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Influence of residual stress on bonding strength of the plasma-sprayed hydroxyapatite coating after the vacuum heat treatment

机译:真空热处理后残余应力对等离子喷涂羟基磷灰石涂层结合强度的影响

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Plasma-sprayed HACs with a fair amount of impurity phases and amorphous calcium phosphate will induce the dissolution and the dissociation for a period of implantation. Besides, the Compressive residual stress in the coating would promote the tendency of plasma-sprayed coating to de-bond. For the biological stability, a significant crystallization and stress release of plasma-sprayed HACs with an appropriate post vacuum heating treatment is an effective method. According to the experimental results, post vacuum heating treatment could improve the cohesive strength of HACs by sintering and re-crystallizing. Meanwhile, the heat treatment also releases the compressive residual stress and replaced by the tensile stress. Hence, the HAC shows the highest bonding strength value when heating up to 600 degrees C. Then, the heating temperature higher than 600 degrees C led to the deterioration of the bonding strength of HA/Ti-substrate. This could be contributed to the reverse compressive residual stress in HAC. With regard to the variation of stress state in HACs might due to the various thermal expansion coefficients, which as a result of the crystallization during vacuum heating and the volume contraction of HACs. These will be discussed in detail. (C) 2007 Published by Elsevier B.V.
机译:等离子喷涂的HAC具有大量的杂质相和无定形磷酸钙,将在植入期间诱导其溶解和解离。此外,涂层中的压缩残余应力将促进等离子喷涂涂层剥离的趋势。对于生物稳定性,通过适当的真空后热处理,等离子体喷涂的HAC的大量结晶和应力释放是一种有效的方法。根据实验结果,真空后热处理可以通过烧结和重结晶来提高HAC的内聚强度。同时,热处理还释放了残余压缩应力,并由拉伸应力代替。因此,HAC在加热至600℃时显示出最高的结合强度值。然后,高于600℃的加热温度导致HA / Ti基板的结合强度劣化。这可能会导致HAC中的反向压缩残余应力。关于HAC中应力状态的变化可能是由于各种热膨胀系数引起的,这是真空加热过程中的结晶和HAC的体积收缩的结果。这些将详细讨论。 (C)2007由Elsevier B.V.发布

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