BULKY LA-AL-TM (TM = TRANSITION-METAL) AMORPHOUS-ALLOYS WITH HIGH-TENSILE STRENGTH PRODUCED BY A HIGH-PRESSURE DIE-CASTING METHOD
Citation
A. Inoue et al., BULKY LA-AL-TM (TM = TRANSITION-METAL) AMORPHOUS-ALLOYS WITH HIGH-TENSILE STRENGTH PRODUCED BY A HIGH-PRESSURE DIE-CASTING METHOD, Materials transactions, JIM, 34(4), 1993, pp. 351-358
Categorie Soggetti
Metallurgy & Mining","Material Science
SICI code
0916-1821(1993)34:4<351:BL(=TA>2.0.ZU;2-9
Abstract
The application of a high-pressure die casting technique to La-Al-TM (
TM=Co, Ni, Cu) alloys was found to produce bulk amorphous alloys in cy
linder and sheet forms. The maximum sample diameter (d(c)) for formati
on of an amorphous phase is 3 mm for La55Al25(Ni or Cu)20, 7 mm for La
55Al25Ni10Cu10 and above 9 mm for La55Al25Cu10Ni5Co5. There is a clear
tendency for d(c) to increase with an increase in the temperature int
erval of a supercooled liquid region. The glass transition temperature
(T(g)), the crystallization temperature (T(x)) and the heat of crysta
llization (DELTAH(x)) remain unchanged in the thickness range of 1 to
7 mm for the La55Al25Cu10Ni10 alloy. T(g) and DELTAH(x) are nearly the
same as those for the melt-spun ribbon. The tensile fracture strength
(sigma(f)) and elongation (ef) for the La65Al20Cu7.5Ni3.75Co3.75 cyli
nder with a diameter of 3 mm are 700 MPa and 1.5%. Although the er val
ue is nearly the same as that for the melt-spun ribbon, the sigma(f) v
alue is about 80% as high as that for the ribbon. The decrease in sigm
a(f) by 20% is presumably due to the existence of pores based on the r
esult that the porosity of the cast samples is about 20%. The achievem
ent of the sigma(f) for the cast alloys with 20% in porosity indicates
that the bulk amorphous alloys also have a ductile nature which is co
mparable to that for the melt-spun ribbon.