Acta Metallurgica Sinica (English Letters) ›› 2016, Vol. 29 ›› Issue (9): 793-799.DOI: 10.1007/s40195-016-0451-9
• Orginal Article • Next Articles
Feng-Xiang Qin1,2,Chuan Ji1,Zhen-Hua Dan2,3,Guo-Qiang Xie2,Hao Wang4,Shin-Ichi Yamaura2,Mitsuo Niinomi2,Yang-De Li5
Received:2016-02-01
															
							
															
							
															
							
																	Online:2016-09-10
															
							
																	Published:2016-11-04
															
						Feng-Xiang Qin,Chuan Ji,Zhen-Hua Dan,Guo-Qiang Xie,Hao Wang,Shin-Ichi Yamaura,Mitsuo Niinomi,Yang-De Li. Corrosion Behavior of MgZnCa Bulk Amorphous Alloys Fabricated by Spark Plasma Sintering[J]. Acta Metallurgica Sinica (English Letters), 2016, 29(9): 793-799.
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																													Fig. 1 XRD patterns of the ball-milled Mg65Zn30Ca5 powders after different milling times. XRD pattern of the initial crystalline powders is also shown for comparison
																													Fig. 3 XRD patterns of Mg65Zn30Ca5 bulk amorphous alloys spark plasma sintered at various temperatures with a loading pressure of 600 MPa and holding time of 10 min
																													Fig. 5 Potentiodynamic polarization curves of Mg65Zn30Ca5 bulk amorphous alloy fabricated by the SPS process at 383 K. The data of high-purity Mg, AZ31B alloy and Mg65Zn30Ca5 amorphous ribbon are also shown for comparison
																													Fig. 6 XPS peaks of Mg 1sa, Zn 2pb, Ca 2pc, O 1sd, P 2pe in native layer (before immersion) and oxide layer (after immersion in Hanks’ solution) of Mg65Zn30Ca5 bulk amorphous alloys prepared by SPS
																													Fig. 7 Ratio of cationic element M (Mg, Zn, Ca) in the surface film to the Mg65Zn30Ca5 bulk amorphous alloy ([Mox]/[Mbulk]) after immersion in Hanks’ solution
 
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