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High-content continuous carbon fibers reinforced PEEK matrix composite with ultra-high mechanical and wear performance at elevated temperature

机译:高内涵连续碳纤维增强PEEK基复合材料,在高温下具有超高的机械性能和耐磨性能

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摘要

It remains challenging to incorporate high-content fibers in fiber-reinforced polymer matrix composites to significantly enhance their mechanical properties. This work prepared polyether ether ketone (PEEK) matrix composite reinforced with 66 wt carbon fibers with 0 degrees /90 degrees prepreg layer by compression molding, with aim to further increase the carbon fibers content in PEEK-based composites to improve the mechanical and wear properties at different temperatures, especially high temperature. The composite exhibits tensile and flexural strength of both exceeding 1000 MPa at room temperature, 810 +/- 10 MPa and 521 +/- 12 MPa at 200 degrees C and 458 +/- 22 MPa and 290 +/- 18 MPa at 300 degrees C, respectively. Especially at 300 degrees C, the composite demonstrates specific strength of 290 MPa/(g/cm3), which is superior to many magnesium or aluminum alloys (18-86 MPa/(g/cm3)). Further, the composite has a lower wear rate (5.47-12.80 x 10-7 mm3/Nm) at 200 degrees C by 1-2 orders of magnitude that of some materials with lubricating particles, and the wear surface is dominated by mild adhesive wear instead of abrasive wear at room temperature. The ultra-high mechanical and friction wear properties are attributed to the high content of staggered 90 degrees carbon fibers, great interface bonding between the fibers and PEEK matrix, and self-lubricating effect of fibers and PEEK particles in the composite. This opens up a new performance level and provides a new idea for high-temperature applications of high-strength fiber-reinforced resin matrix composites.
机译:在纤维增强聚合物基复合材料中掺入高含量纤维以显著提高其机械性能仍然具有挑战性。本工作采用压缩成型法制备了66 wt%碳纤维和0°C/90°C预浸料层的聚醚醚酮(PEEK)基复合材料,旨在进一步提高PEEK基复合材料中的碳纤维含量,以改善不同温度,特别是高温下的力学性能和耐磨性能。该复合材料在室温下的拉伸强度和弯曲强度均超过1000 MPa,在200°C时分别为810 +/- 10 MPa和521 +/- 12 MPa,在300°C时分别为458 +/- 22 MPa和290 +/- 18 MPa。特别是在300°C时,该复合材料表现出290 MPa/(g/cm3)的比强度,优于许多镁合金或铝合金(18-86 MPa/(g/cm3))。此外,该复合材料在200°C时具有较低的磨损率(5.47-12.80 x 10-7 mm3/Nm),是某些具有润滑颗粒的材料的1-2个数量级,并且磨损表面以轻度粘附磨损为主,而不是室温下的磨料磨损。超高的机械和摩擦磨损性能归因于交错90度碳纤维的高含量,纤维与PEEK基体之间的良好界面结合,以及纤维和PEEK颗粒在复合材料中的自润滑作用。这开辟了一个新的性能水平,为高强度纤维增强树脂基复合材料的高温应用提供了新的思路。

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