Huang Xinlong, Lv Chenyangtao, Chu Haijian
School of Mechanics and Engineering Science, Shanghai University, Shanghai, 200444, China.
Shanghai Institute of Applied Mathematics and Mechanics, Shanghai University, Shanghai, 200444, China.
Sci Rep. 2021 Jan 12;11(1):830. doi: 10.1038/s41598-020-80167-7.
Bubble pressure and elastic response in helium-irradiated tungsten are systematically investigated in this study. An anomalous shape effect is found that the radial normal stress and mean stress distributions around a nanosized void or bubble are far from the spherical symmetry, which is ascribed to polyhedral geometry characteristic of the nanosized bubble and physical mechanism transition from crystal surfaces dominated to the surface ledges and triple junctions dominated. Molecular simulation shows that Young-Laplace equation is not suitable for directly predicting equilibrium pressure for nanosized bubble in crystals. Consequently, a new criterion of average radial normal stress of spherical shell is proposed to polish the concept of equilibrium pressure of helium bubbles. Moreover, the dependences of bubble size, temperature and helium/vacancy ratio (He/Vac ratio) on the bubble pressure are all documented, which may provide an insight into the understanding of mechanical properties of helium-irradiated tungsten.
本研究系统地研究了氦辐照钨中的气泡压力和弹性响应。发现了一种异常形状效应,即纳米级空洞或气泡周围的径向法向应力和平均应力分布远非球对称,这归因于纳米级气泡的多面体几何特征以及从晶体表面主导到表面台阶和三叉晶界主导的物理机制转变。分子模拟表明,杨氏-拉普拉斯方程不适用于直接预测晶体中纳米级气泡的平衡压力。因此,提出了一种新的球壳平均径向法向应力准则来完善氦气泡平衡压力的概念。此外,还记录了气泡尺寸、温度和氦/空位比(He/Vac比)对气泡压力的依赖性,这可能有助于深入理解氦辐照钨的力学性能。