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Fabrication and Biocompatibility of Gradient Bioceramic Coatings on Titanium Alloy Substrate by Laser Cladding

机译:激光熔覆钛合金基质梯度生物陶瓷涂层的制备和生物相容性

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摘要

Based on a high power CO_2 laser beam passing by pyramid polygon mirror, the bioceramic coatings of gradient composition were fabricated on titanium alloy substrate (Ti-6Al-4V). The relations among laser processing parameters, microstructure and biocompatibility of the gradient bioceramic coatings were investigated. The results indicated that the contents of rare earth oxide additions had an immediate effect on the formation of bioactive phases. The gradient bioceramic coatings showed favorable biocompatibility in vivo after they were implanted into canine femur for 45, 90, and 180 days, respectively. The bioceramic coatings of Ca/P=1.4 and 0.6wt.% Y_2O_3 totally combined with new bones merely implanted for 45 days. Furthermore, the MTT (Methyl Thiazolyl Tetrazolium) colorimetry results of cell proliferation demonstrated that the cell growth distinctly increased on the gradient bioceramic coatings by laser cladding compared with the un-treated titanium alloy substrate.
机译:基于通过金字塔多边形镜的高功率CO_2激光束,在钛合金基质(Ti-6Al-4V)上制造梯度组合物的生物陶瓷涂层。研究了激光加工参数,微观结构和梯度生物陶瓷涂层的微观组相性的关系。结果表明,稀土氧化物添加的含量对生物活性相的形成立即产生。梯度生物陶瓷涂料分别在植入犬股骨中的45,90和180天内,体内有良好的生物相容性。 Ca / P = 1.4和0.6wt的生物陶瓷涂层。%Y_2O_3完全结合新骨骼,仅仅植入45天。此外,细胞增殖的MTT(甲基二唑基四唑鎓)比色法结果表明,与未处理的钛合金基质相比,通过激光包层在梯度生物陶瓷涂层上明显增加的细胞生长。

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