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Continuous pouring system for variable cross-section heat absorption tower
The invention relates to a continuous pouring system for a variable-cross-section heat absorption tower. The continuous pouring system comprises a frame unit and a pouring unit. The frame unit comprises a central ring, a plurality of radiation beams, a plurality of connecting rings and a suspension mechanism; the connecting rings and the central ring are concentrically arranged, and the connecting rings are detachably and fixedly connected with the radiation beams; the suspension mechanism comprises an inner hanging vertical beam, an outer hanging vertical beam, a forming template and a horizontal adjusting assembly, the inner hanging vertical beam is detachably and fixedly connected with the radiation beam, and the outer hanging vertical beam can slide in the length direction of the radiation beam; the horizontal adjusting assembly comprises a horizontal climbing rod and a horizontal hydraulic climbing jack, the horizontal climbing rod is installed on the radiation beam, the horizontal hydraulic climbing jack is arranged on the horizontal climbing rod in a penetrating mode, and the horizontal hydraulic climbing jack is fixedly connected with the externally-hung vertical beam; and the position of the externally-hung vertical beam is conveniently adjusted through the horizontal hydraulic climbing jack, then the distance between the forming inner mold and the forming outer mold is adjusted, variable-diameter construction of the tower barrel wall of the heat absorption tower is achieved, and the construction efficiency of the heat absorption tower is improved.
本申请涉及一种变截面吸热塔连续浇筑系统,包括框架单元和浇筑单元;框架单元包括中心环、多个辐射梁、多个连接环以及悬吊机构;连接环与中心环同心设置,且连接环与辐射梁可拆卸固定连接;悬吊机构包括内挂竖梁、外挂竖梁、成型模板以及水平调节组件,内挂竖梁与辐射梁可拆卸固定连接,且外挂竖梁可沿辐射梁长度方向滑移;水平调节组件包括水平爬杆以及水平液压爬升千斤顶,水平爬杆安装于辐射梁上,水平液压爬升千斤顶穿设于水平爬杆上,且水平液压爬升千斤顶与外挂竖梁固定连接;通过水平液压爬升千斤顶便于调节外挂竖梁的位置,进而调节成型内模与成型外模之间的距离,实现吸热塔的塔筒筒壁的变径施工,提高吸热塔的施工效率。
Continuous pouring system for variable cross-section heat absorption tower
The invention relates to a continuous pouring system for a variable-cross-section heat absorption tower. The continuous pouring system comprises a frame unit and a pouring unit. The frame unit comprises a central ring, a plurality of radiation beams, a plurality of connecting rings and a suspension mechanism; the connecting rings and the central ring are concentrically arranged, and the connecting rings are detachably and fixedly connected with the radiation beams; the suspension mechanism comprises an inner hanging vertical beam, an outer hanging vertical beam, a forming template and a horizontal adjusting assembly, the inner hanging vertical beam is detachably and fixedly connected with the radiation beam, and the outer hanging vertical beam can slide in the length direction of the radiation beam; the horizontal adjusting assembly comprises a horizontal climbing rod and a horizontal hydraulic climbing jack, the horizontal climbing rod is installed on the radiation beam, the horizontal hydraulic climbing jack is arranged on the horizontal climbing rod in a penetrating mode, and the horizontal hydraulic climbing jack is fixedly connected with the externally-hung vertical beam; and the position of the externally-hung vertical beam is conveniently adjusted through the horizontal hydraulic climbing jack, then the distance between the forming inner mold and the forming outer mold is adjusted, variable-diameter construction of the tower barrel wall of the heat absorption tower is achieved, and the construction efficiency of the heat absorption tower is improved.
本申请涉及一种变截面吸热塔连续浇筑系统,包括框架单元和浇筑单元;框架单元包括中心环、多个辐射梁、多个连接环以及悬吊机构;连接环与中心环同心设置,且连接环与辐射梁可拆卸固定连接;悬吊机构包括内挂竖梁、外挂竖梁、成型模板以及水平调节组件,内挂竖梁与辐射梁可拆卸固定连接,且外挂竖梁可沿辐射梁长度方向滑移;水平调节组件包括水平爬杆以及水平液压爬升千斤顶,水平爬杆安装于辐射梁上,水平液压爬升千斤顶穿设于水平爬杆上,且水平液压爬升千斤顶与外挂竖梁固定连接;通过水平液压爬升千斤顶便于调节外挂竖梁的位置,进而调节成型内模与成型外模之间的距离,实现吸热塔的塔筒筒壁的变径施工,提高吸热塔的施工效率。
Continuous pouring system for variable cross-section heat absorption tower
一种变截面吸热塔连续浇筑系统
QIN SONGHE (Autor:in) / ZHU XIUQI (Autor:in) / GUO JUNFENG (Autor:in) / ZHAO FENGHUA (Autor:in) / WANG QIANG (Autor:in) / YAO MINXUE (Autor:in) / CHEN HAO (Autor:in) / LIU WENBO (Autor:in) / YANG WEILIN (Autor:in) / LANG YANJU (Autor:in)
13.08.2024
Patent
Elektronische Ressource
Chinesisch
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