Tungsten, one of the most important divertor materials in nuclear fusion devices, will be subject to high-flux helium plasma, which can lead to unexpected structural defects and irregular microstructure such as fuzz and blistering. Helium transport in tungsten is affected by grain boundary (GB) defects in the metal. To improve the lifetime and long-term performance of plasma-facing tungsten, it is important to have a better understanding of helium behavior near GBs. In the first part of this thesis, helium cluster transport near symmetric tilt GBs is studied by molecular dynamics (MD) simulation. We find that helium cluster diffusion is significantly impeded, compared to its bulk diffusion rate, near various symmetric tilt GBs with differen...
In this work, the behavior of dilute interstitial helium in W–Mo binary alloys was explored through ...
Molecular dynamics (MD) methods are used to study nanosized helium (He) bubble coalescence process i...
Magnetic confinement fusion is a promising technology for electricity production due to available fu...
Tungsten is the prime candidate material for divertor applications in future nuclear reactors (e.g. ...
Molecular dynamics simulations have been used to study plasma material interactions to better unders...
Tungsten is the prime candidate material for divertor applications in future nuclear reactors (e.g. ...
Tungsten is the prime candidate material for divertor applications in future nuclear reactors (e.g. ...
Tungsten is the prime candidate material for divertor applications in future nuclear reactors (e.g. ...
The accumulation of helium atoms in metals or metal tritides is known to result in the formation of ...
The accumulation of helium atoms in metals or metal tritides is known to result in the formation of ...
We have investigated the effects of helium ion irradiation energy and sample temperature on the perf...
Tungsten is the prime candidate material for divertor applications in future nuclear reactors (e.g. ...
We present atomistic simulations that show that transport of helium is inhibited on grain boundaries...
The effect of helium in iron is an important issue in nuclear systems, as iron and iron alloys (stee...
Tungsten is a leading candidate material for the diverter in future nuclear fusion reactors. Previou...
In this work, the behavior of dilute interstitial helium in W–Mo binary alloys was explored through ...
Molecular dynamics (MD) methods are used to study nanosized helium (He) bubble coalescence process i...
Magnetic confinement fusion is a promising technology for electricity production due to available fu...
Tungsten is the prime candidate material for divertor applications in future nuclear reactors (e.g. ...
Molecular dynamics simulations have been used to study plasma material interactions to better unders...
Tungsten is the prime candidate material for divertor applications in future nuclear reactors (e.g. ...
Tungsten is the prime candidate material for divertor applications in future nuclear reactors (e.g. ...
Tungsten is the prime candidate material for divertor applications in future nuclear reactors (e.g. ...
The accumulation of helium atoms in metals or metal tritides is known to result in the formation of ...
The accumulation of helium atoms in metals or metal tritides is known to result in the formation of ...
We have investigated the effects of helium ion irradiation energy and sample temperature on the perf...
Tungsten is the prime candidate material for divertor applications in future nuclear reactors (e.g. ...
We present atomistic simulations that show that transport of helium is inhibited on grain boundaries...
The effect of helium in iron is an important issue in nuclear systems, as iron and iron alloys (stee...
Tungsten is a leading candidate material for the diverter in future nuclear fusion reactors. Previou...
In this work, the behavior of dilute interstitial helium in W–Mo binary alloys was explored through ...
Molecular dynamics (MD) methods are used to study nanosized helium (He) bubble coalescence process i...
Magnetic confinement fusion is a promising technology for electricity production due to available fu...