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首页> 外文期刊>Rheologica Acta >Bitumen/polyethylene blends: using m-LLDPEs to improve stability and viscoelastic properties
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Bitumen/polyethylene blends: using m-LLDPEs to improve stability and viscoelastic properties

机译:沥青/聚乙烯共混物:使用m-LLDPE改善稳定性和粘弹性

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摘要

The stability and the rheological properties of blends of a 60/70 penetration-grade bitumen with conventional HDPEs and metallocene catalysed LLDPEs (m-LLDPE) are investigated. Considerably better stability results are obtained using m-LLDPEs instead of conventional polyethylenes, allowing one to avoid phase separation of the emulsion-like system during storage at high temperature. Thermodynamical interaction between bitumen and polyethylene is discarded as a cause of the observed difference, because the solubility parameter is practically the same for all the investigated polyethylenes. The result is explained on the basis of the lower melt elasticity of m-LLDPEs (attributed to their narrow molecular weight distribution), which facilitates the drop breakup during mixing process. The modification of bitumen with any of the m-LLDPEs considered in this work gives a new material with considerably improved viscoelastic properties.
机译:研究了60/70渗透级沥青与常规HDPE和茂金属催化的LLDPE(m-LLDPE)的混合物的稳定性和流变性能。使用m-LLDPE代替传统的聚乙烯可以获得更好的稳定性结果,从而避免了在高温下储存期间乳液状体系的相分离。沥青和聚乙烯之间的热力学相互作用被丢弃是造成观察到的差异的原因,因为对于所有研究的聚乙烯来说,溶解度参数实际上是相同的。基于m-LLDPE的较低的熔体弹性(归因于其窄的分子量分布)来解释该结果,这有助于混合过程中的液滴破裂。用这项工作中考虑的任何m-LLDPE改性沥青,可得到一种具有显着改善的粘弹性的新材料。

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