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程先华, J.WU, X.CHENG∗
,-0001,():
-1年11月30日
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程先华, JU WU, XIANHUA CHENG∗, CHAOYING XIE
,-0001,():
-1年11月30日
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程先华, CHENG Xian-hua, XUE Yu-jun
JOURNAL OF RARE EARTHS, 2001, 3 (19): 238-240,-0001,():
-1年11月30日
The friction and wear properties of metal-plastic multilayer composites filled with glass fiber, which is treated with rare earth element surface modifier, under impact load and dry friction conditions were investigated. Experimental results show that the metal-plastic multilayer composite filled with glass fiber exhibits excellent friction and impact wear properties when using rare earth elements as surface modifier for the surface treatment of glass fiber.
rare earths, metal-plastic multilayer composites, friction properties, impact wear properties
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程先华, Xian-Hua Chenga, ∗, Yu-Jun Xuea, Chao-Ying Xie b
Wear 253(2002)869-877,-0001,():
-1年11月30日
Polytetrafluoroethylene (PTFE) composites were developed by filling with 60 wt.% Pb and 5 wt.% glass fiber (GF). The GF was modified with an alcoholic solution (SGS) of N-β-aminoethyl-β-aminopropyltrimethoxysilane coupling agent (SG-Si900), an alcoholic solution (SGS/RES) of SG-Si900 and rare earths, and an alcoholic solution (RES) of rare earths, respectively. The friction and wear properties of these PTFE composites, reciprocating sliding against chromium-plated steel in dry friction, under both static loads and impact loads, were investigated. The worn surfaces of the PTFE composites and the transfer films formed on the counterface were examined with a scanning electron microscope (SEM). Experimental results reveal that the wear resistance of PTFE composites filled with modified GF can be largely improved. The friction property of PTFE+60 wt.% Pb+5 wt.% RES modified GF composite is the best of the PTFE composites filled with modified GF. However, the wear resistance of PTFE composites is largely decreased under impact loads, compared to that under static load conditions. The PTFE + 60 wt.% Pb + 5 wt.% RES modified GF composite registers excellent impact wear resistance in dry reciprocating sliding under impact load conditions. SEM investigation reveals that the modified GF can enhance the adhesion of the transfer films to the counterface, so they largely decrease the wear of the PTFE composites. Under impact load conditions, the PTFE debris on the worn surfaces of the PTFE composites is characterized by fine powder, owing to the repetitive impact in dry reciprocating sliding, which can decrease the ability of PTFE to form its transfer films, and then leads to the decrease of the friction and wear properties of the PTFE composites.
PTFE composites, Glass fiber, Rare earths, Surface modification, Dry reciprocating sliding, Static load, Impact load, Friction and wear
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程先华, Zhenhua Li, Xianhua Cheng*, Qianqian ShangGuan
Materials Letters 59(2005)705-709,-0001,():
-1年11月30日
Effects of heat treatment and high-temperature equal-channel angular extrusion (ECAE) process on transformation behaviors of Ti-50.3at.%Ni shape memory alloy (SMA) were investigated by differential scanning calorimeter (DSC) measurements. The martensitic transformation start temperature of TiNi alloy decreased sharply after high-temperature ECAE processes, then rapidly rose back after the specimen annealing at 773K for 2h. Reasons for the changes of phase transformation behaviors have been discussed.
TiNi shape memory alloy, Equal-channel angular extrusion (, ECAE), , Martensitic transformation
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