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Friction energy dissipation support based on shape memory alloy and replacement method
The invention discloses a friction energy dissipation support based on shape memory alloy and a replacement method, the friction energy dissipation support comprises a support body, the support body comprises a support main body, a support bottom plate assembly and a support top plate assembly, and the support main body is clamped between the support bottom plate assembly and the support top plate assembly; one end of the shape memory alloy friction energy consumption device is installed on the support top plate assembly, and the other end is installed on the support bottom plate assembly. The unloading device comprises an unloading device adjusting limiting plate assembly, an unloading device upper plate assembly and an unloading device movable plate assembly. The unloading device upper plate assembly comprises an unloading device upper plate, one surface of the unloading device upper plate is a plane, the other surface of the unloading device upper plate is a slope with one end higher than the other end, the unloading device movable plate assembly comprises an unloading device movable plate, one surface of the unloading device movable plate is a plane, and the other surface of the unloading device movable plate is a slope. The unloading device movable plate is clamped between the unloading device upper plate and the support top plate assembly, and the inclined face of the unloading device upper plate is matched with the inclined face of the unloading device movable plate. The horizontal rigidity of the support is guaranteed, and replacement is easy and fast.
本发明公开了一种基于形状记忆合金摩擦耗能支座及更换方法,包括:支座本体,包含支座主体、支座底板组件和支座顶板组件,支座主体夹在支座底板组件和支座顶板组件之间,形状记忆合金摩擦耗能装置一端安装于支座顶板组件、另一端安装于支座底板组件;卸落装置调节限位板组件,卸落装置上板组件和卸落装置活动板组件;卸落装置上板组件包括卸落装置上板,卸落装置上板一表面为平面、另一表面为一端高一端底的斜面,卸落装置活动板组件包括卸落装置活动板,卸落装置活动板一表面为平面、另一表面为斜面,卸落装置活动板夹于卸落装置上板与支座顶板组件之间,卸落装置上板的斜面与卸落装置活动板的斜面相配合。保证支座水平刚度,更换简单、快捷。
Friction energy dissipation support based on shape memory alloy and replacement method
The invention discloses a friction energy dissipation support based on shape memory alloy and a replacement method, the friction energy dissipation support comprises a support body, the support body comprises a support main body, a support bottom plate assembly and a support top plate assembly, and the support main body is clamped between the support bottom plate assembly and the support top plate assembly; one end of the shape memory alloy friction energy consumption device is installed on the support top plate assembly, and the other end is installed on the support bottom plate assembly. The unloading device comprises an unloading device adjusting limiting plate assembly, an unloading device upper plate assembly and an unloading device movable plate assembly. The unloading device upper plate assembly comprises an unloading device upper plate, one surface of the unloading device upper plate is a plane, the other surface of the unloading device upper plate is a slope with one end higher than the other end, the unloading device movable plate assembly comprises an unloading device movable plate, one surface of the unloading device movable plate is a plane, and the other surface of the unloading device movable plate is a slope. The unloading device movable plate is clamped between the unloading device upper plate and the support top plate assembly, and the inclined face of the unloading device upper plate is matched with the inclined face of the unloading device movable plate. The horizontal rigidity of the support is guaranteed, and replacement is easy and fast.
本发明公开了一种基于形状记忆合金摩擦耗能支座及更换方法,包括:支座本体,包含支座主体、支座底板组件和支座顶板组件,支座主体夹在支座底板组件和支座顶板组件之间,形状记忆合金摩擦耗能装置一端安装于支座顶板组件、另一端安装于支座底板组件;卸落装置调节限位板组件,卸落装置上板组件和卸落装置活动板组件;卸落装置上板组件包括卸落装置上板,卸落装置上板一表面为平面、另一表面为一端高一端底的斜面,卸落装置活动板组件包括卸落装置活动板,卸落装置活动板一表面为平面、另一表面为斜面,卸落装置活动板夹于卸落装置上板与支座顶板组件之间,卸落装置上板的斜面与卸落装置活动板的斜面相配合。保证支座水平刚度,更换简单、快捷。
Friction energy dissipation support based on shape memory alloy and replacement method
一种基于形状记忆合金摩擦耗能支座及更换方法
QIU JIHAO (Autor:in) / LI KUN (Autor:in) / CHEN JINGPING (Autor:in) / LIU WEIPING (Autor:in) / HE JIARONG (Autor:in) / ZHENG KANGPING (Autor:in) / LIU ZHIDONG (Autor:in) / ZI DAOMING (Autor:in) / HUANG BIN (Autor:in) / CHEN YONGJIA (Autor:in)
26.03.2024
Patent
Elektronische Ressource
Chinesisch
IPC:
E01D
BRIDGES
,
Brücken
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