In this paper, a new simulation model of interactions between IPIB and target material was constructed, that is T-coupled fluid elastoplastic equations, considering thermal conduction of target materials. The calculation program STEIPIB was written with C++ language. Meantime the distributions of energy deposition of intense pulsed ion beam (IPIB) with the energy and time spectrum were studied carefully as pulsed heat sources. As the results of the thermodynamical simulation calculation for the distributions of temperature and its gradient, stresses near the surface layer, the generation and propagation of shocks and so on are given. Also important influences of pulse parameters of IPIB on the ion beam modification of materials are discusse...
It was found that some craters appeared on the irradiated surfaces that have been melted under inten...
Use of intense pulsed ion beams is providing a new capability for surface engineering based on rapid...
This paper presents the experimental and numerical studies of copper and molybdenum thermomechanical...
In this paper, a new simulation model of interactions between IPIB and target material was construct...
A model for the interaction of intense pulsed ion beams (IPIB) with metallic targets is briefly desc...
By using Monte-Carlo sampling methods we calculated the energy deposition profiles of high-intensity...
Intense pulsed ion beam (IPIB) is characterized by short-pulsed high power density. With the strong ...
The energy deposition of intense pulsed ion beam (IPIB) in stainless steel was studied with ion beam...
As a type of flash heating source, intense pulsed ion beam (IPIB) can induce strong thermal effect i...
We review research investigating the application of intense pulsed ion beams (IPIBs) for the surface...
As the strong thermal effect in the surface, intense pulsed ion beam (IPIB) has been extensively use...
A method for analyzing the dynamic energy spectrum of intense pulsed ion beam (IPIB) was proposed. I...
Body Heat Flux Mode characterised by Element Birth and Death method is built to simulate the thermal...
As widely observed in many studies, the surface morphology of solids may change significantly after ...
Intense, pulsed ion beams locally heat materials and deliver dense electronic excitations that can i...
It was found that some craters appeared on the irradiated surfaces that have been melted under inten...
Use of intense pulsed ion beams is providing a new capability for surface engineering based on rapid...
This paper presents the experimental and numerical studies of copper and molybdenum thermomechanical...
In this paper, a new simulation model of interactions between IPIB and target material was construct...
A model for the interaction of intense pulsed ion beams (IPIB) with metallic targets is briefly desc...
By using Monte-Carlo sampling methods we calculated the energy deposition profiles of high-intensity...
Intense pulsed ion beam (IPIB) is characterized by short-pulsed high power density. With the strong ...
The energy deposition of intense pulsed ion beam (IPIB) in stainless steel was studied with ion beam...
As a type of flash heating source, intense pulsed ion beam (IPIB) can induce strong thermal effect i...
We review research investigating the application of intense pulsed ion beams (IPIBs) for the surface...
As the strong thermal effect in the surface, intense pulsed ion beam (IPIB) has been extensively use...
A method for analyzing the dynamic energy spectrum of intense pulsed ion beam (IPIB) was proposed. I...
Body Heat Flux Mode characterised by Element Birth and Death method is built to simulate the thermal...
As widely observed in many studies, the surface morphology of solids may change significantly after ...
Intense, pulsed ion beams locally heat materials and deliver dense electronic excitations that can i...
It was found that some craters appeared on the irradiated surfaces that have been melted under inten...
Use of intense pulsed ion beams is providing a new capability for surface engineering based on rapid...
This paper presents the experimental and numerical studies of copper and molybdenum thermomechanical...