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A relationship between extrudate swell ratio and entry stored elastic strain energy during die flow of tyre compounds

机译:轮胎胶料模流过程中挤出物溶胀比与入口储能弹性应变能之间的关系

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摘要

The elastic strain energy stored in the channel entrance flow and the extrudate swell ratios are important characteristics of elasticity during channel extrusion of polymer materials. There should be some form of relationship between them, especially in the case of the use of a short or mid-length die. The viscoelastic behavior and mechanisms in capillary extrusion flow of rubber compounds were investigated in the present paper. Under the operation conditions with temperature of 90 degreesC and apparent shear rate range of 10-10(3) s(-1), the rheological properties of two tyre compounds, cavity stock and buffer stock, were measured. It was found that the shear flow of both the tyre compounds obeyed the power law. and the non-Newtonian index values were close to each other. The entry pressure drop (DeltaP(0)), entry elastic stored energy (e) and die-swell ratio (B) increased roughly linearly with increasing shear stress at the channel wall. The B value for cavity stock was greater than that for buffer stock, whereas it was the reverse for DeltaP(en). Also, the correlation between the die-swell ratio and entry elastic stored energy is discussed. The results showed that B was a linear function of e. (C) 2003 Elsevier Ltd. All rights reserved.
机译:存储在通道入口流中的弹性应变能和挤出物的溶胀比是聚合物材料通道挤出过程中弹性的重要特征。它们之间应该存在某种形式的关系,特别是在使用短或中长度的模具的情况下。研究了胶料在毛细管挤出流动中的粘弹性行为和机理。在温度为90摄氏度,表观剪切速率范围为10-10(3)s(-1)的操作条件下,测量了两种轮胎胶料(模腔胶料和缓冲胶料)的流变特性。发现两种轮胎胶料的剪切流均服从幂律。非牛顿指数值彼此接近。入口压降(DeltaP(0)),入口弹性储能(e)和模头膨胀率(B)随着通道壁处的切应力的增加而大致呈线性增加。腔料的B值大于缓冲料的B值,而DeltaP(en)则相反。此外,还讨论了模头膨胀率与入口弹性存储能量之间的相关性。结果表明,B是e的线性函数。 (C)2003 Elsevier Ltd.保留所有权利。

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