首页> 外文会议>International Cryogenic Materials Conference >INFLUENCE OF REINFORCEMENT ANISOTROPY ON THE STRESS DISTRIBUTION IN TENSION AND SHEAR OF A FUSION MAGNET INSULATION SYSTEM
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INFLUENCE OF REINFORCEMENT ANISOTROPY ON THE STRESS DISTRIBUTION IN TENSION AND SHEAR OF A FUSION MAGNET INSULATION SYSTEM

机译:增强各向异性对融合磁体绝缘系统张力和剪切应力分布的影响

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A glass fiber reinforced plastic laminate, which consists of half-overlapped wrapped Kapton/R-glass-fiber reinforcing tapes vacuum-pressure impregnated in a cyanate ester/epoxy blend, is proposed as the insulation system for the ITER Toroidal Field coils. In order to assess its mechanical performance under the actual operating conditions, cryogenic (77 K) tensile and interlaminar shear tests were done after irradiation to the ITER design fluence of 1×1022 m?2 (E>0.1 MeV). The data were then used for a Finite Element Method (FEM) stress analysis. We find that the mechanical strength and the fracture behavior as well as the stress distribution and the failure criteria are strongly influenced by the winding direction and the wrapping technique of the reinforcing tapes. ?2008 American Institute of Physics.
机译:玻璃纤维增​​强塑料层压板,由半重叠的包裹的Kapton / R玻璃纤维增​​强胶带浸渍在氰酸酯/环氧混合物中的真空压力,作为迭代环形磁线圈的绝缘系统。为了在实际操作条件下评估其机械性能,在照射到浸泡的浸渍剂设计后,低温(77 k)拉伸和层间剪切试验,1×1022m≤2(e> 0.1mev)。然后将数据用于有限元方法(FEM)应力分析。我们发现机械强度和裂缝行为以及应力分布以及破坏标准受加强胶带的绕组方向和包装技术的强烈影响。 ?2008年美国物理研究所。

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