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Fracture analysis of wind turbine main shaft

机译:风力发电机主轴断裂分析

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摘要

Shaft fracture at an early stage of operation is a common problem for a certain type of wind turbine. To determine the cause of shaft failure a series of experimental tests were conducted to evaluate the chemical composition and mechanical properties. A detail analysis involving macroscopic feature and microstructure analysis of the material of the shaft was also performed to have an in depth knowledge of the cause of fracture. The experimental tests and analysis results show that there are no significant differences in the material property of the main shaft when comparing it with the Standard, EN10083-3:2006. The results show that stress concentration on the shaft surface close to the critical section of the shaft due to rubbing of the annular ring and coupled with high stress concentration caused by the change of inner diameter of the main shaft are the main reasons that result in fracture of the main shaft. In addition, inhomogeneity of the main shaft micro-structure also accelerates up the fracture process of the main shaft. In addition, the theoretical calculation of equivalent stress at the end of the shaft was performed, which demonstrate that cracks can easily occur under the action of impact loads. The contribution of this paper is to provide a reference in fracture analysis of similar main shaft of wind turbines.
机译:对于某些类型的风力涡轮机,在操作的早期阶段轴断裂是一个普遍的问题。为了确定轴故障的原因,进行了一系列实验测试以评估化学成分和机械性能。还进行了涉及轴材料宏观特征和微观结构分析的详细分析,以深入了解断裂原因。实验测试和分析结果表明,与标准EN10083-3:2006相比,主轴的材料性能没有显着差异。结果表明,由于环形圈的摩擦,轴表面应力集中在靠近轴的临界区,再加上主轴内径变化引起的高应力集中,是导致断裂的主要原因。主轴的另外,主轴微结构的不均匀性也加速了主轴的断裂过程。另外,进行了轴端等效应力的理论计算,结果表明在冲击载荷作用下很容易产生裂纹。本文的贡献是为类似风力发电机主轴的断裂分析提供参考。

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