2) axially accelerating beam
轴向变速运动梁
3) Axially moving beam
轴向运动梁
1.
The method of Galerkin truncation on the vibration of axially moving beams;
Galerkin截断方法在轴向运动梁问题中的应用
2.
Multiple scales analysis and DQM verification of transverse forced vibration of axially moving beams
轴向运动梁横向受迫振动多尺度分析及DQM验证
4) axially moving beams
轴向运动梁
1.
In this paper,the multiple dimensions Lindstedt-Poincaré method is formulated for analysis ofnonlinear vibration with internal resonance of axially moving beams.
采用多元 L-P 方法分析轴向运动梁横向非线性振动的内共振。
2.
The laterally nonlinear vibration of axially moving beams weve analyzed by the incremental harmonic balance (IHB) method.
应用增量谐波平衡法(IHB法)研究轴向运动梁横向非线性振动的内部共振。
3.
The incremental harmonic balance(IHB) method is applied to study nonlinear vibration of axially moving beams with varying velocities.
典型算例获得了轴向运动梁横向非线性振动在不同速度下的频率-振幅响应曲线,讨论了出现内部共振的临界速度vc。
5) rotating Timoshenko beam
转动 Timoshenko 梁
1.
On the base of dynamic equations of rotating Timoshenko beam,authors dis- cuss the effects of shearing deformation,rotational inerita and axial force on the natural frequency of the beam,in the case of uniform rotation.
本文以转动 Timoshenko 梁的动力学方程为基础,讨论了梁在匀速转动情况下,剪切效应、转动惯量、离心力的纵向分量等因素对梁固有频率的影响。
6) rotating Timosenko beam
转动Timoshenko梁
补充资料:单轴各向异性
单轴各向异性是磁晶各向异性的最简单形式,即自发磁化的稳定方向(或易磁化方向)平行于一特殊晶轴。如六方晶系钴的自发磁化方向平行于 C轴(见晶体结构),这就表现出强的单轴各向异性。磁性材料的单轴各向异性值一般都低于其磁晶各向异性值,为103erg/cm3量级。磁性材料经磁场热处理或强的冷加工而产生的感生各向异性,都属于单轴各向异性。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条