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Steel fiber reinforced concrete floor and hardening construction method thereof
The invention provides a steel fiber concrete floor and a construction method thereof. The method comprises: arranging elastic connecting plates and the closed curtain cloth on the periphery of a first transverse plate, spraying water to a lower structural layer through water spraying heads, and sucking and removing dust through a recycling suction pipe; arranging a flexible end mold and a residual slurry recovery tank on the two sides of a formwork supporting frame respectively; flattening the upper surface of an upper structural layer through an elastic roller first, and then forming a plate top connecting groove through grooving batten construction; vibrating a material passing groove through a vibrator, wherein fibers are spread on the upper surface of the upper structural layer through a discharging opening, and controlling the thickness of a fiber spreading layer through a fiber brush plate, and forming a fiber hardening layer through hardening; arranging a plugboard pressurizing body on the lower surface of a plugboard connecting hoop, and controlling the verticality of a guide groove side plate through a guide groove position control bolt; and integrally limiting the positions of the supporting plates and the supporting columns through the stand column bottom plates, and firmly connecting the slurry fixing bolts and the bolt connecting holes through the slurry fixing bonding bodies. According to the invention, the construction efficiency can be improved, the construction difficulty can be reduced, and the construction quality can be improved.
本发明提供一种钢纤维混凝土地面及其施工方法,在第一横板的四周设置弹性连板和密闭帘布,通过喷水头向下部结构层喷水,并通过回收抽管抽除灰尘;在模板撑架的两侧分别设置柔性端模和余浆回收槽;先通过弹性滚轮进行上部结构层上表面压平,再采用刻槽条板施工形成板顶连槽;通过振动器震动过料槽,使纤维经排料口撒布在上部结构层的上表面,并通过纤维刷板控制纤维撒布层的厚度,硬化形成纤维硬化层;在插板连箍的下表面设置插板加压体,并通过导槽控位栓控制导槽侧板的竖直度;采用立柱底板整体限定托板支柱的位置,并通过浆固粘结体将浆固螺栓与螺栓连接孔连接牢固。本发明可提高施工效率、降低施工难度、改善施工质量。
Steel fiber reinforced concrete floor and hardening construction method thereof
The invention provides a steel fiber concrete floor and a construction method thereof. The method comprises: arranging elastic connecting plates and the closed curtain cloth on the periphery of a first transverse plate, spraying water to a lower structural layer through water spraying heads, and sucking and removing dust through a recycling suction pipe; arranging a flexible end mold and a residual slurry recovery tank on the two sides of a formwork supporting frame respectively; flattening the upper surface of an upper structural layer through an elastic roller first, and then forming a plate top connecting groove through grooving batten construction; vibrating a material passing groove through a vibrator, wherein fibers are spread on the upper surface of the upper structural layer through a discharging opening, and controlling the thickness of a fiber spreading layer through a fiber brush plate, and forming a fiber hardening layer through hardening; arranging a plugboard pressurizing body on the lower surface of a plugboard connecting hoop, and controlling the verticality of a guide groove side plate through a guide groove position control bolt; and integrally limiting the positions of the supporting plates and the supporting columns through the stand column bottom plates, and firmly connecting the slurry fixing bolts and the bolt connecting holes through the slurry fixing bonding bodies. According to the invention, the construction efficiency can be improved, the construction difficulty can be reduced, and the construction quality can be improved.
本发明提供一种钢纤维混凝土地面及其施工方法,在第一横板的四周设置弹性连板和密闭帘布,通过喷水头向下部结构层喷水,并通过回收抽管抽除灰尘;在模板撑架的两侧分别设置柔性端模和余浆回收槽;先通过弹性滚轮进行上部结构层上表面压平,再采用刻槽条板施工形成板顶连槽;通过振动器震动过料槽,使纤维经排料口撒布在上部结构层的上表面,并通过纤维刷板控制纤维撒布层的厚度,硬化形成纤维硬化层;在插板连箍的下表面设置插板加压体,并通过导槽控位栓控制导槽侧板的竖直度;采用立柱底板整体限定托板支柱的位置,并通过浆固粘结体将浆固螺栓与螺栓连接孔连接牢固。本发明可提高施工效率、降低施工难度、改善施工质量。
Steel fiber reinforced concrete floor and hardening construction method thereof
钢纤维混凝土地面及其硬化施工方法
YOU HOUFEI (Autor:in) / YIN HUASONG (Autor:in) / JI SHAOFU (Autor:in) / ZHU JIAKAI (Autor:in) / CHENG XIURU (Autor:in) / ZHANG YAJUAN (Autor:in) / LI LIN (Autor:in)
21.01.2022
Patent
Elektronische Ressource
Chinesisch
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