TY - JOUR
T1 - A Study on Chemical Short Range Ordering in Pd40Ni40P20Bulk Metallic Glass by Anomalous X-ray Scattering
AU - Haruyama, Osami
AU - Makimura, Takahiro
AU - Miyakawa, Tomoki
AU - Sugiyama, Kazumasa
PY - 2010/4/17
Y1 - 2010/4/17
N2 - A local change in the amorphous structure of bulk Pd40Ni40P20 glass during the thermal relaxation related to the chemical short-range order (CSRO) was examined by anomalous X-ray scattering (AXS) with energies near Ni and Pd K-absorption edges. The reversible CSRO process was confirmed by electrical resistance and density measurements. The environmental structural analysis around Ni and Pd revealed that the coordination number of Ni-Ni and Pd-Pd like-atom pairs increased with the degree of order formed in the CSRO process, while that of Ni-Pd unlike-atom pair decreased. The present analysis clearly indicates that the reversible CSRO process in the Pd40Ni40P20bulk glass is inferred to be a local structural change such like the micro-phase separation.
AB - A local change in the amorphous structure of bulk Pd40Ni40P20 glass during the thermal relaxation related to the chemical short-range order (CSRO) was examined by anomalous X-ray scattering (AXS) with energies near Ni and Pd K-absorption edges. The reversible CSRO process was confirmed by electrical resistance and density measurements. The environmental structural analysis around Ni and Pd revealed that the coordination number of Ni-Ni and Pd-Pd like-atom pairs increased with the degree of order formed in the CSRO process, while that of Ni-Pd unlike-atom pair decreased. The present analysis clearly indicates that the reversible CSRO process in the Pd40Ni40P20bulk glass is inferred to be a local structural change such like the micro-phase separation.
KW - anomalous x-ray scattering
KW - bulk metallic glass
KW - chemical short range ordering
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U2 - 10.1515/HTMP.2010.29.5-6.381
DO - 10.1515/HTMP.2010.29.5-6.381
M3 - Article
AN - SCOPUS:78651387779
SN - 0334-6455
VL - 29
SP - 381
EP - 392
JO - High Temperature Materials and Processes
JF - High Temperature Materials and Processes
IS - 5-6
ER -