E-glass three dimensional (3D) stitched preform composites have been developed for several industrial applications due to their high mechanical performance and damage tolerance properties. Although some in-plane properties of the stitched E-glass composite structure are slightly lower than in laminated composite, its mode-I delamination failure is improved. This was achieved by using the out-of-plane directional stitched fibers. Recently, some nanoparticles as single-walled nanotubes (SWNT) or multiwalled nanotubes (MWNT) or nanofibers (NF) were added to the glass fabric structure or stitched preform during consolidation process. This further enhances the thermo-mechanical impact properties of the E-glass fiber composites
ABSTRACT: Epoxy composite beams reinforced with a complex three-dimensional (3D) skeleton structure ...
Low interlaminar mechanical properties is the foremost drawback of glass fiber reinforced composites...
Carbon nanotubes are one of the most versatile nanomaterials currently used to modify the properties...
Glass fibers are among the most versatile industrial materials known today, where 4 billion pounds o...
Glass fibres are melt-spun, silica-based inorganic materials. Their main application is in glass fib...
This book focuses on the fibers and textiles used in composite materials. It presents both existing ...
The properties of glass fiber composites were improved by strengthening the interlaminar regions usi...
Nanofibres have by definition a diameter less than 500 nm, which is several times smaller than the c...
Textile preform properties such as compression and permeability greatly influence the quality of th...
Over the last decades, the development of 3D textile composites has been driven the structures devel...
The paper describes some important aspects concerning the most widely used reinforcing fibers namel...
Fibre reinforced polymer (FRP) composites are used in almost every type of advanced engineering stru...
Laminated composite materials are used extensively in aerospace and other applications due to their ...
Dense carbon nanotubes (CNTs) were grown uniformly on the surface of carbon fibers and glass fibers ...
Textile composites are materials composed of two basic elements, one which is called a matrix or bas...
ABSTRACT: Epoxy composite beams reinforced with a complex three-dimensional (3D) skeleton structure ...
Low interlaminar mechanical properties is the foremost drawback of glass fiber reinforced composites...
Carbon nanotubes are one of the most versatile nanomaterials currently used to modify the properties...
Glass fibers are among the most versatile industrial materials known today, where 4 billion pounds o...
Glass fibres are melt-spun, silica-based inorganic materials. Their main application is in glass fib...
This book focuses on the fibers and textiles used in composite materials. It presents both existing ...
The properties of glass fiber composites were improved by strengthening the interlaminar regions usi...
Nanofibres have by definition a diameter less than 500 nm, which is several times smaller than the c...
Textile preform properties such as compression and permeability greatly influence the quality of th...
Over the last decades, the development of 3D textile composites has been driven the structures devel...
The paper describes some important aspects concerning the most widely used reinforcing fibers namel...
Fibre reinforced polymer (FRP) composites are used in almost every type of advanced engineering stru...
Laminated composite materials are used extensively in aerospace and other applications due to their ...
Dense carbon nanotubes (CNTs) were grown uniformly on the surface of carbon fibers and glass fibers ...
Textile composites are materials composed of two basic elements, one which is called a matrix or bas...
ABSTRACT: Epoxy composite beams reinforced with a complex three-dimensional (3D) skeleton structure ...
Low interlaminar mechanical properties is the foremost drawback of glass fiber reinforced composites...
Carbon nanotubes are one of the most versatile nanomaterials currently used to modify the properties...