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熔体拉伸与纳米填料对全同立构聚丁烯-1从II型到I型晶型转变的协同效应研究。

Investigation of the synergistic effect of melt-extension and nanofiller on the crystal-crystal phase transition from form II to I of isotactic polybutene-1.

作者信息

Zhang Yuru, Wei Wenjia, Liu Yi, Ji Youxin, Su Fengmei, Liu Chuntai

机构信息

National Engineering Research Center for Advanced Polymer Processing Technology, The Key Laboratory of Material Processing and Mold of Ministry of Education, College of Materials Science and Engineering, Zhengzhou University, Zhengzhou, 450002, P. R. China.

出版信息

Soft Matter. 2022 Sep 14;18(35):6572-6581. doi: 10.1039/d2sm00841f.

DOI:10.1039/d2sm00841f
PMID:35959627
Abstract

New questions and conjectures are raised on the crystal-crystal phase transition of isotactic polybutene-1 (iPB-1) containing nanofiller in the flow field. In this work, we investigate the phase transition from flow-induced oriented form II to I in iPB-1 blends with multi-walled carbon nanotubes (MWCNTs) with a homemade two-drum extensional rheometer combined with wide-angle X-ray diffraction (WAXD) measurements. The MWCNTs show a limited promoting effect on the phase transition kinetics under quiescent conditions, while the phase transition kinetic is highly accelerated with the impose of melt-extension. When the loading extension strain is 0.5 or 2.0, the half time of phase transition () is shortened from tens of hours to a few hours, depending on the melt-extension strain and the MWCNTs content in iPB-1. When the extension strain increases to 3.5, decreases to about 30 min, which is independent of the MWCNTs content in all iPB-1 blends except in blends with MWCNTs content of 1%, where the phase transition rate in the middle and late stages is restrained. It's speculated that flow-induced molecular orientation or shish-kebab morphology affects the internal stress or stress transfer. The addition of a nanofiller enlarged the effect of melt-extension through strengthening the localized intensity of flow field. In general, the combination of nanofiller and melt-extension can obviously promote the phase transition kinetics.

摘要

关于含纳米填料的全同立构聚丁烯-1(iPB-1)在流场中的晶-晶相变,引发了新的问题和猜想。在本工作中,我们使用自制的双鼓拉伸流变仪结合广角X射线衍射(WAXD)测量,研究了iPB-1与多壁碳纳米管(MWCNT)共混物中从流动诱导取向的II型到I型的相变。在静态条件下,MWCNTs对相变动力学的促进作用有限,而熔体拉伸的施加极大地加速了相变动力学。当加载拉伸应变为0.5或2.0时,相变的半衰期()从数十小时缩短至数小时,这取决于熔体拉伸应变和iPB-1中MWCNTs的含量。当拉伸应变增加到3.5时,降至约30分钟,这与所有iPB-1共混物中MWCNTs的含量无关,除了MWCNTs含量为1%的共混物,其在中期和后期的相变速率受到抑制。据推测,流动诱导的分子取向或串晶形态会影响内应力或应力传递。纳米填料的添加通过增强流场的局部强度扩大了熔体拉伸的效果。总体而言,纳米填料和熔体拉伸的结合能明显促进相变动力学。

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