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軋制形變量對Mg-Zn-Sr-Zr-Mn合金組織特征及降解性能的影響
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華北理工大學

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河北省自然科學基金(E2020209153)、河北省省屬高?;究蒲袠I(yè)務費(JYG2019001)、新金屬材料國家重點實驗室開放基金(2020-Z12)


Effect of Rolling Shape Variation on Microstructure Characteristics and Degradation Performance for Mg-Zn-Sr-Zr-Mn Alloys
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The financial support of the Science and Technology Program of Hebei (E2020209153); Basic Scientific Research Business Expenses of the Universities in Hebei Province (JYG2019001); State Key Lab of Advanced Metals and Materials (2020-Z12).

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    摘要:

    鎂合金作為“新型可降解醫(yī)用植入金屬材料”在骨移植/血管支撐等醫(yī)用領(lǐng)域具備巨大的發(fā)展?jié)摿?。然而,選擇性溶解和偶發(fā)性氫聚集仍是影響鎂合金臨床應用的關(guān)鍵因素。在本研究中,采用光學顯微鏡(OM)、X射線衍射儀(XRD)、掃描電子顯微鏡(SEM)、靜態(tài)浸泡及動電位電化學測試等手段,深入探究軋制形變量的改變所誘導的顯微組織以及膜層結(jié)構(gòu)變化對熱軋鎂合金在生理環(huán)境中降解性能的影響機制。結(jié)果表明:不同軋制形變量鎂合金的降解產(chǎn)物層均主要由Mg(OH)2、MgCO3、CaHPO4以及HA所組成。隨著軋制形變量的增大,Mg-Zn-Sr-Zr-Mn合金的組織結(jié)構(gòu)逐漸變的均勻,降解速率由1.03 mm·y-1降至0.24 mm·y-1。這是由于隨軋制形變量的增大,基體晶粒顯著細化,導致更多晶界的產(chǎn)生,阻礙腐蝕裂紋的擴展,并在腐蝕介質(zhì)侵蝕過程中起到屏障作用。此外,軋制形變量的增大使合金中的第二相破碎以及彌散分布,降低了合金內(nèi)部電偶腐蝕密度和強度,促進腐蝕的均勻發(fā)生,減少點蝕坑的產(chǎn)生。最后,熱軋能改善腐蝕膜層的缺陷,在為合金表面提供更多的氧化膜形核點位的同時,還可以減少氧化膜的開裂,其致密性及穩(wěn)定性隨軋制形變量的增大而大幅度提升,進一步減緩了腐蝕離子的滲透。

    Abstract:

    As a new degradable metal material for medical implantation, magnesium alloy has great development potential in medical fields such as bone transplantation and vascular support. However, selective dissolution and accidental hydrogen accumulation are still the key factors affecting the clinical application of magnesium alloys. In this study, optical microscopy (OM), X-ray diffraction (XRD), scanning electron microscopy (SEM), static immersion and potentiodynamic electrochemical test were used to explore the influence mechanism of microstructure and film structure changes induced by the change of rolling shape variable on the degradation performance of hot-rolled magnesium alloy in physiological environment. The results show that the degradation product layers of magnesium alloys with different rolling shape variables are mainly composed of Mg(OH)2, MgCO3, CaHPO4 and HA. With the increase of rolling shape variable, the microstructure of Mg-Zn-Sr-Zr-Mn alloy becomes uniform gradually, and the degradation rate decreases from 1.03 mm?y-1 to 0.24 mm?y-1. This is because with the increase of rolling shape variable, the matrix grain is significantly refined, resulting in more grain boundaries, hindering the expansion of corrosion cracks, and acting as a barrier in the corrosion process of corrosive medium. In addition, with the increase of rolling shape variable, the second phase in the alloy is broken and dispersed, which reduces the density and intensity of galvanic corrosion in the alloy, promotes the uniform occurrence of corrosion and reduces the pitting pit. Finally, hot rolling can improve the defects of the corrosion film, provide more nucleation points for the oxide film on the surface of the alloy, and reduce the cracking of the oxide film. The compactness and stability of the oxide film are greatly improved with the increase of rolling shape variable, and further slow down the infiltration of corrosion ions.

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張源,鄭瑞寧,趙冠璋,劉蕓,田亞強,鄭小平,陳連生.軋制形變量對Mg-Zn-Sr-Zr-Mn合金組織特征及降解性能的影響[J].稀有金屬材料與工程,2022,51(12):4646~4657.[zhang yuan, zheng Ruining, Zhao Guanzhang, Liu Yun, Tian Yaiqang, Zheng Xiaoping, Chen Liansheng. Effect of Rolling Shape Variation on Microstructure Characteristics and Degradation Performance for Mg-Zn-Sr-Zr-Mn Alloys[J]. Rare Metal Materials and Engineering,2022,51(12):4646~4657.]
DOI:10.12442/j. issn.1002-185X.20210978

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  • 收稿日期:2021-11-10
  • 最后修改日期:2022-02-11
  • 錄用日期:2022-02-28
  • 在線發(fā)布日期: 2023-01-19
  • 出版日期: 2022-12-30