MN

Mohamed Nazmy

AS Asea Brown Boveri, S.A.: 16 patents #3 of 1,048Top 1%
BC Bbc Brown, Boveri & Company: 6 patents #34 of 667Top 6%
AT Alstom Technology: 2 patents #38 of 376Top 15%
AA Abb Management Ag: 1 patents #39 of 142Top 30%
📍 Gebenstorf, CH: #1 of 41 inventorsTop 3%
Overall (All Time): #65,803 of 4,157,543Top 2%
45
Patents All Time

Issued Patents All Time

Showing 26–45 of 45 patents

Patent #TitleCo-InventorsDate
5863494 Iron-nickel superalloy of the type in 706 Corrado Noseda, Joachim Rosler, Markus Staubli 1999-01-26
5846353 Process for the production of a body of material stable at high temperatures from an iron-nickel superalloy of the type in 706 Markus Staubli 1998-12-08
5422070 Oxidation-resistant and corrosion-resistant alloy based on doped iron aluminide, and use of said alloy Corrado Noseda, Markus Staubli 1995-06-06
5411702 Iron-aluminum alloy for use as thermal-shock resistance material Corrado Noseda, Markus Staubli 1995-05-02
5342577 High temperature alloy for machine components based on doped tial Markus Staubli 1994-08-30
5299353 Turbine blade and process for producing this turbine blade Markus Staubli 1994-04-05
5286443 High temperature alloy for machine components based on boron doped TiAl Markus Staubli 1994-02-15
5207982 High temperature alloy for machine components based on doped TiAl Markus Staubli 1993-05-04
5190603 Process for producing a workpiece from an alloy containing dopant and based on titanium aluminide Markus Staubli 1993-03-02
5180451 Process for the production of longitudinally-directed coarse-grained columnar crystals in a workpiece consisting of an oxide-dispersion-hardened nickel-based superalloy 1993-01-19
5158744 Oxidation- and corrosion-resistant alloy for components for a medium temperature range based on doped iron aluminide, Fe.sub.3 Al 1992-10-27
5064734 Current-transmitting components for stacked high-temperature fuel cells and method of producing them 1991-11-12
5059259 Oxidation-and corrosion-resistant high-temperature alloy of high toughness at room temperature for directional solidification, based on an intermetallic compound of the nickel aluminide type Markus Staubli 1991-10-22
4957703 Precipitation-hardenable nickel-base superalloy with improved mechanical properties in the temperature range from 600 to 750 degrees celsius Peter Robert Lawrence, Markus Staubli 1990-09-18
4909859 Process for increasing the oxidation resistance and corrosion resistance of a component made of a dispersion strengthened superalloy by a surface treatment Hans Rydstad 1990-03-20
4820354 Method for producing a workpiece from a corrosion- and oxidation-resistant Ni/Al/Si/B alloy 1989-04-11
4795507 Process for increasing the room-temperature ductility of a workpiece composed of an oxide-dispersion-hardened nickel based superalloy and existing as coarse, longitudinally oriented columnar crystallites 1989-01-03
4676843 Process for joining component workpieces made of a superalloy employing the diffusion bonding process 1987-06-30
4627896 Method for the application of a corrosion-protection layer containing protective-oxide-forming elements to the base body of a gas turbine blade and corrosion-protection layer on the base body of a gas turbine blade Robert Singer 1986-12-09
4612062 Process for producing a fine-grained workpiece from a nickel-based superalloy Hans Rydstad, Gunther Schroder, Robert Singer 1986-09-16