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Materials Data on Tm(Al2Cu)4 by Materials Project

Tm(CuAl2)4 crystallizes in the tetragonal I4/mmm space group. The structure is three-dimensional. Tm is bonded in a 12-coordinate geometry to eight equivalent Cu and twelve Al atoms. All Tm–Cu bond lengths are 3.36 Å. There are four shorter (3.05 Å) and eight longer (3.20 Å) Tm–Al bond lengths. Cu is bonded in a 12-coordinate geometry to two equivalent Tm, two equivalent Cu, and eight Al atoms. Both Cu–Cu bond lengths are 2.56 Å. There are four shorter (2.56 Å) and four longer (2.68 Å) Cu–Al bond lengths. There are two inequivalent Al sites. In the first Al site, Al is bonded in a 12-coordinate geometry to two equivalent Tm, four equivalent Cu, and four equivalent Al atoms. There are two shorter (2.80 Å) and two longer (2.82 Å) Al–Al bond lengths. In the second Al site, Al is bonded in a 10-coordinate geometry to one Tm, four equivalent Cu, and five Al atoms. The Al–Al bond length is 2.68 Å.

36 MATERIALS SCIENCE↗

Evaluation of the microstructure of Al-Cu-Li-Ag-Mg Weldalite (tm) alloys, part 4

Weldalite (trademark) 049 is an Al-Cu-Li-Ag-Mg alloy designed to have ultrahigh strength and to serve in aerospace applications. The alloy displays significantly higher strength than competitive alloys in both naturally aged and artificially aged tempers. The strengthening phases in such tempers have been identified to, in part, explain the mechanical properties attained. In general, the alloy is strengthened by delta prime Al3Li and Guinier-Preston (GP) zones in the naturally aged tempers. In artificially aged tempers in slightly underaged conditions, strengthening is provided by several phases including GP zones, theta prime Al2Cu, S prime Al2CuMg, T(sub 1) Al2CuLi, and possibly a new phase. In the peak strength artificially aged tempers, T(sub 1) is the predominant strengthening phase.

Pickens, Joseph R.↗