Development of an information and software model of a specialized concrete work flow to ensure the continuity of the production cycle.

Aidar Ramilevich Fakhretdinov, Ekaterina Aleksandrovna Sultanova
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Abstract

Abstract The subject of the study is the process of automating the calculation of the parameters of the design of the technology of concrete works and the justification of the "standard set" of equipment for the organization of a specialized flow of concreting of a typical floor. The transport-concrete cycle is a synchronized schedule of works of the production cycle for laying concrete mix and the dynamics of the ABS kit movement, ensuring the continuity of concreting, through the use of the selected technological scheme of concreting. It determines the continuity of the technological processes of laying the concrete mixture, based on the requirements of mandatory compliance with the concreting time and reducing the number of technological and organizational interruptions of the parameters of the complex process. Thus, the automation of the presented techniques will significantly facilitate the calculation of the total duration of the construction of the monolithic part of the building and ensure the continuity of work on the construction site The scientific novelty lies in the development of a new information system that will allow calculating organizational and technological parameters. The specialized flow of monolithic concrete works consists of reinforcement, concrete and formwork works taking into account architectural planning, structural and technological factors of the designed buildings and structures. For its successful organization, it is necessary to have a "standard set" of equipment and tooling for the manufacture of reinforcement products, formwork systems and the preparation of commercial concrete mixtures. For a simpler calculation of the total duration of the construction of the monolithic part of the building and uninterrupted operation on the construction site, it was proposed to automate the methods of organization, planning and management of construction.
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开发专门的具体工作流程的信息和软件模型,以确保生产周期的连续性。
摘要:本课题研究的是某典型楼盖混凝土施工专业流程组织中混凝土工程工艺设计参数的自动化计算过程和“标准套”设备的论证。输送-混凝土周期是对混凝土拌和料的生产周期和ABS套件运动的动态进行同步调度,通过使用选定的混凝土工艺方案,保证混凝土的连续性。它决定了铺设混凝土混合料的工艺过程的连续性,基于强制性符合混凝土时间的要求,减少了复杂工艺参数的技术和组织中断次数。因此,所提出的技术的自动化将极大地促进建筑整体部分施工总工期的计算,并确保施工现场工作的连续性。科学的新颖性在于开发了一种新的信息系统,可以计算组织和技术参数。整体混凝土工程的专业流程包括钢筋、混凝土和模板工程,同时考虑到所设计的建筑物和构筑物的建筑规划、结构和技术因素。为了其成功的组织,必须有一套“标准”的设备和工具来制造钢筋产品,模板系统和商用混凝土混合物的制备。为了更简单地计算建筑整体部分的施工总工期和施工现场的不间断作业,提出了自动化施工组织、规划和管理的方法。
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