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    • 1. 发明授权
    • Structural analysis method employing finite element method
    • 采用有限元法的结构分析方法
    • US07730444B2
    • 2010-06-01
    • US11259272
    • 2005-10-27
    • Nobutaka ItohTetsuyuki KubotaMami NakadateAkira Tamura
    • Nobutaka ItohTetsuyuki KubotaMami NakadateAkira Tamura
    • G06F17/50H03K17/693
    • G06F17/5018G06F2217/16H05K1/0201H05K1/0271H05K1/0298H05K3/0005H05K3/4626H05K2203/162
    • A structural analysis method that saves analysis time without lowering the prediction accuracy is provided. The structural analysis method has dividing up the analysis target into a plurality of finite elements; defining a plurality of meshes that divide up the analysis target into units larger than the finite elements and calculating, for each mesh, the proportion of one material among the plurality of materials that occupy the finite element contained in the mesh; specifying a mesh in which the calculated proportion of the one material exceeds a predetermined threshold value and generating mesh data by substituting material information specifying materials other than the one material with material information of the materials of the finite elements contained in the specified mesh; and calculating the physical amount yielded in the analysis target on the basis of the generated mesh data.
    • 提供了一种节省分析时间而不降低预测精度的结构分析方法。 结构分析方法将分析目标划分为多个有限元; 定义将分析目标分成大于有限元的单位的多个网格,并且针对每个网格计算占据网格中包含的有限元素的多个材料中的一种材料的比例; 指定所述一种材料的计算比例超过预定阈值的网格,并且通过用指定包含在所述特定网格中的所述有限元素的材料的材料信息替换指定不同于所述一种材料的材料的材料信息来生成网格数据; 以及基于生成的网格数据计算分析对象中产生的物理量。
    • 5. 发明授权
    • Connector and interposer using connector
    • 连接器和插入器使用连接器
    • US08113852B2
    • 2012-02-14
    • US12821796
    • 2010-06-23
    • Akira Tamura
    • Akira Tamura
    • H01R12/00
    • H01R12/714H01R41/00
    • A connector conducting electricity between external electrodes while the connector is being compressed, the connector including: a columnar main body made of an elastic dielectric; a first contact terminal made of an inelastic conductor including first and second electrode sections provided on a top surface and a side surface of the columnar main body and a coupling section interconnecting the first and second electrode sections; a second contact terminal made of an inelastic conductor including third and fourth electrode sections provided on a bottom surface and a side surface of the columnar main body and a coupling section interconnecting the third and fourth electrode sections, the fourth electrode section being disposed in a position in which the fourth electrode section does not contact the second electrode section; and a conductor provided outside the main body and conducting electricity between the second and fourth electrode sections.
    • 连接器被压缩时在外部电极之间导电的连接器,所述连接器包括:由弹性电介质制成的柱状主体; 第一接触端子,由非弹性导体制成,包括设置在柱状主体的顶面和侧面的第一和第二电极部分和互连第一和第二电极部分的耦合部分; 由非弹性导体制成的第二接触端子,包括设置在柱状主体的底面和侧面的第三和第四电极部分和互连第三和第四电极部分的耦合部分,第四电极部分设置在位置 其中所述第四电极部分不接触所述第二电极部分; 以及导体,其设置在主体的外侧,并且在第二和第四电极部之间导电。