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Relationship of the Structure and the Effective Diffusion Properties of Porous Zinc- and Copper-Containing Calcium Phosphate Coatings

机译:含锌和铜的磷酸钙多孔涂层的结构与有效扩散性能的关系

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摘要

The morphology and the structure of zinc- or copper-containing calcium phosphate coatings deposited by the microarc oxidation (MAO) method at different voltages on pure titanium and low-modulus Ti-40 wt % Nb alloy substrates are investigated. The morphology of the MAO coatings on both substrates is composed of sphere-shaped structural elements 8–42 μm in size and pores 1–15 μm in size. When the process voltage is increased from 200 to 300 V, these structural elements grow and partially destruct. It is ascertained that the MAO voltage increase leads to the linear increase in the surface porosity of the coatings from 14 to 24%. It is established that the effective diffusion coefficients of the model biological fluid in porous coatings vary from 0.85 × 10_(–10)to 9.0 × 10_(–10)m_(2)/s. Under the increase in the structure element size, the effective diffusion coefficient of the model biological fluid increases in the MAO coatings deposited on a titanium substrate and decreases in those deposited on Ti-40 wt % Nb alloy. The observed difference is related to the increase in the crystalline phase fraction.
机译:研究了微弧氧化(MAO)法在不同电压下在纯钛和低模量Ti-40 wt%Nb合金基底上沉积的含锌或含铜磷酸钙涂层的形貌和结构。两种基材上的MAO涂层的形态均由大小为8–42μm的球形结构元素和大小为1–15μm的孔组成。当过程电压从200 V增加到300 V时,这些结构元素会增长并部分破坏。可以确定的是,MAO电压的增加导致涂层表面孔隙率从14%线性增加到24%。建立的模型生物流体在多孔涂层中的有效扩散系数在0.85×10 _(– 10)至9.0×10 _(– 10)m_(2)/ s之间变化。随着结构元素尺寸的增加,模型生物流体的有效扩散系数在沉积在钛基底上的MAO涂层中增加,而在沉积在Ti-40 wt%Nb合金上的那些中降低。观察到的差异与结晶相分数的增加有关。

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