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Bridge bearing platform embedded part installation deepening construction method
The invention relates to the technical field of bridge bearing platform embedded part installation and construction, and discloses a bridge bearing platform embedded part installation deepening construction method which comprises the following steps: S1, constructing an overall model: accurately and efficiently constructing a three-dimensional model by a professional team by utilizing Revit or other software tools, and constructing the three-dimensional model; according to the method, all participants including a construction supervisor and a construction unit can understand the design intention more intuitively, the surrounding and on-site actual environments of the embedded parts in the bridge bearing platform are hung to the model in a data information mode, and the most real and accurate three-dimensional on-site field plane arrangement is established. According to the deepening construction method for mounting the embedded part of the bridge bearing platform, the problem that the requirement for the prefabrication precision of components such as a bridge pier, the bearing platform and the embedded part, especially the mounting precision of various embedded parts, is high, and the phenomenon that the prefabrication components cannot be mounted due to the fact that the mounting precision of the embedded components is insufficient during construction is easily caused is solved; and the problem is one of the reasons that the progress is slow in the construction of the bridge bearing platform embedded part.
本发明涉及桥梁承台预埋件安装建设技术领域,且公开了一种桥梁承台预埋件安装深化施工方法,包括以下步骤:S1、整体模型构建、利用Revit或者其他软件工具,由专业团队准确、高效地搭建三维模型,使施工监理、建设单位在内的各参建方更加直观地理解设计意图,并将桥梁承台内预埋件周边及现场的实际环境以数据信息的方式挂接到模型中,建立最真实和准确的三维的现场场地平面布置。该桥梁承台预埋件安装深化施工方法,解决了对桥墩、承台、预埋件等构件预制精度尤其是各种预埋件的安装精度要求较高,施工时容易出现因预埋构件安装精度不足而导致预制构件无法安装的现象,是导致桥梁承台预埋件建设当中进度较慢的原因之一的问题。
Bridge bearing platform embedded part installation deepening construction method
The invention relates to the technical field of bridge bearing platform embedded part installation and construction, and discloses a bridge bearing platform embedded part installation deepening construction method which comprises the following steps: S1, constructing an overall model: accurately and efficiently constructing a three-dimensional model by a professional team by utilizing Revit or other software tools, and constructing the three-dimensional model; according to the method, all participants including a construction supervisor and a construction unit can understand the design intention more intuitively, the surrounding and on-site actual environments of the embedded parts in the bridge bearing platform are hung to the model in a data information mode, and the most real and accurate three-dimensional on-site field plane arrangement is established. According to the deepening construction method for mounting the embedded part of the bridge bearing platform, the problem that the requirement for the prefabrication precision of components such as a bridge pier, the bearing platform and the embedded part, especially the mounting precision of various embedded parts, is high, and the phenomenon that the prefabrication components cannot be mounted due to the fact that the mounting precision of the embedded components is insufficient during construction is easily caused is solved; and the problem is one of the reasons that the progress is slow in the construction of the bridge bearing platform embedded part.
本发明涉及桥梁承台预埋件安装建设技术领域,且公开了一种桥梁承台预埋件安装深化施工方法,包括以下步骤:S1、整体模型构建、利用Revit或者其他软件工具,由专业团队准确、高效地搭建三维模型,使施工监理、建设单位在内的各参建方更加直观地理解设计意图,并将桥梁承台内预埋件周边及现场的实际环境以数据信息的方式挂接到模型中,建立最真实和准确的三维的现场场地平面布置。该桥梁承台预埋件安装深化施工方法,解决了对桥墩、承台、预埋件等构件预制精度尤其是各种预埋件的安装精度要求较高,施工时容易出现因预埋构件安装精度不足而导致预制构件无法安装的现象,是导致桥梁承台预埋件建设当中进度较慢的原因之一的问题。
Bridge bearing platform embedded part installation deepening construction method
一种桥梁承台预埋件安装深化施工方法
ZHANG BO (Autor:in) / LI HAO (Autor:in) / LI YANLONG (Autor:in) / ZHAI YUGANG (Autor:in) / GUO ZI (Autor:in) / REN XIANG (Autor:in) / ZHANG CHIYU (Autor:in) / LIU WEI (Autor:in) / HUANG DOU (Autor:in) / HUANG JIAJIN (Autor:in)
08.08.2023
Patent
Elektronische Ressource
Chinesisch
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