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Reliability of Wind Turbine components — Solder elements fatigue failure

机译:风力发电机组件的可靠性—焊锡元件疲劳失效

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The physics of failure for electrical components due to temperature loading is described. The main focus is on crack propagation in solder joints and damage accumulation models based on the Miner's rule. Two models are proposed that describe the initial accumulated plastic strain depending on the temperature mean and temperature range. Constant terms and model errors are estimated. The proposed methods are useful to predict damage values for solder joint in power electrical components. Based on the proposed methods it is described how to find the damage level for a given temperature loading profile. The proposed methods are discussed for application in reliability assessment of Wind Turbine's electrical components considering physical, model and measurement uncertainties. For further research it is proposed to evaluate damage criteria for electrical components due to the operational temperature fluctuations within Wind Turbines.
机译:描述了由于温度负荷导致的电气部件故障的物理原因。主要关注点是基于Miner规则的焊点中的裂纹扩展和损伤累积模型。根据温度平均值和温度范围,提出了两种描述初始累积塑性应变的模型。估计常数项和模型误差。所提出的方法可用于预测电力电气部件中焊点的损坏值。基于提出的方法,描述了如何找到给定温度负载曲线的损伤程度。考虑到物理,模型和测量的不确定性,讨论了所提出的方法在风力涡轮机电气部件可靠性评估中的应用。为了进一步研究,建议评估由于风力涡轮机内的工作温度波动而引起的电气组件的损坏标准。

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