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Fretting properties of biodegradable Mg-Nd-Zn-Zr alloy in air and in Hank’s solution

机译:可生物降解的Mg-Nd-Zn-Zr合金在空气和Hank溶液中的微动特性

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摘要

Fretting is a significant cause for the failure of orthopedic implants. Currently, since magnesium and its alloys have been developed as promising biodegradable implant materials, the fretting behavior of the Mg alloys is of great research significance. In this study, a Mg-Nd-Zn-Zr alloy (hereafter, denoted as JDBM alloy) was selected as experimental material, and its fretting behaviors were evaluated under 5 N, 10 N and 20 N normal loads with a displacement of 200 μm under the frequency of 10 Hz at 37 °C in air and in Hank’s solution, respectively. The results indicated that while the friction coefficient decreased with the increment of the normal load, the wear volume of the alloy increased with the increment of the normal load both in air and in Hank’s solution. Both the friction coefficients and the wear volume of the fretting in Hank’s solution were much lower than those in air environment. The evolution trend of friction coefficients with time had different performance in air environment and the Hank’s solution group. Although oxidation occurred during the fretting tests in Hank’s solution, the damage of JDBM alloy was still reduced due to the lubrication effects of Hank’s solution. Moreover, the addition of Fetal bovine serum (FBS) could act as lubrication and result in the reduction of the fretting damage.
机译:微动磨损是造成整形外科植入物失败的重要原因。当前,由于镁及其合金已被开发为有前途的可生物降解的植入材料,因此镁合金的微动行为具有重要的研究意义。在本研究中,以Mg-Nd-Zn-Zr合金(以下简称JDBM合金)为实验材料,并在5 N,10 N和20 N法向载荷,位移为200μm的情况下评估了微动行为。在37°C的空气中和在Hank溶液中分别在10°Hz的频率下工作。结果表明,在空气和汉克溶液中,尽管摩擦系数随正载荷的增加而减小,但合金的磨损量随正载荷的增加而增大。 Hank解决方案中的微动摩擦系数和磨损量均远低于空气环境中的摩擦系数和磨损量。摩擦系数随时间的变化趋势在空气环境和汉克的解决方案组中具有不同的表现。尽管在Hank溶液的微动试验中发生了氧化,但是由于Hank溶液的润滑作用,JDBM合金的损坏仍然减少了。此外,添加胎牛血清(FBS)可以起到润滑作用,并减少微动损伤。

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