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Effects of bath composition and processing conditions on the microstructure and mechanical properties of coatings developed on 316 LVM by hot dipping in melted AlSi alloys

机译:熔池组成和工艺条件对热熔浸入AlSi合金中316 LVM上形成的涂层的组织和力学性能的影响

摘要

Austenitic stainless steel 316 LVM (Low Vacuum Melting) is typically used in biomedical applications. However, its biocompatibility has always been in controversy since the passive film developed on the surface can release metallic ions (Ni2+, Cr3+ and Cr6+), which may cause local systemic effects into the human body and therefore, the premature failure of implant as result of inflammatory reactions. This is one of the driving forces to design new coatings with enhanced biocompatibility and bioactivity. The goal of this work is to develop novel intermetallic coatings grown on the 316 LVM steel by hot dipping in melted AlSi alloys. The Si content of the bath and the processing conditions have been found to be fundamental to control the morphology, microstructure and mechanical properties of the coatings. Nature of the coating consist of a mixture of intermetallic Al3FeSi2 + Al17.5Fe4Si1.5 phases and Al 3FeSi2 + (Si,Al)2Cr for the Al-12Si and Al-25Si baths, respectively. Interestingly, the coatings are Ni-free and exhibit an elevated hardness (∼6 GPa) and lower Young's modulus (∼160 and ∼170 GPa, respectively) than stainless steel (∼210 GPa). These mechanical properties result very useful to study the elastic-plastic transition through the plasticity index (PI), which correlates the hardness and Young's modulus with the elastic energy of these surfaces. These values are lower than the substrate and therefore, these intermetallic coatings may be considered good candidates for biomedical applications where surfaces with load transfer capacity higher than that of the stainless steel are needed. © 2014 Elsevier B.V. All rights reserved.
机译:奥氏体不锈钢316 LVM(低真空熔炼)通常用于生物医学应用。但是,其生物相容性一直存在争议,因为在表面形成的钝化膜会释放金属离子(Ni2 +,Cr3 +和Cr6 +),这可能对人体造成局部系统性作用,因此,植入物会因炎症反应。这是设计具有增强的生物相容性和生物活性的新型涂料的动力之一。这项工作的目标是通过热浸入熔化的AlSi合金来开发在316 LVM钢上生长的新型金属间涂层。已经发现镀液中的硅含量和加工条件对于控制涂层的形貌,微观结构和机械性能至关重要。涂层的性质由金属间化合物Al3FeSi2 + Al17.5Fe4Si1.5相和分别用于Al-12Si和Al-25Si浴的Al 3FeSi2 +(Si,Al)2Cr的混合物组成。有趣的是,与不锈钢(〜210 GPa)相比,该涂层不含镍,并且具有更高的硬度(〜6 GPa)和更低的杨氏模量(分别〜160和〜170 GPa)。这些机械性能结果对于通过可塑性指数(PI)研究弹塑性转变非常有用,该指数将硬度和杨氏模量与这些表面的弹性能相关联。这些值低于基材,因此,这些金属间涂层可以被认为是生物医学应用的理想选择,在生物医学应用中,需要表面传递载荷能力高于不锈钢的表面。 ©2014 Elsevier B.V.保留所有权利。

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