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Failure analysis of a pinion of the jacking system of a jack-up platform

机译:自升式平台顶升系统小齿轮的故障分析

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Component analysis, metallographic examination and hardness test were performed respectively for a failed pinion and a new rack of the jacking system of a jack-up platform. Experiment results showed that the superficial heat treatment of the pinion was not uniform and there was no hardened layer at the tooth root. At the same time, the hardened layer near the pitch circle had been worn out for long-term service, thus the surface hardness of the failed pinion was lower than that of the rack. Considering that each pinion bears different load during service, the exact load that each pinion bears under the action of self-weight, variable loads and wind loads, was deduced firstly. As per the deduced bearing load of the failed pinion, elastic FEM analysis was performed and the distribution of stresses on the rack and pinion was simulated when the platform was under preload condition. By comparing the Von mises stresses and contact stresses with those calculated according to the formula, the accuracy of FEM analysis was verified. Then elastic-plastic FEM analysis was performed for pinion models with hardened layer and without hardened layer respectively, the results were used to explain the failure of the pinion.
机译:对自升式平台的顶升系统的故障小齿轮和新齿条分别进行了成分分析,金相检查和硬度测试。实验结果表明,小齿轮的表面热处理不均匀,齿根上没有硬化层。同时,由于节圆附近的硬化层已经磨损,可以长期使用,因此失效的小齿轮的表面硬度低于齿条的表面硬度。考虑到每个小齿轮在使用过程中承受的载荷不同,首先推导了每个小齿轮在自重,可变载荷和风载荷作用下承受的精确载荷。根据推算出的失效小齿轮的轴承载荷,进行了弹性有限元分析,并在平台处于预紧状态下模拟了齿条和小齿轮上的应力分布。通过将冯·米斯应力和接触应力与根据公式计算的结果进行比较,验证了有限元分析的准确性。然后分别对具有硬化层和不具有硬化层的小齿轮模型进行了弹塑性有限元分析,其结果可用来解释小齿轮的失效。

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