© 2017 The Authors. Published by Elsevier Ltd. Micro hydroforming is promising for fabricating complex micro components with a high aspect ratio. The aim of this study is to deepen the understanding of the size effects in micro hydroforming. Experimental work and FEM simulations of micro hydro-mechanical deep drawing (MHDD) were conducted. Voronoi model and real microstructure model were established. Real grain morphology can be considered in the real microstructure model. Local thinning in critical area of the drawn cups due to size effects can be predicted by the models. The simulation results agree with the MHDD test results
[[abstract]]With the development of the technology, miniature and portability become the trends in m...
Influences of hydraulic pressure on forming features in micro hydro deep drawing are different from ...
Accurate estimation of hydraulic pressure on the blank is important for micro hydromechanical deep d...
Micro hydroforming is promising for fabricating complex micro components with a high aspect ratio. T...
Study on micro hydroforming of metals Micro hydroforming has an ability to manufacture complex 3D mi...
A novel forming method "micro hydromechanical deep drawing (MHDD)" is focused to improve the tribolo...
Micro forming is a key technology for an industrial miniaturisation trend, and micro deep drawing (M...
Micro-metal products have recently enjoyed high demand. In addition, metal microforming has drawn in...
Micro deep drawing is a promising technology for mass production of complex 3D micro metal products....
A numerical model was established to investigate the micro hydro-mechanical deep drawing process of ...
© 2015 Elsevier B.V. All rights reserved. Surface roughness, compared with tiny sizes of micro produ...
Tooling feature size to minimum thickness becomes small in micro scale products and its ratio affect...
A two-stage micro deep drawing system was designed and developed to manufacture a micro cup with dom...
Micro-hydromechanical deep drawing (MHDD) is a promising micro-manufacturing technology to fabricate...
© 2016 Elsevier Ltd. All rights reserved. In this paper, the tribological behavior and its size effe...
[[abstract]]With the development of the technology, miniature and portability become the trends in m...
Influences of hydraulic pressure on forming features in micro hydro deep drawing are different from ...
Accurate estimation of hydraulic pressure on the blank is important for micro hydromechanical deep d...
Micro hydroforming is promising for fabricating complex micro components with a high aspect ratio. T...
Study on micro hydroforming of metals Micro hydroforming has an ability to manufacture complex 3D mi...
A novel forming method "micro hydromechanical deep drawing (MHDD)" is focused to improve the tribolo...
Micro forming is a key technology for an industrial miniaturisation trend, and micro deep drawing (M...
Micro-metal products have recently enjoyed high demand. In addition, metal microforming has drawn in...
Micro deep drawing is a promising technology for mass production of complex 3D micro metal products....
A numerical model was established to investigate the micro hydro-mechanical deep drawing process of ...
© 2015 Elsevier B.V. All rights reserved. Surface roughness, compared with tiny sizes of micro produ...
Tooling feature size to minimum thickness becomes small in micro scale products and its ratio affect...
A two-stage micro deep drawing system was designed and developed to manufacture a micro cup with dom...
Micro-hydromechanical deep drawing (MHDD) is a promising micro-manufacturing technology to fabricate...
© 2016 Elsevier Ltd. All rights reserved. In this paper, the tribological behavior and its size effe...
[[abstract]]With the development of the technology, miniature and portability become the trends in m...
Influences of hydraulic pressure on forming features in micro hydro deep drawing are different from ...
Accurate estimation of hydraulic pressure on the blank is important for micro hydromechanical deep d...