Mostakhdemin Mohammad, Nand Ashveen, Ramezani Maziar
Department of Mechanical Engineering, Auckland University of Technology, Auckland 1010, New Zealand.
Faculty of Engineering, University of Auckland, Auckland 1010, New Zealand.
Polymers (Basel). 2022 Aug 31;14(17):3593. doi: 10.3390/polym14173593.
Polymeric hydrogels can be used as artificial replacement for lesioned cartilage. However, modulating the hydrogel formulation that mimics articular cartilage tissue with respect to mechanical and tribological properties has remained a challenge. This study encompasses the tribological evaluation of a silica nanoparticle (SNP) loaded bilayer nanocomposite hydrogel (NCH), synthesized using acrylamide, acrylic acid, and alginate via modulated free-radical polymerization. Multi-factor pin-on-plate sliding wear experiments were carried out with a steel ball counterface using a linear reciprocating tribometer. Tribological properties of NCHs with 0.6 wt% SNPs showed a significant improvement in the wear resistance of the lubricious layer and a low coefficient of friction (CoF). CoF of both non-reinforced hydrogel (NRH) and NCH at maximum contact pressure ranged from 0.006 to 0.008, which is in the order of the CoF of healthy articular cartilage. Interfacial surface energy was analysed according to Johnson, Kendall, and Robert's theory, and NCHs showed superior mechanical properties and surface energy compared to NRHs. Lubrication regimes' models were drawn based on the Stribeck chart parameters, and CoF results were highlighted in the elastoviscous transition regime.
聚合物水凝胶可作为受损软骨的人工替代物。然而,在机械和摩擦学性能方面调制模仿关节软骨组织的水凝胶配方仍然是一项挑战。本研究包括对一种负载二氧化硅纳米颗粒(SNP)的双层纳米复合水凝胶(NCH)的摩擦学评估,该水凝胶通过调制自由基聚合反应,使用丙烯酰胺、丙烯酸和藻酸盐合成。使用线性往复摩擦磨损试验机,以钢球作为对磨面进行了多因素销盘滑动磨损实验。含有0.6 wt% SNP的NCH的摩擦学性能表明,其润滑层的耐磨性有显著改善,且摩擦系数(CoF)较低。在最大接触压力下,非增强水凝胶(NRH)和NCH的CoF范围为0.006至0.008,这与健康关节软骨的CoF相当。根据约翰逊、肯德尔和罗伯特理论分析了界面表面能,与NRH相比,NCH表现出优异的机械性能和表面能。基于斯特里贝克曲线参数绘制了润滑状态模型,并且在弹性粘性转变区域突出显示了CoF结果。