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Design and analysis of a 2-DOF RFM for the mirror sub-assembly (MSA) of ICF facility

机译:ICF设施的镜子分组件(MSA)的2-DOF RFM的设计和分析

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This paper presents the design of a 2 degree-of-freedom (DOF) rotation flexure mechanism (RFM) that could be utilized as the pivot for the mirror sub-assembly (MSA) of transport mirrors in the target area of inertial confinement fusion (ICF) laser systems. The hybrid spring system is established as the analytical model of the 2-DOF RFM. With the suitable matrix in coordinate transformation, the overall compliance matrix is developed to reveal the compliance property of the mechanism and the compliance equations are obtained. The analytical results obtained from the compliance equations are validated by means of finite element analysis (FEA) with the accuracy of 1%. The compliance property and design tradeoffs of the 2-DOF RFM are discussed with the compliance equations. The 2-DOF RFM for the MSA of transport mirrors of ShenGuangⅢ (SGⅢ) facility is designed and optimized. Then, the MSA is modeled and analyzed by FEA. The analysis result shows that the 2-DOF RFM is feasible for the MSA design.
机译:本文提出了一种2自由度(DOF)旋转挠曲机构(RFM)的设计,该机构可用作惯性约束聚变目标区域中运输镜的镜组件(MSA)的枢轴( ICF)激光系统。建立了混合弹簧系统作为2-DOF RFM的分析模型。通过在坐标变换中使用合适的矩阵,开发了总体柔量矩阵以揭示机构的柔量特性,并获得了柔量方程。通过有限元分析(FEA)验证从合规性方程获得的分析结果,精度为1%。通过一致性方程讨论了2-DOF RFM的一致性属性和设计折衷。设计并优化了神光Ⅲ(SGⅢ)设施的后视镜MSA的2自由度RFM。然后,通过FEA对MSA进行建模和分析。分析结果表明,二维自由度RFM对于MSA设计是可行的。

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