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A New Friction Law For Sliding Rigid Blocks Under Cyclic Loading

机译:循环载荷下滑动刚性块的新摩擦定律

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A rigid block sliding down an inclined plane under the action of gravity was monitored with accelerometers and an LVDT to investigate how the transition from static to kinetic friction develops. Once the transition patterns were identified, experiments were carried out to study the response of a dynamically excited rigid block sliding down the inclined plane of a shaking table. Harmonic time series were used as input motions. The laboratory results allowed the definition of a continuous friction law to model the continuous variation of the friction from its static to kinetic condition. This law was implemented into the commercial 3D distinct element code 3DEC to numerically reproduce the experiments carried out, thus validating the friction law. Afterwards, the friction law was used to evaluate the sliding due to the kinetics of the block. Three cases were analyzed: constant friction coefficient, Coulomb friction law and the proposed friction law. These computations were compared to laboratory measurements. It is found that permanent displacements computed by considering the new law are in better agreement with laboratory measurements.
机译:使用加速度计和LVDT监控在重力作用下在倾斜平面上滑落的刚性块,以研究从静摩擦到动摩擦的过渡过程。一旦确定了过渡模式,就可以进行实验来研究动态振动刚性块在振动台倾斜面上滑落的响应。谐波时间序列用作输入运动。实验结果允许定义连续摩擦定律,以模拟摩擦从静态到动态条件的连续变化。该定律被实施到商业3D不同元素代码3DEC中,以数字方式再现所进行的实验,从而验证了摩擦定律。此后,使用摩擦定律评估由于块的动力学引起的滑动。分析了三种情况:恒摩擦系数,库仑摩擦定律和建议的摩擦定律。将这些计算结果与实验室测量值进行了比较。发现通过考虑新法则计算出的永久位移与实验室测量值更好地吻合。

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