Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
Tensioning vibration isolation device based on hyperelastic shape memory alloy
The invention discloses a tension vibration isolation device based on hyperelastic shape memory alloy, and relates to the technical field of vibration isolation devices. The tensioning vibration isolation device based on the hyperelastic shape memory alloy is characterized by comprising a base, a top seat, a lower connecting frame, an upper connecting frame, a first tensioning assembly and a second tensioning assembly; the base and the top seat are opposite in the vertical direction; the upper connecting frames are connected to the lower surfaces of the two opposite sides of the top base correspondingly. The lower connecting frames are connected to the upper surface, on the same side as the upper connecting frames, of the base; the two ends of the first tensioning assembly are connected to the adjacent sides of the upper connecting frame of the top base and the adjacent sides of the lower connecting frame of the base correspondingly. The two ends of the second tensioning assembly are connected to the bottom of the upper connecting frame and the top of the lower connecting frame respectively. According to the embodiment of the invention, the first tensioning assembly and the second tensioning assembly always act simultaneously and oppositely. The first tensioning assembly and the second tensioning assembly are arranged between the base and the top seat at intervals, and the stability and the shock resistance of the device are improved.
本申请公开了一种基于超弹性形状记忆合金的张拉隔振装置,涉及隔振装置技术领域。该基于超弹性形状记忆合金的张拉隔振装置,其特征在于,包括底座、顶座、下连接架、上连接架、第一张拉组件和第二张拉组件;底座和顶座在竖直方向上相对;上连接架分别连接于顶座的相对的两侧的下表面;下连接架分别连接于底座的与上连接架同侧的上表面;第一张拉组件的两端分别连接于顶座的上连接架的相邻侧,和,底座的下连接架的相邻侧;第二张拉组件的两端扥别连接于上连接架的底部和下连接架的顶部。本发明实施例的第一张拉组件和第二张拉组件总是同时,且相反动作。第一张拉组件和第二张拉组件在底座和顶座之间间隔设置,实现了增强装置的稳定性和抗震能力。
Tensioning vibration isolation device based on hyperelastic shape memory alloy
The invention discloses a tension vibration isolation device based on hyperelastic shape memory alloy, and relates to the technical field of vibration isolation devices. The tensioning vibration isolation device based on the hyperelastic shape memory alloy is characterized by comprising a base, a top seat, a lower connecting frame, an upper connecting frame, a first tensioning assembly and a second tensioning assembly; the base and the top seat are opposite in the vertical direction; the upper connecting frames are connected to the lower surfaces of the two opposite sides of the top base correspondingly. The lower connecting frames are connected to the upper surface, on the same side as the upper connecting frames, of the base; the two ends of the first tensioning assembly are connected to the adjacent sides of the upper connecting frame of the top base and the adjacent sides of the lower connecting frame of the base correspondingly. The two ends of the second tensioning assembly are connected to the bottom of the upper connecting frame and the top of the lower connecting frame respectively. According to the embodiment of the invention, the first tensioning assembly and the second tensioning assembly always act simultaneously and oppositely. The first tensioning assembly and the second tensioning assembly are arranged between the base and the top seat at intervals, and the stability and the shock resistance of the device are improved.
本申请公开了一种基于超弹性形状记忆合金的张拉隔振装置,涉及隔振装置技术领域。该基于超弹性形状记忆合金的张拉隔振装置,其特征在于,包括底座、顶座、下连接架、上连接架、第一张拉组件和第二张拉组件;底座和顶座在竖直方向上相对;上连接架分别连接于顶座的相对的两侧的下表面;下连接架分别连接于底座的与上连接架同侧的上表面;第一张拉组件的两端分别连接于顶座的上连接架的相邻侧,和,底座的下连接架的相邻侧;第二张拉组件的两端扥别连接于上连接架的底部和下连接架的顶部。本发明实施例的第一张拉组件和第二张拉组件总是同时,且相反动作。第一张拉组件和第二张拉组件在底座和顶座之间间隔设置,实现了增强装置的稳定性和抗震能力。
Tensioning vibration isolation device based on hyperelastic shape memory alloy
一种基于超弹性形状记忆合金的张拉隔振装置
WANG JUN (Autor:in) / WANG LIANGDI (Autor:in) / GU XIAOJUN (Autor:in) / XU YINGJIE (Autor:in) / JIA DONGSHENG (Autor:in) / ZHU JIHONG (Autor:in) / ZHANG WEIHONG (Autor:in)
11.11.2022
Patent
Elektronische Ressource
Chinesisch
British Library Online Contents | 2013
|DOAJ | 2023
|Modelling of Vibration Control, Damping and Isolation by Shape Memory Alloy Parts
British Library Conference Proceedings | 2003
|Shape memory alloy friction composite vibration isolator
Europäisches Patentamt | 2015
|Shape memory alloy friction combined vibration isolator
Europäisches Patentamt | 2015
|