抄録
Vibration control device and vibration isolator that have effectiveness on earthquake have been pointed in Japan. This study focuses on vibration control panel using Super-plasticity Plastic. Purpose of this study is research and development of vibration control device that can set existing buildings easily and with low cost. Vibration control device on this study consists only of panel made from Super-plasticity Plastic and set up on pillar of residential frame by bolts or nails. It is assumed that the panel converts vibration energy into plastic energy by deformation of frame. This method has possibility of spreading earthquake-proof buildings. Stiffness and displacement on around yield point of vibration control panel computed to earthquake response analysis by application of stress analysis using 3D wooden frame model with ANSYS. Shape on constricted part of panel is trapezoid, semicircle, rectangle and triangle on this analysis to examine effect of shape on stiffness and displacement on around yield point of panel. As a result, rectangular constriction fitter than the others shape for vibration control panel. Moreover, reduction in thickness on constriction has a good effect for vibration control. From the result, earthquake response of wooden house set vibration control panel having rectangular constriction analyzed with MATLAB to look into performance of the panel. Wooden house model setting 30,50,100 panels on every layer given BCJ Level 1 and Kobe NS earthquake wave. The thickness on constriction of these panels is 1mm. As a result, these panels are low effectiveness for vibration control device.