The filter membrane made up of carbon nanostructure is one of the important components in proton exchange membrane fuel cell (PEMFC). The membrane while under operating conditions of a PEMFC is subjected to various dynamical loads due to the imposition of several input operating factors of the PEMFC. Hence, it is important to estimate optimal process parameters, which can maximize the strength of the membrane. Current studies in PEMFC focus on adsorption and transport-related properties of PEMFC membrane, without adequately investigating the mechanical strength of the membrane. This study proposes a multiphysics model of the membrane, which is used to extract the mechanical properties of the membrane by systematically varying various input factors of PEMFC. The extracted data are then fed into a neural search machine learning cluster to obtain optimal design parameters for maximizing the strength of the membrane. It is expected that the findings from this study will provide critical design data for manufacturing PEMFC membranes with high strength and durability.
Skip Nav Destination
Article navigation
August 2019
Research-Article
Multiphysics-Based Statistical Model for Investigating the Mechanics of Carbon Nanotubes Membranes for Proton-Exchange Membrane Fuel Cell Applications
V. Vijayaraghavan,
V. Vijayaraghavan
School of Mechanical and
Manufacturing Engineering,
The University of New South Wales,
Kensington,
Sydney, NSW 2033, Australia
Manufacturing Engineering,
The University of New South Wales,
Kensington,
Sydney, NSW 2033, Australia
Search for other works by this author on:
A. Garg,
A. Garg
Intelligent Manufacturing Key Laboratory of
Ministry of Education,
Shantou University,
Shantou, China
e-mail: akhil@stu.edu.cn
Ministry of Education,
Shantou University,
Shantou, China
e-mail: akhil@stu.edu.cn
Search for other works by this author on:
Liang Gao
Liang Gao
State Key Laboratory for Digital Manufacturing
Equipment and Technology,
Huazhong University of
Science and Technology,
1037 Luoyu Road,
Wuhan 430074, China
Equipment and Technology,
Huazhong University of
Science and Technology,
1037 Luoyu Road,
Wuhan 430074, China
Search for other works by this author on:
V. Vijayaraghavan
School of Mechanical and
Manufacturing Engineering,
The University of New South Wales,
Kensington,
Sydney, NSW 2033, Australia
Manufacturing Engineering,
The University of New South Wales,
Kensington,
Sydney, NSW 2033, Australia
A. Garg
Intelligent Manufacturing Key Laboratory of
Ministry of Education,
Shantou University,
Shantou, China
e-mail: akhil@stu.edu.cn
Ministry of Education,
Shantou University,
Shantou, China
e-mail: akhil@stu.edu.cn
Liang Gao
State Key Laboratory for Digital Manufacturing
Equipment and Technology,
Huazhong University of
Science and Technology,
1037 Luoyu Road,
Wuhan 430074, China
Equipment and Technology,
Huazhong University of
Science and Technology,
1037 Luoyu Road,
Wuhan 430074, China
1Corresponding author.
Manuscript received September 21, 2018; final manuscript received January 6, 2019; published online February 19, 2019. Assoc. Editor: Soumik Banerjee.
J. Electrochem. En. Conv. Stor. Aug 2019, 16(3): 031005 (11 pages)
Published Online: February 19, 2019
Article history
Received:
September 21, 2018
Revised:
January 6, 2019
Citation
Vijayaraghavan, V., Garg, A., and Gao, L. (February 19, 2019). "Multiphysics-Based Statistical Model for Investigating the Mechanics of Carbon Nanotubes Membranes for Proton-Exchange Membrane Fuel Cell Applications." ASME. J. Electrochem. En. Conv. Stor. August 2019; 16(3): 031005. https://doi.org/10.1115/1.4042554
Download citation file:
Get Email Alerts
Cited By
ELECTRIC VEHICLES CHARGING TIME PREDICTION BASED ON MULTI-MODEL FUSION
J. Electrochem. En. Conv. Stor
Study on the Preparation of High Intrinsic Conductivity Perovskite Li0.33La0.56TiO3 Solid-State Electrolyte by Systematic Process Optimization
J. Electrochem. En. Conv. Stor (May 2025)
Numerical Investigation of a Vapor Chamber-Assisted Liquid Cooling System for Cylindrical Battery Thermal Management
J. Electrochem. En. Conv. Stor (May 2025)
Related Articles
Simplified Model to Predict Incipient Flooding/Dehydration in Proton Exchange Membrane Fuel Cells
J. Fuel Cell Sci. Technol (August,2007)
Design and Experimental Characterization of a High-Temperature Proton Exchange Membrane Fuel Cell Stack
J. Fuel Cell Sci. Technol (October,2011)
Aqueous Deposition of Metals on Multiwalled Carbon Nanotubes to be Used as Electrocatalyst for Polymer Exchange Membrane Fuel Cells
J. Fuel Cell Sci. Technol (May,2007)
Optimization of the Operating Parameters of a Proton Exchange Membrane Fuel Cell for Maximum Power Density
J. Fuel Cell Sci. Technol (May,2005)
Related Proceedings Papers
Related Chapters
Calculation of Elastic Properties of PMMA/CNT Using Molecular Dynamics Simulations
International Conference on Computer and Electrical Engineering 4th (ICCEE 2011)
Effect of Baking on Aerospace Grade Electroplated Zn and Cd Coating on High Strength Steel Substrates – a Correlative Study of Mechanical Strength with Hydrogen Content
International Hydrogen Conference (IHC 2016): Materials Performance in Hydrogen Environments
Synthesis and Characterization of Carboxymethyl Chitosan Based Hybrid Biopolymer Scaffold
International Conference on Mechanical and Electrical Technology, 3rd, (ICMET-China 2011), Volumes 1–3