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    • 25. 发明申请
    • SEISMIC ISOLATION DEVICE AND MANUFACTURING METHOD OF THE SAME
    • 地震隔离装置及其制造方法
    • US20170044788A1
    • 2017-02-16
    • US15271969
    • 2016-09-21
    • Mitsuo Miyazaki
    • Mitsuo Miyazaki
    • E04H9/02C23C4/08E04B1/98B22D19/16
    • E04H9/022B22D19/16C23C4/08E04B1/98
    • A composite metal core 30 incorporated in a laminated rubber bearing for damper having two different kinds of metal material. An outer metal 31 includes a material having a high rigidity and an excellent plastic deformability. An inner metal 32 includes a material having low rigidity and an excellent plastic deformability. By making a rising rate of a bending rigidity of the composite metal core higher than a rising rate of a shear rigidity of the composite core, the composite metal core enters a deformation mode in which a superior shear deformability is created. In that deformation mode, the performance of absorbing energy generated in a process of plastic deformation is stabilized. And at the same time, an average horizontal shear yield stress degree of the composite metal core can be set at an arbitral level between the horizontal shear yield stress degrees of the two kinds of metal.
    • 一种复合金属芯30,其结合在具有两种不同种类的金属材料的用于阻尼器的层压橡胶轴承中。 外部金属31包括具有高刚性和优异的塑性变形性的材料。 内金属32包括刚性低,塑性变形性优异的材料。 通过使复合金属芯的弯曲刚度的上升率高于复合芯的剪切刚度的上升率,复合金属芯进入产生优异的剪切变形性的变形模式。 在该变形模式中,塑性变形过程中产生的吸收能量的性能稳定。 同时,复合金属芯的平均水平剪切屈服应力程度可以设定在两种金属的水平剪切屈服应力度之间的仲裁水平上。