Xie Lingbo, Tian Ye, Shi Feng, Zhou Gang, Guo Shuangpeng, Zhu Zhe, Song Ci, Tie Guipeng
College of Intelligence Science and Technology, National University of Defense Technology, Changsha 410073, China.
Hunan Key Laboratory of Ultra-Precision Machining Technology, Changsha 410073, China.
Micromachines (Basel). 2022 Jul 22;13(8):1159. doi: 10.3390/mi13081159.
The continuous phase plate (CPP) provides excellent beam smoothing and shaping impacts in the inertial confinement fusion application. However, due to the features of its dispersion, its surface gradient is frequently too large (>2 μm/cm) to process. When machining a large gradient surface with continuous ion beam figuring (IBF), the acceleration of the machine motion axis cannot fulfill the appropriate requirements, and the machining efficiency is further influenced by the unavoidable extra removal layer. The pulsed ion beam (PIB) discretizes the ion beam by incorporating frequency-domain parameters, resulting in a pulsed beam with a controlled pulse width and frequency and avoiding the extra removal layer. This research evaluates the processing convergence ability of IBF and PIB for the large gradient surface using simulation and experiment. The findings reveal that PIB offers obvious advantages under the same beam diameter. Compared with the convergence ratio (γ = 2.02) and residuals (RMS = 184.36 nm) of IBF, the residuals (RMS = 27.48 nm) of PIB are smaller, and the convergence ratio (γ = 8.47) is higher. This work demonstrates that PIB has better residual convergence in large gradient surface processing. It is expected to realize ion beam machining with a higher convergence ratio.
连续相位板(CPP)在惯性约束聚变应用中能提供出色的光束平滑和整形效果。然而,由于其色散特性,其表面梯度通常过大(>2μm/cm)而难以加工。采用连续离子束修形(IBF)加工大梯度表面时,机床运动轴的加速度无法满足相应要求,且不可避免的额外去除层会进一步影响加工效率。脉冲离子束(PIB)通过引入频域参数使离子束离散化,形成具有可控脉冲宽度和频率的脉冲束,避免了额外去除层。本研究通过模拟和实验评估了IBF和PIB对大梯度表面的加工收敛能力。研究结果表明,在相同束径下PIB具有明显优势。与IBF的收敛比(γ = 2.02)和残余误差(RMS = 184.36nm)相比,PIB的残余误差(RMS = 27.48nm)更小,收敛比(γ = 8.47)更高。这项工作表明PIB在大梯度表面加工中具有更好的残余收敛性。有望实现更高收敛比的离子束加工。