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Modeling size-dependent thermal-mechanical behaviors of shape memory polymer Timoshenko micro-beam

机译:模型尺寸依赖性热机械行为TIMOSHENKO微梁

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摘要

Purpose-In this paper, a three-dimensional size-dependent constitutive model of SMP Timoshenko micro-beam is developed to describe the micromechanical properties. Design/methodology/approach-According to the Hamilton's principle, the equilibrium equations and boundary conditions of the model are established and according to the modified couple stress theory, the model simply supported beam was taken for example to be solved and simulated. Findings-Results show that the size effect of SMP micro-beam is more obvious when the dimensionless beam height is similar or the larger of the value of loading time. The rigidity and strength of the SMP beam decrease with the increasing of the dimensionless beam height or the loading time. The viscous property of SMP micro-beam plays a more important role with the larger dimensionless beam height. And the smaller the dimensionless beam height is, the more obvious the shape memory effect of the SMP micro-beam is. Originality/value - This work implies prediction of size-dependent thermo-mechanical behaviors of the SMP micro-beam and will provide a theoretical basis for design SMP microstructures in the field of micro/ nanomechanics.
机译:目的 - 开发了SMP Timoshenko微梁的三维尺寸依赖性本构模型,以描述微机械性能。设计/方法/方法 - 根据汉密尔顿的原理,建立了模型的平衡方程和边界条件,并根据修改的耦合应力理论,采用模型简单地支撑光束,例如待解决和模拟。结果表明,当无量子光束高度相似或装载时间的值越大,SMP微梁的尺寸效果更为明显。随着无量纲光束高度或加载时间的增加,SMP光束的刚度和强度降低。 SMP微梁的粘性特性在更大的无量度的光束高度中起着更重要的作用。并且无量纲光束高度越小,SMP微束的形状记忆效应越明显。原创性/值 - 该工作意味着预测SMP微光束的大小依赖热机械行为,并将为微/纳米力学领域设计SMP微观结构提供理论依据。

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