A process for producing silicon steel having a cube-on-edge orientation and a permeability of at least 1850 (G/O. sub. e) at 10 oersteds, which includes the steps of: preparing a melt of steel consisting essentially of, by weight, up to 0. 07% carbon, from 2. 6 to 4. 0% silicon, from 0. 03 to 0. 24% manganese, from 0. 01 to 0. 09% of material from the group consisting of sulfur and selenium, at least one element from the group consisting of aluminum in an amount of from 0. 015 to 0. 04% and boron in an amount of up to 0. 0035%, up to 0. 02% nitrogen, up to 0. 5% copper, balance iron; casting the steel, hot rolling the steel, cold rolling the steel, decarburizing the steel, coating the steel with a base coating containing a nitrogen-bearing compound from the group consisting of (NH. sub. 4). sub. 2 SO. sub. 4, Fe(NO. sub. 3). sub. 3, Al(NO. sub. 3). sub. 3, Mg(NO. sub. 3). sub. 2 and Zn(NO. sub. 3). sub. 2, and final texture annealing the steel.
Allegheny Ludlum Steel Corporation - Pittsburgh PA
International Classification:
H01F 104
US Classification:
148113
Abstract:
A process for producing grain oriented electromagnetic silicon steel. The process includes the steps of: preparing a melt of silicon steel having, by weight, from 2. 5 to 4. 0% silicon; casting the steel; hot rolling the steel; cold rolling the steel; decarburizing the steel; applying a substantially non-reactive aluminum hydroxide coating to the steel; and final texture annealing the steel. The annealed steel being characterized by a substantially uniform metallic surface.
Amitava Datta - Pittsburgh PA Clarence L. Miller - Pittsburgh PA Jack W. Shilling - Monroeville PA
Assignee:
Allegheny Ludlum Industries, Inc. - Pittsburgh PA
International Classification:
H01F 104
US Classification:
148113
Abstract:
A process for producing electromagnetic silicon steel having a cube-on-edge orientation. The process includes the steps of: preparing a melt of silicon steel having up to 0. 07% carbon, from 0. 01 to 0. 25% manganese, from 0. 01 to 0. 09% of material from the group consisting of sulfur and selenium, from 2. 5 to 4. 0% silicon, up to 1. 0% copper, less than 0. 009% aluminum and less than 0. 0006% boron; casting the steel; hot rolling the steel; cold rolling the steel; normalizing the steel in a hydrogen-bearing atmosphere having a pH. sub. 2 O/pH. sub. 2 of from 0. 015 to 0. 3; applying a refractory oxide coating containing an oxide less stable than SiO. sub. 2 at temperatures up to 2150. degree. F. ; and final texture annealing the steel.
A process for producing electromagnetic silicon steel having a cube-on-edge orientation. The steel has a permeability of at least 1870 (G/O. sub. e) at 10 oersteds and a core loss of no more than 0. 720 watts per pound at 17 kilogauss - 60 Hz. The process includes the steps of: preparing a melt of silicon steel containing from 0. 02 to 0. 06% carbon, from 0. 0006 to 0. 0080% boron, up to 0. 0100% nitrogen, no more than 0. 008% aluminum and from 2. 5 to 4. 0% silicon; casting said steel; hot rolling said steel; cold rolling said steel; decarburizing said steel; applying a refractory oxide coating containing both boron and manganese sulfate; and final texture annealing said steel.
Jack W. Shilling - Monroeville PA Clarence L. Miller - Pittsburgh PA Amitava Datta - Pittsburgh PA
Assignee:
Allegheny Ludlum Industries, Inc. - Pittsburgh PA
International Classification:
H01F 104
US Classification:
148113
Abstract:
A process for producing electromagnetic silicon steel having a cube-on-edge orientation and a permeability of at least 1870 (G/O. sub. e) at 10 oersteds. The process includes the steps of: preparing a melt of silicon steel containing from 0. 02 to 0. 06% carbon, from 0. 0006 to 0. 0080% boron, up to 0. 0100% nitrogen, no more than 0. 008% aluminum and from 2. 5 to 4. 0% silicon; casting said steel; hot rolling said steel; cold rolling said steel; decarburizing said steel; applying a refractory oxide coating containing both boron and an oxide less stable than SiO. sub. 2 at temperatures up to 2150. degree. F; and final texture annealing said steel.
A process for producing electromagnetic silicon steel having a cube-on-edge orientation and a permeability of at least 1870 (G/O. sub. e) at 10 oersteds. The process includes the steps of: preparing a melt of a silicon steel containing from 0. 02 to 0. 06% carbon, from 0. 0006 to 0. 0080% boron, up to 0. 0100% nitrogen, no more than 0. 008% aluminum and from 2. 5 to 4. 0% silicon; casting said steel; hot rolling said steel; cold rolling said steel; decarburizing said steel; applying a refractory oxide coating containing both boron and SiO. sub. 2 ; and final texture annealing said steel.
Name / Title
Company / Classification
Phones & Addresses
Clarence E. Miller Treasurer , Director
Mt Ararat Missionary Baptist Church, Inc
Clarence Mason Miller Medical Doctor
Clarence Miller Nonclassifiable Establishments
615 Maple Ln, Sewickley, PA 15143
Clarence T. Miller Chairman, Director, Vice President
Cambridge Inn/ Southgate Motel Cambridge, OH 2009 to 2010 Night Auditor / front DeskShenandoah Plaza Old Washington, OH 2009 to 2009 JanitorExecutive Management ServiceIndianapolis, IN 2008 to 2009Self Employed Cambridge, OH 2007 to 2008 Privet Home Health AideRetro Concepts / Denny's Restaurant Zanesville, OH 2006 to 2007 cook
Education:
Belmont Technical Collage Saint Clairsville, OH Jan 2010 to Jan 2013 Associates of Applied Science in Computer Science / Network administration
Military:
Rank: E-4 Jul 1989 to Aug 1992 Branch: US NavyL.i.location.original