Fracture mechanism and scratch behaviour of MWNTs reinforced 70/30 (wt/wt) PC/ABS blends and their nanocomposites

In this work, multiwalled carbon nanotubes (MWNTs) are dispersed in 70/30 (wt/wt) polycarbonate (PC)/acrylonitrile butadiene styrene (ABS) (PC70ABS30) blends and their nanocomposites by the melt-processing method. The morphology observations suggest the development of matrix-droplet morphology. Ther...

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Main Authors: B.L.N. Krishna Sai, Pankaj Tambe
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2022-07-01
Series:Advanced Industrial and Engineering Polymer Research
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2542504822000021
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author B.L.N. Krishna Sai
Pankaj Tambe
author_facet B.L.N. Krishna Sai
Pankaj Tambe
author_sort B.L.N. Krishna Sai
collection DOAJ
description In this work, multiwalled carbon nanotubes (MWNTs) are dispersed in 70/30 (wt/wt) polycarbonate (PC)/acrylonitrile butadiene styrene (ABS) (PC70ABS30) blends and their nanocomposites by the melt-processing method. The morphology observations suggest the development of matrix-droplet morphology. There exists an interaction between MWNTs and the PC phase, which is observed from Raman spectroscopic investigation. Dynamic mechanical analysis (DMA) studies show the increase in storage modulus values depicting the stiffening effect of MWNTs, tanδ value increase depicting the energy dissipation. The flexural and impact properties increase significantly. The mechanism of flexural fracture is craze formation in the skin layer with a shear band and facets formation in the bulk region as observed from the SEM investigation of a flexural fractured surface of MWNTs reinforced PC70ABS30 blends and their nanocomposites. In addition, the deformation at the edge, river-like pattern, striation associated shear bands, craze, cavitation, and facets formation are the impact fracture mechanism as observed from SEM investigation of impact fractured surface of MWNTs reinforced PC70ABS30 blends and its nanocomposites. Scratch studies reveal the improved dispersion of MNNTs at 0.5–1 wt% in PC70ABS30 blends and their nanocomposites with a slightly higher scratch coefficient of friction and scratching force.
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spelling doaj.art-6502ca9f2290477f91eb7352407eb5682022-12-22T02:11:53ZengKeAi Communications Co., Ltd.Advanced Industrial and Engineering Polymer Research2542-50482022-07-0153183197Fracture mechanism and scratch behaviour of MWNTs reinforced 70/30 (wt/wt) PC/ABS blends and their nanocompositesB.L.N. Krishna Sai0Pankaj Tambe1School of Mechanical Engineering, VIT-AP University, Amravati, 522237, Andhra Pradesh, IndiaCorresponding author. School of Mechanical Engineering, VIT-AP University, Amravati, 522237, Andhra Pradesh, India.; School of Mechanical Engineering, VIT-AP University, Amravati, 522237, Andhra Pradesh, IndiaIn this work, multiwalled carbon nanotubes (MWNTs) are dispersed in 70/30 (wt/wt) polycarbonate (PC)/acrylonitrile butadiene styrene (ABS) (PC70ABS30) blends and their nanocomposites by the melt-processing method. The morphology observations suggest the development of matrix-droplet morphology. There exists an interaction between MWNTs and the PC phase, which is observed from Raman spectroscopic investigation. Dynamic mechanical analysis (DMA) studies show the increase in storage modulus values depicting the stiffening effect of MWNTs, tanδ value increase depicting the energy dissipation. The flexural and impact properties increase significantly. The mechanism of flexural fracture is craze formation in the skin layer with a shear band and facets formation in the bulk region as observed from the SEM investigation of a flexural fractured surface of MWNTs reinforced PC70ABS30 blends and their nanocomposites. In addition, the deformation at the edge, river-like pattern, striation associated shear bands, craze, cavitation, and facets formation are the impact fracture mechanism as observed from SEM investigation of impact fractured surface of MWNTs reinforced PC70ABS30 blends and its nanocomposites. Scratch studies reveal the improved dispersion of MNNTs at 0.5–1 wt% in PC70ABS30 blends and their nanocomposites with a slightly higher scratch coefficient of friction and scratching force.http://www.sciencedirect.com/science/article/pii/S2542504822000021Polycarbonate (PC)BlendsMultiwalled carbon nanotubes (MWNTs)Nanocomposites
spellingShingle B.L.N. Krishna Sai
Pankaj Tambe
Fracture mechanism and scratch behaviour of MWNTs reinforced 70/30 (wt/wt) PC/ABS blends and their nanocomposites
Advanced Industrial and Engineering Polymer Research
Polycarbonate (PC)
Blends
Multiwalled carbon nanotubes (MWNTs)
Nanocomposites
title Fracture mechanism and scratch behaviour of MWNTs reinforced 70/30 (wt/wt) PC/ABS blends and their nanocomposites
title_full Fracture mechanism and scratch behaviour of MWNTs reinforced 70/30 (wt/wt) PC/ABS blends and their nanocomposites
title_fullStr Fracture mechanism and scratch behaviour of MWNTs reinforced 70/30 (wt/wt) PC/ABS blends and their nanocomposites
title_full_unstemmed Fracture mechanism and scratch behaviour of MWNTs reinforced 70/30 (wt/wt) PC/ABS blends and their nanocomposites
title_short Fracture mechanism and scratch behaviour of MWNTs reinforced 70/30 (wt/wt) PC/ABS blends and their nanocomposites
title_sort fracture mechanism and scratch behaviour of mwnts reinforced 70 30 wt wt pc abs blends and their nanocomposites
topic Polycarbonate (PC)
Blends
Multiwalled carbon nanotubes (MWNTs)
Nanocomposites
url http://www.sciencedirect.com/science/article/pii/S2542504822000021
work_keys_str_mv AT blnkrishnasai fracturemechanismandscratchbehaviourofmwntsreinforced7030wtwtpcabsblendsandtheirnanocomposites
AT pankajtambe fracturemechanismandscratchbehaviourofmwntsreinforced7030wtwtpcabsblendsandtheirnanocomposites