The Effect of Bi-Sr and Ca-Sr Interactions on the Microstructure and Tensile Properties of Al-Si-Based Alloys
Abstract
:1. Introduction
2. Experimental Procedure
3. Results and Discussion
3.1. Bismuth
3.2. Calcium
4. Conclusions
- Bismuth acts as a partial modifier for the Si particles at about 0.96% to >1.0% Bi; below this level, it has a demodifying effect.
- Bismuth causes a decrease in the yield and tensile strengths for the as-cast and artificially aged conditions, and an increase in yield strength in the solution heat-treated condition. The elongation increases with the Bi only in the solution heat-treated condition.
- The solution heat treatment rather than artificial aging may be recommended for alloys containing about 1.0% Bi.
- Calcium has a significant demodifying effect on the Si particles in the Sr-modified alloy at concentrations higher than 500 ppm Ca, causing a decrease in the alloy strength.
- The elongation increases with the Ca level for all alloy conditions (as-cast, solution heat-treated and artificially aged). A slight increase in the tensile strength in the heat-treated conditions was also observed.
- Calcium, however, is not detrimental to the alloy tensile properties as is the case with Bi.
- UTS-%El relationships for both Bi- and Ca-containing alloys are linear with a high-fitting coefficient (R2 > 0.8).
Acknowledgments
Author Contributions
Conflicts of Interest
References
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Alloy | Si | Cu | Fe | Mg | Ti |
---|---|---|---|---|---|
B319 | 6.16 | 3.67 | 0.1 | 0.386 | 0.13 |
Alloy | Zn | Sr | Ti | Bi | Ca |
B319 | 0.0017 | 0.018 | 0.2 | 0.0083 | 0.005 |
Code | Addition | Bi (wt %) | Ca (ppm) |
---|---|---|---|
Base | B319 | 0.0083 | 50 |
1 | targeted | 0.10 | - |
achieved | 0.15 | 48 | |
2 | targeted | 0.20 | - |
achieved | 0.26 | 41 | |
3 | targeted | 0.30 | - |
achieved | 0.31 | 10 | |
4 | targeted | 0.40 | - |
achieved | 0.48 | 11 | |
5 | targeted | 0.50 | - |
achieved | 0.61 | 10 | |
6 | targeted | 0.60 | - |
achieved | 0.63 | 12 | |
7 | targeted | 0.70 | - |
achieved | 0.70 | 14 | |
8 | targeted | 0.80 | - |
achieved | 0.96 | 17 | |
9 | targeted | 0.90 | - |
achieved | 0.95 | 14 | |
10 | targeted | 1.0 | - |
achieved | >1.0 | 39 | |
11 | targeted | - | 50 |
achieved | 0.01 | 51 | |
12 | targeted | - | 100 |
achieved | 0.02 | 97 | |
13 | targeted | - | 150 |
achieved | 0.02 | 121 | |
14 | targeted | - | 200 |
achieved | 0.00 | 200 | |
15 | targeted | - | 250 |
achieved | 0.00 | 250 | |
16 | targeted | - | 300 |
achieved | 0.00 | 295 | |
17 | targeted | - | 400 |
achieved | 0.00 | 408 | |
18 | targeted | - | 500 |
achieved | 0.00 | 593 |
Condition | As-Cast | Solution Heat-Treated | ||||||||
---|---|---|---|---|---|---|---|---|---|---|
A, μm2 | L, μm | R | AR | D, mm−2 | A, μm2 | L, μm | R | AR | D, mm−2 | |
Base alloy | 3.66 | 2.71 | 0.51 | 1.82 | 19,000 | 6.76 | 3.63 | 0.56 | 1.69 | 17,500 |
0.15% Bi | 16.60 | 8.14 | 0.35 | 2.7 | 5200 | 19.7 | 8.30 | 0.40 | 2.68 | 3800 |
0.26% Bi | 18.10 | 8.35 | 0.36 | 2.70 | 4500 | 17.0 | 7.49 | 0.41 | 2.57 | 4800 |
0.31% Bi | 17.1 | 8.07 | 0.37 | 2.70 | 4900 | 21.7 | 8.34 | 0.41 | 2.58 | 3800 |
0.48% Bi | 14.4 | 8.02 | 0.34 | 2.85 | 5500 | 10.6 | 5.66 | 0.44 | 2.36 | 8000 |
0.61% Bi | 17.7 | 8.15 | 0.37 | 2.77 | 4750 | 17.5 | 7.56 | 0.41 | 2.64 | 6200 |
0.70% Bi | 10.20 | 6.65 | 0.35 | 2.77 | 8500 | 9.88 | 5.17 | 0.48 | 2.21 | 8300 |
0.96% Bi | 7.60 | 5.65 | 0.36 | 2.60 | 11,500 | 9.07 | 4.88 | 0.48 | 2.12 | 8900 |
>1.0% Bi | 8.56 | 5.75 | 0.37 | 2.62 | 10,000 | 10.7 | 5.71 | 0.44 | 2.37 | 8300 |
051 ppm Ca | 3.2 | 2.61 | 0.59 | 1.86 | 28,000 | 7.91 | 3.94 | 0.56 | 1.70 | 11,000 |
097 ppm Ca | 4.99 | 3.33 | 0.48 | 1.98 | 18,000 | 7.52 | 3.90 | 0.56 | 1.73 | 11,000 |
121 ppm Ca | 3.70 | 3.02 | 0.48 | 1.96 | 23,000 | 7.80 | 4.12 | 0.53 | 1.84 | 10,000 |
200 ppm Ca | 7.20 | 4.43 | 0.43 | 2.16 | 11,000 | 8.55 | 4.28 | 0.54 | 1.82 | 9100 |
250 ppm Ca | 5.66 | 3.99 | 0.44 | 2.09 | 15,000 | 7.38 | 4.00 | 0.54 | 1.80 | 10,000 |
295 ppm Ca | 4.48 | 3.45 | 0.45 | 2.02 | 17,000 | 7.62 | 4.12 | 0.53 | 1.85 | 10,000 |
408 ppm Ca | 13.4 | 6.39 | 0.40 | 2.34 | 6550 | 13.3 | 5.91 | 0.47 | 2.17 | 7100 |
593 ppm Ca | 6.51 | 4.33 | 0.42 | 2.13 | 15,000 | 7.08 | 4.00 | 0.53 | 1.85 | 11,000 |
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Samuel, A.M.; Doty, H.W.; Gallardo, S.V.; Samuel, F.H. The Effect of Bi-Sr and Ca-Sr Interactions on the Microstructure and Tensile Properties of Al-Si-Based Alloys. Materials 2016, 9, 126. https://doi.org/10.3390/ma9030126
Samuel AM, Doty HW, Gallardo SV, Samuel FH. The Effect of Bi-Sr and Ca-Sr Interactions on the Microstructure and Tensile Properties of Al-Si-Based Alloys. Materials. 2016; 9(3):126. https://doi.org/10.3390/ma9030126
Chicago/Turabian StyleSamuel, Agnes M., Herbert W. Doty, Salvador Valtierra Gallardo, and Fawzy H. Samuel. 2016. "The Effect of Bi-Sr and Ca-Sr Interactions on the Microstructure and Tensile Properties of Al-Si-Based Alloys" Materials 9, no. 3: 126. https://doi.org/10.3390/ma9030126
APA StyleSamuel, A. M., Doty, H. W., Gallardo, S. V., & Samuel, F. H. (2016). The Effect of Bi-Sr and Ca-Sr Interactions on the Microstructure and Tensile Properties of Al-Si-Based Alloys. Materials, 9(3), 126. https://doi.org/10.3390/ma9030126