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首页> 外文期刊>Hemijska industrija >Cracking caused by cutting of plasma-sprayed hydroxyapatite coatings and its relation to the structural features of coatings deposited at different initial substrate temperatures
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Cracking caused by cutting of plasma-sprayed hydroxyapatite coatings and its relation to the structural features of coatings deposited at different initial substrate temperatures

机译:切割等离子喷涂羟基磷灰石涂层引起的开裂及其与在不同初始基材温度下沉积的涂层结构特征的关系

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摘要

The present study estimated the cracking phenomenon in as-plasma-sprayed hydroxylapatite coatings (HACs) after they were being subjected to the severe cutting conditions in the direction perpendicular to the coating/substrate interface. In order to evaluate the effects of substrate preheating on the occurrence of micro-cracks, the HACs were deposited at different initial substrate temperatures (TS = 20, 100 and 200°C). The changes in phase composition and HA splat morphology with TS were observed and were correlated with the cracking occurrence. The results showed that severe cutting conditions introduced a localized cracking in the regions of HACs dominantly attributed to the brittle hydroxyl-deficient amorphous calcium phosphate (ACP) phase. This effect was particularly observable in the HACs deposited without preheating of substrate. On the other hand, the preheating of substrate reduced the presence of micro-cracks and caused insignificant changes in the average local phase composition. In HACs deposited with preheating of substrate, the HA splats (of which HACs are composed) were thinner and recrystallized HA regions seemed smaller in size and more evenly distributed. These results implied potentially important roles of the HA splat formation mechanism on the distribution of ACP and recrystallized HA regions in the as-plasma-sprayed HACs and the cracking resistance of HACs. [Project of the Serbian Ministry of Education, Science and Technological Development, Grant no. TR 34022].
机译:本研究估计了等离子喷涂的羟基磷灰石涂层(HAC)在垂直于涂层/基体界面的方向受到严格的切割条件后的开裂现象。为了评估基材预热对微裂纹发生的影响,在不同的初始基材温度(TS = 20、100和200°C)下沉积HAC。观察到TS的相组成和HA splat形态的变化,并与裂纹的发生有关。结果表明,严苛的切削条件在HACs区域中引入了局部裂纹,这主要归因于脆性的缺羟基的无定形磷酸钙(ACP)相。在没有预热基材的情况下沉积的HAC中,这种效果尤其明显。另一方面,基板的预热减少了微裂纹的出现,并导致平均局部相组成的微小变化。在预先加热基板的情况下沉积的HAC中,HA片(由HAC组成)较薄,重结晶的HA区域似乎较小,分布更均匀。这些结果暗示了HA飞溅形成机理对等离子喷涂HAC中ACP的分布和重结晶HA区域以及HAC的抗裂性具有潜在的重要作用。 [塞尔维亚教育,科学和技术发展部的项目,赠款TR 34022]。

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