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首页> 外文期刊>Journal of orthopaedic research >The onset of fretting at the head‐stem connection in hip arthroplasty is affected by head material and trunnion design under simulated corrosion conditions
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The onset of fretting at the head‐stem connection in hip arthroplasty is affected by head material and trunnion design under simulated corrosion conditions

机译:在髋关节置换术中的头部干燥连接处发出的发作受到模拟腐蚀条件下的头部材料和耳轴设计的影响

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ABSTRACT Mechanically assisted crevice corrosion (MACC) is a mechanism for trunnion damage in total hip arthroplasties (THAs). Retrieval studies have shown reduced MACC‐related damage for ceramic heads compared with cobalt–chromium (CoCr) heads. We propose that ceramic heads demonstrate fretting at higher cyclic compressive loads than CoCr heads on titanium alloy trunnions in a simulated corrosion model. A closed electrochemical chamber was used to measure fretting current onset loads for two modern titanium alloy trunnions (Zimmer 12/14 and Stryker V‐40) in which trunnion failure has been reported. Ceramic and CoCr alloy 36?+?0?mm heads were impacted on each trunnion and cyclically loaded at 3?Hz with increasing magnitude from 100 to 3,400?N for 540 cycles. Onset load was the cyclic compressive load at which the slope of the average fretting current increased significantly. A CoCr head with V40 trunnion demonstrated the lowest onset load (1,400?N), while the V40 trunnion with a ceramic head showed the highest onset load (2,200?N). Significant differences occurred in average fretting current between head materials for V40 trunnions ( p? ?0.001) at loads over 2,000?N. CoCr‐12/14 and ceramic‐12/14 couples demonstrated similar onset loads (2,000?N). All head–trunnion combinations showed cyclical fretting response to loading at 100?N. Head material composition was observed to increase fretting at the taper junction but the effect was taper geometry dependent. Using ceramic heads may reduce the phenomena of trunnion fretting and corrosion but the effect of both trunnion geometry and metallurgy warrants further investigation. Statement of clinical significance: Trunnion corrosion may occur with titanium alloy stems regardless of the head material used. ? 2017 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 36:1630–1636, 2018.
机译:摘要机械辅助缝隙腐蚀(MACC)是髋关节关节塑料(THAS)中耳膜损伤的机制。与钴 - 铬(COCR)头相比,检索研究表明陶瓷头的MACC相关损伤。我们提出,陶瓷头在模拟腐蚀模型中展示比钛合金耳机上的COCR头更高的循环压缩载荷。闭合电化学室用于测量用于两个现代钛合金耳状物(Zimmer 12/14和Stryker V-40)的烦恼电流发作载荷,其中报告了耳脉衰竭。陶瓷和COOL合金36?+ 0?mm头部受到每个耳轴的影响,并在3℃下循环加载,随着540次循环的增加。起始载荷是循环压缩载荷,在该循环压缩载体上,平均微动电流的斜率显着增加。具有v40耳轴的COCR头显示出至少发病载荷(1,400ΩN),而带有陶瓷头的V40耳轴显示出最初的发病载荷(2,200?n)。在超过2,000Ω·0μl的负载下,在v40耳段的头部材料之间的平均微动电流(p≤0.001)之间发生显着差异。 COCR-12/14和陶瓷-12 / 14夫妻展示了类似的起始载荷(2,000?N)。所有头部耳轴组合都显示出循环微动反应在100?n时加载。观察到头部材料组合物以增加锥形结的微动,但效果是渐近的几何形状。使用陶瓷头可以减少耳轴烦恼和腐蚀的现象,但耳轴几何和冶金术的效果进一步调查。临床意义陈述:钛合金茎可能发生耳轴腐蚀,无论使用的头部材料如何。还2017年骨科研究会。由Wiley期刊出版,Inc。J Orthop Res 36:1630-1636,2018。

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