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Rigid body and nonlinear mount identification: Application to onboard equipment with hysteretic suspension

机译:刚体和非线性安装识别:应用于带滞后悬架的船上设备

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This article describes a step-by-step procedure for improving the dynamic behavior of a rigid body mounted on a linear flexible structure with nonlinear hysteretic suspension. Special attention is paid to the inertia property identification carried out with an original experimental technique. The hysteretic suspension parameters are measured with a specific device. Condensation anti modal methods permit reducing the number of equations of the finite element model of the structure with localized nonlinearities. The technique (numerical and experimental) is applied to an onboard camera that, under real operating conditions, is carried externally on a helicopter. As the model is validated by experiments, the simulated modification, which better reduces the vibration level of the camera, is retained. The new assembly has been designed and successfully tested. [References: 9]
机译:本文介绍了一种逐步的过程,用于改善安装在具有非线性迟滞悬架上的线性柔性结构上的刚体的动态行为。 特别注意用原始实验技术进行惯性物质识别。 用特定装置测量滞后悬架参数。 缩合抗模态方法允许减少具有局部非线性结构的结构的有限元模型的等式数。 该技术(数值和实验)应用于船上摄像头,在实际操作条件下,在直升机上外部携带。 随着模型通过实验验证,保留了更好地降低了相机的振动水平的模拟修改。 新装配已设计和成功测试。 [参考:9]

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