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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Microstructure and thermal desorption of deuterium in heavy-ion-irradiated pure tungsten
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Microstructure and thermal desorption of deuterium in heavy-ion-irradiated pure tungsten

机译:重离子辐照纯钨中氘的微观结构和热脱附

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To understand the fundamental processes of deuterium retention and desorption of irradiated plasma facing materials, thermal desorption of deuterium in pure W with and without ion irradiation up to 2 dpa by 2.4 MeV Cu2+ have been investigated. After the ion irradiation at room temperature, high density of small interstitial typed dislocation loops and also nano-voids due to cascade collisions were detected by TEM observation. Thermal desorption of spectra of D showed that fine vacancy clusters are formed even at low fluence and at room temperature irradiation, these defects act as the strong trapping center of deuterium in the temperature range of 660-900 K. (C) 2014 Elsevier B.V. All rights reserved.
机译:为了了解氘的保留和被等离子体辐照材料的脱附的基本过程,已经研究了2.4 MeV Cu2 +对有和没有离子辐照的纯W中氘的热脱附,高达2 dpa。在室温下进行离子辐照后,通过TEM观察可以检测到高密度的小间隙型位错环以及级联碰撞引起的纳米空隙。 D的热解吸光谱显示,即使在低通量和室温照射下,仍会形成细小的空位簇,这些缺陷在660-900 K的温度范围内充当氘的强捕集中心。(C)2014 Elsevier BV全部版权所有。

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