Oxide scale behaviour in thermomechanical processing has been the subject of intensive research for several years that allowed development of a finite element (FE) based model to simulate a range of events of relevance to the process and to the surface quality of the hot rolled product. Oxide scale failure is predicted taking into account the main physical phenomena such as stress-directed diffusion, fracture and adhesion of the oxide scale, strain, strain rate and temperature. The most critical parameters for scale failure are measured during modified hot tensile testing and depend on the morphology of the particular oxide scale, scale growth temperature, and are also very sensitive to the chemical composition of the underlying metal. The ...
2nd International Conference on Tribology in Manufacturing Processes (ICTMP2004), Nyborg, Denmark, J...
Scale is an oxide layer that grows on the free surface of metal components during heating at high te...
Analysis of real contact area and thermal resistance combined with experimentally derived interfacia...
Oxide scale can affect many aspects of hot metal forming operations, such as heat transfer, frictio...
Both numerical analysis based on finite-element (FE) modeling and experimental evidence concerning t...
Oxide scale behaviour in thermomechanical processing has been the subject of intensive research for ...
Oxide scale behaviour in thermomechanical processing has been the subject of intensive research for ...
Oxide scale on the surface of metal plays a pivotal role in the thermomechanical processing and subs...
In this work a method based on combination of hot tensile measurements and finite element (FE) model...
The research reported here concerns the behaviour of the oxide scale that on steels, undergoing hot ...
It is known that better understanding of events at the tool-workpiece interface will lead to better ...
The differences in failure of oxide scales formed on mild, Si-Mn, Mn-Mo and stainless steels were in...
© 2015 Elsevier B.V. Severe sticking occurs in the hot rolling of ferritic stainless steel B445J1M. ...
Hot forming is the controlled plastic deformation of heated metals into useful shapes. During heatin...
The paper presents a new method to describe and to predict the development of scale during metal for...
2nd International Conference on Tribology in Manufacturing Processes (ICTMP2004), Nyborg, Denmark, J...
Scale is an oxide layer that grows on the free surface of metal components during heating at high te...
Analysis of real contact area and thermal resistance combined with experimentally derived interfacia...
Oxide scale can affect many aspects of hot metal forming operations, such as heat transfer, frictio...
Both numerical analysis based on finite-element (FE) modeling and experimental evidence concerning t...
Oxide scale behaviour in thermomechanical processing has been the subject of intensive research for ...
Oxide scale behaviour in thermomechanical processing has been the subject of intensive research for ...
Oxide scale on the surface of metal plays a pivotal role in the thermomechanical processing and subs...
In this work a method based on combination of hot tensile measurements and finite element (FE) model...
The research reported here concerns the behaviour of the oxide scale that on steels, undergoing hot ...
It is known that better understanding of events at the tool-workpiece interface will lead to better ...
The differences in failure of oxide scales formed on mild, Si-Mn, Mn-Mo and stainless steels were in...
© 2015 Elsevier B.V. Severe sticking occurs in the hot rolling of ferritic stainless steel B445J1M. ...
Hot forming is the controlled plastic deformation of heated metals into useful shapes. During heatin...
The paper presents a new method to describe and to predict the development of scale during metal for...
2nd International Conference on Tribology in Manufacturing Processes (ICTMP2004), Nyborg, Denmark, J...
Scale is an oxide layer that grows on the free surface of metal components during heating at high te...
Analysis of real contact area and thermal resistance combined with experimentally derived interfacia...