首页> 外文会议>Symposium on metal-on-metal total hip replacement devices >Development of a Stop-Dwell-Start (SDS) Protocol for In Vitro Wear Testing of Metal-on-Metal Total Hip Replacements
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Development of a Stop-Dwell-Start (SDS) Protocol for In Vitro Wear Testing of Metal-on-Metal Total Hip Replacements

机译:开发用于在金属上的金属总髋关节替换的体外磨损测试的停止 - 停留开始(SDS)方案

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The effect of stop-start motion on the wear of metal-on-metal (MOM) bearings was Investigated. Thirty-six-millimeter MOM bearings were tested using a ProSim hip wear simulator. The test protocol was adapted from ISO 14242. The effect of different lengths of dwell periods and the effect of the number of steps between dwell periods were investigated. The standard ISO 14242 walking cycle was interrupted with dwell periods during which motion was held, and load was applied at 1250 N. Different dwell periods of 5, 30, and 60s were evaluated, with the dwell applied every 10 walking cycles. Under standard walking conditions, a mean wear rate of 0.11 ± 0.08 mm~3/motion cycle (mc) was recorded. When dwell periods of differing duration were introduced, no significant increases in wear were measured for any of the groups, with wear rates for the 5s, 30s, and 60s dwell groups of 0.15 ±0.15 mm~3/mc, 0.18 ±0.11 mm~3/mc, and 0.09 ±0.03 mm~3/mc, respectively. The effect of the number of walking cycles between dwells was also evaluated. A standard dwell period of 10 s was used and alternated with walking cycles; one test had two steps between dwell periods, and the other had a single step between dwell periods. Significant increases in wear were observed in both groups relative to standard walking conditions. The mean wear rate for the two-step test was 0.53 ±0.38 mm~3/mc, and it was 1.69 ± 0.33 mm~3/mc for the single-step test. This represents approximately 5-fold and 15-fold increases, respectively, in wear rate. These results indicate changes in bearing lubrication caused by the stop-start motion; however, the effect is limited to the first few cycles of walking after starting, and thus a shorter period of walking between pauses has a more pronounced effect. Further investigation of these parameters is necessary to determine the significance of these wear test methods.
机译:研究了止动运动对金属(MOM)轴承磨损的影响。使用PROSIM HIP磨损模拟器测试了36毫米的妈妈轴承。研究了试验方案从ISO 14242调整。研究了不同长度的停留周期和停留期间步骤数的效果的效果。标准ISO 14242步行循环被停留在该末期,在此期间保持运动,并且在1250n中施加负荷。在1250n中施加载荷。评估不同的居住期,并且储存每10个步行循环。在标准步行条件下,记录平均磨损率为0.11±0.08 mm〜3 /运动周期(MC)。当引入不同持续时间的停留期时,对任何组的任何基团没有测量磨损的显着增加,对于5S,30s和60s的耐磨速率为0.15±0.15mm〜3 / mc,0.18±0.11mm〜 3 / MC,分别为0.09±0.03 mm〜3 / mc。还评估了在居住之间的步行周期数的效果。使用10 s的标准停留时间和交替与步行循环交替;一个测试在停留期之间有两个步骤,另一个测试在停留期之间有一步。相对于标准步行条件,这两个群体都观察到磨损的显着增加。两步试验的平均磨损率为0.53±0.38mm〜3 / mc,为单步测试为1.69±0.33mm〜3 / mc。这两个磨损率分别表示大约5倍和15倍。这些结果表明止动运动引起的轴承润滑的变化;然而,效果仅限于开始后的前几个行走循环,因此暂停之间的较短行走时段具有更明显的效果。需要进一步调查这些参数,以确定这些磨损试验方法的重要性。

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