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Stacked mechanical bridge structure
The invention discloses a stacked mechanical bridge structure. On the basis of a traditional mechanical bridge, a bridge body is divided into an upper-layer bridge body and a lower-layer bridge body,the upper-layer bridge body and the lower-layer bridge body are each of a multi-layer partition plate structure in the thickness direction, and each layer of partition plate structure is composed of longitudinal partition plates and transverse partition plates in a staggered mode; each bridge body is of a sectional modular bridge body structure in the length direction, and every two adjacent sections of bridge bodies are fixedly connected through a connecting piece in the use state and are in the split state in the transportation process. In the using state, stand columns below the upper-layerbridge body are fixedly connected with stand columns over the lower-layer bridge body in a one-to-one correspondence mode. In the transportation state, the segmental bridge bodies of the upper-layerbridge body and the lower-layer bridge body are stacked in a staggered mode in the height direction. According to the stacked mechanical bridge structure, the using state and the transportation statecan be conveniently switched, and the overall height of the mechanical bridge in the transportation process can be reduced through connection.
本发明公开了一种堆叠型机械化桥结构,以传统机械桥为基础,将桥体分为上下两层的上层桥体和下层桥体,上层桥体和下层桥体在厚度方向上分别采用多层隔板结构,每层隔板结构由纵隔板与横隔板交错组成;在长度方向上均为分节模块化桥体结构,相邻两节桥体之间在使用状态时通过连接件进行固结,在运输时处于拆分状态。在使用状态时,上层桥体下方的各立柱与下层桥体上方的各立柱一一对应固定连接;在运输状态时,上层桥体与下层桥体的分节桥体在高度方向上错位堆叠布置。本发明的堆叠型机械化桥结构,不仅能便捷地切换工作状态与运输状态,而且能通过连接降低运输过程中机械化桥的整体高度。
Stacked mechanical bridge structure
The invention discloses a stacked mechanical bridge structure. On the basis of a traditional mechanical bridge, a bridge body is divided into an upper-layer bridge body and a lower-layer bridge body,the upper-layer bridge body and the lower-layer bridge body are each of a multi-layer partition plate structure in the thickness direction, and each layer of partition plate structure is composed of longitudinal partition plates and transverse partition plates in a staggered mode; each bridge body is of a sectional modular bridge body structure in the length direction, and every two adjacent sections of bridge bodies are fixedly connected through a connecting piece in the use state and are in the split state in the transportation process. In the using state, stand columns below the upper-layerbridge body are fixedly connected with stand columns over the lower-layer bridge body in a one-to-one correspondence mode. In the transportation state, the segmental bridge bodies of the upper-layerbridge body and the lower-layer bridge body are stacked in a staggered mode in the height direction. According to the stacked mechanical bridge structure, the using state and the transportation statecan be conveniently switched, and the overall height of the mechanical bridge in the transportation process can be reduced through connection.
本发明公开了一种堆叠型机械化桥结构,以传统机械桥为基础,将桥体分为上下两层的上层桥体和下层桥体,上层桥体和下层桥体在厚度方向上分别采用多层隔板结构,每层隔板结构由纵隔板与横隔板交错组成;在长度方向上均为分节模块化桥体结构,相邻两节桥体之间在使用状态时通过连接件进行固结,在运输时处于拆分状态。在使用状态时,上层桥体下方的各立柱与下层桥体上方的各立柱一一对应固定连接;在运输状态时,上层桥体与下层桥体的分节桥体在高度方向上错位堆叠布置。本发明的堆叠型机械化桥结构,不仅能便捷地切换工作状态与运输状态,而且能通过连接降低运输过程中机械化桥的整体高度。
Stacked mechanical bridge structure
一种堆叠型机械化桥结构
GAO JINHAI (Autor:in) / GUO BAOTING (Autor:in) / LI JIAQI (Autor:in) / ZHANG FAN (Autor:in) / FENG YINLI (Autor:in) / JIANG WENTING (Autor:in) / SUN TAO (Autor:in)
28.07.2020
Patent
Elektronische Ressource
Chinesisch
IPC:
E01D
BRIDGES
,
Brücken
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