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首页> 外文期刊>Journal of Applied Polymer Science >On the potential of polyetheretherketone matrix composites reinforced with ternary nanolaminates for tribological and biomedical applications
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On the potential of polyetheretherketone matrix composites reinforced with ternary nanolaminates for tribological and biomedical applications

机译:用三元纳米胺与摩擦生物医学应用增强聚醚醚酮基质复合材料的电位

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We report the synthesis and characterization of PEEK-MAX (Ti3SiC2, Ti3AlC2, and Cr2AlC), and PEEK-MoAlB composites by hot-pressing. Detailed microstructure analysis by scanning electron microscopy showed that Ti3SiC2 particles are well dispersed in the PEEK matrix after the addition of 5 vol% Ti3SiC2 but at higher concentration (>= 10 vol%), the Ti3SiC2 particles segregated at the phase boundaries and formed interpenetrating micro-networks. PEEK-Ti3AlC2 and PEEK-MoAlB composites also showed similar structuring at the microstructural level. PEEK-Cr2AlC composites showed a different behavior where Cr2AlC particles were well dispersed in the PEEK matrix. All the three PEEK-MAX composites have lower hardness than PEEK-MoAlB composites as MoAlB particulates are appreciably harder than MAX phases but were harder than PEEK. Due to heterogenous nucleation, the addition of MAX phases or MoAlB reduced the crystallization temperature (T-c) by a few C-o. The formation of imperfect crystals also resulted in the lowering of melting point (T-m) of these composites. PEEK reinforced with 10 vol% Ti3SiC2, Ti3AlC2 and MoAlB showed plastic failure, and had higher strength than PEEK. Comparatively, PEEK reinforced with 10 vol% Cr2AlC did not show any enhancement. All the PEEK-MAX and PEEK-MoAlB composites showed triboactive behavior and enhanced wear resistance.
机译:我们报道了PEEK-MAX(Ti3SiC2、Ti3AlC2和Cr2AlC)和PEEK-MoAlB复合材料的热压合成和表征。通过扫描电子显微镜进行的详细微观结构分析表明,Ti3SiC2颗粒在加入5 vol%Ti3SiC2后在PEEK基体中分散良好,但在较高浓度(>=10 vol%)下,Ti3SiC2颗粒在相界处偏析并形成互穿微网络。PEEK-Ti3AlC2和PEEK-MoAlB复合材料在微观结构层面也表现出类似的结构。PEEK-Cr2AlC复合材料表现出不同的行为,其中Cr2AlC颗粒在PEEK基体中分散良好。三种PEEK-MAX复合材料的硬度均低于PEEK-MoAlB复合材料,因为MoAlB颗粒明显比MAX相硬,但比PEEK相硬。由于非均相成核,MAX相或MoAlB的加入使结晶温度(T-c)降低了几个c-o。不完美晶体的形成也导致这些复合材料的熔点(T-m)降低。用体积分数为10%的Ti3SiC2、Ti3AlC2和MoAlB增强的PEEK出现塑性破坏,强度高于PEEK。相比之下,用体积分数为10%的Cr2AlC增强PEEK并没有显示出任何增强效果。PEEK-MAX和PEEK-MoAlB复合材料均表现出良好的摩擦活性和耐磨性。

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