首页> 外文期刊>Materials science & engineering >The feasibility of eco-friendly electrical discharge machining for surface modification of Ti: A comparison study in surface properties, bioactivity, and cytocompatibility
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The feasibility of eco-friendly electrical discharge machining for surface modification of Ti: A comparison study in surface properties, bioactivity, and cytocompatibility

机译:钛表面改性的生态放电加工的可行性:表面性质,生物活性和细胞相容性的比较研究

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摘要

This study provided an eco-friendly manufacturing method for Ti implants by combining machining and surface treatment processes. Ti was machined by electrical discharge machining (EDM) in a water-based dielectric in order to reduce environmental impact and improve operational health. The feasibility of this eco-friendly EDM was evaluated by tested the bioactivity and cytocompatibility of the EDM-treated Ti and the commercially micro-arc oxidation (MAO)-treated Ti was used as a control group. Pulsed MAO and EDM treatments were applied on Ti in an aqueous solution containing hydroxyapatite (HA) with the same concentration (30 g/L) under the same voltage and treatment period. The two surface modification processes were compared from the aspects of surface composition, coating structure, and coating adhesion. Furthermore, in vitro bioactivity and cellular biocompatibility of the MAO- and EDM-treated Ti films were tested. Both treatments produced Ti oxide containing Ca and P on Ti, and the EDM-formed film possessed more Ca, with its Ca/P value closer to HA, as compared to the MAO-formed film. The MAO-formed films had micropores and nanopores in the middle region and film/substrate interface, respectively. Pores only existed on the surface of the EDM-formed films. The MAO formed films were fractured, but the EDM-formed films maintained their original structure under tensile stress, tested according to the ASTM C633 standard. The bioactivity of the EDM-treated surface was higher than that of the MAO -treated and untreated Ti surface. After 24 h cell incubation, the EDM-treated surface exhibited a significantly higher number of cells than untreated Ti and the MAO-treated surface.
机译:这项研究通过结合机械加工和表面处理工艺,为Ti植入物提供了一种环保的制造方法。 Ti是通过放电加工(EDM)在水基电介质中加工而成的,以减少对环境的影响并改善运行状况。通过测试经EDM处理的Ti的生物活性和细胞相容性,评估了这种环保型EDM的可行性,并将商业微弧氧化(MAO)处理的Ti用作对照组。在含有相同浓度(30 g / L)的羟基磷灰石(HA)的水溶液中,在相同的电压和处理时间下,对Ti进行脉冲MAO和EDM处理。从表面组成,涂层结构和涂层附着力方面比较了两种表面改性工艺。此外,测试了经MAO和EDM处理的Ti膜的体外生物活性和细胞生物相容性。两种处理均产生了在Ti上含有Ca和P的Ti氧化物,并且与MAO形成的膜相比,EDM形成的膜具有更多的Ca,其Ca / P值更接近HA。由MAO形成的膜在中间区域和膜/基材界面分别具有微孔和纳米孔。孔仅存在于形成EDM的膜的表面上。根据ASTM C633标准测试,MAO形成的膜断裂,但EDM形成的膜在拉伸应力下保持其原始结构。经EDM处理的表面的生物活性高于经MAO处理的和未处理的Ti表面的生物活性。细胞孵育24小时后,经EDM处理的表面比未经处理的Ti和经过MAO处理的表面表现出明显更高的细胞数。

著录项

  • 来源
    《Materials science & engineering》 |2020年第3期|110192.1-110192.15|共15页
  • 作者

  • 作者单位

    Kaohsiung Med Univ Coll Dent Med Sch Dent Kaohsiung 807 Taiwan|Kaohsiung Med Univ Coll Med Orthopaed Res Ctr Kaohsiung Taiwan|Kaohsiung Med Univ Kaohsiung Med Univ Hosp Dept Med Res Kaohsiung Taiwan;

    Natl Kaohsiung Univ Sci & Technol Dept Mold & Die Engn Kaohsiung 807 Taiwan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ti; Hydroxyapatite; Eco-friendly EDM; Bioactivity; Cytocompatibility;

    机译:钛羟基磷灰石;环保的EDM;生物活性细胞相容性;

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