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首页> 外文期刊>Technical physics letters: Letters to the Russian journal of applied physics >Temperature Distribution in a Sample with Second-Phase Microinclusions during Irradiation by a Low-Energy High-Current Pulsed Electron Beam
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Temperature Distribution in a Sample with Second-Phase Microinclusions during Irradiation by a Low-Energy High-Current Pulsed Electron Beam

机译:通过低能量高电流脉冲电子束照射期间具有第二相微内计的样品中的温度分布

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摘要

Using the methods of numerical integration, a temperature field has been calculated that arose in the surface layer of titanium nickelide target with NiTi2 intermetallic inclusions during irradiation by a low-energy high-current electron beam with a duration of the order of a microsecond. The calculated temperature field has been compared with that obtained previously for a target of stainless steel 316L containing MnS inclusions. It has been found that, as in the case of stainless steel, the regions of inclusions are overheated. However, the temperature increase for NiTi2 (12 K) is significantly lower than in the case of stainless steel 316L (283 K). The dynamics of melting of these systems are also considerably different.
机译:使用数值积分的方法,已经计算了在镍钛靶层的表面层中产生的温度场,其在通过低能量高电流电子束照射期间具有微秒的低能量高电流电子束的辐射。 已经将计算的温度场与先前获得的含有MNS夹杂物的不锈钢316L的目标进行比较。 已经发现,如在不锈钢的情况下,夹杂物区域过热。 然而,NITI2(12K)的温度升高显着低于不锈钢316L(283k)的情况。 这些系统熔化的动态也大大不同。

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