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Numerical study on the two-dimensional temperature fields of titanium/aluminum double-layer target irradiated by high-intensity pulsed ion beam

机译:高强度脉冲离子束辐照钛/铝双层靶二维温度场的数值研究

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摘要

Interaction between high-intensity pulsed ion beam (HIPIB) and a double-layer target with titanium film on top of aluminum substrate was simulated. The two-dimensional nonlinear thermal conduction equations, with the deposited energy in the target taken as source term, were derived and solved by finite differential method. As a result, the two-dimensional spatial and temporal evolution profiles of temperature were obtained for a titanium/aluminum double-layer target irradiated by a pulse of HIPIB. The effects of ion beam current density on the phase state of the target materials near the film and substrate interface were analyzed. Both titanium and aluminum were melted near the interface after a shot when the ion beam current density fell in the range of 100 A/cm~2 to 200 A/cm~2.
机译:模拟了高强度脉冲离子束(HIPIB)与双层靶材与铝基板顶部的钛膜之间的相互作用。用有限差分法推导并求解了二维非线性热传导方程,将目标中的沉积能量作为源项。结果,获得了由HIPIB脉冲辐照的钛/铝双层靶的二维温度时空分布图。分析了离子束电流密度对靶材料在膜和衬底界面附近的相态的影响。离子束电流密度在100 A / cm〜2至200 A / cm〜2的范围内时,一次喷射后钛和铝都在界面附近熔化。

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