TY - JOUR
T1 - Amino functionalization of graphene/graphene-like MoSe2 hybrids as lubricant additives for bismaleimide composites
T2 - Preparation, mechanical and tribological properties
AU - Chen, Zhengyan
AU - Guo, Liulong
AU - Yan, Hongxia
AU - Yao, Huanhuan
AU - Li, Lin
AU - Liu, Qi
N1 - Publisher Copyright:
© 2018
PY - 2019/3/15
Y1 - 2019/3/15
N2 - Amine functionalization of graphene/graphene-like MoSe2 (NH2-rGO/MoSe2) hybrid nanosheets were synthesized by a facile hydrothermal method. Then, as lubricant additives, the hybrids were doped into bismaleimide (BMI) matrix to reinforce the mechanical and tribological properties of BMI composites. Graphene-like MoSe2 was introduced into rGO to prevent re-stacking of the layers. The microstructure of NH2-rGO/MoSe2 was also characterized. When the content of NH2-rGO/MoSe2 was 0.6 wt.%, the composite could achieve the highest impact and flexural strengths of 19.3 kJ/m2 and 167.2 MPa, respectively. For the 0.4 wt.% NH2-rGO/MoSe2/BMI composite, it reached the minimum values for coefficient of friction and volume wear rate of 0.22 and 2.03 × 10−6 mm3/(N·m), decreased by 47.6% and 87.6% in comparison with those of pure BMI, respectively. The NH2-rGO/MoSe2 hybrids, acting as solid lubricants, played a key role in the enhanced toughness of the composites and interfacial strength between BMI matrix and filler. Thus, the improved tribological properties of the NH2-rGO/MoSe2/BMI composites were obtained.
AB - Amine functionalization of graphene/graphene-like MoSe2 (NH2-rGO/MoSe2) hybrid nanosheets were synthesized by a facile hydrothermal method. Then, as lubricant additives, the hybrids were doped into bismaleimide (BMI) matrix to reinforce the mechanical and tribological properties of BMI composites. Graphene-like MoSe2 was introduced into rGO to prevent re-stacking of the layers. The microstructure of NH2-rGO/MoSe2 was also characterized. When the content of NH2-rGO/MoSe2 was 0.6 wt.%, the composite could achieve the highest impact and flexural strengths of 19.3 kJ/m2 and 167.2 MPa, respectively. For the 0.4 wt.% NH2-rGO/MoSe2/BMI composite, it reached the minimum values for coefficient of friction and volume wear rate of 0.22 and 2.03 × 10−6 mm3/(N·m), decreased by 47.6% and 87.6% in comparison with those of pure BMI, respectively. The NH2-rGO/MoSe2 hybrids, acting as solid lubricants, played a key role in the enhanced toughness of the composites and interfacial strength between BMI matrix and filler. Thus, the improved tribological properties of the NH2-rGO/MoSe2/BMI composites were obtained.
KW - Bismaleimide
KW - Graphene
KW - Graphene-like MoSe
KW - Mechanical properties
KW - Tribological properties
UR - http://www.scopus.com/inward/record.url?scp=85055906257&partnerID=8YFLogxK
U2 - 10.1016/j.compositesb.2018.10.068
DO - 10.1016/j.compositesb.2018.10.068
M3 - 文章
AN - SCOPUS:85055906257
SN - 1359-8368
VL - 161
SP - 263
EP - 271
JO - Composites Part B: Engineering
JF - Composites Part B: Engineering
ER -