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Neutron irradiation effects on the mechanical properties of powder metallurgical processed tungsten alloys

机译:中子辐照对粉末冶金加工钨合金机械性能的影响

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Neutron irradiation effects on the tensile properties of Pure W, K-doped W, W-3%Re, and K-doped W-3% Re were examined under the US-Japan collaboration project PHENIX. The fission neutron irradiation experiments were carried out up to 0.74 dpa at 600 degrees C and 800 degrees C. Pure W (SR) showed irradiation hardening and loss of ductility after irradiation at 600 degrees C and 800 degrees C. K-doped W-3%Re (SR) also exhibited irradiation hardening but was ductile after irradiation. Characteristic points of the K-doped W -3%Re (SR) are small grain size and layered structure. The stress-relief treatment and the layered structure may improve the ductility of powder-metallurgy W alloys after neutron irradiation, so a combination of K-doping and Re addition would be beneficial to improve irradiation resistance. (C) 2019 Elsevier B.V. All rights reserved.
机译:在美国日本协作项目苯克斯下研究了对纯W,K掺杂W,W-3%Re和K掺杂W-3%Re的纯W,K掺杂W,W-3%Re的抗拉性的作用。 裂变中子辐射实验在600℃和800摄氏度下进行高达0.74dPa。纯W(SR)显示在600℃和800℃的照射后照射后的照射硬化和延展性的损失。K掺杂W-3 %RE(SR)还表现出辐照硬化,但在照射后是延性。 K掺杂的W -3%Re(SR)的特征点是小粒度和层状结构。 在中子辐射后,应力消除处理和层状结构可以改善粉末冶金W合金的延展性,因此k掺杂和再加入的组合是有益的改善辐射抗性。 (c)2019 Elsevier B.v.保留所有权利。

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