Greving
Daniel Greving, Scottsdale, AZ US
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20100209633 | CURVED TEST SPECIMEN - A cylindrical test specimen is provided. The test specimen comprises a metallic sheet curved to form a cylindrical shape, an adhesive layer contacting the metallic sheet, and a thermal barrier coating coupled to the metallic sheet with the adhesive layer, the thermal barrier coating adapted to inhibit thermal transfer. | 08-19-2010 |
20110123385 | METHODS OF FORMING DUAL MICROSTRUCTURE COMPONENTS - Methods of forming dual microstructure components include consolidating a powder material comprising an alloy to form a billet, the billet having a first grain structure, inductively heating the billet at an inductive heat treat temperature above a gamma prime solvus temperature of the alloy and subjecting the billet to a subsolvus heat treat temperature that is below the gamma prime solvus temperature of the alloy, waiting a period of time for the first grain structure in an outer portion of the billet to transform into a second grain structure that is coarser than the first grain structure, after the steps of inductively heating and subjecting the billet to the subsolvus heat treat temperature. The methods also include dividing the billet into at least two sections, and machining a final shape into one or more of the at least two sections to form the dual microstructure component. | 05-26-2011 |
Daniel J. Greving, Scottsdale, AZ US
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20090132193 | METHODS AND APPARATUS FOR CALIBRATING STRIATION DENSITY MODELS FOR MATERIALS - A method for generating a calibration for a striation density model with respect to a material includes the steps of generating a first relationship between a striation density and a depth of a crack in a specimen comprising the material, generating a second relationship between the striation density and the depth of the crack in the specimen, and calculating an adjustment, based on a comparison between the first relationship and the second relationship. | 05-21-2009 |
Matthew Greving, Phoenix, AZ US
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20100056392 | MICROSTRUCTURE AND MICRODOMAIN MICROARRAYS, METHODS OF MAKING SAME AND USES THEREOF - Disclosed are methods for direct characterization of microdomains and/or three-dimensional microstructure arrays bearing high densities of reactive sites using Matrix Assisted Laser Desorption Ionization Time of Flight Mass Spectrometery (MALDI-MS) and other analytical techniques. The high site density of the arrays can provide sufficient sample of each array element and/or materials bound to each element to obtain directly using common analytical techniques such as MALDI-MS. Spatially directed synthesis of heteropolymers is done through the use of pliotolabile, electrically labile, and chemically labile protecting group(s). | 03-04-2010 |
20120021967 | SYNTHETIC ANTIBODIES - The present invention provides methods for synthetic antibodies, methods for making synthetic antibodies, methods for identifying ligands, and related methods and reagents. | 01-26-2012 |
20120065123 | Synthetic Antibodies - Methods for synthetic antibodies, methods for making synthetic antibodies, methods for identifying ligands, and related methods and reagents. | 03-15-2012 |
20140128280 | Synthetic Antibodies - The present invention provides methods for synthetic antibodies, methods for making synthetic antibodies, methods for identifying ligands, and related methods and reagents. | 05-08-2014 |
Matthew Christopher Greving, Washington, IL US
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20120240899 | ENGINE SYSTEM HAVING FAILURE-PROTECTED AIR SHUTOFF CONTROL - An engine system is disclosed. The engine system may have an engine, an intake duct, and a valve disposed within the intake duct and movable between a flow-passing first position, and a flow-blocking second position. The engine system may also have an actuator configured to move the valve from the second position toward the first position, and a biasing element configured to move the valve from the first position toward the second position. The engine system may additionally have a sensor configured to sense an operating condition of the engine, and a controller. The controller may be configured to receive an input indicative engine activation, and to activate the actuator based on the input. The controller may also be configured to make a determination that the operating condition of the engine has deviated from a desired operating condition, and to deactivate the actuator based on the determination. | 09-27-2012 |
Matthew Paul Greving, San Diego, CA US
Patent application number | Description | Published |
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20120187287 | Substrate compositions and methods of use thereof - The subject matter provided herein relates to substrates for desorbing and ionizing analytes, and kits and methods of use thereof. The substrate provided herein comprises a porous semiconductor, a fluorous initiator, and a photoactive compound containing a fluorous group. | 07-26-2012 |