Effect of substrate preheating temperature and coating thickness on residual stress in plasma sprayed hydroxyapatite coating

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Abstract

A thermal-mechanical coupling model was developed based on thermal-elastic- plastic theory according the special process of plasma spraying Hydroxyapatite (HA) coating upon Ti-6Al-4V substrate. On the one hand, the classical Fourier transient heat conduction equation was modified by introducing the effect item of deformation on temperature, on the other hand, the Johnson-Cook model, suitable for high temperature and high strain rate conditions, was used as constitutive equation after considering temperature softening effect, strain hardening effect and strain rate reinforcement effect. Based on the above coupling model, the residual stress field within the HA coating was simulated by using finite element method (FEM). Meanwhile, the substrate preheating temperature and coating thickness on the influence of residual stress components were calculated, respectively. The failure modes of coating were also preliminary analyzed. In addition, in order to verify the reliability of calculation, the material removal measurement technique was applied to determine the residual stress of HA coating near the interface. Some important conclusions are obtained.

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APA

Tang, D. (2015). Effect of substrate preheating temperature and coating thickness on residual stress in plasma sprayed hydroxyapatite coating. In IOP Conference Series: Materials Science and Engineering (Vol. 87). Institute of Physics Publishing. https://doi.org/10.1088/1757-899X/87/1/012097

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