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METHOD OF MANUFACTURING MICRO-NANOSTRUCTURED POROUS LAYER ON TITANIUM IMPLANT SURFACE

机译:在钛合金植入表面上制备微纳米多孔层的方法

摘要

FIELD: technological processes.;SUBSTANCE: invention relates to the manufacture of micro-nanoscale porous structures on the surface of products made of titanium or its alloys. Method of manufacturing a micro-nanostructured porous layer on the surface of an intraosseous implant consists in the preliminary preparation of the surface of the base of the implant, made of titanium, including mechanical polishing of the titanium base and surface cleaning. In this case, the surface of titanium implants is additionally treated in atmospheric air by line-by-line scanning beam of a pulsed fiber laser with a radiation wavelength of 1.064 mcm, an output power of 10–20 W, with a pulse repetition rate of 20–40 kHz, a maximum pulse energy of 1.0–3.0 mJ and a scanning speed of 100–200 mm/s, with a conditional size of a laser spot on the treated surface of 10–15 mcm and a line spacing of 10–20 mcm, then the surface of the implant is subjected to chemical etching in an electrolyte solution of 500 ml of HCl (density 1.19 g/ml); 500 ml H2O; 170 g/l NH4F*HF at room temperature 25–30 °C aged 2–3 min, followed by washing in water and aging for 30–40 min in HNO3 solution (400 g/l) at a temperature of 55–60 °C followed by washing in water, after which annealing is finally carried out in a furnace at a temperature of 400–550 °C in a vacuum.;EFFECT: invention provides a structure of biocompatible (bioinert) micro-nanocoatings on implants, increasing the wettability and suction capacity of implants.;1 cl, 2 dwg, 1 ex
机译:技术领域本发明涉及在钛或其合金制成的产品的表面上制造微纳米级多孔结构的方法。在骨内植入物的表面上制造微纳米结构的多孔层的方法包括对由钛制成的植入物的基底的表面进行初步准备,包括对钛基底的机械抛光和表面清洁。在这种情况下,在大气中通过脉冲光纤激光器的逐行扫描光束对钛植入物的表面进行额外处理,脉冲光纤激光器的辐射波长为1.064 mcm,输出功率为10-20 W,脉冲重复频率为范围为20–40 kHz,最大脉冲能量为1.0–3.0 mJ,扫描速度为100–200 mm / s,条件是处理过的表面上的激光光斑的条件大小为10–15 mcm,行间距为10 –20 mcm,然后在500 ml HCl(密度1.19 g / ml)的电解液中对植入物的表面进行化学蚀刻; 500毫升H 2 O; 170 g / l NH 4 F * HF在25–30°C室温下老化2–3分钟,然后在水中洗涤并在HNO 3中老化30–40分钟

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