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Constitutive modeling of size effect on deformation behaviors of amorphous polymers in micro-scaled deformation

机译:微调变形中无定形聚合物变形行为的组成型建模

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摘要

With the advantages of high-formability, low-cost and unique physical properties, polymers have been widely used in microforming of polymeric components for a large scale of applications in many fields including micro-optics, microfluidic and sensors, etc. In micro scale, the deformation behaviors of polymers are observed to be size-dependent. Conventional constitutive models of polymers, however, cannot predict and represent those size-dependent behaviors well. To address this issue, a constitutive model with consideration of size effect for amorphous polymers in micro-scale was developed in this research. Firstly, on the basis of the couple stress theory, the impact of rotational gradients was taken into consideration and a strain gradient "elastic-viscoplastic" constitutive model was proposed to quantitatively describe the size-dependent behaviors of amorphous polymers in micro-scale. After that, four point micro-bending experiments were implemented on poly (methyl methacrylate) (PMMA) films with thickness varying from the millimeter scale to micrometer scale. The size effect of PMMA in micro-kale was further illustrated and the proposed strain gradient "elastic-viscoplastic" model was finally validated and verified for the capability of modeling of the size effect of amorphous polymers in micro-scaled deformation. This research thus advances the understanding of the size effect and the strain gradient based mechanical behaviors of amorphous polymers and facilitates its applications in industries. (C) 2016 Elsevier Ltd. All rights reserved.
机译:凭借高可成形性,低成本和独特的物理性能,聚合物已广泛用于聚合物组分的微型型,以便在许多领域中进行大规模的应用,包括微型,微流体和传感器等。观察到聚合物的变形行为为尺寸依赖性。然而,传统的聚合物本构模型不能预测并代表那些依赖于那些依赖的行为。为了解决这个问题,在本研究中开发了考虑到微型聚合物的大小效应的本构模型。首先,基于耦合应力理论,考虑旋转梯度的影响,提出了一种应变梯度“弹性粘性”构成型模型,以定量描述微晶中非晶态聚合物的尺寸依赖性行为。之后,在聚(甲基丙烯酸甲酯)(PMMA)膜上实施了四点微弯曲实验,其厚度从毫米刻度变化为微米级。进一步说明了PMMA在微羽毛中的尺寸效应,并且最终验证了所提出的应变梯度“弹性粘性”模型,并验证了非晶聚合物在微鳞片变形中的尺寸效应的建模能力的能力。因此,该研究提高了对非晶态聚合物的尺寸效应和应变梯度基机械行为的理解,并促进其在行业中的应用。 (c)2016 Elsevier Ltd.保留所有权利。

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