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Dynamic Vibration Analysis and Tribological Study of Mechanical Heat Generation Inside the Superconducting Coil for Maglev

机译:磁悬浮超导线圈内部机械发热的动态振动分析和摩擦学研究

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摘要

The purpose of this study is to reduce a mechanical heat load which is generated inside the on-board superconducting coil (SC-coil) for JR MAGLEV. The mechanical heat generation inside the SC-coil-installed inner vessel was investigated on the assumption that it is generated by the friction caused by the relative microscopic slips between the SC-coil and coil fasteners. SC-coil vibration tests and FEM analysis were performed to study the correlation between SC-coil vibration and mechanical loss (dynamic vibration analysis). A fretting wear test was performed at liquid-helium-cooled boundaries between structural components of the SC-coil (tribological study). The results of dynamic vibration analysis suggest that the frictional heat occurs in the surrounding area of the support columns in the rigid body vibration mode and in the areas where the greatest degree of bending is observed in the eigen-mode of SC-coil twisting which involves elastic deformation. In the tribological study, test results demonstrated a high possibility that the mechanical loss inside the SC-coil-installed inner vessel had occurred on the boundary between the epoxy-impregnated SC-coil and coil fasteners.
机译:这项研究的目的是减少JR MAGLEV的车载超导线圈(SC-coil)内部产生的机械热负荷。在假定由SC线圈和线圈扣件之间的相对微观滑动引起的摩擦力产生的前提下,研究了安装SC线圈的内部容器内部的机械热量。进行了SC线圈振动测试和FEM分析,以研究SC线圈振动与机械损耗之间的相关性(动态振动分析)。在SC线圈结构组件之间的液氦冷却边界处进行了微动磨损测试(摩擦学研究)。动态振动分析结果表明,摩擦热在刚体振动模式下在支撑柱的周围区域发生,而在SC螺旋扭转本征模式下在观察到最大弯曲程度的区域发生。弹性变形。在摩擦学研究中,测试结果表明,在装有SC线圈的内部容器内部的机械损失很有可能发生在环氧树脂浸渍的SC线圈和线圈紧固件之间的边界上。

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