US2009180919A1PendingUtilityA1
Aluminum composite composition and method
Est. expiryMar 15, 2020(expired)· nominal 20-yr term from priority
C22B 21/06C22B 9/16C22C 21/00C22B 4/02
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Claims
Abstract
One aspect of the invention is a method for Incorporating Carbon homogeneously into aluminum materials. The first step is to apply a positive charge to molten aluminum. Next, a negative charge is applied to an organic compound. Under an inert atmosphere, the negatively charged organic compound is mixed with the positively charged molten aluminum while running electric current therethrough. An aluminum material with carbon homogeneously dispersed throughout is recovered.
Claims
exact text as granted — not AI-modified1 . The product of a process, said process comprising the steps of:
(a) applying a charge to molten aluminum feedstock; (b) mixing an organic compound with said charged molten aluminum while running electric current therethrough, so as to provide a concentration of carbon in said charged molten aluminum greater than about 0.08 weight-percent; and (c) recovering said hardened aluminum product with carbon homogeneously dispersed throughout.
2 . The product of claim 1 , wherein a positive charge ranging from between about 12 and 200 volts is applied to said molten aluminum feedstock.
3 . The product of claim 2 , wherein said charge applied to said molten aluminum feedstock is dc current.
4 . The product of claim 1 , wherein said charge applied to said molten aluminum feedstock is dc current.
5 . The product of claim 1 , wherein said organic compound comprises a thermally decomposable organic polymer.
6 . The product of claim 5 , wherein said decomposable organic polymer is one or more of polyethylene, polypropylene, or polystyrene.
7 . The product of claim 1 , wherein said mixing step (b) is conducted under an inert gas atmosphere.
8 . The product of claim 7 , wherein said inert gas atmosphere is one or more of argon, nitrogen, or carbon dioxide.
9 . The product of claim 1 , wherein step (b) is conducted at a temperature ranging from about 1400° to 2000° F.
10 . The product of claim 1 , wherein the concentration of carbon in said charged molten aluminum following step (b) is greater than 3.5 weight-percent.
11 . The product of claim 1 , wherein the concentration of carbon in said charged molten aluminum created in step (b) is in the range of between about 0.08 and about 1.2 weight-percent.
12 . The product of claim 1 , wherein the concentration of carbon in said charged molten aluminum created in step (b) is in the range of between about 0.08 and about 3.5 weight-percent.
13 . The product of claim 1 , wherein at least two electrodes of opposing charge are in contact with said molten aluminum feedstock during step (b).
14 . The product of a process, said process comprising the steps of:
(a) preparing a molten aluminum feedstock having an electric current therethrough, homogeneously incorporating into said molten aluminum feedstock a concentration of carbon greater than 0.08 weight-percent, and (b) recovering a hardened aluminum product from said molten aluminum feedstock.
15 . The product of claim 14 wherein the concentration of carbon in said charged molten aluminum created in step (a) is in the range of between about 0.08 and about 1.2 weight-percent.
16 . The product of claim 14 , wherein the concentration of carbon in said charged molten aluminum created in step (a) is in the range of between about 0.08 and about 3.5 weight-percent.
17 . The product of a process, said process comprising the steps of:
(a) preparing a molten aluminum feedstock having an electric current therethrough by having at least two electrodes of opposing charge are in contact with said molten aluminum feedstock, said molten aluminum feedstock having a concentration of carbon greater than 0.08 weight-percent homogeneously incorporated into said molten aluminum feedstock; and (b) recovering a hardened aluminum product from said molten aluminum feedstock, said hardened aluminum product having a concentration of carbon greater than 0.08 weight-percent.
18 . The product of claim 17 wherein the concentration of carbon in said hardened aluminum product is in the range of between about 0.08 and about 1.2 weight-percent.
19 . The product of claim 17 wherein the concentration of carbon in said hardened aluminum product is in the range of between about 0.08 and about 3.5 weight-percent.Join the waitlist — get patent alerts
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