Claims
- 1. A method of improving the core loss characteristics of cube-on-edge oriented silicon steel strip and sheet stock which will have a magnetic permeability greater than 1850 at 796 A/m after a final high temperature anneal in a hydrogen-containing reducing atmosphere, which comprises adding a boron compound to an aqueous magnesia slurry, applying said slurry to the surface of said stock, and drying the so applied coating prior to said final anneal, said boron compound being added to provide a total boron content within the range of about 0.07% to about 0.30%, based on the weight of magnesia, in inverse proportion to the bulk density of the dried coating, whereby to cause a substantially uniform amount of boron to diffuse inwardly through the magnesia coating during said final anneal, irrespective of the amount of boron volatilized in the annealing atmosphere from said coating.
- 2. The method claimed in claim 1, wherein the total boron content is proportioned in accordance with any two of particle size distribution ratio, citric acid activity, and surface area of said magnesia.
- 3. The method claimed in claim 2, wherein said total boron content is proportioned directly to a citric acid activity ranging from greater than 50 to about 200 seconds, and inversely to a surface area ranging from about 5 to about 35 square meters per gram.
- 4. The method claimed in claim 2, wherein said total boron content is within the range of about 0.10% to about 0.15% for a particle size distribution ratio less than 1 and in direct proportion to a citric acid activity ranging from greater than 50 to about 120 seconds.
- 5. The method claimed in claim 2, wherein said total boron content is within the range of about 0.10% to about 0.15% for a particle size distribution ratio less than 1 and in inverse proportion to a surface area ranging from about 20 to about 30 square meters per gram.
- 6. The method claimed in claim 2, wherein said total boron content is within the range of about 0.15% to about 0.30% for a particle size distribution ratio greater than 2 and in direct proportion to a citric acid activity ranging from greater than 50 to about 200 seconds.
- 7. The method claimed in claim 2, wherein said total boron content is within the range of about 0.15% to 0.30% for a particle size distribution ratio greater than 2 and in inverse proportion to a surface area ranging from about 7 to 19 square meters per gram.
- 8. The method claimed in claim 2, wherein boron is added within the range of about 0.10% to about 0.15%, in direct proportion to a citric acid activity of said magnesium oxide ranging from greater than 50 to about 120 seconds, and when the particle size distribution is as follows:
- 0-5% between 5 and 10 microns
- 5-10% between 5 and 2 microns
- 5-10% between 2 and 1 microns
- 75-90% less than 1 micron.
- 9. The method claimed in claim 2, wherein boron is added within the range of about 0.15% to about 0.20%, in direct proportion to a citric acid activity of said magnesium oxide ranging from greater than 50 to about 200 seconds, and when the particle size distribution is as follows:
- 0-5% between 5 and 10 microns
- 80-90% between 5 and 2 microns
- 10-20% between 2 and 1 microns
- 0% less than 1 micron
- 10. The method claimed in claim 1, wherein said slurry contains up to 20% titanium dioxide, based on the weight of magnesia.
- 11. The method claimed in claim 1, wherein said slurry is applied in an amount sufficient to provide a dried coating weight of about 0.02 to about 0.05 ounce per square foot, whereby to form a thin continuous glass film during said final anneal.
- 12. The method claimed in claim 1, wherein said silicon steel stock in the decarburized condition contains from about 2% to about 4% silicon, about 0.01% to about 0.15% manganese, about 0.002% to about 0.005% carbon, about 0.01% to about 0.03% sulfur, up to about 0.010% boron, about 0.005% to about 0.010% nitrogen, about 0.010% to about 0.065% acid soluble aluminum, and balance essentially iron.
- 13. The method claimed in claim 1, wherein said silicon steel stock contains from about 2% to about 4% silicon and from about 0.010% to about 0.065% acid soluble aluminum, wherein said aqueous magnesia slurry contains up to 20% titanium dioxide based on the weight of magnesia, and wherein said final anneal is conducted at a temperature of about 1095.degree. to about 1260.degree. C.
CROSS REFERENCE TO RELATED APPLICATION
This application is a continuation-in-part of application Ser. No. 798,855 filed May 20, 1977, in the name of Michael H. Haselkorn, now abandoned.
US Referenced Citations (17)
Foreign Referenced Citations (1)
Number |
Date |
Country |
1398504 |
Jun 1975 |
GBX |
Continuation in Parts (1)
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Number |
Date |
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Parent |
798855 |
May 1977 |
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