首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Biomechanical fatigue analysis of an advanced new carbon fiber/flax/epoxy plate for bone fracture repair using conventional fatigue tests and thermography
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Biomechanical fatigue analysis of an advanced new carbon fiber/flax/epoxy plate for bone fracture repair using conventional fatigue tests and thermography

机译:使用传统的疲劳测试和热成像技术对用于骨折修复的新型新型碳纤维/亚麻/环氧板进行生物力学疲劳分析

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The current study is part of an ongoing research program to develop an advanced new carbon fiber/flax/epoxy (CF/flax/epoxy) hybrid composite with a "sandwich structure" as a substitute for metallic materials for orthopedic long bone fracture plate applications. The purpose of this study was to assess the fatigue properties of this composite, since cyclic loading is one of the main types of loads carried by a femur fracture plate during normal daily activities. Conventional fatigue testing, thermographic analysis, and scanning electron microscopy (SEM) were used to analyze the damage progress that occurred during fatigue loading. Fatigue strength obtained using thermography analysis (51% of ultimate tensile strength) was confirmed using the conventional fatigue test (50-55% of ultimate tensile strength). The dynamic modulus (E*) was found to stay almost constant at 47 GPa versus the number of cycles, which can be related to the contribution of both flax/epoxy and CF/epoxy laminae to the stiffness of the composite. SEM images showed solid bonding at the CF/epoxy and flax/epoxy laminae, with a crack density of only 0.48% for the plate loaded for 2 million cycles. The current composite plate showed much higher fatigue strength than the main loads experienced by a typical patient during cyclic activities; thus, it may be a potential candidate for bone fracture plate applications. Moreover, the fatigue strength from thermographic analysis was the same as that obtained by the conventional fatigue tests, thus demonstrating its potential use as an alternate tool to rapidly evaluate fatigue strength of composite biomaterials. (C) 2014 Elsevier Ltd. All rights reserved.
机译:当前的研究是一项正在进行的研究计划的一部分,该计划的目的是开发一种具有“三明治结构”的先进的新型碳纤维/亚麻/环氧树脂(CF /亚麻/环氧树脂)混合复合材料,以替代整形外科长骨骨折板应用中的金属材料。这项研究的目的是评估这种复合材料的疲劳性能,因为在正常的日常活动中,循环荷载是股骨骨折板承受的主要荷载类型之一。常规的疲劳测试,热成像分析和扫描电子显微镜(SEM)用于分析疲劳加载过程中发生的损坏进度。使用常规疲劳试验(极限抗拉强度的50-55%)确认了通过热成像分析获得的疲劳强度(极限抗拉强度的51%)。发现动态模量(E *)相对于循环数几乎保持恒定在47 GPa,这可能与亚麻/环氧树脂和CF /环氧树脂薄片对复合材料的刚度的贡献有关。 SEM图像显示在CF /环氧树脂和亚麻/环氧薄片上的牢固结合,对于200万次加载的板,裂纹密度仅为0.48%。当前的复合板显示出比一般患者在周期性活动中承受的主要负荷高得多的疲劳强度。因此,它可能是骨折板应用的潜在候选者。此外,通过热成像分析得出的疲劳强度与通过常规疲劳测试获得的疲劳强度相同,因此证明了其潜在用途,可作为快速评估复合生物材料疲劳强度的替代工具。 (C)2014 Elsevier Ltd.保留所有权利。

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