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首页> 外文期刊>Journal of Thermal Spray Technology >Mechanical Properties and Dissolution Behavior of Plasma Sprayed Wollastonite Coatings Deposited at Different Substrate Temperatures
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Mechanical Properties and Dissolution Behavior of Plasma Sprayed Wollastonite Coatings Deposited at Different Substrate Temperatures

机译:在不同基底温度下沉积的等离子喷涂硅灰石涂层的力学性能和溶解行为

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摘要

The effect of substrate temperature on the microstructure, mechanical properties and dissolution behavior of wollastonite coatings is investigated. The crystallinity of as-deposited coatings increases with increasing substrate temperature, whereas the porosity shows only a little variable tendency. The Knoop hardness and elastic modulus increase with the substrate temperature up to 400℃ firstly, and then a decrement is observed with the temperature further increasing to 600℃. The dissolution rate characterized by the pH changes and the ion concentration changes of Ca, Si and P in SBF decreases with the increase in the substrate temperature. It can be concluded that increasing the substrate temperature is a feasible method to improve the mechanical properties and to decrease the dissolution rate of woll-astonite coatings. However, the bioactivity of coatings deposited on preheated substrates is superior to those on non-preheated ones, which presumably results from their different phase compositions.
机译:研究了基材温度对硅灰石涂层的微观结构,力学性能和溶解行为的影响。沉积涂层的结晶度随基材温度的升高而增加,而孔隙率仅显示出很小的变化趋势。努氏硬度和弹性模量首先随着基底温度升高到400℃而增加,然后随着温度进一步升高到600℃而降低。随着底物温度的升高,pH值变化以及SBF中Ca,Si和P的离子浓度变化所表征的溶解速率降低。可以得出结论,提高基材温度是改善机械性能并降低硅灰石涂层的溶解速率的可行方法。但是,沉积在预热基材上的涂层的生物活性优于未预热基材上的涂层,这可能是由于它们的不同相组成所致。

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