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Shiv K Bakhshi, 8310541 Watch Hill Ln, Centerville, OH 45458

Shiv Bakhshi Phones & Addresses

10541 Watch Hill Ln, Dayton, OH 45458    937-8850055   

8028 Timberlodge Trl, Dayton, OH 45458    937-5670675   

Centerville, OH   

Xenia, OH   

Columbus, OH   

3071 Willow Springs Ct, Lewis Center, OH 43035    740-5071429   

Bellbrook, OH   

Franklin, OH   

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Shiv K Bakhshi

Linkedin

Work

Company: Burke products, inc. Jan 1997 Position: Director

Education

Degree: Masters, Master of Science In Mechanical Engineering School / High School: The Ohio State University 1969 to 1972 Specialities: Engineering, Business

Skills

Manufacturing • Engineering • Continuous Improvement • Factory • Contract Negotiation

Industries

Electrical/Electronic Manufacturing

Mentions for Shiv K Bakhshi

Shiv Bakhshi resumes & CV records

Resumes

Shiv Bakhshi Photo 11

Director

Location:
10541 Watch Hill Ln, Centerville, OH 45458
Industry:
Electrical/Electronic Manufacturing
Work:
Burke Products, Inc.
Director
Burke Products, Inc.
President and Chief Executive Officer
Owens Corning Jan 1977 - May 1992
Senior Engineer
Education:
The Ohio State University 1969 - 1972
Masters, Master of Science In Mechanical Engineering, Engineering, Business
Punjab Engineering College
Masters, Master of Science In Mechanical Engineering
Skills:
Manufacturing, Engineering, Continuous Improvement, Factory, Contract Negotiation

Publications & IP owners

Us Patents

Apparatus And Method For The Manufacture Of Loose Fibrous Mineral Material

US Patent:
4909817, Mar 20, 1990
Filed:
Feb 6, 1989
Appl. No.:
7/306602
Inventors:
Gurdev S. Gill - Heath OH
Shiv K. Bakhshi - Columbus OH
Assignee:
Owens-Corning Fiberglas Corporation - Toledo OH
International Classification:
C03B 3704
US Classification:
65 8
Abstract:
The present invention provides a multi-purpose collection system for use in the simultaneous manufacture of loose fibrous mineral material and insulation blankets or mats from the forming machine. The loose fibrous mineral material is directly intercepted from the fiberizer units of the forming machine and requires no post-processing steps other than separation and packaging.

Method For Manufacturing A Mineral Fiber Product

US Patent:
5614132, Mar 25, 1997
Filed:
Jun 7, 1995
Appl. No.:
8/473600
Inventors:
Shiv K. Bakhshi - Columbus OH
Steven H. Williams - Alexandria OH
James W. Scott - Newark OH
Randall M. Haines - Frazeysburg OH
Assignee:
Owens Corning Fiberglas Technology, Inc. - Summit IL
International Classification:
C03B 3704
D01D 500
US Classification:
264 6
Abstract:
A method for manufacturing a mineral fiber product includes centrifuging mineral fibers with a spinner, forming a veil of the mineral fibers moving in the direction of the axis of the spinner, directing toward the veil, from a position within the veil, organic material to cause intermingling of the organic material and the mineral fibers, and, collecting the intermingled organic material and mineral fibers to form a mineral fiber product.

Mineral Fiber Product Containing Polymeric Material

US Patent:
5736475, Apr 7, 1998
Filed:
Apr 9, 1997
Appl. No.:
8/835277
Inventors:
Shiv K. Bakhshi - Columbus OH
Steven H. Williams - Alexandria OH
James W. Scott - Newark OH
Randall M. Haines - Frazeysburg OH
Ralph D. McGrath - Granville OH
Assignee:
Owens Corning Fiberglas Technology, Inc. - Summit IL
International Classification:
C03B 3702
C03B 3704
US Classification:
442415
Abstract:
A method for manufacturing a mineral fiber product includes establishing a stream of mineral fibers, directing polymeric fibers toward the stream of mineral fibers to cause intermingling of the polymeric material, and applying heat to the polymer fibers so that some of them become softened to the extent that they lose their fibrous form and become attached to the mineral fibers as non-fibrous particles, whereas some of the polymer fibers retain their fibrous form.

Method And Apparatus For Impregnating A Porous Substrate With Foam

US Patent:
5008131, Apr 16, 1991
Filed:
Jun 14, 1982
Appl. No.:
6/388283
Inventors:
Shiv K. Bakhshi - Columbus OH
Assignee:
Owens-Corning Fiberglas Corporation - Toledo OH
International Classification:
B05D 126
B05D 306
B05C 300
B05C 318
US Classification:
427209
Abstract:
A method and apparatus for impregnating a pourous substrate with foam the method comprising transporting the porous substrate through a nip region defined by a moving foraminous surface such as a rotating foraminous drum and a foam discharge head, the foam discharge head comprising one or more discharge openings, where the transport of the porous substrate through the nip region causes the porous substrate to be compressed as it passes the discharge openings, and supplying foam to the discharge head with pressure sufficient to discharge foam through the discharge openings to impregnate the porous substrate. A surface support conveyor is positioned between the foraminous surface and the porous substrate.

Molding Of Glass Wool With Wrinkle-Free Surface

US Patent:
4508673, Apr 2, 1985
Filed:
May 4, 1984
Appl. No.:
6/606859
Inventors:
Steven B. Stahl - Granville OH
Shiv K. Bakhshi - Columbus OH
George M. Naul - Granville OH
Assignee:
Owens-Corning Fiberglas Corporation - Toledo OH
International Classification:
B29G 100
US Classification:
264120
Abstract:
The process includes a first molding step with an upper surface of the glass wool pelt having been sprayed with water and with a lower surface of the glass wool pelt insulated from the lower mold portion by a previously molded glass wool insulating sheet, and a second molding step with the insulating sheet removed.

Method And Apparatus For Impregnating A Porous Substrate With Foam

US Patent:
5009932, Apr 23, 1991
Filed:
Jun 14, 1982
Appl. No.:
6/388284
Inventors:
Paul A. Klett - Newark OH
Shiv K. Bakhshi - Columbus OH
Steven B. Stahl - Granville OH
Assignee:
Owens-Corning Fiberglas Corporation - Toledo OH
International Classification:
B05D 126
B05D 306
B05C 300
B05C 318
US Classification:
427243
Abstract:
A method and apparatus for impregnating a porous substrate with foam, the method comprising transporting the porous substrate through a nip region defined by a rotating foraminous drum and a foam discharge head, the foam discharge head comprising one or more discharge openings, supplying foam to the discharge head with pressure sufficient to discharge foam through the discharge openings to impregnate the porous substrate, and urging the foam discharge head and the foraminous drum toward each other to compress the porous substrate as it passes the discharge openings. The foam discharge head is mounted to a hinged plate to enable the urging of the discharge head toward the foraminous drum.

Method For Manufacturing A Mineral Fiber Product

US Patent:
5458822, Oct 17, 1995
Filed:
Jun 21, 1993
Appl. No.:
8/078909
Inventors:
Shiv K. Bakhshi - Columbus OH
Steven H. Williams - Alexandria OH
James W. Scott - Newark OH
Randall M. Haines - Frazeysburg OH
Assignee:
Owens-Corning Fiberglas Technology, Inc. - Summit IL
International Classification:
C03B 3704
D01D 500
US Classification:
264 6
Abstract:
A method for manufacturing a mineral fiber product comprises centrifuging mineral fibers with a spinner, forming a veil of the mineral fibers moving in the direction of the axis of the spinner, directing toward the veil, from a position within the veil, polymeric material to cause intermingling of the polymeric material and the mineral fibers, and, collecting the intermingled polymeric material and mineral fibers to form a mineral fiber product.

Method For Manufacturing A Mineral Fiber Product

US Patent:
5490961, Feb 13, 1996
Filed:
Jun 21, 1993
Appl. No.:
8/079413
Inventors:
Shiv K. Bakhshi - Columbus OH
Steven H. Williams - Alexandria OH
James W. Scott - Newark OH
Randall M. Haines - Frazeysburg OH
Ralph D. McGrath - Granville OH
Assignee:
Owens-Corning Fiberglas Technology, Inc. - Summit IL
International Classification:
C03B 3704
US Classification:
264 6
Abstract:
A method for manufacturing a mineral fiber product includes establishing a stream of mineral fibers, directing polymeric fibers toward the stream of mineral fibers to cause intermingling of the polymeric material, and applying heat to the polymer fibers so that some of them become softened to the extent that they lose their fibrous form and become attached to the mineral fibers as non-fibrous particles, whereas some of the polymer fibers retain their fibrous form.

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