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Frequency- and strain-amplitude-dependent dynamical mechanical properties and hysteresis loss of CB-filled vulcanized natural rubber  
Frequency- and strain-amplitude-dependent dynamical mechanical properties and hysteresis loss of CB-filled vulcanized natural rubber
资料类型: PDF文件
关键词: Carbon-black-filled  rubber  Hysteresis  loss  Loss  modulus  Payne  
effect  Strain  amplitude  Frequency  
资料大小: 624k
所属学科: 高分子物理
来源: 来源网络
简介:
The dynamic mechanical behavior of carbon-black-filled vulcanized natural rubber is experimentally investigated by stretching the rubber strips with various strain amplitudes at different frequencies in a sinusoidal tension mode. The Payne effect is demonstrated and the frequency- and strain-amplitude-dependent hysteresis losses are determined by DMA measurements. The Kraus model is used for describing the Payne effect. The results show that hysteresis loss increases with increase in frequency and strain amplitude. A viscoelastic model, which correlates the hysteresis loss with strain amplitude and loss modulus, is used to calculate the energy dissipated in a full deformation cycle. The model prediction is shown to be in good agreement with the experimental result.
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