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Influence of Technological Defects and Neutron Irradiation on the Mechanical Properties of Single-Crystal Molybdenum Pipes

机译:技术缺陷和中子辐照对单晶钼管力学性能的影响

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摘要

The state of single-crystal molybdenum pipes irradiated in an IW-2M reactor at the peak temperature of 1400℃ for 1700 and 3200 h by the fast neutron fluence of 3 × 10~(20) and 5 × 10~(20) n cm~(-2), respectively, is investigated. The aim is to analyze the shape and surface state of pipes, the metallography of the structure, the short-time mechanical properties, and the character of destruction of the ring pipe specimen under testing. Radiation strengthening of molybdenum single-crystal is not registered. The strength parameters of the irradiated material are the level of initial values. The plastic properties of samples approach zero under room temperature tests. When the temperature is above 250℃, the total tensile strain of the sample exceeds 15% and ductile fracture with neck thinning to zero takes place. The perfect structure of an irradiated single crystal is preserved. Technological defects such as microcracks on the inner surface of pipes may act as stress concentrators.
机译:通过3×10〜(20)和5×10〜(20)n cm的快速中子注量,在IW-2M反应堆中于1400℃峰值温度下辐照的单晶钼管的状态为1700和3200 h。 〜(-2)分别进行了研究。目的是分析管道的形状和表面状态,结构的金相,短期力学性能以及被测环管试样的破坏特性。未记录钼单晶的辐射增强。被辐照材料的强度参数为初始值。在室温下,样品的塑性性能接近于零。当温度高于250℃时,样品的总拉伸应变超过15%,并且发生延性断裂,颈部变细至零。保留了被照射的单晶的完美结构。技术缺陷(例如管道内表面上的微裂纹)可能会成为应力集中器。

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