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Complex Corrosion Properties of AISI 316L Steel Prepared by 3D Printing Technology for Possible Implant Applications

机译:通过3D打印技术制备的AISI 316L钢的复杂腐蚀性能可能用于植入物应用

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摘要

This paper deals with the investigation of complex corrosion properties of 3D printed AISI 316L steel and the influence of additional heat treatment on the resulting corrosion and mechanical parameters. There was an isotonic solution used for the simulation of the human body and a diluted sulfuric acid solution for the study of intergranular corrosion damage of the tested samples. There were significant microstructural changes found for each type of heat treatment at 650 and 1050 °C, which resulted in different corrosion properties of the tested samples. There were changes of corrosion potential, corrosion rate and polarization resistance found by the potentiodynamic polarization method. With regard to these results, the most appropriate heat treatment can be applied to applications with intended use in medicine.
机译:本文研究了3D打印AISI 316L钢的复杂腐蚀性能以及附加热处理对所得腐蚀和机械参数的影响。有用于人体模拟的等渗溶液和用于研究测试样品的晶间腐蚀损伤的稀硫酸溶液。在650和1050°C的每种热处理下,都有明显的微观结构变化,这导致测试样品的腐蚀性能不同。电位动力极化法发现了腐蚀电位,腐蚀速率和极化电阻的变化。关于这些结果,最合适的热处理可以应用于打算在医学上使用的应用。

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