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Effects of solidification cooling rate on the corrosion resistance of a biodegradable beta-TCP/Mg-Zn-Ca composite

机译:凝固冷却速率对可生物降解β-TCP / MG-ZN-CA复合材料耐腐蚀性的影响

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摘要

Biodegradable beta-tricalcium phosphate (beta-TCP) particle reinforced magnesium metal matrix composites (Mg-MMC) have attracted increasing interest for application as implant materials. This investigation was conducted to study the effect of cooling rate on the microstructure and corrosion behavior of a biodegradable beta-TCP/Mg-Zn-Ca composite. The composite was fabricated under a series of cooling rates using a wedge-shaped casting mold. The microstructure of the composite was examined by optical and scanning electron microscopy, and the corrosion behavior was investigated using an electrochemical workstation and immersion tests in a simulated body fluid (SBF). Faster cooling rates were shown to refine the secondary phase and grain size, and produce a more homogenous microstructure. The refined microstructure resulted in a more uniform distribution of beta-TCP particles, which is believed to be beneficial in the formation of a stable and compact corrosion product layer, leading to improved corrosion resistance for the composite. (C) 2018 Elsevier B.V. All rights reserved.
机译:可生物降解的β-三钙(β-TCP)颗粒增强镁金属基质复合材料(Mg-MMC)吸引了应用于植入物材料的越来越低。进行该研究以研究冷却率对可生物降解的β-TCP / Mg-Zn-Ca复合材料的微观结构和腐蚀行为的影响。使用楔形铸造模具在一系列冷却速率下制造复合材料。通过光学和扫描电子显微镜检查复合材料的微观结构,并使用电化学工作站和浸入模拟体液(SBF)中的浸渍试验来研究腐蚀行为。显示更快的冷却速率来细化二次相和晶粒尺寸,并产生更均匀的微观结构。精细的微观结构导致β-TCP颗粒的更均匀分布,其被认为是有益的,形成稳定且紧凑的腐蚀产物层,导致复合材料的耐腐蚀性提高。 (c)2018 Elsevier B.v.保留所有权利。

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