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X-shaped oblique crossing energy consumption connection node
The invention discloses an X-shaped oblique crossing energy consumption connecting joint which comprises a rotating assembly, a friction structure and two joint plates, and the rotating assembly comprises two rotating plates; the two gusset plates are arranged on the two sides of the rotating plates, friction structures are arranged between the gusset plates and the rotating plates, one ends of the two rotating plates are connected with any gusset plate through transmission shafts, arc-shaped sliding grooves are formed in the other ends of the rotating plates, the bolts penetrate through the arc-shaped sliding grooves, one ends of the bolts are fixedly connected with one gusset plate, and the other ends of the bolts are fixedly connected with the other gusset plate. The other end of the bolt is slidably connected with the other gusset plate, the sliding direction is vertical, a lever shaft is arranged on the rotating plate and located between the arc-shaped sliding groove and the transmission shaft, the lever shaft is located on the side close to the transmission shaft, the two ends of the lever shaft are slidably connected with the two gusset plates, and the sliding directions of the two ends of the lever shaft are perpendicular to each other; according to the energy consumption connecting joint, based on the lever principle, a rotating angle generated by relative vertical displacement between the two oval connecting plates can cause the friction plate and the rotating plate to generate larger relative rotating slippage, and therefore the effect of enhancing energy consumption is achieved.
本发明公开了一种X形斜交耗能连接节点,包括旋转组件、摩擦结构和两个节点板,所述旋转组件包括两个旋转板;所述两个节点板设置在旋转板的两侧,节点板与旋转板之间设置有摩擦结构,两个旋转板的一端通过传动轴与任一节点板连接,旋转板的另一端设置有弧形滑槽,螺栓穿过弧形滑槽,螺栓的一端与一节点板固定连接,螺栓的另一端与另一节点板滑动连接,滑动方向为竖向,旋转板上设置有杠杆轴并位于弧形滑槽和传动轴之间,杠杆轴位于靠近传动轴的一侧,杠杆轴的两端与两个节点板滑动连接,并且杠杆轴两端的滑动方向相互垂直;该耗能连接节点基于杠杆原理,两椭圆连接板间相对竖向位移产生的转角会引起摩擦片与旋转板产生更大的相对转动滑移,从而达到增强耗能的效果。
X-shaped oblique crossing energy consumption connection node
The invention discloses an X-shaped oblique crossing energy consumption connecting joint which comprises a rotating assembly, a friction structure and two joint plates, and the rotating assembly comprises two rotating plates; the two gusset plates are arranged on the two sides of the rotating plates, friction structures are arranged between the gusset plates and the rotating plates, one ends of the two rotating plates are connected with any gusset plate through transmission shafts, arc-shaped sliding grooves are formed in the other ends of the rotating plates, the bolts penetrate through the arc-shaped sliding grooves, one ends of the bolts are fixedly connected with one gusset plate, and the other ends of the bolts are fixedly connected with the other gusset plate. The other end of the bolt is slidably connected with the other gusset plate, the sliding direction is vertical, a lever shaft is arranged on the rotating plate and located between the arc-shaped sliding groove and the transmission shaft, the lever shaft is located on the side close to the transmission shaft, the two ends of the lever shaft are slidably connected with the two gusset plates, and the sliding directions of the two ends of the lever shaft are perpendicular to each other; according to the energy consumption connecting joint, based on the lever principle, a rotating angle generated by relative vertical displacement between the two oval connecting plates can cause the friction plate and the rotating plate to generate larger relative rotating slippage, and therefore the effect of enhancing energy consumption is achieved.
本发明公开了一种X形斜交耗能连接节点,包括旋转组件、摩擦结构和两个节点板,所述旋转组件包括两个旋转板;所述两个节点板设置在旋转板的两侧,节点板与旋转板之间设置有摩擦结构,两个旋转板的一端通过传动轴与任一节点板连接,旋转板的另一端设置有弧形滑槽,螺栓穿过弧形滑槽,螺栓的一端与一节点板固定连接,螺栓的另一端与另一节点板滑动连接,滑动方向为竖向,旋转板上设置有杠杆轴并位于弧形滑槽和传动轴之间,杠杆轴位于靠近传动轴的一侧,杠杆轴的两端与两个节点板滑动连接,并且杠杆轴两端的滑动方向相互垂直;该耗能连接节点基于杠杆原理,两椭圆连接板间相对竖向位移产生的转角会引起摩擦片与旋转板产生更大的相对转动滑移,从而达到增强耗能的效果。
X-shaped oblique crossing energy consumption connection node
一种X形斜交耗能连接节点
WANG BIN (author) / HAN MENGQI (author) / CAI WENZHE (author) / SHI QINGXUAN (author) / YANG ZHOU (author) / ZHOU JIAXIN (author)
2024-06-21
Patent
Electronic Resource
Chinese
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