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Effect of metallographic structure and machining process on the apatite-forming ability of sodium hydroxide- and heat-treated titanium

机译:金相组织和加工工艺对氢氧化钠和热处理钛的磷灰石形成能力的影响

摘要

Although titanium (Ti) is clinically used for hard tissue reconstruction, it has low bone-bonding ability, i.e. bioactivity. Materials able to deposit apatite on their surfaces within the body is considered to exhibit bioactivity. Effects of the metallographic structure and machining process of Ti on its apatite-forming ability remains unclear. In this study, Ti substrates subjected to various preheating and machining processes were then subjected to NaOH and heat treatments. The apatite-forming abilities of resulting Ti were examined in simulated body fluid (SBF). Preheating of the Ti decreased its reactivity with NaOH solution. When quenched or annealed Ti was subjected to NaOH and heat treatments, the induction period for apatite formation in SBF slightly increased. This was attributed to a decrease in sodium titanate and increase in rutile on the Ti surface after the treatments. Substrates subjected to wire-electrical-discharge machining did not form apatite. This was attributed to the inhibition of PO43− adsorption on their surfaces following Ca2+ adsorption, which is an essential process for apatite nucleation. Contamination of Ti surface by components of the brass wire used in the machining contributed to the inhibition. The bioactivity of surface-modified Ti was therefore significantly affected by its thermal treatment and machining process.
机译:尽管钛(Ti)在临床上用于硬组织重建,但其骨结合能力低,即具有生物活性。能够在体内的磷灰石表面沉积磷灰石的材料被认为具有生物活性。 Ti的金相组织和加工工艺对其磷灰石形成能力的影响尚不清楚。在这项研究中,对经过各种预热和机加工工艺的Ti基材进行NaOH和热处理。在模拟体液(SBF)中检查了生成的Ti的磷灰石形成能力。 Ti的预热降低了其与NaOH溶液的反应性。当对经过淬火或退火的Ti进行NaOH和热处理时,SBF中磷灰石形成的诱导期略有增加。这归因于处理后钛酸钠的减少和钛表面金红石的增加。进行了电火花线切割加工的基材没有形成磷灰石。这归因于Ca2 +吸附后PO43-吸附在其表面上的抑制,这是磷灰石成核的必不可少的过程。加工中使用的黄铜丝成分对Ti表面的污染有助于抑制。因此,表面改性的钛的生物活性受到其热处理和加工过程的显着影响。

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