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首页> 外文期刊>Innovative Systems Design and Engineering >Finite element analysis of radial stress distribution on axisymmetric variable thickness Dual Mass Flywheel using ANSYS.
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Finite element analysis of radial stress distribution on axisymmetric variable thickness Dual Mass Flywheel using ANSYS.

机译:轴对称变厚度双质量飞轮径向应力分布的有限元分析。

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Flywheels are applied in storing inertial energy in rotating machine engines and to limit speed fluctuations. In Dual Mass flywheel (DMF) the rotating mass is split into two and is joined by a damping mechanism. It is commonly in hardest use during engine start up and shut down. In flywheel design, important aspects to consider include geometry (cross-section), rotational speed and material strength. Also, to consider is the mass moment of inertia which when too much the system will be sluggish and unresponsive whereas when too little the system would lose momentum over time. The material strength directly determines the energy level that can be produced safely when coupled with rotor speed. This together with rotational speed result to the flywheel being very highly stressed hence necessary to determine stresses accurately using a discrete method as provided for by ANSYS software. During shaft rotation, centrifugal forces generate stresses in the circumferential as well as radial directions. This paper describes studies on the analysis of axisymmetric solid DMF geometry under radial stress distribution at high revolution using ANSYS. Finally, a discussion of the generated results which would be applied in modifications of existing structures for improved new operating service conditions and academic instruction. Keywords: DMF, radial stress, FEA analysis, axisymmetric load.
机译:飞轮用于存储旋转机械发动机中的惯性能量并限制速度波动。在双质量飞轮(DMF)中,旋转质量被分成两部分,并通过阻尼机构连接在一起。通常在发动机启动和关闭期间最难使用。在飞轮设计中,要考虑的重要方面包括几何形状(横截面),转速和材料强度。同样,要考虑的是惯性矩,当惯性矩太大时,系统将变得缓慢且无响应,而当惯性矩太小时,系统将随着时间流逝失去动量。材料强度直接决定了与转子转速耦合时可以安全产生的能级。这与对飞轮的转速结果非常高,因此需要使用ANSYS软件提供的离散方​​法准确确定应力。在轴旋转期间,离心力会在圆周方向和径向方向上产生应力。本文介绍了使用ANSYS分析高转速下径向应力分布下的轴对称固体DMF几何的研究。最后,对产生的结果进行讨论,将其应用于修改现有结构以改善新的运行服务条件和学术指导。关键字:DMF,径向应力,有限元分析,轴对称载荷。

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