Comparative analysis of the dynamic characteristics of all-metal, composite and composite blades with the same profile, taking into account the influence of the connection of elements and aerodynamic loads

Volodymyr Martynenko
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Abstract

The paper presents a comparative analysis of the dynamic properties of the blades of one rotary machine which have the same airfoil shape, but are made of three different materials, namely aluminum alloy, a complex material combining aluminum alloy and steel, and a composite material which is unidirectional fiberglass. In the case of an all-metal blade, its airfoil and root are made of aluminum alloy. In the case of complex blade airfoil material, the root is made of steel which is also a component of the airfoil material. In the case of a composite blade, the root is steel and is connected at the root section to its composite airfoil. The main attention when comparing models of the mechanical behavior of three types of blades is paid to the influence of the connection of complex and composite elements with the root on the dynamic characteristics of the blade as a whole which is achieved by considering the contact interactions of the elements under the action of centrifugal and aerodynamic loads and the subsequent transfer of the prestressed state of the blades to the modal analysis for determination of the dynamic characteristics of samples and their comparison. In order to correctly display the fixation of elements in the fan impeller in the case of an aluminum blade, the sector of cyclic symmetry of the rotor is considered which makes it possible to draw a conclusion about the possibility of further separate consideration of the blade for determination of its dynamic characteristics due to the much greater stiffness of the connection of the blade with the impeller in comparison with stiffness of the blade airfoil, and to generalize this conclusion in the case of a complex blade by considering a steel root with an aluminum profile with rigid clamping of the model on the contact shelves of the root, and in the case of a composite blade by considering an airfoil with rigid clamping in the root section, where the fastening to the steel root of the blade takes place. The results of a comparative analysis of the dynamic behavior of three types of blades with the same airfoil shape are presented in the form of a study of the blade natural frequencies and mode shapes.
全金属叶片、复合材料叶片和具有相同外形的复合材料叶片动态特性的比较分析,同时考虑到元件连接和空气动力载荷的影响
本文对一台旋转机械的叶片的动态特性进行了比较分析,这些叶片具有相同的翼面形状,但由三种不同的材料制成,即铝合金、铝合金和钢的复合材料以及单向玻璃纤维复合材料。全金属叶片的翼面和根部由铝合金制成。在复合叶片机翼材料的情况下,根部由钢制成,钢也是机翼材料的组成部分。如果是复合材料叶片,根部是钢制的,并在根部与复合材料机翼相连。在比较三种叶片的机械行为模型时,主要关注的是复合材料和复合材料元件与根部的连接对叶片整体动态特性的影响,这是通过考虑元件在离心力和空气动力载荷作用下的接触相互作用来实现的,随后将叶片的预应力状态转移到模态分析中,以确定样本的动态特性并进行比较。为了正确显示铝制叶片在风扇叶轮中的固定情况,我们考虑了转子的周期对称区域,从而得出结论:由于叶片与叶轮连接处的刚度远大于叶片机翼的刚度,因此在确定其动态特性时可以进一步单独考虑叶片、并将这一结论推广到复杂叶片的情况中,即考虑带有铝型材的钢质根部,并在根部接触架上对模型进行刚性夹紧;以及复合叶片的情况,即考虑在根部部分对机翼进行刚性夹紧,并在该部分对叶片的钢质根部进行固定。通过对叶片固有频率和模态振型的研究,介绍了对具有相同翼面形状的三种叶片动态行为的比较分析结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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