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6, 7 However, their utilization was still limited by the restricted morphologies in which amorphous alloys could be prepared by using a quenching protocol, which were in the shape of wires, ribbons, or foils, so that one of the dimension was small enough to reach the necessary cooling rate. metallurgists, material scientists, engineers and physicists), which is due to their superior chemical, electronic, mechanical and magnetic features that differ from those of conventional crystalline alloys with counterpart compositions. Since the introduction of the quenching technique, amorphous alloys have been an object of attention from researchers of diverse fields ( i.e. 4 That report is considered the first publication mentioning “amorphous alloys” or “metallic glasses”, but actually, the possibility of producing metal alloys in a non-crystalline state had been demonstrated by Miroshnichenko and Salli in 1959.
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reported on the preparation of an amorphous phase in the Au-Si system by rapid solidification (quenching) from a melt. 3 However, the investigation of amorphous alloys was more fruitful from 1960, when Duwez et al. 2 After that, Brenner reported in 1950 on the preparation of alloys of phosphorus with nickel or cobalt prepared by electrodeposition from acid solutions containing phosphites. The first study reporting on non-crystalline metallic alloys was published in 1934 by Johannes Kramer. 1 The investigation of amorphous alloys dates back to early in the 20th century. Amorphous alloys, also known as metallic glasses or glassy metals, are non-equilibrium materials that combine a metallic structure with a disordered atomic structure.
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