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Michael I Kozar, 451301 1St Ave UNIT 1305, Seattle, WA 98101

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1812 E Republican St APT 2, Seattle, WA 98112   

Renton, WA   

Bellevue, WA   

Kent, WA   

Federal Way, WA   

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Michael Kozar

Location:
United States

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Us Patents

Fibers With Interlocking Shapes

US Patent:
8530027, Sep 10, 2013
Filed:
Dec 15, 2010
Appl. No.:
12/968535
Inventors:
Michael P. Kozar - Mercer Island WA, US
Mark S. Wilenski - Mercer Island WA, US
Assignee:
The Boeing Company - Chicago IL
International Classification:
B32B 3/06
B23P 17/00
D02G 3/22
US Classification:
428 99, 294191, 428 98, 428105, 428113, 428357
Abstract:
A composite article may comprise a plurality of fibers. Each one of the fibers may have upper, lower and side surfaces. The fibers may be embedded within a matrix. At least one of the upper and lower surfaces of at least one of the fibers may include a notch region and a pair of side regions on opposite sides of the notch region. The plurality of fibers may be arranged in layers. At least one of the fibers of one of the layers may be received within the notch region of at least one of the fibers of another one of the layers.

Transparent Composites With Organic Fiber

US Patent:
8559779, Oct 15, 2013
Filed:
Oct 8, 2010
Appl. No.:
12/901342
Inventors:
Michael P. Kozar - Seattle WA, US
Mark S. Wilenski - Mercer Island WA, US
Assignee:
The Boeing Company - Chicago IL
International Classification:
G02B 6/10
B32B 5/12
G02B 6/00
US Classification:
385131, 385147, 428113, 428114
Abstract:
A composite article comprises a substantially transparent matrix and at least one substantially transparent organic fiber embedded within the matrix. The matrix and the organic fiber may have substantially equivalent refractive indices within a wavelength band of interest.

Optimized Fiber Shapes For Improved Optical Performance

US Patent:
8568854, Oct 29, 2013
Filed:
Dec 15, 2010
Appl. No.:
12/968557
Inventors:
Keith J. Davis - Seattle WA, US
Michael P. Kozar - Mercer Island WA, US
Mark S. Wilenski - Mercer Island WA, US
Assignee:
The Boeing Company - Chicago IL
International Classification:
B32B 5/12
B29C 65/00
US Classification:
428113, 428105
Abstract:
A composite article has an article surface and may comprise a plurality of fibers at least partially embedded in a matrix. Each fiber may have at least one base surface and a pair of side surfaces. The side surfaces may be oriented in non-perpendicular relation to the base surface. The fibers may be positioned in side-by-side relation to one another such that the side surfaces of each fiber are oriented substantially parallel to the side surfaces of the immediately adjacent fibers.

Selectively Coupled Fibers In Composites

US Patent:
8609219, Dec 17, 2013
Filed:
Dec 15, 2010
Appl. No.:
12/968575
Inventors:
Michael P. Kozar - Mercer Island WA, US
Mark S. Wilenski - Mercer Island WA, US
Daniel C. Stanley - Renton WA, US
Assignee:
The Boeing Company - Chicago IL
International Classification:
B32B 5/12
B32B 37/00
B32B 27/00
US Classification:
428113, 294191, 156 60, 1563082, 428 98, 428 99, 428105
Abstract:
A composite article may include a plurality of fibers embedded within a matrix. The fibers may include a first fiber and a second fiber which may be oriented in substantially parallel relation to one another. The first and second fibers may be connected to one another at one or more connection sites.

Sandwiched Fiber Composites For Ballistic Applications

US Patent:
2012015, Jun 21, 2012
Filed:
Dec 15, 2010
Appl. No.:
12/969532
Inventors:
Mark S. Wilenski - Mercer Island WA, US
Michael P. Kozar - Mercer Island WA, US
Assignee:
The Boeing Company - Seal Beach CA
International Classification:
F41H 5/04
B31B 1/60
B32B 7/02
US Classification:
89 3602, 428217, 156 60, 89905, 89914
Abstract:
A structure may comprise a first outer layer and a polymer fiber composite layer mounted on one side of the first outer layer.

Controlled Fiber-Matrix Adhesion In Polymer Fiber Composites

US Patent:
2012015, Jun 21, 2012
Filed:
Dec 15, 2010
Appl. No.:
12/968514
Inventors:
Mark S. Wilenski - Mercer Island WA, US
Michael P. Kozar - Mercer Island WA, US
Assignee:
The Boeing Company - Seal Beach CA
International Classification:
B32B 5/08
B32B 7/02
B32B 5/26
B32B 37/12
US Classification:
428212, 156 60, 428221
Abstract:
A composite article includes a plurality of fibers at least partially embedded within a matrix. The fibers may be adhered to the matrix at a level of adhesion. The adhesion level between the fibers and the matrix may be varied spatially within the composite article. For example, the adhesion level may vary along a length of one of the fibers. The adhesion level may also vary among the fibers of a given layer. Furthermore, the adhesion level may vary between the layers of the composite article.

Flexible Magnet Directional Stiffening Methods

US Patent:
2013025, Oct 3, 2013
Filed:
Apr 3, 2012
Appl. No.:
13/438083
Inventors:
Michael P. Kozar - Mercer Island WA, US
John R. Hull - Sammamish WA, US
John A. Mittleider - Kent WA, US
Mark S. Wilenski - Mercer Island WA, US
Assignee:
THE BOEING COMPANY - Seal Beach CA
International Classification:
H02K 1/27
US Classification:
310 44
Abstract:
Magnets and methods of their manufacture are disclosed for use in flywheel assemblies, such that the magnets comprise oriented fibers, such as, for example, axially-oriented fibers in a flexible rotor magnet composition to predictably allow the magnet to expand dimensionally upon rotation only in a predetermined and predictable fashion while maintaining critical contact with a rotor surface.

Nested-Rotor Open-Core Flywheel

US Patent:
2013026, Oct 3, 2013
Filed:
Apr 3, 2012
Appl. No.:
13/438027
Inventors:
John R. Hull - Sammamish WA, US
Michael Strasik - Sammamish WA, US
John A. Mittleider - Kent WA, US
Mark S. Wilenski - Mercer Island WA, US
Michael P. Kozar - Mercer Island WA, US
Assignee:
THE BOEING COMPANY - Seal Beach CA
International Classification:
H02K 7/02
H01L 39/02
B82Y 99/00
H02K 7/18
US Classification:
505166, 310 74, 290 1 R, 977948, 977742, 977750
Abstract:
Methods and apparatuses are disclosed for incorporating a plurality of independently rotating rotors made from high-strength materials with a high-temperature superconductive (HTS) bearing technology into an open-core flywheel architecture to achieve a desired high energy density in the flywheel energy storage devices and to obtain superior results and performance.

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