Chen Xiaolin, Huang Kun, Zhang Yunbo
Department of Engineering Mechanics, Faculty of Civil Engineering and Mechanics, Kunming University of Science and Technology, Kunming 650500, China.
Materials (Basel). 2024 Apr 10;17(8):1735. doi: 10.3390/ma17081735.
Single-layer molybdenum disulfide (MoS) has been a research focus in recent years owing to its extensive potential applications. However, how to model the mechanical properties of MoS is an open question. In this study, we investigate the nonlinear static bending and forced vibrations of MoS, subjected to boundary axial and thermal stresses using modified plate theory with independent in-plane and out-of-plane stiffnesses. First, two nonlinear ordinary differential equations are obtained using the Galerkin method to represent the nonlinear vibrations of the first two symmetrical modes. Second, we analyze nonlinear static bending by neglecting the inertial and damping terms of the two equations. Finally, we explore nonlinear forced vibrations using the method of multiple scales for the first- and third-order modes, and their 1:3 internal resonance. The main results are as follows: (1) The thermal stress and the axial compressive stress reduce the MoS stiffness significantly. (2) The bifurcation points of the load at the low-frequency primary resonance are much smaller than those at high frequency under single-mode vibrations. (3) Temperature has a more remarkable influence on the higher-order mode than the lower-order mode under the 1:3 internal resonance.
近年来,单层二硫化钼(MoS)因其广泛的潜在应用而成为研究热点。然而,如何对MoS的力学性能进行建模仍是一个悬而未决的问题。在本研究中,我们使用具有独立面内和面外刚度的修正板理论,研究了受边界轴向应力和热应力作用的MoS的非线性静态弯曲和强迫振动。首先,使用伽辽金方法得到两个非线性常微分方程,以表示前两个对称模态的非线性振动。其次,通过忽略这两个方程的惯性项和阻尼项来分析非线性静态弯曲。最后,我们使用多尺度方法研究一阶和三阶模态及其1:3内共振的非线性强迫振动。主要结果如下:(1)热应力和轴向压缩应力显著降低了MoS的刚度。(2)在单模态振动下,低频主共振时载荷的分岔点比高频时小得多。(3)在1:3内共振下,温度对高阶模态的影响比低阶模态更显著。