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MECHANICAL BEHAVIOUR OF CYANATE ESTER/EPOXY BLENDS AFTER REACTOR IRRADIATION TO HIGH NEUTRON FLUENCES

机译:氰酸酯/环氧树脂在反应器辐照后的氰酸酯/环氧树脂的力学行为

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The mechanical strength of conventional epoxy resins drops dramatically after irradiation to a fast neutron fluence of 1×1022 m?2 (E>0.1 MeV). Recent results demonstrated that cyanate ester/epoxy blends were not affected at this fluence level. The aim of this study is to investigate the performance potential of these blends at higher fluence levels without significant degradation of their mechanical properties. Short-beam shear as well as static tensile tests were carried out at 77 K prior to and after irradiation to fast neutron fluences of up to 4×1022 m?2 (E>0.1 MeV) in the TRIGA reactor at ambient temperature (340 K). In addition, load controlled tension-tension fatigue measurements were performed, in order to simulate the pulsed operation conditions of a tokamak. Initial results show that only a small reduction of the mechanical strength under static and dynamic load is observed at a fast neutron fluence of 2×1022 m?2 (E>0.1 MeV). After exposure to 4×1022 m?2 (E>0.1 MeV) the interlaminar shear strength of materials with a cyanate ester content of 40% or more is only reduced by 20% to 30%.
机译:常规环氧树脂的机械强度在照射到快速中子流量为1×1022m'2(e> 0.1mev)后急剧下降。最近的结果表明,氰酸酯/环氧混合物在这种流量水平下不受影响。本研究的目的是研究这些混合物的性能潜力在较高的流量水平,而不会显着降解其力学性能。在环境温度下在Triga反应器中,在辐射之前和之后在77K处在77k处进行短束剪切以及静态拉伸试验。在环境温度下,在Triga反应器中的快速中子流量高达4×1022m≤2(e> 0.1mev)(340k )。另外,进行负载控制的张力张力疲劳测量,以模拟托卡马克的脉冲操作条件。初始结果表明,在快速中子流量为2×1022m-2(e> 0.1mev),只观察到静态和动态载荷下的机械强度小的少量减少。暴露于4×1022m = 2(e> 0.1mev),氰酸酯含量为40%以上的材料的层间剪切强度仅减少20%至30%。

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