© 2014 The Authors. Published by Elsevier Ltd. The formability of ultra-fine grained stainless steel is investigated in micro hydromechanical deep drawing. The materials used are ultra-fine grained stainless steel and SUS304-H with thickness of 20 and 50 m. The micro cups are successfully fabricated for the ultra-fine grained stainless steel but it cannot be fabricated for SUS304-H with thickness of 20 m. The fracture type of ultra-fine grained stainless steel foil is the shortage of tensile strength at plain strain state and does not change with a decrease of the thickness. In contrast, the fracture type of SUS304-H foil changes to the bending deformation with decreasing the thickness due to its low ductility. The ultra-fine grained metal ...
Increasing demands for miniature metallic parts have driven the application of microforming in vario...
DoctorThe present thesis investigates the forming of ultra-thin ferritic stainless steel (FSS) sheet...
A novel forming method "micro hydromechanical deep drawing (MHDD)" is focused to improve the tribolo...
AbstractThe formability of ultra-fine grained stainless steel is investigated in micro hydromechanic...
In this paper, the mechanism of processing parameters, such as lubrication conditions, grain size an...
A micro hydromechanical deep drawing is carried out using the pure titanium and the effect of fluid ...
Flexible forming technology provides significant application potential in various areas of manufactu...
AbstractPhysical parameters such as microscopic roughness become very important in micro forming pro...
Single point incremental sheet forming (SPIF) is one of the latest near-net shape manufacturing tech...
In the present work, austenitic stainless steel (ASS) 304 foils with a thickness of 50 µm were first...
A numerical model was established to investigate the micro hydro-mechanical deep drawing process of ...
As a result of the remarkable demands on electronic and other portable compact devices, the need to ...
Micro‐hydroforming is a down‐scaled metal forming process, based on the expansion of micro‐tubes by ...
In this study, a numerical simulation model based on crystal plasticity theories was established in ...
Ultrafine grained materials produced by severe plastic deformation methods possess attractive mechan...
Increasing demands for miniature metallic parts have driven the application of microforming in vario...
DoctorThe present thesis investigates the forming of ultra-thin ferritic stainless steel (FSS) sheet...
A novel forming method "micro hydromechanical deep drawing (MHDD)" is focused to improve the tribolo...
AbstractThe formability of ultra-fine grained stainless steel is investigated in micro hydromechanic...
In this paper, the mechanism of processing parameters, such as lubrication conditions, grain size an...
A micro hydromechanical deep drawing is carried out using the pure titanium and the effect of fluid ...
Flexible forming technology provides significant application potential in various areas of manufactu...
AbstractPhysical parameters such as microscopic roughness become very important in micro forming pro...
Single point incremental sheet forming (SPIF) is one of the latest near-net shape manufacturing tech...
In the present work, austenitic stainless steel (ASS) 304 foils with a thickness of 50 µm were first...
A numerical model was established to investigate the micro hydro-mechanical deep drawing process of ...
As a result of the remarkable demands on electronic and other portable compact devices, the need to ...
Micro‐hydroforming is a down‐scaled metal forming process, based on the expansion of micro‐tubes by ...
In this study, a numerical simulation model based on crystal plasticity theories was established in ...
Ultrafine grained materials produced by severe plastic deformation methods possess attractive mechan...
Increasing demands for miniature metallic parts have driven the application of microforming in vario...
DoctorThe present thesis investigates the forming of ultra-thin ferritic stainless steel (FSS) sheet...
A novel forming method "micro hydromechanical deep drawing (MHDD)" is focused to improve the tribolo...