Al-Hajjar Mazen, Carbone Silvia, Jennings Louise M, Begand Sabine, Oberbach Thomas, Delfosse Daniel, Fisher John
Institute of Medical and Biological Engineering, School of Mechanical Engineering, University of Leeds, Leeds, UK.
Mathys Orthopädie GmbH, Moersdorf, Germany.
J Biomed Mater Res B Appl Biomater. 2017 Aug;105(6):1361-1368. doi: 10.1002/jbm.b.33671. Epub 2016 Apr 8.
Ceramic composites have performed very well under adverse edge loading conditions when used in like-on-like configurations, where the femoral head and acetabular cup are of the same material. The aim of this study was to determine the wear of pure alumina (Al O ), alumina toughened zirconia (ATZ) and zirconia toughened alumina (ZTA) when used in mixed bearing combinations, under edge loading conditions due to translational mal-positioning. The head-on-cup configurations of three ceramic materials were ATZ-on-ZTA, ZTA-on-ATZ, Al O -on-ATZ, ATZ-on-Al O , Al O -on-ZTA, and ZTA-on-Al O . They were tested on the Leeds II hip simulator under microseparation conditions. The bedding in and steady state wear rates of ATZ-on-ZTA were 1.16mm /million cycles and 0.18mm /million, respectively, and for ATZ-on-Al O were 0.66 mm /million cycles and 0.20 mm /million, respectively. The wear rates of the other bearing combinations under these adverse microseparation conditions, Al O -on-ATZ, Al O -on-ZTA, ZTA-on-ATZ and ZTA-on-Al O were very low with no clear bedding in and steady state phases, and with steady state wear rates lower than 0.11 mm /million. The mixed material combinations tested in this study have shown slightly higher wear rates when compared to ATZ in like-on-like configuration reported previously, but superior wear resistance when compared to alumina-on-alumina bearings tested previously under the same adverse microseparation conditions. © 2016 The Authors Journal of Biomedical Materials Research Part B: Applied Biomaterials Published by Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 105B: 1361-1368, 2017.
当陶瓷复合材料用于相同材料的股骨头和髋臼杯的同类配置时,在不利的边缘加载条件下表现良好。本研究的目的是确定纯氧化铝(Al₂O₃)、氧化铝增韧氧化锆(ATZ)和氧化锆增韧氧化铝(ZTA)在混合轴承组合中使用时,在平移位置不当导致的边缘加载条件下的磨损情况。三种陶瓷材料的头对杯配置为ATZ对ZTA、ZTA对ATZ、Al₂O₃对ATZ、ATZ对Al₂O₃、Al₂O₃对ZTA和ZTA对Al₂O₃。它们在利兹II型髋关节模拟器上进行微分离条件下的测试。ATZ对ZTA的磨合和稳态磨损率分别为1.16mm/百万次循环和0.18mm/百万次循环,ATZ对Al₂O₃的磨合和稳态磨损率分别为0.66mm/百万次循环和0.20mm/百万次循环。在这些不利的微分离条件下,其他轴承组合Al₂O₃对ATZ、Al₂O₃对ZTA、ZTA对ATZ和ZTA对Al₂O₃的磨损率非常低,没有明显的磨合和稳态阶段,稳态磨损率低于0.11mm/百万次循环。与先前报道的同类配置中的ATZ相比,本研究中测试的混合材料组合的磨损率略高,但与先前在相同不利微分离条件下测试的氧化铝对氧化铝轴承相比,耐磨性更好。©2016作者《生物医学材料研究杂志》B部分:应用生物材料由威利期刊公司出版。《生物医学材料研究杂志》B部分:应用生物材料,105B:1361 - 1368,2017。