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Cyclic delamination behavior of plasma-sprayed hydroxyapatite coating on Ti-6Al-4V substrates in simulated body fluid

机译:Ti-6Al-4V基体上等离子喷涂羟基磷灰石涂层在模拟体液中的循环分层行为

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摘要

This study aimed to clarify the effect of a simulated body fluid (SBF) on the cyclic delamination behavior of a plasma-sprayed hydroxapatite (HAp) coating. A HAp coating is deposited on the surfaces of surgical metallic materials in order to enhance the bond between human bone and such surfaces. However, the HAp coating is susceptible to delamination by cyclic loading from the patient's gait Although hip joints are subjected to both positive and negative moments, only the effects of tensile bending stresses on vertical crack propagation behavior have been investigated. Thus, the cyclic delamination behavior of a HAp coating was observed at the stress ratio R = -1 in order to determine the effects of tensile/compressive loading on the delamination behavior. The delamination growth rate increased with SBF immersion, which decreased the delamination life. Raman spectroscopy analysis revealed that the selective phase dissolution in the HAp coating was promoted at interfaces. Finite element analysis revealed that the energy release rate G_(max) showed a positive value even in cases with compressive loading, which is a driving force for the delamination of a HAp coating. A prediction model for the delamination growth life was developed that combines a fracture mechanics parameter with the assumed stress-dependent dissolution rate. The predicted delamination life matched the experimental data well in cases of lower stress amplitudes with SBF.
机译:这项研究旨在阐明模拟体液(SBF)对等离子喷涂羟基磷灰石(HAp)涂层循环分层行为的影响。 HAp涂层沉积在外科金属材料的表面上,以增强人骨与此类表面之间的结合力。然而,HAp涂层很容易受到来自患者步态的周期性载荷的分层作用。尽管髋关节同时受到正向和负向力矩的影响,但仅研究了拉伸弯曲应力对垂直裂纹扩展行为的影响。因此,在应力比R = -1时观察到了HAp涂层的循环分层行为,以确定拉伸/压缩载荷对分层行为的影响。随着SBF的浸入,层离生长速率增加,这会降低层离寿命。拉曼光谱分析表明,HAp涂层中的选择性相溶解在界面处得到促进。有限元分析表明,即使在压缩载荷的情况下,能量释放速率G_(max)也显示正值,这是HAp涂层分层的驱动力。建立了分层增长寿命的预测模型,该模型将断裂力学参数与假定的应力相关溶出速率结合在一起。在使用SBF降低应力幅度的情况下,预测的分层寿命与实验数据非常吻合。

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