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Influence of ions irradiation on the microstructural evolution, mechanical and tribological properties of Zr-4 alloy

机译:离子辐照对Zr-4合金的组织演变,力学和摩擦学性能的影响

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The wear of fuel cladding due to flow induced vibration in nuclear reactor presents a safety concern, and the impact of neutron irradiation on wear behavior is not fully understood. In this study, Kr+ and Zr+ ions bombardment were used to simulate the neutron irradiation on Zr-4 alloys, and the impacts of ion irradiation on the microstructure evolution, mechanical and tribological behaviors of Zr-4 alloy were investigated. The HRTEM observation reveals that high density of point defects, dislocations as well as small dislocation loops formed below the surface within 260 nm depth after Zr+ irradiated with the damage level up to 30 dpa. The nano-indentation tests suggests that the hardness of Zr-4 alloy increases with increasing of irradiation dose, resulting from the inhibition of slip of dislocation under the large amount of defects induced by irradiation. The fretting wear tests show that the friction coefficient of Zr-4 alloy increases significantly from 0.4 to above 1, due to the irradiation hardening and embrittlement, the repeated sliding during fretting wear leads to intergranular fracture at surface and the growth of cracks under load contact area, leaving deeper furrows and higher hardness debris, which results in higher friction coefficient and severe wear of Zr-4 alloy after irradiation.
机译:核反应堆中由于流动引起的振动而引起的燃料包壳的磨损提出了安全问题,并且中子辐照对磨损行为的影响尚不完全清楚。在这项研究中,使用Kr +和Zr +离子轰击来模拟Zr-4合金上的中子辐照,并研究了离子辐照对Zr-4合金的组织演变,力学和摩擦学行为的影响。 HRTEM观察表明,在Zr +照射至30 dpa的损伤水平后,在260 nm深度以内的表面下方形成了高密度的点缺陷,位错以及小的位错环。纳米压痕试验表明,Zr-4合金的硬度随辐照剂量的增加而增加,这是由于在大量辐照引起的缺陷下抑制位错滑移所致。微动磨损试验表明,由于辐照硬化和脆化,Zr-4合金的摩擦系数从0.4显着增加到1以上,微动磨损过程中的反复滑动导致表面晶间断裂和载荷接触下裂纹的增长区域,留下更深的犁沟和更高的硬度碎屑,从而导致更高的摩擦系数和Zr-4合金在辐照后的严重磨损。

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