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Investigations on Dynamic Analysis of Propeller Shaft

机译:螺旋桨轴动态分析的研究

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In recent years investigation of torsional vibration characteristics of the shaft systems transmitting torque, has become important part of the designer's responsibility. Satisfactory operation of heavy duty transmission system may depend to a large extent upon the successful handling of the vibration problem. Propeller shaft of most of the vehicles are found to show number of modes of failures. Most destructive failure after thorough study of the system involving Propeller shaft is rupture of tubes & excessive bending caused due to torsional shear stresses that get imposed during running time of propeller shaft. Based upon above problem, new methodology has been devised to come up with new technique for determination of torsional stresses across cross sections of the shafts. TATA LP/LPO 1510 model chosen for the propeller shaft analysis and data provided by M.S.R.T.C. workshop bhandara (M.S.). Frequency response analysis (FRA) that has been worked out in found to show number of failures modes, each mode being representation of operation speed which is equal to excited natural frequency. Predicted frequency range is having excellent with practical results. Stresses that are obtained are of low magnitude (torsional stresses) but effect of this low modal amplitude will be excessive bending of shaft which causes the bending stresses of 72 N/mm~2 while permissible is 83.7 N/mm~2.
机译:近年来,调查轴系统传输扭矩的扭转振动特性,已成为设计师责任的重要组成部分。重载变速器系统的令人满意的操作可能在很大程度上取决于振动问题的成功处理。发现大多数车辆的螺旋桨轴显示出故障数量。彻底研究涉及螺旋桨轴的系统彻底研究的最具破坏性故障是由于在螺旋桨轴的运行时间施加的扭转剪切应力而导致的管道和过度弯曲。基于上述问题,已经设计了新的方法来提出新技术,用于确定轴的横截面的扭转应力。选择螺旋桨轴分析和由M.S.R.T.C提供的数据选择的Tata LP / LPO 1510型号。工作坊Bhandara(M.S.)。在发现频率响应分析(FRA)被发现显示故障模式的数量,每种模式都表示等于激励自然频率的操作速度。预测频率范围具有实际结果的优异。获得的应力是低幅度(扭转应力),但是这种低模态幅度的效果将是轴的过度弯曲,其导致72N / mm〜2的弯曲应力,同时允许的是83.7n / mm〜2。

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