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Tribological properties of ion-implanted polyphenylene oxide (PPO)

机译:离子注入聚苯醚(PPO)的摩擦学性能

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The technique of ion implantation was employed for improving surface hardness and wear resistance of polyphenylene oxide (PPO). The samples of PPO were implanted separately with Al, Ti and Fe ions to three doses of 2 x 10~(15), 1 x 10~(16) and 1 x 10~(17) ions/cm~2, Wear tests showed that wear-resistance of PPO was improved significantly and friction coefficient was reduced. The 1 x 10~(16) ions/cm~2 Ti ion implantation produced the largest improvement in tribological properties, and wear-resistance of 1 x 10~(16) ions/cm~2 Ti-implanted PPO was improved over 270 times and friction coefficient was reduced by 40%. Nano-hardness increased from 0.369 GPa for the plain PPO to 1.433 GPa for 1 x 10~(16) ions/cm~2 Ti-implanted PPO. TRIM96 (transport of ions in mater, version 1996) calculation revealed that ionization energy loss and energy loss difference between ionization and vacancies of Ti were more than those of Al and Fe beneath 50 nm ion implantation range, which were related to the largest improvement of surface properties for Ti ion implantation. IR-spectra of 1 x 10~(16) ions/cm~2 Ti-implanted PPO indicated that the surface of samples was moisture-retentive and formed the carbonyl group. GXRD analysis showed that the crystal distance was reduced after Ti ion implantation.
机译:离子注入技术被用于改善聚苯醚(PPO)的表面硬度和耐磨性。将PPO样品分别注入Al,Ti和Fe离子,分别注入2 x 10〜(15),1 x 10〜(16)和1 x 10〜(17)离子/ cm〜2三种剂量,磨损测试表明可以显着提高PPO的耐磨性,降低摩擦系数。 1 x 10〜(16)离子/ cm〜2 Ti离子注入对摩擦性能的改善最大,并且1 x 10〜(16)离子/ cm〜2 Ti注入的PPO的耐磨性提高了270倍摩擦系数降低了40%。纳米硬度从普通PPO的0.369 GPa增加到1 x 10〜(16)离子/ cm〜2注入Ti的PPO的1.433 GPa。 TRIM96(基质中离子的迁移,1996版)计算表明,在离子注入范围小于50 nm时,电离能损失以及Ti的电离与空位之间的能量损失差大于Al和Fe,这与最大离子注入改善有关。 Ti离子注入的表面特性。 1×10〜(16)离子/ cm〜2注入钛的PPO的红外光谱表明,样品表面具有保持水分的能力,并形成了羰基。 GXRD分析表明,Ti离子注入后晶体距离减小。

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