作者: K. Hono , Y. Zhang , A.P. Tsai , A. Inoue , T. Sakurai
DOI: 10.1016/S0956-716X(99)80035-1
关键词: Particle 、 Metallurgy 、 Differential scanning calorimetry 、 Amorphous metal 、 Amorphous solid 、 Nanocrystalline material 、 Materials science 、 Grain size 、 Chemical engineering 、 Nucleation 、 Crystallization
摘要: … It has been reported that the tensile yield strength of these materials reaches as high as 800 MPa in the amorphous state, and can be increased to 1,500 MPa by partial crystallization. …