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首页> 外文期刊>Polymer engineering and science >Correlation of the Melt Rheological Properties With the Foaming Behavior of Immiscible Blends of Poly(2,6-dimethyl-1,4-phenylene ether) and Poly(styrene-co-acrylonitrile)
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Correlation of the Melt Rheological Properties With the Foaming Behavior of Immiscible Blends of Poly(2,6-dimethyl-1,4-phenylene ether) and Poly(styrene-co-acrylonitrile)

机译:聚(2,6-二甲基-1,4-亚苯基醚)与聚(苯乙烯-丙烯腈)不混溶共混物的熔体流变性与起泡行为的关系

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摘要

Immiscible blends of poly(2,6-dimethyl-1,4-phenylene ether)/poly(styrene-co-acrylonitrile) (PPE/SAN) were batch-foamed using CO2 as a blowing agent as a function of foaming temperature, foaming time, and blend composition. Evaluation of the resulting cellular morphology revealed an enhanced foamability of SAN with PPE contents up to 20 wt% as indicated by a similar volume expansion but a significantly reduced mean cell size. This behavior is related to a heterogeneous nucle-ation activity by the dispersed PPE phase. A further increasing PPE content, however, leads to increasing foam densities as well as nonuniform foam morphologies. The changes in the foaming behavior can be correlated with the melt rheological properties and the corresponding blend morphology. Shear-rheological investigations revealed an onset of percolation of the dispersed PPE phase between 20 and 40 wt%, and a transition towards cocontinuity at 60 wt%. The materials response under uniaxial elongational flow, as assessed by Rheotens measurements, revealed an increase in elongational viscosity scaling with the PPE content, similar to the shear data. However, the strain hardening behavior was reduced by increasing PPE contents and, at 20 wt%, the drawability revealed a significant drop-both phenomena limiting the foamability of polymers. In summary, the present study discusses fundamental aspects of foaming immiscible PPE/SAN blends.
机译:聚(2,6-二甲基-1,4-亚苯基醚)/聚(苯乙烯-丙烯腈)(PPE / SAN)的不混溶混合物使用二氧化碳作为发泡剂根据发泡温度进行分批发泡,发泡时间,并混合组成。对所得细胞形态的评估表明,SAN的发泡性增强,PPE含量高达20 wt%,这由相似的体积膨胀表示,但平均泡孔大小却明显减少。此行为与分散的PPE相的异相成核活性有关。然而,PPE含量的进一步增加导致泡沫密度增加以及泡沫形态不均匀。发泡行为的变化可以与熔体流变性质和相应的共混物形态相关。剪切流变学研究表明,分散的PPE相开始在20至40 wt%之间发生渗滤,并在60 wt%处向共连续性过渡。通过Rheotens测量评估,材料在单轴伸长流动下的响应表明,随着PPE含量的增加,伸长粘度的标度增加,类似于剪切数据。然而,通过增加PPE含量降低了应变硬化行为,并且在20wt%时,可拉伸性显示出明显的下降现象,这限制了聚合物的发泡性。总而言之,本研究讨论了发泡不混溶的PPE / SAN混合物的基本方面。

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