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Intelligent mixing pile construction method based on combination of automatic intelligent control module and Beidou positioning system
The invention discloses an intelligent mixing pile construction method based on an automatic intelligent control module combined with a Beidou positioning system. The intelligent mixing pile construction method comprises the following steps of S1, operation key points, S2, site leveling, S3, manufacturability testing, S4, measurement positioning, S5, pile machine in-place and S6, PLC intelligent control system components. The operation key points of the construction method flow S1 comprise the following steps: S11: technical requirements: preparing technical requirement files such as construction acceptance specifications and standards required by the project, management files of local related administrative competent departments, national laws and regulations and the like, and defining the technical requirements; and S12, data integration: organizing construction technicians to be familiar with a construction drawing, and compiling a technical scheme. The test pile is drilled before drilling; compared with a traditional process, the construction method has the advantages that the PLC control module is adopted, and the pressure sensing device is arranged on the cement mixing pile, so that the control over the flow per meter of discharged slurry of the cement mixing pile under the conditions of different depths and different pressures is realized, the stirring slurry amount at the pile bottom of the cement mixing pile is ensured, and the pile forming quality is ensured.
本发明公开了基于自动化智能控制模块结合北斗定位系统搅拌桩智慧施工工法,包括以下工法流程:S1操作要点、S2场地整平、S3工艺性试验、S4测量定位、S5桩机就位和S6PLC智能控制系统构件;工法流程S1操作要点包括以下步骤:S11:技术要求,准备本工程需用的施工验收规范及标准等技术要求文件以及地方相关行政主管部门管理文件、国家法律法规等,明确技术要求;S12:数据整合,组织施工技术人员熟悉施工图,编制技术方案。试桩开钻前;该施工工法,传统工艺相比,本技术采用PLC控制模块,并在水泥搅拌桩上设置压力传感装置,实现在不同深度、不同压力条件下水泥搅拌桩出浆每米流量控制,确保水泥搅拌桩桩底搅拌浆量,确保成桩质量。
Intelligent mixing pile construction method based on combination of automatic intelligent control module and Beidou positioning system
The invention discloses an intelligent mixing pile construction method based on an automatic intelligent control module combined with a Beidou positioning system. The intelligent mixing pile construction method comprises the following steps of S1, operation key points, S2, site leveling, S3, manufacturability testing, S4, measurement positioning, S5, pile machine in-place and S6, PLC intelligent control system components. The operation key points of the construction method flow S1 comprise the following steps: S11: technical requirements: preparing technical requirement files such as construction acceptance specifications and standards required by the project, management files of local related administrative competent departments, national laws and regulations and the like, and defining the technical requirements; and S12, data integration: organizing construction technicians to be familiar with a construction drawing, and compiling a technical scheme. The test pile is drilled before drilling; compared with a traditional process, the construction method has the advantages that the PLC control module is adopted, and the pressure sensing device is arranged on the cement mixing pile, so that the control over the flow per meter of discharged slurry of the cement mixing pile under the conditions of different depths and different pressures is realized, the stirring slurry amount at the pile bottom of the cement mixing pile is ensured, and the pile forming quality is ensured.
本发明公开了基于自动化智能控制模块结合北斗定位系统搅拌桩智慧施工工法,包括以下工法流程:S1操作要点、S2场地整平、S3工艺性试验、S4测量定位、S5桩机就位和S6PLC智能控制系统构件;工法流程S1操作要点包括以下步骤:S11:技术要求,准备本工程需用的施工验收规范及标准等技术要求文件以及地方相关行政主管部门管理文件、国家法律法规等,明确技术要求;S12:数据整合,组织施工技术人员熟悉施工图,编制技术方案。试桩开钻前;该施工工法,传统工艺相比,本技术采用PLC控制模块,并在水泥搅拌桩上设置压力传感装置,实现在不同深度、不同压力条件下水泥搅拌桩出浆每米流量控制,确保水泥搅拌桩桩底搅拌浆量,确保成桩质量。
Intelligent mixing pile construction method based on combination of automatic intelligent control module and Beidou positioning system
基于自动化智能控制模块结合北斗定位系统搅拌桩智慧施工工法
CHEN XIAOXIAO (author) / LU GUOJIE (author) / XU YINBO (author) / YANG YAN (author) / WU QIU'ER (author)
2024-01-09
Patent
Electronic Resource
Chinese
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