Four kinds of polytetrafluoroethylene (PTFE)-based composites, such as pure PTFE, PTFE ฯฉ 30(v)%Cu, PTFE ฯฉ 30(v)%Cu 2 O, and PTFE ฯฉ 30(v)%CuS composite, were prepared. Then the friction and wear properties of the PTFE composites filled with Cu, Cu 2 O, or CuS sliding against GCr15-bearing steel under
Friction and wear behavior of PTFE composites filled with rare earth compounds under oil-lubricated conditions
โ Scribed by Zhao-Zhu Zhang; Qun-Ji Xue; Wei-Min Liu; Wei-Chang Shen
- Publisher
- John Wiley and Sons
- Year
- 1999
- Tongue
- English
- Weight
- 457 KB
- Volume
- 74
- Category
- Article
- ISSN
- 0021-8995
No coin nor oath required. For personal study only.
โฆ Synopsis
Polytetrafluoroethylene (PTFE)-based composites, filled with CeO 2 , CeF 3 , and La 2 O 3 in volume contents of 5, 10, 15, 20, and 30%, were prepared. Then, the friction and wear behavior of these PTFE composites sliding against GCr15 bearing steel under both dry and liquid paraffin-lubricated conditions was evaluated using an MHK-500 ring-on-block wear tester. Finally, the worn surfaces and the transfer films of these PTFE composites were investigated using a scanning electron microscope (SEM) and an optical microscope. Experimental results showed that filling CeO 2 , CeF 3 , and La 2 O 3 into PTFE can reduce the wear of the PTFE composites by 1-2 orders of magnitude. When the content of CeO 2 in PTFE is 15%, the friction and wear properties of the CeO 2 -filled PTFE composite are the best. Meanwhile, when the content of La 2 O 3 in PTFE is between 15 and 20%, the PTFE composite filled with La 2 O 3 exhibits excellent friction and wear-reducing properties. However, the friction coefficient of the CeF 3 -filled PTFE composite increases but its wear decreases with increase in the content of CeF 3 from 5 to 30%. The friction and wear-reducing properties of CeO 2 -, CeF 3 -, and La 2 O 3 -filled PTFE composites can be greatly improved by lubrication with liquid paraffin, but the limit loads of the PTFE composites decrease with increase in the content of CeO 2 , CeF 3 , and La 2 O 3 in PTFE (from 5 to 30%) under the same conditions. Investigations of worn surfaces show that the interaction between liquid paraffin and the CeO 2 -, CeF 3 -, and La 2 O 3 -filled PTFE composites, especially the absorption of liquid paraffin into the microdefects of the PTFE composites, creates some cracks on the worn surfaces of the PTFE composites and that the creation and development of the cracks reduces the mechanical strength and the load-supporting capacity of the PTFE composites. However, with increase of the content of CeO 2 , CeF 3 , and La 2 O 3 in the PTFE, the microdefects in the PTFE composites also increase, which would lead to increase in the number of the cracks on the worn surfaces of the PTFE composites under load and, so, in turn, lead to the reduction of the limit loads of the CeO 2 -, CeF 3 -, and La 2 O 3 -filled PTFE composites under lubrication with liquid paraffin.
๐ SIMILAR VOLUMES
Five kinds of polytetrafluoroethylene (PTFE)-based composites, pure PTFE, PTFE ฯฉ 30(v)% MoS 2 , PTFE ฯฉ 30(v)% PbS, PTFE ฯฉ 30(v)% CuS, and PTFE ฯฉ 30(v)% graphite (GR) composites, were first prepared. Then the friction and wear properties of these PTFE composites, sliding against GCr15-bearing steel u
Four kinds of polytetrafluoroethylene (PTFE)-based composites, such as pure PTFE, PTFE / 30 (vol.)% carbon fiber, PTFE / 30(vol.) % glass fiber, and PTFE / 30(vol.)% K 2 Ti 6 O 13 whisker composite, were prepared. The friction and wear properties of these fiber-and whisker-reinforced PTFE composites
Five kinds of polytetrafluoroethylene (PTFE)-based composites were prepared: PTFE, PTFE ฯฉ 30 vol % SiC, PTFE ฯฉ 30 vol % Si 3 N 4 , PTFE ฯฉ 30 vol % BN, and PTFE ฯฉ 30 vol % B 2 O 3 . The friction and wear properties of these ceramic particle filled PTFE composites sliding against GCr15 bearing steel u
The friction and wear properties of polytetrafluoroethylene (PTFE), polyimide (PI), and polyamide 66 (PA66) sliding against GCr15 bearing steel under both dry and oil-lubricated conditions were studied by using an MHK-500 ring-block wear tester (Timken wear tester), and then Stribeck's curves of PTF
The friction and wear behaviors of polytetrafluoroethylene (PTFE)-based composites filled with rare earth compounds CeO 2 , CeF 3 , and La 2 O 3 in volume content from 5 to 30% sliding against GCr15 bearing steel under dry friction conditions were evaluated by using an MHK-500 ring-block wear tester