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Michael Ponting Phones & Addresses

  • 2548 Overlook Ave, Cleveland, OH 44106 (216) 371-5805
  • 2552 Overlook Ave, Cleveland, OH 44106 (216) 371-5805
  • Broadview Heights, OH
  • Elgin, IL
  • 150 Chesapeake Ct, Elyria, OH 44035 (440) 322-7996
  • Toledo, OH
  • Decatur, IN

Resumes

Resumes

Michael Ponting Photo 1

President

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Location:
Broadview Heights, OH
Industry:
Research
Work:
Case Western Reserve University Mar 2010 - Dec 2011
Research Associate

Polymerplus Llc Mar 2010 - Dec 2011
President

Polyone 2003 - 2006
Research Co-Op
Education:
Case Western Reserve University 2004 - 2010
Doctorates, Doctor of Philosophy, Chemical Engineering
The University of Toledo 1999 - 2004
Bachelors, Bachelor of Science, Chemical Engineering
Skills:
Polymers
Materials Science
Nanomaterials
Characterization
Polymer Characterization
Tga
Polymer Science
Spectroscopy
Nanocomposites
Chemistry
Nanotechnology
Polymer Chemistry
Powder X Ray Diffraction
Rheology
R&D
Differential Scanning Calorimetry
Microsoft Office
Design of Experiments
Scanning Electron Microscopy
Uv/Vis
Optics
Chemical Engineering
Work Ethic
Troubleshooting
Employee Recognition
Research and Development
Michael Ponting Photo 2

Michael Ponting

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Business Records

Name / Title
Company / Classification
Phones & Addresses
Michael Ponting
Sales And Marketing Executive
Polymerplus LLC
Commercial Physical Research
31322 Aldrich Dr, Cleveland, OH 44140
PO Box 18789, Cleveland, OH 44118

Publications

Us Patents

Consolidated Multilayered Gradient Refractive Index Optical Materials

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US Patent:
20130194677, Aug 1, 2013
Filed:
Jan 28, 2013
Appl. No.:
13/751919
Inventors:
Michael T. Ponting - Cleveland Heights OH, US
Assignee:
POLYMERPLUS LLC - Valley View OH
International Classification:
G02B 1/04
B29D 11/00
US Classification:
359652, 264 17
Abstract:
A consolidated multilayered GRIN optical material includes a multilayered composite GRIN sheet that includes a plurality of consolidated coextruded multilayered polymer films. Each of the multilayered polymer films includes a plurality of at least two alternating layers (A) and (B). Layer (A) includes a first blend of polymer components and layer (B) includes a second blend of polymer components. The multilayered composite GRIN sheet has an external optical transmission of at least 80% at a wavelength of 633 nm measured using UV-VIS spectroscopy and is free of intralayer polymer domains at least 1 micron size scale in any dimension.

Multicomponent Layered Dielectric Film With Surface Modification

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US Patent:
20210291499, Sep 23, 2021
Filed:
Jul 18, 2019
Appl. No.:
17/261515
Inventors:
- VALLEY VIEW OH, US
Michael Ponting - Valley View OH, US
International Classification:
B32B 27/08
B32B 27/20
H01G 4/14
Abstract:
A multicomponent dielectric film includes overlapping dielectric layers and outer layers that have a higher surface energy compared to the overlapping dielectric layers, the overlapping dielectric layers including at least a first polymer material, a second polymer material, and optionally a third polymer material, adjoining dielectric layers defining a generally planar interface therebetween which lies generally in an x-y plane of an x-y-z coordinate system, the interfaces between the layers delocalizing the charge build up in the layers.

Gradient Refractive Index Optical Blocks For Virtual Reality Imaging Applications

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US Patent:
20190056537, Feb 21, 2019
Filed:
May 7, 2018
Appl. No.:
15/972796
Inventors:
- Coppell TX, US
MICHAEL PONTING - BROADVIEW HEIGHTS OH, US
RICHARD FLYNN - NEWBURY PARK CA, US
JAMES WELSH - DALLAS TX, US
International Classification:
G02B 3/08
G02B 27/01
G02B 3/00
Abstract:
A virtual reality headset incorporating gradient refractive index (GRIN) lenses within the optical blocks thereof. Optical blocks of varying size and position are used. GRIN lenses are fabricated to fit within the optical block and are shaped to possess desired application-specific characteristics such as having one or more diffractive surfaces.

Multicomponent Layered Dielectric Film And Uses Thereof

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US Patent:
20180257327, Sep 13, 2018
Filed:
Dec 4, 2015
Appl. No.:
15/760148
Inventors:
- Valley View OH, US
Michael T. Ponting - Valley View OH, US
International Classification:
B32B 3/14
B32B 3/04
B32B 3/18
B32B 3/26
B32B 27/08
B32B 27/20
B32B 27/30
B32B 27/36
H01G 4/14
H01G 4/20
H01G 4/10
Abstract:
A multicomponent dielectric film includes discrete overlapping dielectric layers of at least a first polymer material, a second polymer material, and a third polymer material. Adjoining dielectric layers define a generally planar interface therebetween which lies generally in an x-y plane of an x-y-z coordinate system. The interfaces between the layers delocalizing the charge build up in the layers. At least one dielectric layer including a stack of discrete polymer layers with polymer layer interfaces extending transverse to the x-y plane and optionally at least one filler having a higher dielectric constant than the first polymer material, the second polymer material, and/or the third polymer material.

Polymeric Gradient Optical Element And Methods Of Fabricating

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US Patent:
20180133988, May 17, 2018
Filed:
Nov 17, 2017
Appl. No.:
15/816433
Inventors:
- Valley View OH, US
Michael T. Ponting - Valley View OH, US
International Classification:
B29D 11/00
G02B 1/04
G02B 3/00
Abstract:
A multilayered gradient optical element includes a thermoformed multilayered polymer material having a gradient in at least one optical property that is defined a gradient in concentration of at least one optical additive in the layers of the material. The thermoformed multilayered material includes a consolidated plurality of extruded polymer films having varying concentrations of the at least one optical additive.

Aspherical Grin Lens

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US Patent:
20140192420, Jul 10, 2014
Filed:
Apr 17, 2013
Appl. No.:
13/864730
Inventors:
Case Western Reserve University - , US
Anne P. Hiltner - Cleveland OH, US
Michael T. Ponting - Cleveland Heights OH, US
International Classification:
G02B 3/00
G02B 3/02
US Classification:
359652, 264 17
Abstract:
A method of fabricating an aspherical gradient refractive index lens includes co-extruding a first polymer material having a first refractive index and a second polymer material having a second refractive index different than the first refractive index to form multilayered polymer composite films, assembling the multilayered polymer composite films into a multilayer composite GRIN sheet and shaping the multilayered composite GRIN sheet into an aspherical lens.
Michael T Ponting from Broadview Heights, OH, age ~44 Get Report