## Abstract The influence of various alloy elements on tensile strength of the eutectic, directionally solidified superalloy 73 C was determined. The tensile properties of the base alloy had been increased by Al, Y and C as alloying elements, while Ni and Ti showed a decreasing effect (alloy soften
The effect of structure on tensile properties of directionally solidified Zn-based alloys
β Scribed by A.E. Ares; C.E. Schvezov
- Publisher
- Elsevier Science
- Year
- 2011
- Tongue
- English
- Weight
- 966 KB
- Volume
- 318
- Category
- Article
- ISSN
- 0022-0248
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β¦ Synopsis
The main objective of this study was to measure thermal (cooling rates, temperature gradients and velocities of the liquidus and solidus isotherms), structural (grain size and primary and secondary dendritic arm spacings) and tensile parameters (maximum tensile strength (MTS), yield strength (YS) and ultimate tensile strength (UTS)) in zinc-aluminum (ZA) hypoeutectic (Zn-3 wt%Al) and hypereutectic (Zn-10 wt%Al, Zn-15 wt%Al, Zn-20 wt%Al, Zn-30 wt%Al, Zn-37 wt%Al and Zn-50 wt%Al) alloys directionally solidified, which present columnar, equiaxed and columnar-to-equiaxed transition (CET) structures. The different types of structures were analyzed with optical and Scanning Electron Microscopy (SEM). Correlations between temperature gradient, cooling rate, local solidification time, grain size and dendritic spacings and tensile tests parameters are presented and discussed. The results show the influence of concentration, microstructural arrangement and thermal conditions on the mechanical properties during the solidification process.
π SIMILAR VOLUMES
## Abstract Commercial purity Alβ40% Cu alloys were directionally solidified under a constant temperature gradient of 9 K/mm and growth rate (R) varying from 8 to 305 ΞΌm/sec. Cellular structure was obtained with a single primary CuAl~2~ rodβlike dendrite in the cell centre and a fannedβout eutectic