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首页> 外文期刊>Journal of Composite Materials >Effects of shallow angle on static strength and fatigue life of multi-directional laminates for wind turbine blades
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Effects of shallow angle on static strength and fatigue life of multi-directional laminates for wind turbine blades

机译:浅角度对风力涡轮叶片多向层压板静力强度和疲劳寿命的影响

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摘要

The effects of the shallow angle on the static strength and the fatigue life of the multi-directional glass fiber-reinforced plastics for wind turbine blades were presented based on experimental results and predictions. The static tests and the tension-tension fatigue tests under cyclic fatigue loads with a stress ratio of 0.1 were performed on bi-axial (BX, [+/-]), tri-axial 1 (TA, [0/+/-(2)]), and tri-axial 2 (TX, [0(2)/+/-]) laminates with ply angles of 25 degrees, 35 degrees, and 45 degrees. A multiscale approach was applied to predict the static tensile and compressive strengths and the S-N curves of BX, TA, and TX laminates based on the constituents: fiber, matrix, and interface. Three ply-based failure criteria (Hashin, Puck, and Tsai-Wu) were also employed to predict the static strength and compare with the experimental results. The predictions and the experimental results show that the tensile strength increases as becomes shallower, while laminates with a shallow ply angle of 35 degrees showed similar or even lower compressive strengths, especially for TA and TX laminates. The laminate fatigue life increases as becomes shallower. The shallow angle effect on strength and fatigue life is greater for BX than TA and TX laminates since the ply angle plays a more important role in BX. By using the multiscale approach, the shallow angle effect on the laminate static and fatigue behaviors were also explained based on the ply stresses as well as the constitutive micro stresses.
机译:基于实验结果和预测,介绍了浅角度对风力涡轮机叶片多向玻璃纤维增​​强塑料的静力强度和疲劳寿命的影响。在双轴(Bx,π),三轴1(Ta,0 / + / - ( 2)])和三轴2(Tx,[0(2)/ + / - ]层叠层,帘布层为25度,35度和45度。应用多尺度方法来预测基于组分的组分:纤维,基质和界面的Bx,Ta和Tx层压板的静态拉伸和抗压强度和S-N曲线。还采用了三个基于底层的故障标准(Hashin,Puck和Tsai-Wu)来预测静态强度并与实验结果相比。预测和实验结果表明,拉伸强度随着较浅的增加而增加,而具有35度的浅层角度的层压板显示出类似的或甚至更低的抗压强度,特别是对于Ta和Tx层压板。层压疲劳寿命随着变浅而增加。由于帘布层角度在Bx中起着更重要的作用,Bx的强度和疲劳寿命对强度和疲劳寿命的浅角度效应更大。通过使用多尺度方法,还基于帘布层应力以及组成型微应力来解释对层压静态和疲劳行为的浅角度效应。

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