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橡胶沥青复合材料动态剪切流变特性 被引量:3
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作者 安文静 盛冬发 +2 位作者 张思成 王怡楠 朱军 《功能材料》 CAS CSCD 北大核心 2022年第5期5100-5103,5116,共5页
在橡胶沥青复合材料中加入不同的胶粉含量,其动态力学特性发生明显改变。利用三参量流变模型,推导了橡胶沥青复合材料黏弹性的动态剪切流变参数。通过Origin软件自定义拟合功能,对黏度预估模型的4个待定参数进行了拟合。采用动态剪切流... 在橡胶沥青复合材料中加入不同的胶粉含量,其动态力学特性发生明显改变。利用三参量流变模型,推导了橡胶沥青复合材料黏弹性的动态剪切流变参数。通过Origin软件自定义拟合功能,对黏度预估模型的4个待定参数进行了拟合。采用动态剪切流变仪(DSR),在不同温度下对不同胶粉含量的橡胶沥青复合材料试样进行测试,并将实验结果与三参量流变模型得到的理论结果进行对比。结果表明,实验结果与理论结果吻合较好。随着测试温度的升高或胶粉含量的降低,橡胶沥青复合材料的黏度、储存模量和损耗模量均呈现降低的趋势,而损耗因子呈增大的趋势。 展开更多
关键词 动态剪切流变仪 黏度 储存模量 耗损模量 损耗因子
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Rheological properties of polyvinyl butyral/Pluronic F127/PEG200 blend systems
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作者 欧阳伟 邱运仁 《Journal of Central South University》 SCIE EI CAS 2011年第6期1891-1896,共6页
The influence of temperature and mass fraction of Pluonic F127 on the rheological properties of polyvinyl butyric (PVB)/Pluronic F127/polyethylene glycol (PEG) 200 blend systems was investigated by a rotational rh... The influence of temperature and mass fraction of Pluonic F127 on the rheological properties of polyvinyl butyric (PVB)/Pluronic F127/polyethylene glycol (PEG) 200 blend systems was investigated by a rotational rheometer with parallel plates. The results show that the blend systems approach homogeneous state at 140, 150 and 160℃while the rheological properties of the blend systems significantly deviate from the homogeneous systems at 120℃. Shear thinning behavior is observed for all the blend systems at different temperatures and is enhanced by increasing Pluronic F127 content. The complex viscosity, storage modulus, loss modulus, zero-shear activation energy and flow recovery of the blend systems increase with the increase of Pluronic F127 content. There is a crossing point for the loss modulus and the storage modulus of each sample at high frequency, which is called specified frequency (SF). The loss modulus is larger than the storage modulus when the frequency is less than the SF, and when frequency is more than SF, the loss modulus is smaller than the storage modulus. 展开更多
关键词 polyvinyl butyral amphiphilic copolymer polyethylene glycol dynamic rheological properties
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