TY - JOUR
T1 - Study on the friction and wear behavior of nano TiO2-filled glass cloth composites
AU - Su, Feng Hua
AU - Zhang, Zhao Zhu
AU - Jiang, Wei
AU - Wang, Kun
AU - Liu, Wei Min
PY - 2005/3
Y1 - 2005/3
N2 - The friction and wear properties of the glass cloths reinforced with nano-TiO2 and modified with silicon coupling agent (KH560) were studied using a pin-on-disk friction and wear tester. The worn surfaces were observed using a scanning electron microscope, while the Ti distribution in the resin adhesive containing various contents of nano-TiO2 was determined using an energy dispersive X-ray analyzer. It was found that the friction and wear properties of the glass clothes were greatly improved by the modification with silicon coupling agent and reinforcing with nano-TiO2. The filled glass cloth composite containing 5% nano-TiO2 had the best friction and wear properties, and its load-carrying ability was also increased to some extent as compared with the unfilled glass cloth. At the same time, the friction and wear test temperature had a significant effect on the friction and wear properties of the glass cloth reinforced with nano-TiO2. Namely, the filled glass cloth composites showed good friction and wear properties at ambient temperature, but its friction coefficient began to rise at a temperature over 200°C and its wear rate greatly increased thereat. When the friction and wear test temperature rose to 240°C, the glass cloth reinforced with nano-TiO2 experienced severe wear, owing to the decomposition of the resin adhesive.
AB - The friction and wear properties of the glass cloths reinforced with nano-TiO2 and modified with silicon coupling agent (KH560) were studied using a pin-on-disk friction and wear tester. The worn surfaces were observed using a scanning electron microscope, while the Ti distribution in the resin adhesive containing various contents of nano-TiO2 was determined using an energy dispersive X-ray analyzer. It was found that the friction and wear properties of the glass clothes were greatly improved by the modification with silicon coupling agent and reinforcing with nano-TiO2. The filled glass cloth composite containing 5% nano-TiO2 had the best friction and wear properties, and its load-carrying ability was also increased to some extent as compared with the unfilled glass cloth. At the same time, the friction and wear test temperature had a significant effect on the friction and wear properties of the glass cloth reinforced with nano-TiO2. Namely, the filled glass cloth composites showed good friction and wear properties at ambient temperature, but its friction coefficient began to rise at a temperature over 200°C and its wear rate greatly increased thereat. When the friction and wear test temperature rose to 240°C, the glass cloth reinforced with nano-TiO2 experienced severe wear, owing to the decomposition of the resin adhesive.
KW - Friction and wear behavior
KW - Glass cloth composite
KW - Nano-TiO
KW - Silicon coupling agent
UR - http://www.scopus.com/inward/record.url?scp=18744385229&partnerID=8YFLogxK
M3 - 文章
AN - SCOPUS:18744385229
SN - 1004-0595
VL - 25
SP - 178
EP - 182
JO - Mocaxue Xuebao/Tribology
JF - Mocaxue Xuebao/Tribology
IS - 2
ER -