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Research on the Influence of Bench Installation Conditions on Simulationof Engine Main Bearing Load

机译:板凳安装条件对发动机主轴承荷载仿真影响的研究

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The simulation of main bearing load plays an important role in engine multi-body dynamics simulation, seemingly influencing the simulation of strength, vibration and acoustics. It is necessary to conduct engine bench test to validate the result of simulation. More attention has been paid to the flexibility of engine blocks and crankshafts, but not on the installing conditions of engine test bench, such as the stiffness of mounts, the presence of the connecting flange and the elasticity of shaft coupling, which are easy to ignore. The work presented here focuses on the influence of bench installation conditions on the multi-body dynamics simulation of an engine. A flexible multi-body dynamics model of a 4100QB diesel engine is built by employing the modal synthesis technique in the software ADAMS. By comparing the simulation results of different models, the effects of the connecting flange, the stiffness of mounts and the elasticity of shaft coupling are discussed. The result show that: Firstly, the inclusion of the connecting flange is important in the main bearing load calculations, when the engine is flexibly installed on the bench. Secondly, the difference of main bearing load caused by the changing of mounting stiffness is limited and can be neglected when the accuracy is not strictly demanded. Thirdly, the influence of elastic shaft coupling is negligible in main bearing load simulation. At the end of this paper, the simulation is validated by the measurement of vibration acceleration.
机译:主轴承载荷的仿真在发动机多体动力学模拟中起着重要作用,似乎影响力量,振动和声学的模拟。有必要进行发动机台式测试以验证模拟结果。更加关注发动机块和曲轴的灵活性,但不是发动机测试台的安装条件,例如安装架的刚度,连接法兰的存在和轴联轴器的弹性,易于忽略。这里提出的工作侧重于台凳安装条件对发动机多体动力学模拟的影响。通过在软件ADAMS中使用模态综合技术,构建了4100QB柴油发动机的灵活多体动力学模型。通过比较不同模型的仿真结果,讨论了连接法兰的效果,安装件的刚度和轴联轴器的弹性。结果表明:首先,当发动机灵活地安装在板凳上时,将连接法兰的包含在主轴承载荷计算中是重要的。其次,由安装刚度的改变引起的主轴承负荷的差异是有限的,并且在不严格要求精度时可以忽略。第三,主轴承负荷模拟中弹性轴联接的影响可忽略不计。在本文的末尾,通过测量振动加速来验证模拟。

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