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Effects of age and loading rate on equine cortical bone failure.

机译:年龄和负荷率对马皮质骨衰竭的影响。

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摘要

Although clinical bone fractures occur predominantly under impact loading (as occurs during sporting accidents, falls, high-speed impacts or other catastrophic events), experimentally validated studies on the dynamic fracture behavior of bone, at the loading rates associated with such events, remain limited. In this study, a series of tests were performed on femoral specimens obtained post-mortem from equine donors ranging in age from 6 months to 28 years. Fracture toughness and compressive tests were performed under both quasi-static and dynamic loading conditions in order to determine the effects of loading rate and age on the mechanical behavior of the cortical bone. Fracture toughness experiments were performed using a four-point bending geometry on single and double-notch specimens in order to measure fracture toughness, as well as observe differences in crack initiation between dynamic and quasi-static experiments. Compressive properties were measured on bone loaded parallel and transverse to the osteonal growth direction. Fracture propagation was then analyzed using scanning electron and scanning confocal microscopy to observe the effects of microstructural toughening mechanisms at different strain rates. Specimens from each horse were also analyzed for dry, wet and mineral densities, as well as weight percent mineral, in order to investigate possible influences of composition on mechanical behavior. Results indicate that bone has a higher compressive strength, but lower fracture toughness when tested dynamically as compared to quasi-static experiments. Fracture toughness also tends to decrease with age when measured quasi-statically, but shows little change with age under dynamic loading conditions, where brittle "cleavage-like" fracture behavior dominates.
机译:尽管临床骨折主要在冲击载荷下发生(如在运动事故,跌倒,高速冲击或其他灾难性事件期间发生),但在与此类事件相关的载荷率下,有关骨骼动态骨折行为的实验验证研究仍然有限。在这项研究中,对从年龄6个月至28岁的马捐献者进行的验尸获得的股骨标本进行了一系列测试。为了确定加载速率和年龄对皮质骨力学行为的影响,在准静态和动态加载条件下均进行了断裂韧性和抗压测试。断裂韧性实验是在单缺口和双缺口试样上使用四点弯曲几何形状进行的,目的是测量断裂韧度,并观察动态和准静态实验在裂纹萌生方面的差异。在平行于骨生长方向和垂直于骨生长方向的骨骼上测量抗压特性。然后使用扫描电子和扫描共聚焦显微镜分析断裂扩展,以观察在不同应变速率下显微组织增韧机理的影响。为了研究成分对机械性能的可能影响,还分析了每匹马的标本的干,湿和矿物质密度以及矿物质的重量百分比。结果表明,与准静态实验相比,动态测试时,骨骼具有较高的抗压强度,但断裂韧性较低。当准静态地测量时,断裂韧性也随着年龄而降低,但是在动态载荷条件下,脆性“断裂样”断裂行为占主导,断裂韧性几乎不随年龄变化。

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