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退火對鎂陽極氧化涂層結構與耐腐蝕性能的影響
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第四軍醫(yī)大學口腔醫(yī)院修復科

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中圖分類號:

TG174.451

基金項目:

國家自然科學基金重點項目(81530051,31670966,31800790)


Effect of annealing on structure and corrosion resistance of magnesium anodized coating
Author:
Affiliation:

Department of Prosthodontics,School of Stomatology,The Fourth Military Medical University

Fund Project:

The National Natural Science Foundation of China ( Key Program)81530051,31670966,31800790

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    摘要:

    目的:通過陽極氧化及退火處理對鎂表面氧化膜層進行優(yōu)化并探索其對鎂表面氧化層結構、耐腐蝕性能以及生物相容性的影響。方法:對純鎂進行不同電壓參數(shù)的陽極氧化(5V、10V、20V、40V),后進行450℃高溫退火處理。通過掃描電子顯微鏡分析膜層表面及截面形貌,原子力顯微鏡分析三維結構與粗糙度,電化學極化實驗與體外浸泡實驗評估耐腐蝕性能,CCK-8實驗評估對小鼠成骨細胞MC3T3-E1的增殖活性影響。結果:電壓的升高可以使表面膜層從層板狀變得多孔,繼續(xù)升高又變得光滑均勻。退火處理維持了基本形貌特征,膜層厚度有所增加,粗糙度有所下降。未退火膜層由于微孔的存在以及氫氧化鎂的不穩(wěn)定導致耐腐蝕性能并未增高,退火所形成的致密氧化鎂結晶膜層有一定的保護作用,其中40V氧化后退火組擁有相對較好的耐腐蝕性能,且對細胞增殖無明顯抑制作用。結論:陽極氧化電壓對純鎂陽極氧化膜層結構有影響,退火可以進一步穩(wěn)定膜層,提高其耐腐蝕性能,40V氧化退火組耐腐蝕性能較好,且生物相容性良好。

    Abstract:

    Objective: To optimize the anodized film on the magnesium surface and explore its effect on the structure,corrosion resistance and biocompatibility through anodizing and annealing treatments.Methods: Pure magnesium was anodized with different voltage parameters (5V, 10V, 20V, 40V), and then annealed at high temperature. The surface and cross-section morphology of the coatings formed were analyzed by scanning electron microscopy.Three-dimensional structure and roughness were analyzed by atomic force microscope. The corrosion behavior of each group of samples was evaluated by electrochemical polarization experiments and in vitro immersion test.The proliferation activity of mouse osteoblasts MC3T3-E1 was evaluated by the CCK-8 method. Results: The increase of the voltage can make the surface coating become porous from the lamellar shape, and then continue to increase voltage,the layer become smooth and uniform. The annealing treatment maintained the basic morphological characteristics, the coating thickness increased and the roughness decreased.The corrosion resistance of the unannealed coating does not increase due to the existence of micropores and the instability of magnesium hydroxide. The dense magnesium oxide crystalline coating formed by the annealing has a certain protective effect. The 40V post-oxidation annealing group has relatively good corrosion resistance and has no obvious inhibitory effect on cell proliferation.Conclusion: Voltage affects the structure of anodized coating. Annealing can further stabilize the coating and improve its corrosion resistance.The 40V post-oxidation annealing group has a better corrosion resistance and biocompatibility .

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引用本文

閆寧,宋文,張玉梅.退火對鎂陽極氧化涂層結構與耐腐蝕性能的影響[J].稀有金屬材料與工程,2020,49(6):2168~2174.[Yan Ning, Song Wen, Zhang Yumei. Effect of annealing on structure and corrosion resistance of magnesium anodized coating[J]. Rare Metal Materials and Engineering,2020,49(6):2168~2174.]
DOI:10.12442/j. issn.1002-185X.20191102

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  • 收稿日期:2019-12-28
  • 最后修改日期:2020-04-16
  • 錄用日期:2020-04-18
  • 在線發(fā)布日期: 2020-07-09
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