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疲劳对矫形接骨板弯曲的影响。

Fatigue implications for bending orthopaedic plates.

机构信息

Surgical and Orthopaedic Research Laboratories (SORL), School of Clinical Sciences, Faculty of Medicine, UNSW Sydney, Level 1 Clinical Sciences Building, Prince of Wales Hospital, Gate 6 Avoca Street, Randwick, New South Wales (NSW), 2031, Australia.

Surgical and Orthopaedic Research Laboratories (SORL), School of Clinical Sciences, Faculty of Medicine, UNSW Sydney, Level 1 Clinical Sciences Building, Prince of Wales Hospital, Gate 6 Avoca Street, Randwick, New South Wales (NSW), 2031, Australia; Sydney Veterinary Emergency and Specialists, Rosebery, New South Wales (NSW), 2018, Australia.

出版信息

Injury. 2021 Oct;52(10):2896-2902. doi: 10.1016/j.injury.2021.01.022. Epub 2021 Jan 17.

DOI:10.1016/j.injury.2021.01.022
PMID:33485637
Abstract

OBJECTIVES

  • We aimed to investigate how pre-bending affects the mechanical properties, specifically fatigue, of stainless-steel plates.

METHODS

  • 3.5mm LCP 10-hole plates were pre-bent in 1, 2 and 3 locations to the same overall degree and fatigue testing performed. Finite Element Analysis (FEA) was performed in Strand7 (version 2.4.6) to better understand the failure point of the plates in four-point bending.

RESULTS

  • Six different plate pre-bending conditions were tested for resistance to fatigue failure. Increasing the number of pre-bends improved the fatigue resistance with two pre-bends having a mean 509,304 cycles to failure and three pre-bends 491,378 cycles to failure. The region of highest stress and the point of fatigue failure were at the plate's minimum cross-sectional area, which was predicted by the FEA and confirmed with mechanical testing. For plates pre-bent in two locations, the fatigue failure always occurred in the screw hole not in between the positions of the two pre-bends. Non-linear FEA simulation confirmed that work hardening occurs around pre-bend locations, conferring increased fatigue resistance to the holes next to, or between, pre-bend locations.

CONCLUSIONS

We found that contrary to orthopaedic folklore, pre-bending of plates is not detrimental to fatigue resistance of the stainless-steel plates we tested. Pre-bending plates in a single plane increased the fatigue properties of the 10-hole stainless-steel plate tested.

摘要

目的

  • 我们旨在研究预弯曲如何影响不锈钢板的机械性能,特别是疲劳性能。

方法

  • 将 3.5mm LCP 10 孔板在 1、2 和 3 个位置预弯曲到相同的总程度,并进行疲劳测试。在 Strand7(版本 2.4.6)中进行有限元分析(FEA),以更好地理解四点弯曲中板的失效点。

结果

  • 测试了六种不同的板预弯曲条件以抵抗疲劳失效。增加预弯曲次数可提高疲劳阻力,两次预弯曲的平均失效循环次数为 509,304 次,三次预弯曲的失效循环次数为 491,378 次。最高应力区域和疲劳失效点位于板的最小横截面区域,这是通过 FEA 预测的,并通过机械测试得到证实。对于在两个位置预弯曲的板,疲劳失效总是发生在螺孔中,而不是在两个预弯曲位置之间。非线性 FEA 模拟证实,在预弯曲位置周围发生了加工硬化,从而使靠近或在预弯曲位置之间的孔具有更高的疲劳阻力。

结论

  • 我们发现,与矫形科的传统观念相反,预弯曲不会对我们测试的不锈钢板的疲劳阻力产生不利影响。在单个平面上预弯曲板可提高测试的 10 孔不锈钢板的疲劳性能。

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