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Structure and Adhesion of Hydroxyapatlte Films Electrochemically Deposited onto Titanium Substrates under Short-Pulse Current in Metastable Calcium Phosphate Solution

机译:在磷酸钙溶液中短脉冲电流下电化学沉积在钛基材上的羟基涂膜膜的结构和粘附性

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Hydroxyapatite (HA) films were deposited onto titanium (Ti) metal substrates by an electrodeposition method under a short-pulse current. Metastable calcium phosphate solution was used as the electrolyte. The ion concentration of the solution was 1.5 times that of human body fluid, but the solution did not contain magnesium ions at 36.5°C. We used an average current density of 0.01 A/cm2 and current-on time (Ton) equal to current-off time (Toff) of 10 ms, 100 ms, 1 s, and 15 s. The adhesive strength between HA and Ti substrates were relatively high at T_(on) = T_(off)=10 ms. It is considered that small calcium phosphate crystals with low crystallinity were deposited on the Ti surface without reacting with other calcium phosphate crystals, H_2O, and HCO_3~- in the surrounding environment. This resulted in relaxation of the lattice mismatch and enhancement of the adhesive strength between the HA crystals and Ti substrates.
机译:在短脉冲电流下,通过电沉积法将羟基磷灰石(HA)膜沉积在钛(Ti)金属基板上。亚稳磷酸钙溶液用作电解质。溶液的离子浓度为人体液的1.5倍,但溶液在36.5℃下含有镁离子。我们使用的平均电流密度为0.01a / cm2和电流接通时间(吨)等于10ms,100ms,1 s和15秒的耗电时间(toff)。 HA和Ti底物之间的粘合强度在T_(ON)= T_(OFF)= 10ms时相对较高。认为,在Ti表面上沉积具有低结晶度的小磷酸钙晶体,而不与其他磷酸钙晶体,H_2O和HCO_3〜 - 在周围环境中反应。这导致晶格失配,并提高了HA晶体和Ti基材之间的粘合强度。

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