Applying the theory of rheodynamics and hydraulic theory, a relationship of damping vs. vibration velocity, electric field strength and gas-filled pressure has been set up.


阻尼力与振动速度、外加电场强度、充气压力等的数学关系,为减振器设计参数的优化研究提供
理论依据。
Applying the theory of rheodynamics and hydraulic theory, a relationship of damping vs. vibration velocity, electric field strength and gas-filled pressure has been set up.


阻尼力与振动速度、外加电场强度、充气压力等的数学关系,为减振器设计参数的优化研究提供
理论依据。
In order to study the influence of structural parameters on the optimal normal load, a microslip model was used to formulate the nonlinear dry friction force.
摘要为
研究阻尼
构参数对阻尼叶片最优正压力的影响,基于微滑移模型,推导出
阻尼器非线性干摩擦阻尼力的计算公式。
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