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交联密度对超高分子量聚乙烯高压结晶的影响。

Effect of cross-link density on the high pressure crystallization of UHMWPE.

作者信息

Oral Ebru, Godleski-Beckos Christine, Ghali Bassem W, Lozynsky Andrew J, Muratoglu Orhun K

机构信息

Department of Orthopaedic Surgery, Massachusetts General Hospital, Boston, Massachusetts, USA.

出版信息

J Biomed Mater Res B Appl Biomater. 2009 Aug;90(2):720-9. doi: 10.1002/jbm.b.31340.

Abstract

Ultrahigh molecular weight polyethylene (UHMWPE) is a bearing surface material for total joint implants. It is radiation cross-linked for high wear resistance and is melted or treated with vitamin E for oxidative stability. We investigated high pressure crystallization (HPC) of irradiated UHMWPE as an alternative method to improve the mechanical strength while stabilizing the residual free radicals from radiation cross-linking. HPC of uncross-linked UHMWPE has resulted in the formation of extended chain crystals and increased crystallinity, leading to improved strength. We hypothesized that increased cross-link density would hinder crystallization during HPC due to decreased chain mobility. Therefore, we investigated the crystalline structure and tensile mechanical properties of high pressure crystallized 25-, 65- and 100-kGy irradiated UHMWPE. We also determined free radical content and wear. The strength of 25- and 65-kGy irradiated UHMWPEs was improved by HPC with increased crystallinity and crystal size. 100-kGy irradiated UHMWPE did not show improved strength, supporting our hypothesis that decreased chain mobility would hinder crystal formation and strength improvement. None of the HPC irradiated UHMWPEs contained detectable free radicals and their wear properties were maintained, suggesting oxidative and mechanical stability in the long term. Therefore, HPC can be used effectively for imparting oxidative stability while strength improvement can be achieved for irradiated UHMWPE with low to moderate cross-link density.

摘要

超高分子量聚乙烯(UHMWPE)是全关节植入物的一种承重表面材料。它经过辐射交联以获得高耐磨性,并通过维生素E进行熔融或处理以提高氧化稳定性。我们研究了辐照UHMWPE的高压结晶(HPC),作为一种在稳定辐射交联产生的残余自由基的同时提高机械强度的替代方法。未交联的UHMWPE进行高压结晶已导致形成伸直链晶体并提高了结晶度,从而提高了强度。我们推测,交联密度的增加会由于链迁移率的降低而阻碍高压结晶过程中的结晶。因此,我们研究了25、65和100千戈瑞辐照的UHMWPE高压结晶后的晶体结构和拉伸力学性能。我们还测定了自由基含量和磨损情况。25和65千戈瑞辐照的UHMWPE的强度通过高压结晶得到提高,结晶度和晶体尺寸增加。100千戈瑞辐照的UHMWPE未显示出强度提高,支持了我们的假设,即链迁移率降低会阻碍晶体形成和强度提高。所有高压结晶辐照的UHMWPE均未检测到可检测的自由基,并且其磨损性能得以保持,表明具有长期的氧化稳定性和机械稳定性。因此,高压结晶可有效地用于赋予氧化稳定性,而对于低至中等交联密度的辐照UHMWPE可实现强度提高。

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