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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Investigation of mechanical properties and biocorrosion behavior of in situ and ex situ Mg composite for orthopedic implants
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Investigation of mechanical properties and biocorrosion behavior of in situ and ex situ Mg composite for orthopedic implants

机译:原位和原位Mg复合材料对矫形性植入物的力学性能和生物腐蚀性能研究

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摘要

In the present study, the biocorrosion and mechanical properties of in situ and ex situ ZK60 matrix composites were investigated. For this purpose, ex situ composite samples containing 10 and 20 vol% SiC particles were prepared by stir casting method, while the in situ composite samples were produced by precipitation hardening at 175 degrees C and 225 degrees C. Microstructural examinations confirmed the homogeneous distribution of reinforcements and precipitations for ex situ and in situ composites, respectively. Moreover, the ex situ composites had higher hardness than the in situ composites due to the presence of ceramic particles. The samples were subjected to potentiodynamic polarization and electrochemical impedance spectroscopy in the SBF solution. The results showed that ex situ composites had a higher corrosion rate than in situ composites. The results of the MTT assay displayed that all samples had acceptable biocompatibility. Additionally, SEM micrographs obtained after immersion of both composites in the SBF solution for 7 and 28 days showed the formation of the hydroxyapatite layer on the surface of the samples. Both composites showed almost excellent wear resistance, and SEM micrographs approved that abrasive wear and adhesive wear were the dominant mechanisms for ex situ and in situ composites, respectively.
机译:在本研究中,研究了原位和出原位ZK60基复合材料的生物腐蚀性和机械性能。为此目的,通过搅拌铸造方法制备含有10和20体积%SiC颗粒的Ex原位复合样品,而在175℃和225℃下沉淀硬化制备原位复合样品。微观结构检查证实了均匀分布分别加强和原位复合材料的增强和沉淀。此外,由于存在陶瓷颗粒,Ex原位复合材料具有比原位复合材料更高的硬度。将样品在SBF溶液中进行电量偏振和电化学阻抗光谱。结果表明,EX原位复合材料具有比原位复合材料更高的腐蚀速率。 MTT测定的结果显示,所有样品都具有可接受的生物相容性。另外,在SBF溶液中浸入SBF溶液中的两种复合材料7和28天之后获得的SEM显微照片显示在样品表面上形成羟基磷灰石层。两种复合材料都显示出几乎优异的耐磨性,SEM显微照片批准,磨料磨损和粘合剂磨损分别是出于原位和原位复合材料的主导机制。

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