率。

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