Title :
Morphology and performance of silane functionalized organoclay in polypropylene matrix
Author :
Tsegmid, Batbaatar ; Dashdondog, Oyunbileg
Author_Institution :
Department of Building materials, School of Technology in Darkhan, Mongolian University of Science and Technology
Abstract :
In this work the morphology and performance of silane functionalized organoclay in PP matrix was investigated. For this purpose MMT/Silane intercalates were prepared using the grafting method. First nanofillers were dispersed in a mixture of ethanol/water solution, and then different silanes were added into the mixture and sheared for 8h at 80°C in a Thermomix mixer. The product was dried and pulverized. Different types of polypropylene were used to prepare the nanocomposites with silane, and a 1 mm nanocomposite film was produced with hot press at 210°C for 7 minutes. XRD, FTIR and TEM were used to characterize the modified and neat samples. The XRD results indicated that the MMT:APS (1:1) ratio showed the highest increase in d- spacing for MMT, registering an increase of 0.95nm (from 1.21 nm to 2.16 nm) which suggest that this is the ideal ratio of MMT:APS combination for improvement of PP mechanical properties. New peaks seen in MMT:APS at 2928 cm-1 and small hump at 2852 cm-1 probably confirm the presence of the silane on the surface which implies that an effective modification has taken place. And, a change in the region of the stretching band indicates that a reaction of the silanol groups of the montmorillonite and trimethoxysilane occurred. The results also showed that the higher the ratio of MMT:APS increases, the better is the dispersion of the clay which may have implications in improvement of mechanical properties.
Keywords :
Fourier transform spectra; X-ray diffraction; clay; crystal morphology; disperse systems; drying; filled polymers; infrared spectra; mechanical properties; nanocomposites; polymer blends; polymer films; silicon compounds; transmission electron microscopy; FTIR; MMT intercalates; PP matrix; PP mechanical properties; TEM; XRD; clay dispersion; drying; ethanol-water solution; grafting method; mechanical properties; montmorillonite; nanocomposite film; nanofillers; polypropylene matrix; pulverization; silane functionalized organoclay morphology; silane functionalized organoclay performance; silane intercalates; silanol groups; thermomix mixer; trimethoxysilane; Dispersion; Mechanical factors; Morphology; Nanocomposites; Plastics; Surface morphology; X-ray scattering; 3- Aminopropyltriethoxysilane; Grafting; Montmorillonite; X-ray diffraction; polypropylene;
Conference_Titel :
Strategic Technology (IFOST), 2012 7th International Forum on
Conference_Location :
Tomsk
Print_ISBN :
978-1-4673-1772-6
DOI :
10.1109/IFOST.2012.6357534