A two-dimensional calorimetric diagnostic technique with infrared imaging method has been developed. The technique, which enables the measuring of two-dimensional energy density distribution of intense pulsed ion beam (IPIB) and intense pulsed electron beam (IPEB) with particle energy typically of hundreds of keV, is applicable for the diagnostics of IPIB and IPEB for material treatment purpose such as fast quenching, surface melt coating, etc. Testing of the technique has been carried out with IPIB on pulsed ion beam accelerator BIPPAB-450. The maximum ion energy was 450 key, the density of the ion current was 150 A/cm(2), and the pulse duration (at half height) was 80 ns. The results showed that the technique can achieve surface energy de...
In this paper, a new simulation model of interactions between IPIB and target material was construct...
In this paper, a new simulation model of interactions between IPIB and target material was construct...
Dipartimento di Energetica, Università di Roma “La Sapienza”, Roma, Italy In recent years many exper...
Infrared imaging diagnostic method for two-dimensional calorimetric diagnostics has been developed f...
The energy deposition of intense pulsed ion beam (IPIB) in stainless steel was studied with ion beam...
强流脉冲离子束在靶上的能量密度分布是其研究和应用的一个重要参数.为了解决现有束流能量密度诊断方法的不足,利用红外成像仪测量靶背面的温度分布,从而建立了强流脉冲离子束能量密度分布的红外诊断方法.对能量密...
Intense pulsed ion beam (IPIB) is characterized by short-pulsed high power density. With the strong ...
A method for analyzing the dynamic energy spectrum of intense pulsed ion beam (IPIB) was proposed. I...
As a type of flash heating source, intense pulsed ion beam (IPIB) can induce strong thermal effect i...
By using Monte-Carlo sampling methods we calculated the energy deposition profiles of high-intensity...
Surfi-Sculpt® is a novel electron beam (EB) direct writing technique invented at TWI. The process ut...
We review research investigating the application of intense pulsed ion beams (IPIBs) for the surface...
As the energy spread of intense pulsed electron beams (IPEB) strongly influences the irradiation eff...
Non-destructive testing (NDT) is a broad group of testing and analysis techniques used in science an...
As the strong thermal effect in the surface, intense pulsed ion beam (IPIB) has been extensively use...
In this paper, a new simulation model of interactions between IPIB and target material was construct...
In this paper, a new simulation model of interactions between IPIB and target material was construct...
Dipartimento di Energetica, Università di Roma “La Sapienza”, Roma, Italy In recent years many exper...
Infrared imaging diagnostic method for two-dimensional calorimetric diagnostics has been developed f...
The energy deposition of intense pulsed ion beam (IPIB) in stainless steel was studied with ion beam...
强流脉冲离子束在靶上的能量密度分布是其研究和应用的一个重要参数.为了解决现有束流能量密度诊断方法的不足,利用红外成像仪测量靶背面的温度分布,从而建立了强流脉冲离子束能量密度分布的红外诊断方法.对能量密...
Intense pulsed ion beam (IPIB) is characterized by short-pulsed high power density. With the strong ...
A method for analyzing the dynamic energy spectrum of intense pulsed ion beam (IPIB) was proposed. I...
As a type of flash heating source, intense pulsed ion beam (IPIB) can induce strong thermal effect i...
By using Monte-Carlo sampling methods we calculated the energy deposition profiles of high-intensity...
Surfi-Sculpt® is a novel electron beam (EB) direct writing technique invented at TWI. The process ut...
We review research investigating the application of intense pulsed ion beams (IPIBs) for the surface...
As the energy spread of intense pulsed electron beams (IPEB) strongly influences the irradiation eff...
Non-destructive testing (NDT) is a broad group of testing and analysis techniques used in science an...
As the strong thermal effect in the surface, intense pulsed ion beam (IPIB) has been extensively use...
In this paper, a new simulation model of interactions between IPIB and target material was construct...
In this paper, a new simulation model of interactions between IPIB and target material was construct...
Dipartimento di Energetica, Università di Roma “La Sapienza”, Roma, Italy In recent years many exper...