论文标题
关于弯曲弹性光束的非局部力学
On nonlocal mechanics of curved elastic beams
论文作者
论文摘要
弯曲光束是纳米电力机械 - 渗透(NEMS)的基本结构组件,其设计需要适当的比例效应建模。在本文中,通过应力驱动的非局部连续性力学研究了弯曲弹性纳米束的尺寸依赖性静态行为。轴向应变和弯曲曲率场是平衡的轴向力和弯矩场和平均内核之间的积分卷积。这里提出的非局部积分方法是对治疗的弯曲结构的概括。 J. Eng。科学115(2017)14-27]仅限于直流。相应的非局部差异问题补充了非标准边界条件,并显示出导致纳米工程的数学范围良好的问题。因此,理论上的预测表现出了僵硬的非本地行为,可显着建模纳米技术兴趣的各种小规模设备。通过分析建立由小规模特征参数驱动的弯曲弹性纳米传感器和纳米传感器的尺寸依赖性响应来利用非局部方法。
Curved beams are basic structural components of Nano-Electro-Mechanical-Sistems (NEMS) whose design requires appropriate modelling of scale effects. In the present paper, the size-dependent static behaviour of curved elastic nano-beams is investigated by stress-driven nonlocal continuum mechanics. Axial strain and flexural curvature fields are integral convolutions between equilibrated axial force and bending moment fields and an averaging kernel. The nonlocal integral methodology formulated here is the generalization to curved structures of the treatment in [Int. J. Eng. Science 115 (2017) 14-27] confined to straight beams. The corresponding nonlocal differential problem, supplemented with non-standard boundary conditions, is highlighted and shown to lead to mathematically well-posed problems of nano-engineering. The theoretical predictions, exhibiting stiffening nonlocal behaviours, are therefore appropriate to significantly model a wide range of small-scale devices of nanotechnological interest. The nonlocal approach is exploited by analytically establishing size-dependent responses of curved elastic nano-sensors and nano-actuators that are driven by the small-scale characteristic parameter.