首页> 外文会议>European Conference on Constitutive Models for Rubber(ECCMR 2005); 20050627-29; Stockholm(SE) >Investigation of interfacial slippage on filler reinforcement in carbon-black filled elastomers
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Investigation of interfacial slippage on filler reinforcement in carbon-black filled elastomers

机译:炭黑填充弹性体中填料增强的界面滑移研究

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Reinforcing fillers are added to elastomeric materials to enhance mechanical properties such as the modulus, strength and wear resistance. Einstein's (1906, 1911) viscosity law predicted the viscosity of liquid containing rigid spherical particles. This theory has been modified by Guth and Gold (1938) to predict how the Young's modulus of an elastomer can be related to the volume fraction and shape factor of the filler present in the elastomer. Despite this advance the actual reinforcement mechanism due to carbon fillers is still not fully resolved and continues to be a subject of great interest. Here, finite element analysis techniques have been used to investigate the reinforcement mechanisms further. The results of these models were then compared to experimental results. In the present work, filler particles were modelled to simulate the filler reinforcement behaviour. This was carried out at different volume fractions of fillers. The types of models that are required to accurately predict the correct experimental behaviour can also help identify the nature of the reinforcing mechanisms. For example, the slippage mechanisms at the filler elastomer interface can be examined using this approach. The results of finite element analysis were compared to new and well established theories in this area.
机译:将增强填料添加到弹性体材料中以增强机械性能,例如模量,强度和耐磨性。爱因斯坦(1906,1911)的粘度定律预测了含有刚性球形颗粒的液体的粘度。 Guth and Gold(1938)对该理论进行了修改,以预测弹性体的杨氏模量如何与弹性体中存在的填料的体积分数和形状因子相关。尽管取得了这种进步,但是由于碳填充物的实际增强机制仍未完全解决,并且仍然引起人们极大的兴趣。在这里,有限元分析技术已被用于进一步研究加固机理。然后将这些模型的结果与实验结果进行比较。在目前的工作中,对填料颗粒进行建模以模拟填料增强行为。这在填料的不同体积分数下进行。准确预测正确的实验行为所需的模型类型也可以帮助识别增强机制的性质。例如,可以使用这种方法检查填充弹性体界面处的滑动机制。将有限元分析的结果与该领域中新建立的理论进行了比较。

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