Comparison of effect of surface-modified micro-/nano-mineral fillers filling in the polypropylene matrix

Author:

Zaman Haydar U1,Hun Park Deuk1,Khan Ruhul A2,Yoon Keun-Byoung1

Affiliation:

1. Department of Polymer Science and Engineering, Kyungpook National University, Daegu, South Korea

2. Radiation and Polymer Chemistry Laboratory, Institute of Nuclear Science and Technology, Bangladesh Atomic Energy Commission, Dhaka, Bangladesh

Abstract

Effect of unmodified and surface-modified micro-/nano-calcium carbonate particles on the mechanical properties, crystallization behavior, and thermal properties of polypropylene (PP)/microscale calcium carbonate (micro-CaCO3 (mCC)) and PP/nanoscale calcium carbonate (nano-CaCO3 (nCC)) composites has been comparatively investigated via melt mixing. Mechanical tests indicated that PP/nCC composite with the addition of 5–10 wt% nCC is higher than that of virgin PP and even higher than that of PP/mCC composite with the addition of 5–15 wt% mCC. In addition, incorporation of titanate-coupling agent (isopropyl tri-(dioctylpyrophosphato) titanate (JN114)) further increased the mechanical properties of the composites. This improvement in the mechanical properties was evidenced by scanning electron microscopy. The addition of small amounts of JN114 into PP/mCC and PP/nCC induces the great change in crystallization behavior of PP matrix. Improved distribution of CaCO3, enhanced crystallization temperature, largely increased the degree of crystallinity, Xc (%), and the heat deformation temperature are achieved for PP/modified-nCC samples.

Publisher

SAGE Publications

Subject

Condensed Matter Physics,Ceramics and Composites

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