In recent years asymmetric cross section aluminum alloy stock has been finding increasing use in various industrial manufacturing areas such as general structures and automotive components. In these areas, components are generally required to have complex curved configuration and, as such, a bending process is required during manufacture. Undesirable deformation in bending processes such as flattening or wrinkling can easily occur when thin-walled sections are bent. Hence, a thorough understanding of the bending behavior of such sections is needed to prevent these undesirable deformations. In this study, the bending behavior of asymmetric channel section was examined using finite element analysis (FEA). Typical methods of preventing undesir...
AbstractThis paper aims to develop an effective numerical model and analyse the twist springback beh...
The recent trend to reduce the thickness of metallic sheets used in forming processes strongly incre...
Abstract--The ffects of changing strain-paths on forming limits of aluminum alloy 6111 T4 have been ...
Bending process is an important forming process in most industrial fields. Springback and cross-sect...
The ABAQUS finite element simulation software was used to simulate the flexible 3D multipoint stretc...
The finite element numerical simulation method was used to study the stretch-bending process of asym...
Abstract This study presents that finite element (FE) simulations of rotary draw bending are improve...
AbstractAluminum alloy (Al-alloy) thin-walled (D/t>20, diameter D, wall thickness t) bent tubes have...
Equal channel angular pressing causes less uniform deformation than simple shear, even though its no...
The effect of changing strain paths has been investigated by determining forming limit diagrams (FLD...
In metal forming industries, product quality, product cost and time-to-market are three overriding i...
Peen forming is commonly used in the aerospace industry to shape large and thin panels, such as wing...
This paper presents a non-linear finite element analysis (FEA) method to predict the spring-back def...
For the first time, a detailed and systematic finite element study was carried to identify the param...
In the traditional metal forming product development paradigm, product design is generally based on ...
AbstractThis paper aims to develop an effective numerical model and analyse the twist springback beh...
The recent trend to reduce the thickness of metallic sheets used in forming processes strongly incre...
Abstract--The ffects of changing strain-paths on forming limits of aluminum alloy 6111 T4 have been ...
Bending process is an important forming process in most industrial fields. Springback and cross-sect...
The ABAQUS finite element simulation software was used to simulate the flexible 3D multipoint stretc...
The finite element numerical simulation method was used to study the stretch-bending process of asym...
Abstract This study presents that finite element (FE) simulations of rotary draw bending are improve...
AbstractAluminum alloy (Al-alloy) thin-walled (D/t>20, diameter D, wall thickness t) bent tubes have...
Equal channel angular pressing causes less uniform deformation than simple shear, even though its no...
The effect of changing strain paths has been investigated by determining forming limit diagrams (FLD...
In metal forming industries, product quality, product cost and time-to-market are three overriding i...
Peen forming is commonly used in the aerospace industry to shape large and thin panels, such as wing...
This paper presents a non-linear finite element analysis (FEA) method to predict the spring-back def...
For the first time, a detailed and systematic finite element study was carried to identify the param...
In the traditional metal forming product development paradigm, product design is generally based on ...
AbstractThis paper aims to develop an effective numerical model and analyse the twist springback beh...
The recent trend to reduce the thickness of metallic sheets used in forming processes strongly incre...
Abstract--The ffects of changing strain-paths on forming limits of aluminum alloy 6111 T4 have been ...