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Investigating fracture behavior of polymer and polymeric composite materials using spiral notch torsion test

机译:使用螺旋缺口扭转试验研究聚合物和聚合物复合材料的断裂行为

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摘要

Wind turbine blades are usually fabricated from fiber reinforced polymeric materials, which are subject to complex loading conditions during service. The reliability of the blades thus depends on the mechanical behaviors of these composites under various load ing conditions. Specifically, the composite fracture behavior is of great importance to both the scientific research community and the wind industry. In the current study, a new testing technique is proposed based on the spiral notch torsion test to study the fracture behavior of composite structures under Mode I or mixed mode loading conditions, particularly under combined Mode I (flexural or normal tensile stress) and Mode III (torsional shear stress) loading. For this test method, round-rod spec imens with spiral V-groove are subjected to pure torsion. Depending on the pitch angle of the spiral lines, pure Mode I, pure Mode III, or mixed Mode I/Mode III loading conditions can be simulated. A three dimensional finite element analysis was used to estimate the fracture toughness. In the current study, both epoxy and fiberglass reinforced epoxy materials are investi gated using spiral notch torsion test. This paper will discuss the fracture behaviors of Mode I and mixed loading conditions with and without fatigue pre-crack. In addition, results from fractographic study and finite element analysis will be presented and discussed in detail.
机译:风力涡轮机叶片通常由纤维增强的聚合材料制成,在使用过程中会经受复杂的负载条件。因此,叶片的可靠性取决于这些复合材料在各种负载条件下的机械性能。具体地说,复合材料的断裂行为对科研界和风电行业都至关重要。在当前的研究中,基于螺旋缺口扭转试验,提出了一种新的测试技术,以研究模式I或混合模式载荷条件下,特别是在模式I(弯曲或法向拉伸应力)和模式III组合下的复合结构的断裂行为。 (扭剪应力)载荷。对于此测试方法,带有螺旋V形槽的圆杆规格受到纯扭转。根据螺旋线的俯仰角,可以模拟纯模式I,纯模式III或混合模式I /模式III的加载条件。使用三维有限元分析来评估断裂韧性。在当前的研究中,环氧树脂和玻璃纤维增​​强的环氧树脂材料均采用螺旋缺口扭转试验进行研究。本文将讨论模式I的断裂行为以及有无疲劳预裂的混合载荷条件。此外,还将详细介绍并讨论分形研究和有限元分析的结果。

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