Characteristics of Mg-Based Sintered Alloy with Au Addition

被引:2
|
作者
Lesz, Sabina [1 ]
Karolus, Malgorzata [2 ]
Gabrys, Adrian [1 ]
Hrapkowicz, Bartlomiej [1 ]
Walke, Witold [3 ]
Pakiela, Wojciech [1 ]
Golombek, Klaudiusz [4 ]
Popis, Julia [1 ]
Palcek, Peter [5 ]
机构
[1] Silesian Tech Univ, Dept Engn Mat & Biomat, 18a Konarskiego St, PL-44100 Gliwice, Poland
[2] Univ Silesiaia, Inst Mat Engn, 1a 75 Pulku Piechoty St, PL-41500 Chorzow, Poland
[3] Silesian Tech Univ, Dept Biomat & Med Device Engn, Roosevelta 40 St, PL-41800 Zabrze, Poland
[4] Silesian Tech Univ, Mat Res Lab, 18a Konarskiego St, PL-44100 Gliwice, Poland
[5] Univ Zilina, Fac Mech Engn, Dept Mat Engn, SK-01026 Zilina, Slovakia
关键词
magnesium alloys; mechanical alloying; spark plasma sintering; CA-AG ALLOYS; CORROSION-RESISTANCE; STABILITY; MGZN2; GOLD; IMPLANT;
D O I
10.3390/ma16051915
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The magnesium-based alloys produced by mechanical alloying (MA) are characterized by specific porosity, fine-grained structure, and isotropic properties. In addition, alloys containing magnesium, zinc, calcium, and the noble element gold are biocompatible, so they can be used for biomedical implants. The paper assesses selected mechanical properties and the structure of the Mg63Zn30Ca4Au3 as a potential biodegradable biomaterial. The alloy was produced by mechanical synthesis with a milling time of 13 h, and sintered via spark-plasma sintering (SPS) carried out at a temperature of 350 degrees C and a compaction pressure of 50 MPa, with a holding time of 4 min and a heating rate of 50 degrees C center dot min(-1) to 300 degrees C and 25 degrees C center dot min(-1) from 300 to 350 degrees C. The article presents the results of the X-ray diffraction (XRD) method, density, scanning electron microscopy (SEM), particle size distributions, and Vickers microhardness and electrochemical properties via electrochemical impedance spectroscopy (EIS) and potentiodynamic immersion testing. The obtained results reveal the compressive strength of 216 MPa and Young's modulus of 2530 MPa. The structure comprises MgZn2 and Mg3Au phases formed during the mechanical synthesis, and Mg7Zn3 that has been formed during the sintering process. Although MgZn2 and Mg7Zn3 improve the corrosion resistance of the Mg-based alloys, it has been revealed that the double layer formed because of contact with the Ringer's solution is not an effective barrier; hence, more data and optimization are necessary.
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页数:17
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