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Dynamic analysis of composite propeller of ship using FEA

机译:基于有限元分析的舰船复合螺旋桨动力分析

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Ships and underwater vehicles use propeller for propulsion. In general, propellers are used as propulsors and they are also used to develop significant thrust to propel the vehicle at its operational speed and RPM. The blade geometry and design are more complex involving many controlling parameters. In current years the increased need for light weight structural element with composite materials has led to use of S2 glass fabric/epoxy to propeller. The present research work is to carry out the model and static analysis of aluminium, composite material which is a combination of glass fibre reinforced plastics (GFRP) materials. The research work deals with modelling and analysing the propeller blade of an underwater vehicle for their strength. A propeller is a complex geometry which requires high end modelling software. The solid model of propeller is developed in CATIA V5 R21. Static model analysis of the propellers made of aluminium and composite materials are carried out in advanced numerical simulation systems (ANSYS). We applied thrust force at blade blend section and centrifugal force at the centre of gravity and found out Von Mises stresses, total deformation, directional deformation, principal and shear stresses of aluminium and composite propeller.
机译:船舶和水下车辆使用螺旋桨进行推进。通常,螺旋桨被用作推进器,它们也被用来产生很大的推力,以使其在运行速度和RPM时得以推进。叶片的几何形状和设计更为复杂,涉及许多控制参数。近年来,对使用复合材料的轻质结构元件的需求增加,导致使用S2玻璃纤维布/环氧树脂推进器。目前的研究工作是对铝,玻璃纤维增​​强塑料(GFRP)组合而成的复合材料进行模型和静态分析。该研究工作涉及对水下航行器的螺旋桨叶片进行强度建模和分析。螺旋桨是复杂的几何形状,需要高端建模软件。螺旋桨的实体模型是在CATIA V5 R21中开发的。在先进的数值模拟系统(ANSYS)中对铝和复合材料制成的螺旋桨进行静态模型分析。我们在叶片混合部分施加推力,在重心施加离心力,从而发现铝和复合材料螺旋桨的冯·米塞斯应力,总变形,方向变形,主应力和剪应力。

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