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Bridge deck serialization device adopting corrugated steel plate-rubber combined part and construction method of bridge deck serialization device
The invention belongs to the technical field of bridge expansion joint devices, and particularly relates to a bridge floor serialization device adopting corrugated steel plate-rubber combined parts and a construction method of the bridge floor serialization device. By arranging the rubber plate units, the corrugated steel plate units and the vertical screws on the slotted supporting seat units, 1, the corrugated steel plate-rubber combined part composed of the rubber plate units and the corrugated steel plate units has sufficient longitudinal bridge direction deformable space and high vertical supporting strength, so that the longitudinal bridge direction deformation space of the corrugated steel plate-rubber combined part is greatly reduced, and the longitudinal bridge direction deformation space of the corrugated steel plate-rubber combined part is reduced; no gap exists between the support and a concrete layer, the concrete layer cannot be excessively extruded, and passing vehicles can be stably supported for a long time; 2, the corrugated steel plate-rubber combined part has a screwing and anchoring effect on the slotted supporting seat unit, so that the corrugated steel plate-rubber combined part is prevented from tilting upwards and moving leftwards and rightwards in a short period; in addition, the invention further provides a construction method of the bridge floor serialization device.
本发明属于桥梁伸缩缝装置技术领域,尤其涉及一种采用波形钢板‑橡胶组合部件的桥面连续化装置及其施工方法。本发明通过在开槽支撑座单元上设置橡胶板单元、波形钢板单元,以及竖向螺杆的方式,使得:1、橡胶板单元和波形钢板单元组成的上述波形钢板‑橡胶组合部件,既有充分的纵桥向可形变空间,又有较大的竖向支撑强度,可以做到与混凝土层之间没有空隙,也不会过度挤压混凝土层,而且可以长期稳定地支撑过往车辆;2、上述波形钢板‑橡胶组合部件在开槽支撑座单元上具有螺接锚固作用,避免前者在短期内向上翘起、左右移位。此外,本发明还提供上述桥面连续化装置的一种施工方法。
Bridge deck serialization device adopting corrugated steel plate-rubber combined part and construction method of bridge deck serialization device
The invention belongs to the technical field of bridge expansion joint devices, and particularly relates to a bridge floor serialization device adopting corrugated steel plate-rubber combined parts and a construction method of the bridge floor serialization device. By arranging the rubber plate units, the corrugated steel plate units and the vertical screws on the slotted supporting seat units, 1, the corrugated steel plate-rubber combined part composed of the rubber plate units and the corrugated steel plate units has sufficient longitudinal bridge direction deformable space and high vertical supporting strength, so that the longitudinal bridge direction deformation space of the corrugated steel plate-rubber combined part is greatly reduced, and the longitudinal bridge direction deformation space of the corrugated steel plate-rubber combined part is reduced; no gap exists between the support and a concrete layer, the concrete layer cannot be excessively extruded, and passing vehicles can be stably supported for a long time; 2, the corrugated steel plate-rubber combined part has a screwing and anchoring effect on the slotted supporting seat unit, so that the corrugated steel plate-rubber combined part is prevented from tilting upwards and moving leftwards and rightwards in a short period; in addition, the invention further provides a construction method of the bridge floor serialization device.
本发明属于桥梁伸缩缝装置技术领域,尤其涉及一种采用波形钢板‑橡胶组合部件的桥面连续化装置及其施工方法。本发明通过在开槽支撑座单元上设置橡胶板单元、波形钢板单元,以及竖向螺杆的方式,使得:1、橡胶板单元和波形钢板单元组成的上述波形钢板‑橡胶组合部件,既有充分的纵桥向可形变空间,又有较大的竖向支撑强度,可以做到与混凝土层之间没有空隙,也不会过度挤压混凝土层,而且可以长期稳定地支撑过往车辆;2、上述波形钢板‑橡胶组合部件在开槽支撑座单元上具有螺接锚固作用,避免前者在短期内向上翘起、左右移位。此外,本发明还提供上述桥面连续化装置的一种施工方法。
Bridge deck serialization device adopting corrugated steel plate-rubber combined part and construction method of bridge deck serialization device
采用波形钢板-橡胶组合部件的桥面连续化装置及其施工方法
WU QINGXIONG (Autor:in) / CHEN RONGGANG (Autor:in) / HUANG YUFAN (Autor:in) / LIN WEI (Autor:in) / YANG YILUN (Autor:in) / ZHENG CHENGBIN (Autor:in) / WU ZHIGANG (Autor:in)
02.05.2023
Patent
Elektronische Ressource
Chinesisch
IPC:
E01D
BRIDGES
,
Brücken
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