Material Sciences Corporation - Canton, Mi, USA since Mar 2011
Vice President - Sales, Marketing & Technology - Automotive NA
Material Sciences Corporation Dec 2002 - Apr 2011
Global NVH Director - Brakes
Federal Mogul Jan 1996 - Dec 2002
NVH Manager
Federal Mogul Feb 1993 - Feb 1996
NVH Technical Specialist, Noyon, France
Automotive Product Development Six Sigma Engineering Vehicles Manufacturing Continuous Improvement Testing Analysis Lean Manufacturing New Business Development Supply Chain Management Fmea Management Leadership Strategic Planning Cross Functional Team Leadership Sales Management Program Management Product Design Product Marketing Negotiation Engineering Management Team Building Purchasing Technical Leadership Business Development Business Strategy Process Engineering Apqp 5S Product Management P&L Management Finite Element Analysis
Interests:
Table Tennis Jogging Soccer Golf Travel
Languages:
French German English
Certifications:
6 Sigma Black Belt
Vice President Sales And Marketing At Material Sciences Corporation
Hilcorp
Production Analyst Iii
El Paso May 2011 - Dec 2017
Senior Production Analyst
Dynegy Nov 2009 - May 2011
Analyst Ii - Fair Value Accounting
Dynegy Feb 2008 - Nov 2009
Analyst Ii - Corporate Accounting
Dynegy Jul 2006 - Feb 2008
Analyst I - Corporate Accounting
Education:
Texas State University 2002 - 2006
Bachelors, Bachelor of Business Administration, Finance
Skills:
Data Analysis Oil and Gas Production Volume Allocations Multi Task and Handle High Volume Workloads Ms Excel Variance Analysis Account Reconciliation Sarbanes Oxley Act Tow Scada Production Reporting General Ledger
Jeff Lazowski - Chicago IL, US Eric Denys - Ann Arbor MI, US
Assignee:
Material Sciences Corporation - Elk Grove IL
International Classification:
F16D 13/64
US Classification:
192 30V, 192107 R, 192107 C
Abstract:
The invention seeks to minimize the vibration and noise in a clutch plate system, by damping either or both the clutch plate and pressure plate with the use of various engineered viscoelastic materials. A clutch plate assembly is provided, comprising a plate body having a first surface and a second surface. In a first embodiment of the invention, the plate body is formed from a laminated sheet structure including two layers of steel having a viscoelastic core between the two layers and coextensive with the two layers. The viscoelastic core may be tunable to damp at different temperatures. In a second embodiment of the invention, an engineered viscoelastic material is used as a layer of bonding material for the first and second surface of the plate body. A method for damping a clutch plate assembly is provided.
An insulator is provided having opposing first and second sides and adapted for placement between a brake pad and one of a piston and caliper of a disc brake system. The insulator includes first and second metal layers. A viscoelastic layer is disposed between, and spans substantially the entirety of the first and second metal layers. A friction enhancing coating is disposed on at least one of the first and second sides. The friction enhancing coating preferably includes a plurality of particles, such as generally spherical glass beads.
Ramana Kappagantu - Canton MI, US Eric Denys - Ann Arbor MI, US
Assignee:
Material Sciences Corporation - Elk Groove Village IL
International Classification:
F16D 65/38
US Classification:
188 7337, 188250 E, 188264 G
Abstract:
A shim structure is provided for damping vibration and attenuating noise in a brake system. The brake system includes a forcing member operable to urge a friction member against a rotating member to slow or stop the same. The shim structure includes a shim body that is adapted to be interposed within the brake system. The shim body includes one or more tabs that are configured to oscillate out-of-phase with vibrations generated by the brake system during urging of the friction member against the rotating member to thereby dissipate vibrational energy generated by the brake system. The dimensions, orientation, and/or location of each tab are selected or engineered to provide predetermined levels of vibration and noise attenuation. A mass may be attached to each tab. The geometry, location, and/or size of each mass may be selectively modified to provide predetermined levels of vibration and noise attenuation.
Material Sciences Corporation - Elk Grove Village IL
International Classification:
F16D 65/38 F16D 65/00
US Classification:
188 7336, 188196 V, 188250 E
Abstract:
Provided is a shim structure adapted to be interposed between a friction member and a forcing member configured to urge the friction member against a rotating member of a brake system. The shim structure includes a sheet member having opposing first and second surfaces defining a substantially uniform thickness of sufficient magnitude to not deform during urging of the friction member. There is no viscoelastic layer on the first or second surfaces. The first and second surfaces also define a waveform cross-section having an amplitude and a wavelength extending substantially the entire length of the sheet member; the amplitude and wavelength are of sufficient ratio to provide selective noise and vibration damping, isolation, and thermal dissipation for the brake system. Additionally, the amplitude and wavelength are configured to be variably tunable, providing different predetermined levels of noise and vibration absorption and attenuation. The wave-form cross-section is preferably sinusoidal.
Ramana Kappagantu - Canton MI, US Eric Denys - Ann Arbor MI, US
Assignee:
Material Sciences Corporation - Elk Grove Village IL
International Classification:
F16D 69/00 F16D 65/04
US Classification:
188250D, 188 731, 188 7336
Abstract:
A brake pad assembly provided for a disc brake apparatus. The brake pad assembly comprises a backing plate having a flat inner face and a flat outer face oriented opposite to the inner face, a friction member fixed to the inner face of the backing plate, and an anti-squeal shim attached to the outer face of the backing plate. The anti-squeal shim includes a flat support plate attached to the outer face of the backing plate and a straight flat flange plate. The support plate of the anti-squeal shim has a peripheral edge including opposite outer and inner edges and opposite side edges. The flange plate is in the form of a flexible cantilever formed integrally with the support plate of the anti-squeal shim and extends away from one of the outer, inner and opposite side edges of the support plate of the anti-squeal shim.
Drum Brake Shoe And Backplate Made From Constrained Layer Viscoelastic Laminates
The present invention provides a drum brake shoe assembly with exceptional vibration an noise damping characteristics. In one embodiment both the web and the rim of the brake shoe are constructed of constrained layer viscoelastic laminate material. Another embodiment of the invention provides a drum brake backplate made from a constrained layer viscoelastic laminate material with exceptional damping characteristics.
Eric Denys - Ann Arbor MI, US Ahid Nashif - Cincinnati OH, US
International Classification:
F16D 65/38
US Classification:
188073370
Abstract:
This invention relates to the braking system of a vehicle and a method to attenuate noise-producing vibrations of components of the braking system by the use of tuned mass dampers of various designs mounted with respect to the brake pads and/or damper plate of a disc brake system. In another embodiment, the tuned mass dampers are attached to the brake shoes and/or drum brake backplate of a drum brake system.
Laminated Structure With A Filled Viscoelastic Layer And Method
The present invention provides a panel providing improved noise and vibration attenuation. The panel is formed from a constrained layer viscoelastic laminate material having at least two constraining layers and at least one viscoelastic layer therebetween spanning the entirety of the constraining layers. Included within the viscoelastic layer is an effective amount of filler material operable to increase the static stiffness of the panel. A method of increasing the static stiffness of constrained layer viscoelastic materials is also provided.
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