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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Development of porous titanium for biomedical applications: A comparison between loose sintering and space-holder techniques
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Development of porous titanium for biomedical applications: A comparison between loose sintering and space-holder techniques

机译:用于生物医学应用的多孔钛的开发:松散烧结与空间保持器技术之间的比较

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摘要

One of the most important concerns in long-term prostheses is bone resorption as a result of the stress shielding due to stiffness mismatch between bone and implant. The aim of this study was to obtain porous titanium with stiffness values similar to that exhibited by cortical bone. Porous samples of commercial pure titanium grade-4 were obtained by following both loose-sintering processing and space-holder technique with NaCl between 40 and 70% in volume fraction. Both mechanical properties and porosity morphology were assessed. Young's modulus wasmeasured using uniaxial compression testing, as well as ultrasoundmethodology. Complete characterization and mechanical testing results allowed us to determine some important findings: (i) optimal parameters for both processing routes; (ii) better mechanical response was obtained by using space-holder technique; (iii) pore geometry of loose sintering samples becomes more regular with increasing sintering temperature; in the case of the space-holder technique that trend was observed for decreasing volume fraction; (iv) most reliable Young's modulus measurements were achieved by ultrasound technique.
机译:长期假体中最重要的问题之一是由于骨与植入物之间的刚度不匹配而导致的应力屏蔽导致骨吸收。这项研究的目的是获得具有与皮质骨相似的硬度值的多孔钛。通过以下两种方法获得了纯净的4级商品纯钛多孔样品:NaCl的体积分数在40%至70%之间。评估了机械性能和孔隙形态。杨氏模量使用单轴压缩测试以及超声方法进行测量。完整的特性描述和机械测试结果使我们能够确定一些重要发现:(i)两种加工路径的最佳参数; (ii)使用空间保持器技术可获得更好的机械响应; (iii)随着烧结温度的升高,疏松烧结样品的孔几何形状变得更加规则;在采用空间保持器技术的情况下,观察到了体积分数减小的趋势; (iv)最可靠的杨氏模量测量是通过超声技术实现的。

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