@article{ART002343485},
author={Lehua Cheng and Dongrui Yu and Enzhu Hu and Yuchao Tang and Kunhong Hu and Karl David Dearn and Xianguo Hu and Min Wang},
title={Surface modified rice husk ceramic particles as a functional additive: Improving the tribological behaviour of aluminium matrix composites},
journal={Carbon Letters},
issn={1976-4251},
year={2018},
volume={26},
number={1},
pages={51-60}
TY - JOUR
AU - Lehua Cheng
AU - Dongrui Yu
AU - Enzhu Hu
AU - Yuchao Tang
AU - Kunhong Hu
AU - Karl David Dearn
AU - Xianguo Hu
AU - Min Wang
TI - Surface modified rice husk ceramic particles as a functional additive: Improving the tribological behaviour of aluminium matrix composites
JO - Carbon Letters
PY - 2018
VL - 26
IS - 1
PB - Korean Carbon Society
SP - 51
EP - 60
SN - 1976-4251
AB - An electroless deposition method was used to modify the surface properties of rice husk ceramic particles (RHC) by depositing nano-nickel on the surface of the RHC (Ni-RHC).
The dry tribological performances of aluminum matrix composite adobes containing different contents of RHC and Ni-RHC particles have been investigated using a micro-tribometer.
Results showed that the Ni–RHC particles substantially improved both the friction and wear properties of the Ni-RHC/aluminum matrix adobes. The optimal concentration was determined to be 15 wt% for both the RHC and Ni–RHC particles. The improvements in the tribological properties of aluminum adobes including the Ni-RHC were ascribed to frictioninduced peeling off of Ni coating and formation of protection layer on the wear zone, both of which led to low friction and wear volume.
KW - Rice husk;Engineering ceramics;Aluminum-matrix composite;Nickel coating
DO -
UR -
ER -
Lehua Cheng, Dongrui Yu, Enzhu Hu, Yuchao Tang, Kunhong Hu, Karl David Dearn, Xianguo Hu and Min Wang. (2018). Surface modified rice husk ceramic particles as a functional additive: Improving the tribological behaviour of aluminium matrix composites. Carbon Letters, 26(1), 51-60.
Lehua Cheng, Dongrui Yu, Enzhu Hu, Yuchao Tang, Kunhong Hu, Karl David Dearn, Xianguo Hu and Min Wang. 2018, "Surface modified rice husk ceramic particles as a functional additive: Improving the tribological behaviour of aluminium matrix composites", Carbon Letters, vol.26, no.1 pp.51-60.
Lehua Cheng, Dongrui Yu, Enzhu Hu, Yuchao Tang, Kunhong Hu, Karl David Dearn, Xianguo Hu, Min Wang "Surface modified rice husk ceramic particles as a functional additive: Improving the tribological behaviour of aluminium matrix composites" Carbon Letters 26.1 pp.51-60 (2018) : 51.
Lehua Cheng, Dongrui Yu, Enzhu Hu, Yuchao Tang, Kunhong Hu, Karl David Dearn, Xianguo Hu, Min Wang. Surface modified rice husk ceramic particles as a functional additive: Improving the tribological behaviour of aluminium matrix composites. 2018; 26(1), 51-60.
Lehua Cheng, Dongrui Yu, Enzhu Hu, Yuchao Tang, Kunhong Hu, Karl David Dearn, Xianguo Hu and Min Wang. "Surface modified rice husk ceramic particles as a functional additive: Improving the tribological behaviour of aluminium matrix composites" Carbon Letters 26, no.1 (2018) : 51-60.
Lehua Cheng; Dongrui Yu; Enzhu Hu; Yuchao Tang; Kunhong Hu; Karl David Dearn; Xianguo Hu; Min Wang. Surface modified rice husk ceramic particles as a functional additive: Improving the tribological behaviour of aluminium matrix composites. Carbon Letters, 26(1), 51-60.
Lehua Cheng; Dongrui Yu; Enzhu Hu; Yuchao Tang; Kunhong Hu; Karl David Dearn; Xianguo Hu; Min Wang. Surface modified rice husk ceramic particles as a functional additive: Improving the tribological behaviour of aluminium matrix composites. Carbon Letters. 2018; 26(1) 51-60.
Lehua Cheng, Dongrui Yu, Enzhu Hu, Yuchao Tang, Kunhong Hu, Karl David Dearn, Xianguo Hu, Min Wang. Surface modified rice husk ceramic particles as a functional additive: Improving the tribological behaviour of aluminium matrix composites. 2018; 26(1), 51-60.
Lehua Cheng, Dongrui Yu, Enzhu Hu, Yuchao Tang, Kunhong Hu, Karl David Dearn, Xianguo Hu and Min Wang. "Surface modified rice husk ceramic particles as a functional additive: Improving the tribological behaviour of aluminium matrix composites" Carbon Letters 26, no.1 (2018) : 51-60.