In the automotive field the application of electric propulsion systems based on fuel cells requires a constant and continuing research of several optimized solutions, especially in terms of weight and size reduction. These key-factors tend to influence significantly the performance of the vehicle where the system is installed on. The main objective of the paper is to obtain breakthroughs in design, manufacturing and assembling a fuel cell stack through the development of innovative metallic bipolar plates, that allows to set up high power density stacks, by lowering sensibly weight and size. The research activity carried out by the aforementioned authors is focused on the choice of suitable materials and the development of optimized tools, ...
The cost of manufacturing bipolar plates is a major component to the overall cost structure of a Pro...
The proton exchange membrane fuel cell offers an exceptional potential for a clean, efficient, and r...
Fuel cell vehicles should be further improved. Key issues are cost reduction; higher power density o...
In the automotive field the application of electric propulsion systems based on fuel cells requires ...
PDFTech ReportNUTC R231Project #00022763DTRT06-G-0014Fuel cellsPlates (Engineering)Stainless steelEl...
AbstractProton exchange membrane fuel cells have benefits over heat engines and batteries as an ener...
The bipolar plate is the main construction element of a fuel cell stack. It needs to be optimized wi...
Bipolar plates for proton exchange membrane (PEM) fuel cells are currently under development. These ...
Bipolar plate is the key component of PEMFC and represents a significant part of the overall cost an...
Fuel cells, designed for mobile applications, should feature compact and low-weight designs. This st...
This project focused on the design and production of metallic bipolar plates for use in PEM fuel cel...
The results of a successful U.S. Department of Energy (DoE) funded two-year $2.9 MM program lead by ...
Bipolar plates of a proton exchange membrane fuel cell (PEMFC) play an important role in removing li...
Bipolar plates of a proton exchange membrane fuel cell (PEMFC) play an important role in removing li...
The bipolar plate is of critical importance to the efficient and long lasting operation of a polymer...
The cost of manufacturing bipolar plates is a major component to the overall cost structure of a Pro...
The proton exchange membrane fuel cell offers an exceptional potential for a clean, efficient, and r...
Fuel cell vehicles should be further improved. Key issues are cost reduction; higher power density o...
In the automotive field the application of electric propulsion systems based on fuel cells requires ...
PDFTech ReportNUTC R231Project #00022763DTRT06-G-0014Fuel cellsPlates (Engineering)Stainless steelEl...
AbstractProton exchange membrane fuel cells have benefits over heat engines and batteries as an ener...
The bipolar plate is the main construction element of a fuel cell stack. It needs to be optimized wi...
Bipolar plates for proton exchange membrane (PEM) fuel cells are currently under development. These ...
Bipolar plate is the key component of PEMFC and represents a significant part of the overall cost an...
Fuel cells, designed for mobile applications, should feature compact and low-weight designs. This st...
This project focused on the design and production of metallic bipolar plates for use in PEM fuel cel...
The results of a successful U.S. Department of Energy (DoE) funded two-year $2.9 MM program lead by ...
Bipolar plates of a proton exchange membrane fuel cell (PEMFC) play an important role in removing li...
Bipolar plates of a proton exchange membrane fuel cell (PEMFC) play an important role in removing li...
The bipolar plate is of critical importance to the efficient and long lasting operation of a polymer...
The cost of manufacturing bipolar plates is a major component to the overall cost structure of a Pro...
The proton exchange membrane fuel cell offers an exceptional potential for a clean, efficient, and r...
Fuel cell vehicles should be further improved. Key issues are cost reduction; higher power density o...