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Identification of bolted lap joints parameters in assembled structures

机译:识别组装结构中的搭接搭接参数

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摘要

Bolted lap joints have significant influence on the dynamical behaviour of the assembled structures due to creation of strong local flexibility and damping. In modelling the dynamical behaviour of assembled structures the joint interface model must be represented accurately. A nonlinear model for bolted lap joints and interfaces is proposed capable of representing the dominant physics involved in the joint such as micro/macro-slip. The joint interface is modelled using a combination of linear and nonlinear springs and a damper to simulate the damping effects of the joint. An estimate of the response of the structure with a nonlinear model for the bolted joint under external excitations is obtained using the method of multiple scales. The parameters of the model, i.e. the spring constants and the damper coefficient, are functions of normal and tangential stresses at the joint interface and are identified by minimizing the difference between the model predictions and the experimentally measured data.
机译:由于产生了强大的局部柔韧性和阻尼,螺栓搭接接头对组装结构的动力性能具有重大影响。在对组装结构的动力学行为进行建模时,必须准确表示联合界面模型。提出了一种适用于螺栓搭接接头和界面的非线性模型,该模型能够表示该接头所涉及的主要物理现象,例如微/宏观滑动。结合使用线性和非线性弹簧以及阻尼器对接头界面进行建模,以模拟接头的阻尼效果。使用多尺度方法,获得了具有非线性模型的螺栓连接在外部激励下的结构响应的估计。模型的参数(即弹簧常数和阻尼系数)是接头界面处的法向和切向应力的函数,并通过最小化模型预测值与实验测量数据之间的差异来确定。

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