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Rectangular slab continuous casting equipment foundation slag sluice transition section combined adjustment method
The invention provides a rectangular slab continuous casting equipment foundation slag sluice transition section combined adjustment method. The adjustment method comprises the following steps of dividing and defining slag sluice transition section primitives in foundation primitives of the rectangular slab continuous casting equipment; finely adjusting stressed reinforcing steel bar primitives atthe bottom of a bidirectional inclined slag sluice foundation through auxiliary primitives, finely adjusting base plate primitives of the bidirectional inclined slag sluice foundation, carrying out segmented combined adjustment on side wall primitives of the bidirectional inclined slag sluice according to software limitation, and setting and adjusting outer wall reinforcing steel bar primitives at the top of the foundation; and summarizing and calculating reinforcing steel bars in the bidirectional inclined slag sluice foundation bottom stressed reinforcing steel bar primitives, the bidirectional inclined slag sluice side wall primitives and/or the foundation top outer wall reinforcing steel bar primitives, and locking. According to the method, experimental thinking and a software calculation mode are continuously explored and combined, existing functions of software are used for flexible application, and rectangular slab continuous casting cooling bed equipment basic computerizationcombination modeling computerization primitive combination modeling is completed.
本发明提供了一种矩形板坯连铸设备基础冲渣沟过渡段组合调整方法,该调整方法包括:对矩形板坯连铸设备基础图元中冲渣沟过渡段图元进行划分和定义;通过辅助图元对双向倾斜冲渣沟基础底部受力钢筋图元进行精细化调整、对双向倾斜冲渣沟基础底板图元进行精细化调整、根据软件限制对双向倾斜冲渣沟侧壁图元进行分段组合调整、对基础顶部外墙钢筋图元进行设置调整;对双向倾斜冲渣沟基础底部受力钢筋图元、双向倾斜冲渣沟侧壁图元中水平筋和/或基础顶部外墙钢筋图元中的钢筋进行汇总计算,并进行加锁。本发明通过不断探索试验思维与软件计算方式相结合运用软件现有功能加以灵活应用,完成矩形板坯连铸冷床设备基础电算组合建模电算图元组合建模。
Rectangular slab continuous casting equipment foundation slag sluice transition section combined adjustment method
The invention provides a rectangular slab continuous casting equipment foundation slag sluice transition section combined adjustment method. The adjustment method comprises the following steps of dividing and defining slag sluice transition section primitives in foundation primitives of the rectangular slab continuous casting equipment; finely adjusting stressed reinforcing steel bar primitives atthe bottom of a bidirectional inclined slag sluice foundation through auxiliary primitives, finely adjusting base plate primitives of the bidirectional inclined slag sluice foundation, carrying out segmented combined adjustment on side wall primitives of the bidirectional inclined slag sluice according to software limitation, and setting and adjusting outer wall reinforcing steel bar primitives at the top of the foundation; and summarizing and calculating reinforcing steel bars in the bidirectional inclined slag sluice foundation bottom stressed reinforcing steel bar primitives, the bidirectional inclined slag sluice side wall primitives and/or the foundation top outer wall reinforcing steel bar primitives, and locking. According to the method, experimental thinking and a software calculation mode are continuously explored and combined, existing functions of software are used for flexible application, and rectangular slab continuous casting cooling bed equipment basic computerizationcombination modeling computerization primitive combination modeling is completed.
本发明提供了一种矩形板坯连铸设备基础冲渣沟过渡段组合调整方法,该调整方法包括:对矩形板坯连铸设备基础图元中冲渣沟过渡段图元进行划分和定义;通过辅助图元对双向倾斜冲渣沟基础底部受力钢筋图元进行精细化调整、对双向倾斜冲渣沟基础底板图元进行精细化调整、根据软件限制对双向倾斜冲渣沟侧壁图元进行分段组合调整、对基础顶部外墙钢筋图元进行设置调整;对双向倾斜冲渣沟基础底部受力钢筋图元、双向倾斜冲渣沟侧壁图元中水平筋和/或基础顶部外墙钢筋图元中的钢筋进行汇总计算,并进行加锁。本发明通过不断探索试验思维与软件计算方式相结合运用软件现有功能加以灵活应用,完成矩形板坯连铸冷床设备基础电算组合建模电算图元组合建模。
Rectangular slab continuous casting equipment foundation slag sluice transition section combined adjustment method
一种矩形板坯连铸设备基础冲渣沟过渡段组合调整方法
SONG SAIZHONG (author) / AN JIFU (author) / CHEN LEI (author) / ZHANG TING (author) / JIN LIAODONG (author) / ZHAO JIAN (author)
2020-12-11
Patent
Electronic Resource
Chinese
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