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Aluminum mold variable cross-section construction method based on interchangeability modulus design
The invention relates to an aluminum formwork variable cross-section construction method based on interchangeability modulus design, which takes an L-shaped shear wall as a design representation, and comprises the following steps: S1, wall column modulus design and construction; s2, beam modulus design and construction; and S3, modulus design and construction of the top plate and the quick-release supporting system of the top plate. According to the method, analysis and statistical calculation are performed according to structural characteristics and size changes of a construction drawing during aluminum formwork design, and optimal wall column and beam plate modulus combination coefficients are adopted in combination with structural size change rules and characteristics of a variable cross-section layer during standard layer aluminum formwork size design and formwork matching; therefore, the aluminum template can be constructed without replacing the template or locally adjusting the position of the original template after the construction of a standard layer is finished and the variable cross-section layer is constructed, so that the purposes that the aluminum template is convenient to produce and simple and convenient to reinforce during construction and the construction and manufacturer production cost is reduced are achieved; the main problems encountered during construction of the variable cross-section layer of the aluminum mold in the background technology are solved, reinforcement is easy during construction, and operation is convenient and fast.
本发明是一种基于互换性模数设计的铝模变截面施工方法,以L型剪力墙为设计代表,包括以下步骤:S1、墙柱模数设计和施工;S2、梁模数设计和施工;S3、顶板及其快拆支撑体系模数设计和施工。本发明铝模设计时根据施工图的结构特点及尺寸变化进行分析和统计计算,在标准层铝模板尺寸设计和配模时结合变截面层结构尺寸变化规律及特点采取最佳的墙柱、梁板模数组合系数,从而实现铝模板在标准层施工完成后变截面层施工时无需更换模板或局部调整原模板位置就能施工,达到铝模板生产方便、施工时加固简单便捷和降低施工和厂家生产成本的目的;解决了背景技术中提出的铝模在变截面层施工时遇到的主要问题,且施工时加固简单、操作便捷。
Aluminum mold variable cross-section construction method based on interchangeability modulus design
The invention relates to an aluminum formwork variable cross-section construction method based on interchangeability modulus design, which takes an L-shaped shear wall as a design representation, and comprises the following steps: S1, wall column modulus design and construction; s2, beam modulus design and construction; and S3, modulus design and construction of the top plate and the quick-release supporting system of the top plate. According to the method, analysis and statistical calculation are performed according to structural characteristics and size changes of a construction drawing during aluminum formwork design, and optimal wall column and beam plate modulus combination coefficients are adopted in combination with structural size change rules and characteristics of a variable cross-section layer during standard layer aluminum formwork size design and formwork matching; therefore, the aluminum template can be constructed without replacing the template or locally adjusting the position of the original template after the construction of a standard layer is finished and the variable cross-section layer is constructed, so that the purposes that the aluminum template is convenient to produce and simple and convenient to reinforce during construction and the construction and manufacturer production cost is reduced are achieved; the main problems encountered during construction of the variable cross-section layer of the aluminum mold in the background technology are solved, reinforcement is easy during construction, and operation is convenient and fast.
本发明是一种基于互换性模数设计的铝模变截面施工方法,以L型剪力墙为设计代表,包括以下步骤:S1、墙柱模数设计和施工;S2、梁模数设计和施工;S3、顶板及其快拆支撑体系模数设计和施工。本发明铝模设计时根据施工图的结构特点及尺寸变化进行分析和统计计算,在标准层铝模板尺寸设计和配模时结合变截面层结构尺寸变化规律及特点采取最佳的墙柱、梁板模数组合系数,从而实现铝模板在标准层施工完成后变截面层施工时无需更换模板或局部调整原模板位置就能施工,达到铝模板生产方便、施工时加固简单便捷和降低施工和厂家生产成本的目的;解决了背景技术中提出的铝模在变截面层施工时遇到的主要问题,且施工时加固简单、操作便捷。
Aluminum mold variable cross-section construction method based on interchangeability modulus design
一种基于互换性模数设计的铝模变截面施工方法
HUANG DING (author) / JIA JUNWEI (author) / DU GUOHUI (author) / ZHANG YIQIAN (author) / ZHENG BOLUN (author) / JI BAOJIAN (author)
2024-06-04
Patent
Electronic Resource
Chinese
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