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Damage accumulation studied by acoustic emission in bone cement prepared with core-shell nanoparticles under fatigue

机译:核壳纳米粒子制备的骨水泥在疲劳下通过声发射研究损伤累积

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摘要

Analysis of acoustic emission signals generated during the fatigue testing of core-shell nanoparticles filled acrylic bone cements is reported. Core-shell nanoparticles composed of a poly(butyl acrylate) rubbery core and a poly(methyl methacrylate-co-styrene) (P(MMA-co-St)) outer glassy shell with varying compositions (20/80, 30/70, 40/60, and 50/50) were incorporated into the solid phase of bone cement at 10 wt%. Acoustic emission data revealed that the damage accumulation process was discontinuous for all bone cement formulations, being less pronounced in formulations with higher fatigue resistance (20/80 and 30/70) which emitted a higher number of events before the final fracture. The capability of both 20/80 and 30/70 core-shell nanoparticles to hinder the microcracks or crazes propagation was attributed to their poor interfacial adhesion with the matrix in comparison with formulations with 40/60 and 50/50 core-shell nanoparticles. Based on the acoustic emission data and SEM micrographs, a crack propagation scheme for bone cements containing core-shell nanoparticles was proposed. In this regard, core-shell nanoparticles had a double role on the bone cement as reported for other systems; firstly, the nanoparticles promoted nucleation sites for crazes or microcracks, and secondly, they could also hinder the propagation of these defects, acting as a barrier to their growth. Crack propagation mechanism consisted mainly in crazing ahead of the cracks tip as well as the coalescence of these cracks which were responsible of the acoustic emission detected.
机译:报告了在核壳纳米颗粒填充丙烯酸骨水泥的疲劳测试过程中产生的声发射信号的分析。核壳纳米粒子由聚丙烯酸丙烯酸丁酯橡胶状核和聚甲基丙烯酸甲酯-共苯乙烯(P(MMA-co-St))外部玻璃状壳组成,组成各不相同(20/80,30/70, 40/60和50/50)以10wt%的比例掺入骨水泥的固相中。声发射数据表明,所有骨水泥配方的损伤累积过程都是不连续的,在具有较高抗疲劳性(20/80和30/70)的配方中不那么明显,该配方在最终断裂之前发出了更多的事件。与具有40/60和50/50核壳纳米颗粒的制剂相比,20/80和30/70核壳纳米颗粒均具有阻止微裂纹或裂纹扩展的能力,这归因于它们与基质的较差的界面粘附性。基于声发射数据和SEM显微照片,提出了含核-壳纳米粒子的骨水泥的裂纹扩展方案。在这方面,如其他系统报道的那样,核-壳纳米颗粒对骨水泥具有双重作用。首先,纳米粒子促进了裂纹或微裂纹的成核位点,其次,它们还可能阻碍这些缺陷的扩散,成为其生长的障碍。裂纹扩展的机理主要在于裂纹尖端的裂纹以及这些裂纹的聚结,这些裂纹与所检测到的声发射有关。

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