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Effect of shallow angles on compressive strength of biaxial and triaxial laminates

机译:浅角度对双轴和三轴层压板抗压强度的影响

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摘要

Background Biaxial (BX) and triaxial (TX) composite laminates with ±45° angled plies have been widely used in wind turbine blades. As the scale of blades increases, BX and TX laminates with shallow-angled plies (i.e. off-axis ply angle <45°) might be utilized for reducing mass and/or improving performance. The compressive properties of shallow-angled BX and TX laminates are critical considering their locations in a wind turbine blade, and therefore in this study, the uniaxial static compression tests were conducted using BX and TX laminates with angled-plies of ±45°, ±35°, and ±25°, for the purpose of evaluation. On the other hand, Mori–Tanaka mean field homogenization method was employed to predict elastic constants of plies in BX and TX laminates involved in tests; linear regression analyses of experimentally measured ply strengths collected from various sources were then performed to estimate strengths of plies in BX and TX laminates; finally, Tsai–Wu, Hashin, and Puck failure criteria were chosen to predict compressive strengths of BX and TX laminates. Comparison between theoretical predictions and test results were carried out to illustrate the effectiveness of each criterion.
机译:背景技术具有±45°角层的双轴(BX)和三轴(TX)复合层压板已广泛用于风力涡轮机叶片中。随着叶片的尺寸增加,具有浅角度帘布层(即,离轴帘布层角度<45°)的BX和TX层压材料可用于减少质量和/或改善性能。考虑到它们在风力涡轮机叶片中的位置,浅角度BX和TX层压板的压缩性能至关重要,因此,在本研究中,使用±45°,±45°斜角的BX和TX层压板进行了单轴静态压缩测试35°和±25°,用于评估。另一方面,Mori–Tanaka平均场均化方法用于预测试验涉及的BX和TX层压板中板层的弹性常数。然后对从各种来源收集的实验测得的帘布层强度进行线性回归分析,以估算BX和TX层压板中的帘布层强度。最后,选择Tsai–Wu,Hashin和Puck破坏准则来预测BX和TX层压板的抗压强度。进行了理论预测和测试结果之间的比较,以说明每个标准的有效性。

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