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基于聚丙烯/多壁碳纳米管的聚合物纳米复合材料制备的超声辅助挤出方法

Ultrasound-Assist Extrusion Methods for the Fabrication of Polymer Nanocomposites Based on Polypropylene/Multi-Wall Carbon Nanotubes.

作者信息

Ávila-Orta Carlos A, Quiñones-Jurado Zoe V, Waldo-Mendoza Miguel A, Rivera-Paz Erika A, Cruz-Delgado Víctor J, Mata-Padilla José M, González-Morones Pablo, Ziolo Ronald F

机构信息

Centro de Investigación en Química Aplicada, Blvd. Ingeniero Enrique Reyna Hermosillo. 140, Col. San José de los Cerritos, Saltillo, Coahuila CP 25294, Mexico.

Innovación y Desarrollo en Materiales Avanzados A. C., Grupo POLYnnova, Carr. San Luis Potosí-Guadalajara 1510, Nivel 3, Local 12, Lomas del Tecnológico, San Luis Potosí, SLP, CP 78211, Mexico.

出版信息

Materials (Basel). 2015 Nov 23;8(11):7900-7912. doi: 10.3390/ma8115431.

Abstract

Isotactic polypropylenes (iPP) with different melt flow indexes (MFI) were used to fabricate nanocomposites (NCs) with 10 wt % loadings of multi-wall carbon nanotubes (MWCNTs) using ultrasound-assisted extrusion methods to determine their effect on the morphology, melt flow, and electrical properties of the NCs. Three different types of iPPs were used with MFIs of 2.5, 34 and 1200 g/10 min. Four different NC fabrication methods based on melt extrusion were used. In the first method melt extrusion fabrication without ultrasound assistance was used. In the second and third methods, an ultrasound probe attached to a hot chamber located at the exit of the die was used to subject the sample to fixed frequency and variable frequency, respectively. The fourth method is similar to the first method, with the difference being that the carbon nanotubes were treated in a fluidized air-bed with an ultrasound probe before being used in the fabrication of the NCs with no ultrasound assistance during extrusion. The samples were characterized by MFI, Optical microscopy (OM), Scanning electron microscopy (SEM), Transmission electron microscopy (TEM), electrical surface resistivity, and electric charge. MFI decreases in all cases with addition of MWCNTs with the largest decrease observed for samples with the highest MFI. The surface resistivity, which ranged from 10 to 10⁵ Ω/sq, and electric charge, were observed to depend on the ultrasound-assisted fabrication method as well as on the melt flow index of the iPP. A relationship between agglomerate size and area ratio with electric charge was found. Several trends in the overall data were identified and are discussed in terms of MFI and the different fabrication methods.

摘要

采用不同熔体流动指数(MFI)的等规聚丙烯(iPP),通过超声辅助挤出法制备了多壁碳纳米管(MWCNT)负载量为10 wt%的纳米复合材料(NC),以确定其对NC形态、熔体流动和电学性能的影响。使用了三种不同类型的iPP,其MFI分别为2.5、34和1200 g/10 min。采用了四种基于熔体挤出的不同NC制备方法。第一种方法是不借助超声辅助的熔体挤出制备。在第二种和第三种方法中,分别使用连接到位于模头出口的热室的超声探头,使样品分别受到固定频率和可变频率的作用。第四种方法与第一种方法类似,不同之处在于碳纳米管在流化床中用超声探头处理后,再用于在挤出过程中不借助超声辅助制备NC。通过MFI、光学显微镜(OM)、扫描电子显微镜(SEM)、透射电子显微镜(TEM)、表面电阻和电荷对样品进行了表征。在所有情况下,添加MWCNT后MFI均降低,其中MFI最高的样品下降幅度最大。观察到表面电阻(范围为10至10⁵ Ω/sq)和电荷取决于超声辅助制备方法以及iPP的熔体流动指数。发现了团聚体尺寸和面积比与电荷之间的关系。确定了总体数据中的几个趋势,并根据MFI和不同的制备方法进行了讨论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dfec/5458917/a822adb33395/materials-08-05431-g001.jpg

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