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A friction contact stiffness model of fractal geometry in forced response analysis of a shrouded blade

机译:带罩叶片强迫响应分析中的分形几何摩擦接触刚度模型

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摘要

To investigate the nonlinear vibration behavior of a shrouded blade with friction dynamic contact interface, a friction contact stiffness model is proposed to describe the friction force at different rough interfaces and different normal loads. In the proposed model, the friction contact interface is discretized to a series of friction contact pairs and each of them can experience stick, slip, or separate states. Fractal geometry is used to simulate the topography of contact surfaces. The contact stiffness is calculated using the Hertz contact theory and fractal geometry, which is related to contact interfaces parameters including normal load, roughness, Young's modulus, and Poisson's ratio. The trajectory tracking method is used to predict the friction force and it is not necessary to judge the transition condition among stick, slip, and separate states. It is suitable for complicated periodic motion of the contact interfaces. The forced response of a real shrouded blade is predicted using the proposed model and the multi-harmonic balance method. The effect of surface roughness, initial normal load, and contact area on the forced response of a shrouded blade is studied. It is shown that contact stiffness increases with normal load and fractal dimension. The resonant amplitude is sensitive to the initial normal load and contact surface roughness. The response can be influenced by the contact area, which is an important parameter for blade designers.
机译:为了研究具有摩擦动态接触界面的带罩叶片的非线性振动行为,提出了一种摩擦接触刚度模型来描述在不同粗糙界面和不同法向载荷下的摩擦力。在提出的模型中,摩擦接触界面离散为一系列摩擦接触对,并且它们中的每一个都可能经历粘着,滑移或分离的状态。分形几何用于模拟接触表面的形貌。使用赫兹接触理论和分形几何计算接触刚度,这与接触界面参数有关,包括法向载荷,粗糙度,杨氏模量和泊松比。轨迹跟踪方法用于预测摩擦力,而无需判断粘滞,滑移和分离状态之间的过渡条件。它适用于接触界面的复杂周期性运动。使用所提出的模型和多重谐波平衡方法,可以预测实际带罩叶片的强制响应。研究了表面粗糙度,初始法向载荷和接触面积对带罩叶片强迫响应的影响。结果表明,接触刚度随法向载荷和分形维数的增加而增加。谐振幅度对初始法向载荷和接触表面粗糙度敏感。响应会受到接触面积的影响,这是叶片设计者的重要参数。

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