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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Mechanical and structural characterization of tibial prosthetic interfaces before and after aging under simulated service conditions
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Mechanical and structural characterization of tibial prosthetic interfaces before and after aging under simulated service conditions

机译:模拟服务条件下老化前后胫骨假体界面的机械和结构特征

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Prosthesis interface is one of the most important components to promote individual's health and comfort, as it establishes direct contact with the skin and transfers loads generated during gait. The aim of this study was to mechanically characterize, three commercial interfaces (block copolymer, silicone gel and silicone elestomer), under static and dynamic conditions, before and after undergoing a process of chemical aging in synthetic sweat for periods up to 90 days. Static mechanical compression tests were performed on the materials, as well as fatigue tests to assess their static and dynamic mechanical behaviors, respectively. For the second, a sinusoidal load was applied with an appropriate range of deformation for each material. Several analytical techniques were also used to characterize the materials, namely Fourier Transform Infrared Spectroscopy (FTIR), X-ray diffraction (XRD), and morphology characterization by Scanning Electron Microscopy (SEM). All the tested materials have strong viscoelastic behavior, showing a linear response for small deformations, followed by a nonlinear behavior for higher deformation. The block copolymer and the silicone gel are affected by aging in synthetic sweat in a similar way, with a significant increase of their rigidity after 30 days, followed by a progressive reduction. The silicone elastomer displays a continuous increase of rigidity along the 90 days of storage, being the most sensitive to aging affects. It also exhibits the lowest stiffness value, being suitable for uses that require maximum comfort. All materials demonstrate chemical and structural stability under service simulated conditions. (C) 2014 Elsevier Ltd. All rights reserved.
机译:假肢界面是促进个人健康和舒适的最重要的组件之一,因为它树立与皮肤直接接触并转移在步态期间产生的负荷。本研究的目的是在静态和动态条件下机械表征三种商业界面(嵌段共聚物,硅胶凝胶和硅氧烷电池),在经历合成汗液中的化学老化过程之前和之后,期间最多90天。对材料进行静态机械压缩试验,以及疲劳试验,分别评估其静态和动态的机械行为。对于第二,对每个材料的适当变形范围施加正弦载荷。几种分析技术也用于表征材料,即傅里叶变换红外光谱(FTIR),X射线衍射(XRD),扫描电子显微镜(SEM)的形态学表征。所有测试材料具有强大的粘弹性行为,显示出小变形的线性响应,然后是较高变形的非线性行为。嵌段共聚物和硅氧烷凝胶受合成汗液以类似的方式造成的影响,其在30天后的刚性显着增加,然后进行逐渐减少。硅氧烷弹性体显示沿90天储存的刚性连续增加,是对老化影响最敏感的影响。它还表现出最低的刚度值,适用于需要最大舒适度的用途。所有材料在使用模拟条件下证明了化学和结构稳定性。 (c)2014年elestvier有限公司保留所有权利。

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