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首页> 外文期刊>Composite interfaces >Using a pseudo-functionally graded interlayer in order to improve the static and dynamic behavior of wind turbine blade T-bolt root joints
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Using a pseudo-functionally graded interlayer in order to improve the static and dynamic behavior of wind turbine blade T-bolt root joints

机译:使用伪功能渐变夹层以改善风力涡轮机叶片T型螺栓根部接头的静态和动态行为

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The large wind turbines blades with multi-ton composite structures are mostly connected to the peach-bearings flanges using T-bolt joints which induce shear and bearing stress fields around the cross bolts. The significant differences between the modulus of elasticity of metallic bolts and composite surrounding materials cause stress concentration around interfaced zones and, also, limit the load capacity of the joints. In the present research, a pseudo functionally graded material (PFGM) as an interlayer is used around the cross bolts to examine the reduction of the stress concentration. Some radial variation of the mechanical properties would be considered for this interlayer. The finite element method is used to analyze the structures. Loadings are applied to the center of the cross bolts analogous to the real cases. Both the static and dynamic loadings are studied. For the finite element of the functionally graded material interlayer, a multilayer alternative material with constant properties in each layer is used. The results show that using an isotropic single layer with an average modulus of elasticity and specific thickness decreases the stress concentration of the composite part up to 47%. The various property models for the interlayer also show that an appropriated model can decrease the stress concentration up to 55%. Dynamic transient analyses would be implemented over the joint structure and improved considering to the practical cases. Using the PFGM interlayer decreases the constant and variable parts of the stresses up to 55% and also causes significant increasing of the joint fatigue life.
机译:带有多吨复合结构的大型风力涡轮机叶片大部分通过T型螺栓连接到桃形轴承法兰,从而在十字螺栓周围产生剪切应力和轴承应力场。金属螺栓和周围复合材料的弹性模量之间的显着差异导致应力集中在界面区域周围,并且还限制了接头的承载能力。在本研究中,伪功能梯度材料(PFGM)作为中间层被用于交叉螺栓周围,以检查应力集中的减小情况。对于该中间层,将考虑机械性能的一些径向变化。有限元法用于分析结构。与实际情况类似,载荷被施加到十字螺栓的中心。研究了静态和动态载荷。对于功能梯度材料中间层的有限元素,使用在每一层中具有恒定特性的多层替代材料。结果表明,使用具有平均弹性模量和特定厚度的各向同性单层可使复合零件的应力集中降低多达47%。中间层的各种性能模型还表明,适当的模型可以将应力集中降低多达55%。动态瞬态分析将在接头结构上进行,并根据实际情况进行改进。使用PFGM中间层可将应力的恒定部分和可变部分减少多达55%,并且还会显着延长接头疲劳寿命。

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