0.1 MeV), and maximum temperatures of about'/> EFFECT OF FAST NEUTRON IRRADIATION ON THE PROPERTIES OF BORON CARBIDE PELLET
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EFFECT OF FAST NEUTRON IRRADIATION ON THE PROPERTIES OF BORON CARBIDE PELLET

机译:快速中子辐照对碳化硼颗粒性能的影响

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Boron carbide pellets were irradiated in the experimental fast reactor ''JOYO'' to B-10 burnup of up to 170 x 10(26) cap/m(3), fluences of 2x10(26)/m(2) (E>0.1 MeV), and maximum temperatures of about 1,200 degrees C. Post irradiation examinations were made of microstructural changes, helium release, swelling, and thermal conductivity. Boron carbide pellets irradiated to high burnups developed extensive cracking. Helium release from the pellets was initially low, but enhanced helium release was observed at high burnups and high temperatures. The swelling linearly increased with burnup, and when boron carbide was irradiated at high temperatures, the swelling rate began to decrease corresponding to the beginning of enhanced helium release. The correlation between swelling and the helium release was studied and the swelling was interpreted in terms of accumulation of helium in the boron carbide pellet. The thermal conductivity of the boron carbide pellets decreased rapidly by neutron irradiation accompanied with loss of temperature dependence. [References: 16]
机译:碳化硼粒料在实验快速反应器``JOYO''中辐照至B-10燃耗高达170 x 10(26)cap / m(3),注量为2x10(26)/ m(2)(E> 0.1 MeV),最高温度约为1200摄氏度。辐照后检查是通过微观结构变化,氦释放,溶胀和导热系数进行的。受到高燃耗的碳化硼粒料会产生大量开裂。最初从粒料中释放的氦气较低,但在高燃耗和高温下观察到氦气释放增强。溶胀随燃耗线性增加,当在高温下照射碳化硼时,溶胀速率开始降低,这与氦释放开始增强有关。研究了溶胀与氦释放之间的相关性,并根据碳化硼颗粒中氦的积累来解释溶胀。碳化硼粒料的热导率由于中子辐照而迅速降低,并伴随着温度依赖性的降低。 [参考:16]

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