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Forced vibrations of size-dependent rods subjected to: impulse, step, and ramp excitations

机译:依赖于依赖杆的强制振动,经受:脉冲,步骤和斜坡激动

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Forced longitudinal vibration response of nonlocal strain gradient (NLSG) rods is scrutinized and compared with nonlocal (NL), strain gradient (SG), and classical (CL) rods. In this respect, size-dependent kinematics and extended Hamilton's principle are utilized to derive governing equations of motion. For the first time, forced longitudinal vibratory behavior of non-classical and classical rods is presented including three different types of non-harmonic forcing functions: unit impulse, unit step, and unit ramp. Forcing terms are functions of both temporal and spatial domains. Nonlocal strain gradient and nonlocal rod models take into account the Laplacian of the external forcing term as well. This implies that in models including nonlocal effects (NL, NLSG-h, s, n), forcing term is reduced by the order of its Laplacian with respect to spatial variables. Effect of non-classical parameters over time-domain response of the system is analyzed in details. Results are compared with benchmark for the sake of evaluation. This implies the necessity of adopting proper values of non-classical theory and corresponding parameters through analysis of forced oscillations of small-scaled size-dependent rods. Such external excitations are modeled using spatial Dirac delta function as a concentrated force applying at the critical point of mode shape function. Findings of this research reveal the underlying impact of non-classical theorems along with corresponding non-classical parameters over the prediction of the response of size-dependent rod elements for wide range of applications such as in musical instruments, navigating equipment, gyroscopes, control of robotics, sensors and actuators, resonators, energy harvesters, and vibration control systems.
机译:非局部应变梯度(NLSG)棒的强制纵向振动响应被仔细筛选并与非本种(NL),应变梯度(SG)和经典(CL)杆进行比较。在这方面,利用规模依赖的运动学和扩展汉密尔顿的原理来导出运动的控制方程。首次,提出了非经典杆的强制纵向振动行为,包括三种不同类型的非谐波强制功能:单位脉冲,单位步骤和单位斜坡。强制术语是时间和空间域的函数。非局部应变梯度和非识别棒模型也考虑了外部强制术语的拉普拉斯。这意味着,在包括非识别效应(NL,NLSG-H,S,N)的模型中,通过其拉普拉斯的顺序相对于空间变量来减少强制术语。在细节中分析了非典型参数对系统时域响应的影响。为了评估,将结果与基准进行比较。这意味着通过分析小尺寸尺寸依赖杆的强制振荡来采用非经典理论和相应参数的适当值的必要性。这种外部激励是使用空间Dirac Delta模拟的,作为施加在模式形状函数的临界点的集中力。该研究的结果揭示了非经典定理的潜在影响以及通过预测尺寸依赖杆元件的响应来实现相应的非典型参数,以便在乐器,导航设备,陀螺仪,控制中的广泛应用机器人,传感器和执行器,谐振器,能量收割机和振动控制系统。

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