首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >On the stabilising effect of gyroscopic moments in an automotive turbocharger
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On the stabilising effect of gyroscopic moments in an automotive turbocharger

机译:汽车涡轮增压器中陀螺力矩的稳定作用

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摘要

Automotive turbochargers, which operate at very high speeds, exceeding 180,000 r/min, exhibit two strong sub-harmonic modes of vibrations due to oil-whirl instability. These are a conical mode and an in-phase whirl mode. The gyroscopic effects can be very important in such a rotor system. This article presents a theoretical investigation into these effects on the conical whirl instability of a turbocharger induced by the angular (tilting) motion of a rigid rotor. A simplified linear model is used to analyse the rotor-bearing system by investigating the effects of the gyroscopic moment on the internal moments. A gyroscopic coefficient, defined by the geometry of the rotor, is shown to govern the stability of the conical whirl motion. A threshold value of 1/2 is determined for this coefficient to suppress the conical whirl. This value remains unaffected if the rotor is asymmetric and is supported by floating ring bearings, which is the case in a practical turbocharger.
机译:汽车涡轮增压器以超过180,000 r / min的极高速度运行,由于油涡流的不稳定性而表现出两种强烈的次谐波振动模式。这些是锥形模式和同相旋转模式。在这种转子系统中,陀螺效应非常重要。本文对这些对刚性转子的角(倾斜)运动引起的涡轮增压器圆锥涡旋不稳定性的影响进行了理论研究。通过研究陀螺力矩对内部力矩的影响,使用简化的线性模型来分析转子轴承系统。示出了由转子的几何形状定义的陀螺系数来控制锥形涡旋运动的稳定性。为该系数确定阈值1/2,以抑制圆锥形旋转。如果转子不对称且由浮动环轴承支撑,则该值不会受到影响,这在实际的涡轮增压器中就是这种情况。

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