首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Prediction of loss factor (tan delta) for polymer nanocomposites as a function of yield tress, relaxation time and the width of transition region between Newtonian and power-law behaviors
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Prediction of loss factor (tan delta) for polymer nanocomposites as a function of yield tress, relaxation time and the width of transition region between Newtonian and power-law behaviors

机译:聚合物纳米复合材料的损耗因子(TAN DELTA)的预测作为牛顿和幂律行为之间的产量束,松弛时间和过渡区域宽度的函数

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This article develops a simple model for loss or damping factor (tan delta) in polymer blends and nanocomposites as a function of yield tress, relaxation time, power-law index and the width of transition region between Newtonian and power-law behavior. The predictions of the developed model are compared to the experimental results of loss factor for the blends and nanocomposites containing poly (lactic acid) (PLA), poly (ethylene oxide) (PEO) and carbon nanotubes (CNT). Moreover, the significances of all parameters on the loss factor are justified to confirm the developed model. The calculations of developed model properly agree with the experimental results at all frequency ranges and the model's parameters reasonably change in blends and nanocomposites. A poor yield stress, short relaxation time, low power-law index and large transition region between Newtonian and power-law behavior grow the loss factor. The rational roles of these parameters in the loss factor validate the developed model.
机译:本文在聚合物共混物和纳米复合材料中开发了一种用于损耗或阻尼因子(TAN DELTA)的简单模型,作为牛顿和动力法行为之间的过渡区域的函数。将开发模型的预测与含有聚(乳酸)(PLA),聚(环氧乙烷)(PEO)和碳纳米管(CNT)的损耗因子的实验结果进行比较。此外,丢失因子上所有参数的重要性都是合理的,以确认开发的模型。开发模型的计算适当地同意所有频率范围的实验结果,模型的参数合理地改变共混物和纳米复合材料。牛油和幂律行为之间的屈服压力,短弛豫时间,低幂律指标和大型过渡区域增长了损失因子。这些参数在丢失因子中的合理角色验证了开发的模型。

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