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首页> 外文期刊>Journal of Applied Polymer Science >Influence of PTFE as a solid lubricant on the mechanical, electrical, and tribological properties of CF-reinforced PC composites
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Influence of PTFE as a solid lubricant on the mechanical, electrical, and tribological properties of CF-reinforced PC composites

机译:PTFE作为固体润滑剂对CF加固PC复合材料的机械,电气和摩擦学性质的影响

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摘要

The objective of this research was to study the effects of polytetrafluoroethylene (PTFE) as a solid lubricant on the mechanical, electrical, and tribological properties of carbon fiber (CF)-reinforced polycarbonate (PC) composites. Samples were prepared by means of single-screw extrusion and injection molding processes. The mechanical tests included tensile, flexural, and failing weight impact tests, while the electrical tests consisted of surface and volume resistivity tests. The tribological testing was conducted under dry sliding conditions using pin-on-disk configuration. The results showed that the addition of CF managed to significantly reduce the electrical resistivity as the CF loading approached 10-15 wt%. The addition of PTFE managed to reduce the resistivity of the composite, that is, from 4.51 to 0.53 x 10 (omega cm). The incorporation of 15 wt%. CF resulted with an increase of 45% in tensile strength and 51.5% in flexural strength, while the addition of PTFE had a negative impact on both properties. It was shown that PTFE was able to reduce the friction coefficient, mu and wear rate, K up to 0.257 and 6.35 x 10(6) (mm(3)/Nm), respectively, which can be attributed to the excellent abilities of PTFE to form transfer film. The composite consisting of 15 wt% CF and 10 wt%. PTFE showed highest improvement in term of electrical resistivity, and is deemed the most suitable composition for this study. Scanning electron microscopy was also carried out to further elucidate the fracture and wear mechanism of the PC/CF/PTFE composites.
机译:本研究的目的是研究聚四氟乙烯(PTFE)作为固体润滑剂对碳纤维(CF)增强聚碳酸酯(PC)复合材料的机械、电气和摩擦学性能的影响。样品通过单螺杆挤出和注射成型工艺制备。机械试验包括拉伸、弯曲和破坏重量冲击试验,而电气试验包括表面电阻率和体积电阻率试验。摩擦学试验是在干滑动条件下进行的,采用销盘结构。结果表明,当CF负载接近10-15 wt%时,添加CF能够显著降低电阻率。PTFE的加入成功地降低了复合材料的电阻率,即从4.51降至0.53 x 10(ω-厘米)。掺入15 wt%。CF使拉伸强度增加45%,弯曲强度增加51.5%,而PTFE的加入对这两种性能都有负面影响。结果表明,PTFE能够降低摩擦系数mu和磨损率K,分别达到0.257和6.35x10(6)(mm(3)/Nm),这是由于PTFE具有良好的形成转移膜的能力。复合材料由15 wt%的CF和10 wt%的CF组成。PTFE在电阻率方面表现出最高的改善,被认为是本研究中最合适的成分。通过扫描电子显微镜进一步阐明了PC/CF/PTFE复合材料的断裂和磨损机理。

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