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Analytical Study on Structural Integrity of Target Vessel

机译:目标船结构完整性的分析研究

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Pressure wave is one of critical issues for structural integrity of the mercury target vessel for a MW-class neutron scattering facility. Impact tests on mercury were carried out under high strain rates to estimate the viscosity of mercury and to verify FEM code. An elastic-solid model without dependency on the strain rate could be used to predict impact behaviors in mercury. And, to estimate structural integrity of the target vessel made of stainless steel (the assumed allowable stress of 370.8 MPa), FEM analyses on the pressure wave were carried out under 1 MW (3 GeV, 25 Hz) proton beam condition. it was found that the maximum mises stress of 220.8 MPa was caused by the pressure wave on the outer surface at the center of the window.
机译:压力波是用于MW级中子散射设施的汞靶容器结构完整性的关键问题之一。在高应变率下对汞进行了冲击试验,以评估汞的粘度并验证FEM规范。不依赖应变率的弹性固体模型可用于预测汞的冲击行为。并且,为了估计由不锈钢制成的目标容器的结构完整性(假定的允许应力为370.8 MPa),在1 MW(3 GeV,25 Hz)质子束条件下对压力波进行了有限元分析。结果发现,最大的错齿应力为220.8 MPa,这是由窗中央外表面的压力波引起的。

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