4.7 Review

Advances on materials design and manufacture technology of plastic liner of type IV hydrogen storage vessel

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K. L. Simmons et al.

Summary: The H-Mat program, part of the H2@Scale initiative by the U.S. Department of Energy, aims to improve the durability and reliability of materials for hydrogen infrastructure by elucidating the mechanisms of hydrogen-materials interactions. Research has shown significant morphological changes in the materials after exposure to hydrogen and pressure, with potential chemical changes correlated to these morphological changes.

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Enhancement of adhesion between the polymeric liner and the metallic connector of high-pressure hydrogen storage tank

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Summary: The manufacturing of hydrogen fuel tanks is crucial for the application of hydrogen fuels in clean and recyclable energy. Rotational molding shows better feedback in assembling boss and liner part without welding defects. Surface treatments like sandblasting and PEG coating can enhance adhesion of polymer to metal, with the combination of sandblasting and PEG coating showing the highest adhesion performance at the metal/polymer interface in rotational molding.

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Guanjun Liu et al.

Summary: High gas barrier polyethylene composites containing non-oxidized graphene flakes were successfully fabricated through solution blending. The composites with a low concentration of graphene flakes showed significantly improved gas barrier properties compared to pure PE.

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Hydrogen permeation under high pressure conditions and the destruction of exposed polyethylene-property of polymeric materials for high-pressure hydrogen devices (2)-

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A predictive modeling tool for damage analysis and design of hydrogen storage composite pressure vessels

Ba Nghiep Nguyen et al.

Summary: This paper presents a predictive modeling tool for damage analysis and design of hydrogen (H-2) storage composite pressure vessels, integrating micromechanics and continuum damage mechanics, as well as 3D finite element modeling. The implementation of integrated multi-scale modeling enables damage analysis and design functionalities.

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Damage evolution in polymer due to exposure to high-pressure hydrogen gas

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Numerical assestments of maximum depressurisation rate for polymer materials under high-pressure hydrogen

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Estimation of temperature change in practical hydrogen pressure tanks being filled at high pressures of 35 and 70 MPa

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INTERNATIONAL JOURNAL OF HYDROGEN ENERGY (2012)

Article Chemistry, Physical

Thermodynamic analysis of filling compressed gaseous hydrogen storage tanks

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INTERNATIONAL JOURNAL OF HYDROGEN ENERGY (2012)

Article Engineering, Chemical

High barrier graphene oxide nanosheet/poly(vinyl alcohol) nanocomposite films

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JOURNAL OF MEMBRANE SCIENCE (2012)

Article Materials Science, Characterization & Testing

Effect of functionalized graphene on the physical properties of linear low density polyethylene nanocomposites

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POLYMER TESTING (2012)

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Mechanism of antioxidant interaction on polymer oxidation by thermal and radiation ageing

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RADIATION PHYSICS AND CHEMISTRY (2012)

Article Polymer Science

The free volume in acrylic resin/laponite nanocomposite coatings

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EUROPEAN POLYMER JOURNAL (2011)

Article Chemistry, Multidisciplinary

Crumpled Graphene Nanosheets as Highly Effective Barrier Property Enhancers

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ADVANCED MATERIALS (2010)

Article Chemistry, Physical

Thermal characteristics during hydrogen fueling process of type IV cylinder

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INTERNATIONAL JOURNAL OF HYDROGEN ENERGY (2010)

Article Chemistry, Physical

Experimental studies on temperature rise within a hydrogen cylinder during refueling

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INTERNATIONAL JOURNAL OF HYDROGEN ENERGY (2010)

Article Chemistry, Physical

Fracture analysis of hydrogen storage composite cylinders with liner crack accounting for autofrettage effect

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INTERNATIONAL JOURNAL OF HYDROGEN ENERGY (2009)

Article Chemistry, Physical

Permeation models for mixed matrix membranes

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JOURNAL OF COLLOID AND INTERFACE SCIENCE (2008)

Review Energy & Fuels

Transport properties of gases in polymers:: Bibliographic review

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