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Trunnion-Head Stresses in THA: Are Big Heads Trouble?

机译:THA中的耳轴式头疼:大头疼吗?

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The effects of large heads on stresses at the THA trunnion-head junction and their impact on tribocorrosion/metal ion release remain controversial. A 12/14 3D-model of a stem with different head sizes was investigated. Material properties of titanium were assigned to the trunnion and cobalt-chrome/alumina to the heads. A load simulating walking single-leg stand phase was applied to the head. A total contact head-trunnion interface was assumed. The area underneath the junction underwent significant elevations in stresses as head size increased from 28- to 40-mm. Maximum principal stress doubled between 28 and 40-mm heads, regardless of headmaterial. Stress levels had a direct correlation to head diameter. Stress increases observed using increasingly larger heads will probably contribute to head-trunnion tribocorrosion and ion release. (C) 2015 Elsevier Inc. All rights reserved.
机译:大头对THA耳轴-头接合处应力的影响及其对摩擦腐蚀/金属离子释放的影响仍然存在争议。研究了具有不同头部尺寸的茎的12/14 3D模型。钛的材料性能分配给耳轴,钴铬/氧化铝分配给磁头。一个模拟步行单腿站立阶段的负荷应用于头部。假定总接触头-耳轴接口。随着头部尺寸从28毫米增加到40毫米,接合处下方的区域应力明显升高。无论头部材料如何,最大主应力在28至40毫米的头部之间都增加了一倍。压力水平与头部直径直接相关。使用越来越大的喷头观察到的应力增加可能会导致喷头耳轴摩擦腐蚀和离子释放。 (C)2015 Elsevier Inc.保留所有权利。

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