Master of Science (MS) in Engineering & Global Operations Management
Skills
Lean Six Sigma Black Belt Certification ... • 2005) • Lean Six Sigma Green Belt Certification ... • 2002) • Manager Development Program (The Inventu... • 2008)
New York State Pollution Prevention Institute (Nysp2I)
Technical Program Manager
Xerox Jan 1, 2014 - Jul 2016
Services Procurement Partner
Xerox May 2012 - Jan 2014
Consumables Product Manager
Xerox Jul 2007 - May 2012
Supplies Program Manager
Xerox Dec 2004 - Dec 2007
Certified Lss Black Belt
Education:
Clarkson University 1999 - 2002
Master of Science, Masters, Engineering, Operations Management
University at Buffalo 1986 - 1991
Bachelors, Bachelor of Science, Chemistry
Skills:
Six Sigma Process Improvement Program Management Operations Management Business Process Improvement Cross Functional Team Leadership Leadership Project Management Training Management Change Management Strategy Process Engineering Team Leadership Strategic Planning Product Management Business Analysis Manufacturing Team Building Business Strategy Coaching Vendor Management Troubleshooting Business Development
Jun 2012 to 2000 Supplies Product / Strategy ManagerXerox Technical Services/Enterprise Services & Support Henrietta, NY 2007 to Jun 2012 Supplies Program ManagerXerox Supplies & Strategy Group Webster, NY 2004 to 2007 Lean Six Sigma Black Belt/Project ManagerXerox Consumables Development & Manufacturing Group Webster, NY 1997 to 2004 Process/Quality Engineer
Education:
Clarkson University Potsdam, NY 1999 to 2004 Master of Science (MS) in Engineering & Global Operations ManagementState University of New York (SUNY) at Buffalo Buffalo, NY 1986 to 1991 Bachelor of Science (BS) in Chemistry
Skills:
Lean Six Sigma Black Belt Certification (George Group, 2005), Lean Six Sigma Green Belt Certification (Six Sigma Systems, 2002), Manager Development Program (The Inventure Group, 2008)
Us Patents
Process For Coating Fluoroelastomer Fuser Member Layer Using Blend Of Two Different Fluorinated Surfactants
Samuel Kaplan - Walworth NY, US Alexander N. Klymachyov - Webster NY, US Robert N. Finsterwalder - Webster NY, US Kenneth W. Schlafer - Fairport NY, US Jarad N. Kohl - Rochester NY, US Joy L. Longhenry - Webster NY, US Alan R. Kuntz - Webster NY, US
Assignee:
Xerox Corporation - Norwalk CT
International Classification:
B05D 3/00
US Classification:
4273855
Abstract:
A process for producing a fuser member coating including a) adding and reacting a fluoroelastomer, a crosslinking agent, a polar solvent, and a blend of two different fluorinated copolymer surfactants to form a coating solution, and b) providing the coating solution on the fuser member to form a fuser member coating, wherein the blend of two different fluorinated copolymer surfactants includes copolymers selected from the group consisting of fluorinated acrylate copolymers and fluorinated polyether copolymers.
Process For Coating Fluoroelastomer Fuser Member Using Fluorine-Containing Additive
Samuel Kaplan - Walworth NY, US Alexander N. Klymachyov - Webster NY, US Robert N. Finsterwalder - Webster NY, US Kenneth W. Schlafer - Fairport NY, US Jarad N. Kohl - Rochester NY, US Joy L. Longhenry - Webster NY, US Alan R. Kuntz - Webster NY, US
Assignee:
Xerox Corporation - Norwalk CT
International Classification:
B05D 1/00
US Classification:
427387
Abstract:
A process for producing a fuser member coating including a) adding and reacting a fluoroelastomer, a crosslinking agent, a polar solvent, and a fluorine-containing polysiloxane additive to form a coating solution, and b) providing the coating solution on the fuser member to form a fuser member coating, wherein the fluorine-containing polysiloxane additive has pendant fluorinated groups.
Process For Coating Fluoroelastomer Fuser Member Using Fluorinated Surfactant And Fluroinated Polysiloxane Additive Blend
Samuel Kaplan - Walworth NY, US Alexander N. Klymachyov - Webster NY, US Robert N. Finsterwalder - Webster NY, US Kenneth W. Schlafer - Fairport NY, US Jarad N. Kohl - Rochester NY, US Joy L. Longhenry - Webster NY, US Alan R. Kuntz - Webster NY, US
Assignee:
Xerox Corporation - Norwalk CT
International Classification:
B05D 1/00
US Classification:
4273855, 427387
Abstract:
A process for producing a fuser member coating including a) adding and reacting a fluoroelastomer, a crosslinking agent, a polar solvent, and a fluorinated blend comprising a fluorinated copolymer surfactant and a fluorinated polydimethylsiloxane additive to form a coating solution, and b) providing the coating solution on the fuser member to form a fuser member coating, wherein the fluorinated copolymer surfactant comprises a copolymer selected from the group consisting of a fluorinated acrylate copolymer and a fluorinated polyether copolymer, and wherein said fluorinated polydimethylsiloxane additive comprises pendant fluorinated groups.
Process For Coating Fluoroelastomer Fuser Member Using Fluorinated Surfactant
Samuel Kaplan - Walworth NY, US Alexander N. Klymachyov - Webster NY, US Robert N. Finsterwalder - Webster NY, US Kenneth W. Schlafer - Fairport NY, US Jarad N. Kohl - Rochester NY, US Joy L. Longhenry - Webster NY, US Alan R. Kuntz - Webster NY, US
Assignee:
Xerox Corporation - Norwalk CT
International Classification:
B05D 3/02
US Classification:
4273855, 427387
Abstract:
A process for producing a fuser member coating including a) adding and reacting a fluoroelastomer, a crosslinking agent, a polar solvent, and a fluorinated copolymer surfactant to form a coating solution, and b) providing the coating solution on the fuser member to form a fuser member coating, wherein the fluorinated copolymer surfactant includes a copolymer selected from the group consisting of a fluorinated acrylate copolymer and a fluorinated polyether copolymer.
Process For Coating Fluoroelastomer Fuser Member Using Fluorinated Surfactant
Samuel Kaplan - Walworth NY, US Alexander N. Klymachyov - Webster NY, US Robert N. Finsterwalder - Webster NY, US Kenneth W. Schlafer - Fairport NY, US Jarad N. Kohl - Rochester NY, US Joy L. Longhenry - Webster NY, US Alan R. Kuntz - Webster NY, US
Assignee:
Xerox Corporation - Norwalk CT
International Classification:
B05D 1/00
US Classification:
4273855, 4274211, 4274274, 4274301
Abstract:
A process for producing a fuser member coating including a) adding and reacting a fluoroelastomer, a crosslinking agent, a polar solvent, and a fluorinated copolymer surfactant to form a coating solution, and b) providing said coating solution on said fuser member to form a fuser member coating, wherein said fluorinated copolymer surfactant comprises a fluorinated polyether copolymer comprising pendant trifluoroethoxy groups.
Process For Coating Fluoroelastomer Fuser Member Using Fluorinated Surfactant
Samuel Kaplan - Walworth NY, US Alexander N. Klymachyov - Webster NY, US Robert N. Finsterwalder - Webster NY, US Kenneth W. Schlafer - Fairport NY, US Jarad N. Kohl - Rochester NY, US Joy L. Longhenry - Webster NY, US Alan R. Kuntz - Webster NY, US
Assignee:
Xerox Corporation - Norwalk CT
International Classification:
B05D 3/02
US Classification:
4273855, 427387
Abstract:
A process for producing a fuser member coating including a) adding and reacting a fluoroelastomer, a crosslinking agent, a polar solvent, and a fluorinated copolymer surfactant to form a coating solution, and b) providing said coating solution on said fuser member to form a fuser member coating, wherein said fluorinated copolymer surfactant comprises a fluorinated acrylate copolymer having pendant fluorinated alkyl groups.
Charging Member Having Titanium Oxide Outer Coating On Grit Blasted Substrate
Joy Longhenry - Webster NY, US Timothy Jaskowiak - Webster NY, US Kenneth Schlafer - Fairport NY, US Kevin Taft - Williamson NY, US
Assignee:
Xerox Corporation
International Classification:
G03G015/08
US Classification:
399/266000, 399/286000
Abstract:
A process for producing a charging member by grit blasting a charging member substrate, plasma spraying a single component outer coating consisting essentially of titanium dioxide powder directly to the grit blasted stainless steel substrate, and the outer coating has a resistivity of from about 10to about 10ohms-cm.
Kenneth Schlafer - Fairport NY, US Ewart LeBlanc - Fairport NY, US Richard LaBombard - Williamson NY, US
International Classification:
G03G 15/00
US Classification:
399012000, 399024000
Abstract:
A fuser member using an RFID tag and a method for evaluating the performance of a fuser member using a RFID tag are disclosed. An RFID tag may be attached to a fuser member during a manufacturing process. Production data pertaining to the fuser member may be stored on the RFID tag during the manufacturing process as well. Once manufactured, the fuser member may be used in a xerographic apparatus. Run-time data may be stored in the RFID tag during operating of the xerographic apparatus. After the fuser member is removed from the xerographic apparatus, the performance of the fuser member may be evaluated by examining the run-time data. The fuser member may include a core, optionally made of metal, an insulating layer, and an RFID tag.
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