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首页> 外文期刊>Acta biomaterialia >Femtosecond laser induced fixation of calcium alkali phosphate ceramics on titanium alloy bone implant material.
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Femtosecond laser induced fixation of calcium alkali phosphate ceramics on titanium alloy bone implant material.

机译:飞秒激光诱导的磷酸钙碱金属陶瓷在钛合金骨植入材料上的固定。

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摘要

Femtosecond lasers provide a novel method of attaching bioceramic material to a titanium alloy, thereby improving the quality of bone implants. The ultrashort 30 fs laser pulses (790 nm wavelength) penetrate a thin dip-coated layer of fine ceramic powder, while simultaneously melting a surface layer of the underlying metal. The specific adjustment of the laser parameters (pulse energy and number of pulses per spot) avoids unnecessary melting of the bioactive calcium phosphate, and permits a defined thin surface melting of the metal, which in turn is not heated throughout, and therefore maintains its mechanical stability. It is essential to choose laser energy densities that correspond to the interval between the ablation fluences of both materials involved: about 0.1-0.4 Jcm(-2). In this work, we present the first results of this unusual technique, including laser ablation studies, scanning electron microscopy and optical microscope images, combined with EDX data.
机译:飞秒激光提供了一种将生物陶瓷材料附着到钛合金上的新颖方法,从而提高了骨植入物的质量。 30fs的超短激光脉冲(790 nm波长)穿透了一层细陶瓷粉的浸涂涂层,同时熔化了底层金属的表面层。激光参数的特定调整(脉冲能量和每个点的脉冲数)避免了生物活性磷酸钙的不必要的熔化,并允许金属的定义的薄表面熔化,而金属又不会被加热,因此保持其机械性能稳定性。选择与所涉及的两种材料的消融能量密度之间的间隔相对应的激光能量密度至关重要:约0.1-0.4 Jcm(-2)。在这项工作中,我们介绍了这种不寻常技术的初步结果,包括激光烧蚀研究,扫描电子显微镜和光学显微镜图像以及EDX数据。

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