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Radiation-induced effects on micro-scratch of ultra high molecular weight polyethylene biocomposites

机译:辐射诱导的超高分子量聚乙烯生物复合材料微划痕的影响

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Sterilization of ultra-high molecular weight polyethylene (UHMWPE) based composites used for acetabular cup liner via UV or gamma-irradiation before surgery is inevitable. Thus, understanding the alteration of mechanical properties and wear resistance of cup liner via irradiation process requires investigation. This paper aims to understand the effect of UV (0.03?J/cm2) and gamma (25?kGy) irradiation on mechanical properties and scratch resistance of compression molded UHMWPE composites reinforced with alumina (Al2O3), hydroxyapatite (HAp) and carbon nanotubes (CNTs). After irradiation, nearly 100% increased crystallinity of polyethylene, due to recrystallization, helped in enhancing the hardness and elastic modulus by ~1.5 times compared to that of as-processed UHMWPE (Hardness: ~70?MPa and Elastic modulus: ~1.25?GPa). The recrystallization was not favored by the presence of nano-reinforcements in irradiated UHMWPE based nanocomposites, and caused deterioration in the mechanical properties. The micro-scratch results revealed the remarkable wear resistance (i.e., 1.5 to 2 times lower wear rate) of irradiated samples than that of as-processed samples. Mouse fibroblast L929in?vitrocell culture test confirmed the cytocompatibility of irradiated samples. This study indicated that the UV and gamma irradiated UHMWPE nanocomposites are the challenging candidates as acetabular cup liner.
机译:在手术前通过UV或γ辐射用于髋臼杯衬里的超高分子量聚乙烯(UHMWPE)基复合材料的灭菌是不可避免的。因此,了解通过照射过程的杯子衬里的机械性能和耐磨性的改变需要进行研究。本文旨在了解UV(0.03〜J / cm2)和γ(25μm)辐射对用氧化铝(Al2O3),羟基磷灰石(Hap)和碳纳米管( CNT)。在照射后,由于重结晶,聚乙烯的结晶度近100%增加了聚乙烯的结晶度,而通过加工的UHMWPE(硬度:〜70≤MPa和弹性模量:〜1.25?GPA:〜1.25?GPA(〜1.25?GPA)(〜1.20?GPA),近100% )。通过在辐照的UHMWPE基纳米复合材料中存在纳米增强物,并导致机械性能的劣化,并不引起重结晶。微划痕结果显示出辐照样品的显着耐磨性(即1.5〜2倍)比处理样品的耐受样品的耐受性。小鼠成纤维细胞L929?vitrocell培养测试证实了辐照样品的细胞相容性。本研究表明,UV和γ辐照的UHMWPE纳米复合材料是患有髋臼杯衬里的挑战性候选者。

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