The present paper aims to model ultrasonic effects such as temporary softening and residual hardening. While temporary softening is observed during simultaneous action of mechanical forces and ultrasound, residual hardening manifests itself after switching off the ultrasound. The analytical description of these phenomena is conducted in terms of the synthetic theory of irrecoverable deformation. The model results show good agreement with experimental data obtained for the ultrasound-assisted compression of pure aluminum
The mechanical-behaviour of metallic materials subjected to plastic deformation is altered with the ...
The mechanical-behaviour of metallic materials subjected to plastic deformation is altered with the ...
In this paper, a phenomenological crystal plasticity model is modified to account for acoustic (ultr...
The present paper aims to model ultrasonic effects such as temporary softening and residual hardenin...
Blaha and Langenecker are the first to document the phenomena known as “acoustic softening”: a signi...
Ultrasonic additive manufacturing (UAM) is a rapid prototyping technology that features a metal joi...
Ultrasonic additive manufacturing (UAM) is a rapid prototyping technology that features a metal joi...
The acoustoplastic effect in metals is routinely utilised in industrial processes involving forming,...
Many industrial applications make use of ultrasonic vibration to soften metals. The existing underst...
The effect of softening due to vibrations induced on metals has been used in many industrial process...
The mechanism of ultrasonic softening effect has been widely investigated and used in the metal mate...
Ultrasonic softening effect refers to the phenomenon where the superimposed ultrasonic vibration can...
In this study, the influence of ultrasonic vibration on the plasticity of lightweight metals (alumin...
Ultrasonic additive manufacturing (UAM) is a solid-state fabrication process that utilizes ultrason...
Ultrasonic additive manufacturing (UAM) is a solid-state fabrication process that utilizes ultrason...
The mechanical-behaviour of metallic materials subjected to plastic deformation is altered with the ...
The mechanical-behaviour of metallic materials subjected to plastic deformation is altered with the ...
In this paper, a phenomenological crystal plasticity model is modified to account for acoustic (ultr...
The present paper aims to model ultrasonic effects such as temporary softening and residual hardenin...
Blaha and Langenecker are the first to document the phenomena known as “acoustic softening”: a signi...
Ultrasonic additive manufacturing (UAM) is a rapid prototyping technology that features a metal joi...
Ultrasonic additive manufacturing (UAM) is a rapid prototyping technology that features a metal joi...
The acoustoplastic effect in metals is routinely utilised in industrial processes involving forming,...
Many industrial applications make use of ultrasonic vibration to soften metals. The existing underst...
The effect of softening due to vibrations induced on metals has been used in many industrial process...
The mechanism of ultrasonic softening effect has been widely investigated and used in the metal mate...
Ultrasonic softening effect refers to the phenomenon where the superimposed ultrasonic vibration can...
In this study, the influence of ultrasonic vibration on the plasticity of lightweight metals (alumin...
Ultrasonic additive manufacturing (UAM) is a solid-state fabrication process that utilizes ultrason...
Ultrasonic additive manufacturing (UAM) is a solid-state fabrication process that utilizes ultrason...
The mechanical-behaviour of metallic materials subjected to plastic deformation is altered with the ...
The mechanical-behaviour of metallic materials subjected to plastic deformation is altered with the ...
In this paper, a phenomenological crystal plasticity model is modified to account for acoustic (ultr...