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Theoretical Investigation of Stresses Induced at Blade Mounting Locations in Steam Turbine Rotor System

机译:汽轮机转子系统叶片安装位置诱导应力的理论研究

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摘要

One of the most common incipient losses of integrity in mechanical structures is the development and propagation of cracks. Especially in rotating members like steam turbine rotors etc. cracks, because of their potential, cause catastrophic failures and are a grave threat to an uninterrupted operation and performance. A crack may propagate from some small imperfections on the surface of the body or inside of the material and it is most likely to appear in correspondence to high stress concentration. Crack propagation path is generally determined by the direction of maximum stress or by the minimum material strength. Hence determination of stresses induced has been the focus of attention for many researchers. In the present work, development of a mathematical model to determine the stresses induced in a rotating disc of varying thickness is studied. This model is applied to a steam turbine rotor disc to determine the induced stresses and radial deflection. The mathematical modeling results are validated with the results obtained using Ansys package. The results of the present study will be useful in diagnosing the location and magnitude of maximum stress induced in the turbine rotor disc and stress intensity factor due to the presence of crack.
机译:机械结构中完整性最常见的初始损失之一是裂缝的开发和传播。特别是在汽轮机转子等旋转构件中,由于它们的潜力,导致灾难性失败,并且对不间断的操作和性能造成严重威胁。裂缝可以从身体表面或材料内部的一些小缺陷传播,并且最有可能与高应力浓度相对应。裂缝传播路径通常由最大应力方向或最小材料强度决定。因此,诱导的压力的测定是许多研究人员关注的焦点。在本作的工作中,研究了在数学模型的发展,以确定在变化厚度的旋转盘中感应的应力。该模型应用于蒸汽轮机转子盘以确定诱导的应力和径向偏转。使用ANSYS包获得的结果验证了数学建模结果。本研究的结果对于诊断由于裂纹的存在而诊断涡轮机转子盘和应力强度因子中的最大应力的位置和大小。

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