cr16ni15mo3ti型钢燃料元件壳体的织构和蠕变各向异性

V. Kuznetsov, O. N. Khakimova, V. Shalaev, N. F. Vil’danova, V. Sagaradze, Yu. I. Filippov
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引用次数: 0

摘要

研究了用于快中子反应堆燃料元件壳体的Cr16Ni15Mo3Ti型冷变形钢管在20%应变下的组织、织构、强度和蠕变性能。管沿轴呈纤维< 111 >和< 100 >织构。优选方向< 011 >垂直于径向面,(011)和(112)垂直于管表面切向面。强度、蠕变强度和断裂强度沿管轴方向较高。定性地说,这归因于材料的特定纹理和颗粒形状。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
THE TEXTURE AND CREEP ANISOTROPY OF FUEL ELEMENT SHELLS MANUFACTURED FROM CR16NI15MO3TI TYPE STEELS
A study was undertaken into the structure, the texture, the strength, and the creep of the Cr16Ni15Mo3Ti type steel tubes cold-deformed to 20% strain that are used as the fuel element shells for fast-neutron reactors. The tubes were found to have fibrous 〈111〉 and 〈100〉 textures along their axis. The preferred orientations 〈011〉 normal to the radial plane and (011) and (112) normal to the plane tangential to the tube surface were determined. The strength, the creep strength, and the rupture strength proved to be higher along the tube axis. Qualitatively, this is attributed to a specific texture and the grain shape of the material.
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