Linear and Non Linear Creep Modeling of Talc Filled PEEK Composite

G.I. Janith, D. Amarasinghe, D. Attygalle, V. Weragoda, A. Samarasekara
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Abstract

The creep compliance of a viscoelastic material is a crucial material parameter that controls the time dependent creep. Viscoelastic materials and their composites are being widely used in electronic and structural components where strain response of such a material is of great concern. Linear viscoelastic models such as the generalized kelvin Voigt model is widely used to model the linear creep behavior. Poly ether-ether ketone is a semi crystalline polymer and in this study a PEEK composite filled with talcum is being used which also consists of a semi crystalline polymer matrix. Such semi crystalline matrixes are known to bring forth nonlinear viscoelastic properties. In this study we model the linear creep behavior and the stress dependent nonlinearity of the above-mentioned composite.
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滑石填充PEEK复合材料的线性和非线性蠕变模型
粘弹性材料的蠕变柔度是控制其随时间蠕变的关键材料参数。粘弹性材料及其复合材料被广泛应用于电子和结构部件中,这类材料的应变响应备受关注。线性粘弹性模型,如广义kelvin Voigt模型,被广泛用于模拟线性蠕变行为。聚醚醚酮是一种半结晶聚合物,在本研究中使用了一种填充滑石粉的聚醚醚酮复合材料,该复合材料也由半结晶聚合物基体组成。已知这种半晶基质具有非线性粘弹性。在本研究中,我们模拟了上述复合材料的线性蠕变行为和应力相关非线性。
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