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Ultrasound methods for determining the influence of yttrium in Mg-0.5Ca-xY

机译:用于确定Mg-0.5ca-xy中Yttrium影响的超声方法

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Biodegradable materials are used as alternative implants for orthopedic applications due suitable strength, fatigue resistance, ductility and biocorrosion resistance which are features for biodegradable implants. Mechanical properties can be improved by adding alloying elements. Mg alloys have been designed to meet the requirements of bone repair implant materials by adding Calcium and Yttrium. Usually Ca is added to control corrosion rate of Mg alloys and thinning grain boundaries. The system is defined as Mg-0.5Ca-xY (x=0.5, 1, 1.5), varying the Y concentration in order to slow the degradation process. Beside morphological characterization with SEM, EDX, noninvasive testing is required to be carried out the determination of mechanical characteristics. The paper presents the influence of Yttrium over elastic properties of these alloys in order to choose the best values appropriate with human bones, using Resonant Ultrasound Spectroscopy and ultrasound method.
机译:可生物降解的材料作为可生物降解的植入物的特征,可生物降解的材料作为适当的强度,疲劳性,延展性和生物腐蚀性抗性。通过加入合金元素可以改善机械性能。 MG合金旨在通过添加钙和钇来满足骨修复植入物材料的要求。通常加入Ca以控制Mg合金的腐蚀速率和薄晶界。该系统定义为Mg-0.5ca-xy(x = 0.5,1,1.5),改变Y浓度以减缓劣化过程。除了SEM,EDX的形态表征外,还需要进行非侵入性测试的测定机械特性。本文介绍了钇对这些合金的弹性性质的影响,以便使用谐振超声波光谱和超声法选择适合于适合的人体骨骼的最佳值。

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