The Boeing Company since Oct 2010
Materials, Process, and Physics Engineer
North Dakota State University Sep 2007 - Oct 2010
Graduate Research Assistant
North Dakota State University Jan 2009 - Jun 2009
Teaching Assistant
University of Minnesota Jul 2007 - Sep 2007
X-Ray Diffraction and Scanning Probe Microscopy Specialist
California Polytechnic State University, San Luis Obispo Sep 2006 - Jun 2007
Lab Assistant
Education:
North Dakota State University 2007 - 2013
PhD, Coatings and Polymeric Materials
California Polytechnic State University-San Luis Obispo 2006 - 2007
MS, Polymers and Coatings Science
California Polytechnic State University-San Luis Obispo 2001 - 2006
BS, Chemistry
Skills:
Rheology Polymers Characterization Polymer Characterization Physics Composites Materials Science Modeling and Simulation Multiscale Modeling Color and Appearance Corrosion Mechanisms Atomic Force Microscopy Polymer Science Electrochemistry Nmr Coatings Powder X Ray Diffraction Materials Nanoparticles Afm Polymer Engineering Corrosion Engineering Durability Testing Nanotechnology Product Development Material Characterisation Polymer Composites Thin Film Coating Product Design Polymer Nanocomposites
- Acton, AU - Chicago IL, US Paul Andrew White - Acton, AU Anthony Ewart Hughes - Action, AU Tracey Anne Markley - Acton, AU Timothy Graham Harvey - Acton, AU Joseph Osborne - Seattle WA, US Erik Sapper - Grover Beach CA, US
The present disclosure relates to agents, compositions, and methods for inhibiting corrosion in various substrates, for example in metal substrates. The present disclosure also relates to compositions for inhibiting corrosion comprising at least one organic heterocyclic compound and at least one metal salt or mixed metal salt selected from rare earth, alkali earth and transition metals.
Polymeric Agents And Compositions For Inhibiting Corrosion
- Chicago IL, US - Acton, AU Paul Andrew WHITE - Acton, AU Anthony Ewart HUGHES - Acton, AU Tracey Anne MARKLEY - Acton, AU Timothy Graham HARVEY - Acton, AU Joseph OBSBORNE - Seattle WA, US Erik SAPPER - Ballwin MO, US
Assignee:
The Boeing Company - Chicago IL Commonwealth Scientific and Industrial Research Organisation - Acton
International Classification:
C09D 5/08 C09K 15/32
Abstract:
The present disclosure is directed to processes, compositions and agents for inhibiting corrosion in various substrates, for example metal substrates. The present disclosure is also directed to corrosion inhibitors comprising organometallic polymers such as metal-organic frameworks (MOFs), including compositions and processes comprising MOFs for inhibiting corrosion in metal substrates.
Manufacture Electrodes For Electrochemical Monitoring
- Chicago IL, US Sean M. PENNELL - Huntsville AL, US Erik D. SAPPER - Ballwin MO, US Christina C. GRUMBACH - Harvest AL, US
International Classification:
G01N 17/02
Abstract:
In one aspect, a material system comprises a metal substrate and a first coating layer disposed on the metal substrate. A first electrode is directly disposed on the first coating layer, and a second electrode is disposed on the metal substrate. In one aspect, a method for determining material performance includes flexing a material system and detecting impedance of the material system with an electrochemical impedance spectrometer. The material system has a metal substrate, a first coating layer disposed on the metal substrate, a first electrode directly disposed on the first coating layer, and a second electrode disposed on the metal substrate.
Manufacture Electrodes For Electrochemical Monitoring
- Chicago IL, US Sean M. PENNELL - Huntsville AL, US Erik D. SAPPER - Ballwin MO, US Christina C. GRUMBACH - Harvest AL, US
International Classification:
G01N 17/02 G01N 27/02 G01N 27/04
Abstract:
In one aspect, a material system comprises a metal substrate and a first coating layer disposed on the metal substrate. A first electrode is directly disposed on the first coating layer, and a second electrode is disposed on the metal substrate. In one aspect, a method for determining material performance includes flexing a material system and detecting impedance of the material system with an electrochemical impedance spectrometer. The material system has a metal substrate, a first coating layer disposed on the metal substrate, a first electrode directly disposed on the first coating layer, and a second electrode disposed on the metal substrate.
- Acton, Australian Capital Territory, AU - Chicago IL, US Paul Andrew WHITE - Acton, AU Anthony Ewart HUGHES - Acton, AU Tracey Anne MARKLEY - Acton, AU Timothy Graham HARVEY - Acton, AU Joseph OSBORNE - Seattle WA, US Erik SAPPER - Ballwin MO, US
The present disclosure is directed to the agents, compositions, and methods for inhibiting corrosion in various substrates, for example in metal substrates. The compositions for inhibiting corrosion comprise at least one organic heterocyclic compound and at least one metal salt or mixed metal salt selected from rare earth, alkali earth and transition metals.
Systems, Compositions, And Methods For Corrosion Inhibition
- Chicago IL, US Erik David Sapper - Everett WA, US
International Classification:
C09D 5/08 C09D 7/12 C08K 5/372
Abstract:
Corrosion inhibition systems, including coated substrates, coating materials and corrosion inhibition compounds, and methods of making the same are disclosed. These systems and methods include corrosion inhibition compounds that are responsive to corrosion at a surface, releasing active inhibitor groups upon a corrosion stimulus. The active inhibitor groups are selected to block corrosion at the surface by inhibiting oxidation reactions, reduction reactions and/or by forming a passivation layer. Corrosion inhibition compounds may be linear polymers that include the inhibitor groups linked together with labile linkages that are disulfide or metal-sulfide bonds.
Systems, Compositions, And Methods For Corrosion Inhibition
Corrosion inhibition systems, including coated substrates, coating materials and corrosion inhibition compounds, and methods of making the same are disclosed. These systems and methods include corrosion inhibition compounds that are responsive to corrosion at a surface, releasing active inhibitor groups upon a corrosion stimulus. The active inhibitor groups are selected to block corrosion at the surface by inhibiting oxidation reactions, reduction reactions and/or by forming a passivation layer.
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