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Dive into the research topics where Kerrie Gath is active.

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Featured researches published by Kerrie Gath.


Smart Structures and NDE for Industry 4.0 | 2018

Using smart materials to solve new challenges in the automotive industry

Kerrie Gath; Clay Wesley Maranville; Janice Tardiff

Ford has an extensive history of developing and utilizing smart and innovative materials in its vehicles. In this paper, we present new challenges the automotive industry is facing and explore how intelligent uses of smart materials can help provide solutions. We explore which vehicle attributes may provide most advantageous for the use smart materials, and discuss how smart material have had technical challenges that limit their use. We also look at how smart materials such as gecko inspired adhesion is providing opportunities during the vehicle assembly process by improving manufacturing quality, environmental sustainability, and worker safety. An emerging area for deployment of smart materials may involve autonomous vehicles and mobility solutions, where customer expectations are migrating toward a seamless and adaptive experience leading to new expectations for an enhanced journey. Another area where smart materials are influencing change is interior and exterior design including smart textiles, photochromatic dyes, and thermochromatic materials. The key to advancing smart materials in automotive industry is to capitalize on the smaller niche applications where there will be an advantage over traditional methods. Ford has an extensive history of developing and utilizing smart and innovative materials. Magnetorheological fluids, thermoelectric materials, piezoelectric actuators, and shape memory alloys are all in production. In this paper we present new challenges the automotive industry is facing and explore how intelligent uses of smart materials can help provide solutions. We explore which vehicle attributes may provide most advantageous for the use smart materials, and discuss how smart materials have had technical challenges that limit their use. An emerging area for deployment of smart materials may involve autonomous vehicles and mobility solutions, where customer expectations may require a seamless and adaptive experience for users having various expectations.


ACS Catalysis | 2017

Tuning Nb–Pt Interactions To Facilitate Fuel Cell Electrocatalysis

Shraboni Ghoshal; Qingying Jia; Michael Bates; Jingkun Li; Chunchuan Xu; Kerrie Gath; Jun Yang; James Waldecker; Haiying Che; Wentao Liang; Guangnan Meng; Zi-Feng Ma; Sanjeev Mukerjee


Archive | 2018

TEXTURED FUEL CELL COMPONENTS FOR IMPROVED WATER MANAGEMENT

Daniel Edward Wilkosz; Kerrie Gath; Mark Stephen Ricketts


PRiME 2016/230th ECS Meeting (October 2-7, 2016) | 2016

Multi-Layer Thin Film Coatings on Bipolar Metal Plates for PEMFC

Kerrie Gath; Mark Ricketts; Jun Yang; Chunchuan Xu; Shinichi Hirano


Archive | 2016

Oxygen Reduction Reaction Catalyst Having a Non-Conductive Substrate and a forming method thereof

Chunchuan Xu; Kerrie Gath; Jun Yang; Patrick Pietrasz


Archive | 2016

Oxygen Reduction Reaction Catalyst Having a Non-Conductive Substrate

Patrick Pietrasz; Kerrie Gath; Chunchuan Xu; Jun Yang


Archive | 2016

Corrosion resistant metal bipolar plate for a proton exchange membrane fuel cell (PEMFC) with free-radical scavengers

Shinichi Hirano; Mark Stephen Ricketts; Kerrie Gath; Jun Yang; Chunchuan Xu


Archive | 2016

Korrosionsbeständige bipolarplatte aus metall für eine protonenaustauschmembran-brennstoffzelle (pemfc) mit radikalfänger Corrosion-resistant bipolar plate of metal for a proton exchange membrane fuel cell (PEMFC) with radical catchers

Shinichi Hirano; Mark Stephen Ricketts; Kerrie Gath; Jun Yang; Chunchuan Xu


Archive | 2015

Multilayer Coating for Corrosion Resistant Metal Bipolar Plate for a PEMFC

Mark Stephen Ricketts; Shinichi Hirano; Jun Yang; Kerrie Gath; Chunchuan Xu


Archive | 2015

Oxygen reduction reaction of catalyst with non-conductive substrate

Patrick Pietrasz; Kerrie Gath; Chunchuan Xu; Yang Jun

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Qingying Jia

Northeastern University

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