Effect of Starch Loading on the Thermo-Mechanical and Morphological Properties of Polyurethane Composites

被引:16
|
作者
Gaaz, Tayser Sumer [1 ,2 ]
Sulong, Abu Bakar [1 ]
Ansari, M. N. M. [3 ]
Kadhum, Abdul Amir H. [4 ]
Al-Amiery, Ahmed A. [5 ]
Nassir, Mohamed H. [6 ]
机构
[1] Univ Kebangsaan Malaysia, Fac Engn & Built Environm, Dept Mech & Mat Engn, Bangi 43600, Selangor, Malaysia
[2] Al Furat Al Awsat Tech Univ, Tech Coll Al Musaib, Dept Machinery Equipment Engn Tech, Al Musaib 51009, Babil, Iraq
[3] Univ Tenaga Nas, Coll Engn, Ctr Adv Mat, Kajang 43000, Selangor, Malaysia
[4] Univ Kebangsaan Malaysia, Fac Engn & Built Environm, Dept Chem & Proc Engn, Bangi 43600, Selangor, Malaysia
[5] Univ Technol Baghdad, Energy & Renewable Energies Technol Ctr, Baghdad 10001, Iraq
[6] Taylors Univ, Program Chem Engn, Lakeside Campus, Subang Jaya 47500, Selangor, Malaysia
来源
MATERIALS | 2017年 / 10卷 / 07期
关键词
starch; composite; thermal stability; mechanical properties; polyurethane; HALLOYSITE NANOTUBES; THERMOPLASTIC STARCH; NANOCOMPOSITES; DEGRADATION; EXTRUSION; MEMBRANES; FILMS;
D O I
10.3390/ma10070777
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The advancements in material science and technology have made polyurethane (PU) one of the most important renewable polymers. Enhancing the physio-chemical and mechanical properties of PU has become the theme of this and many other studies. One of these enhancements was carried out by adding starch to PU to form new renewable materials called polyurethane-starch composites (PUS). In this study, PUS composites are prepared by adding starch at 0.5, 1.0, 1.5, and 2.0 wt.% to a PU matrix. The mechanical, thermal, and morphological properties of PU and PUS composites were investigated. Scanning electron microscope (SEM) images of PU and PUS fractured surfaces show cracks and agglomeration in PUS at 1.5 wt.% starch. The thermo-mechanical properties of the PUS composites were improved as starch content increased to 1.5 wt.% and declined by more starch loading. Despite this reduction, the mechanical properties were still better than that of neat PU. The mechanical strength increased as starch content increased to 1.5 wt.%. The tensile, flexural, and impact strengths of the PUS composites were found to be 9.62 MPa, 126.04 MPa, and 12.87 x 10(-3) J/mm(2), respectively, at 1.5 wt.% starch. Thermal studies showed that the thermal stability and crystallization temperature of the PUS composites increased compared to that of PU. The loss modulus curves showed that neat PU crystallizes at 124 degrees C and at 127 degrees C for PUS-0.5 wt.% and rises with increasing loading from 0.5 to 2 wt.%.
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页数:14
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