共 42 条
Mechanical and piezoresistive behavior of selectively laser sintered MWCNT/UHMWPE nanocomposites
被引:15
作者:

Azam, Muhammad Umar
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h-index: 0
机构:
Khalifa Univ, Dept Mech Engn, POB 127788, Abu Dhabi, U Arab Emirates Khalifa Univ, Dept Mech Engn, POB 127788, Abu Dhabi, U Arab Emirates

Schiffer, Andreas
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机构:
Khalifa Univ, Dept Mech Engn, POB 127788, Abu Dhabi, U Arab Emirates Khalifa Univ, Dept Mech Engn, POB 127788, Abu Dhabi, U Arab Emirates

论文数: 引用数:
h-index:
机构:
机构:
[1] Khalifa Univ, Dept Mech Engn, POB 127788, Abu Dhabi, U Arab Emirates
[2] Univ Glasgow, James Watt Sch Engn, Glasgow City G12 8QQ, Scotland
关键词:
3D printing;
Sintering;
Strain sensing;
Polymer-matrix composites (PMCs);
MOLECULAR-WEIGHT POLYETHYLENE;
CARBON NANOTUBES;
COMPOSITES;
POWDERS;
STRAIN;
D O I:
10.1016/j.compositesa.2023.107701
中图分类号:
T [工业技术];
学科分类号:
08 ;
摘要:
Herein, we present the mechanical and piezoresistive behavior of MWCNT/UHMWPE nanocomposites processed via selective laser sintering (SLS) under tensile, flexural and cyclic loadings. We show that the uniform dispersion of MWCNTs in UHMWPE enhances crystallinity (+10% for 0.5 wt% MWCNT) and decreases porosity (as evidenced by & mu;CT images), evincing the lowest porosity (-1%) and the highest tensile strength of 20.3 MPa which is - 45% higher than the maximum tensile strength of extant SLS processed UHMWPE and UHMWPE-based composites. The nanocomposite also exhibits superior piezoresistive characteristics, showing a sensitivity factor (in tension) of 0.6 and 2.6 in the elastic and inelastic regime, respectively. Furthermore, 2D-hexagonal nanocomposite lattices with a relative density of 50% reveal a linear piezoresistive response with a gauge factor of 1 and show consistent and stable strain sensing capability over 100 repeated load cycles. The results demonstrate the potential of MWCNT/UHMWPE nanocomposites for the development of smart biomedical devices.
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