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Manufacturing process and mounting method of three-dimensionally adjustable curtain wall convection radiator
The invention relates to a manufacturing process and a mounting method of a three-dimensionally adjustable curtain wall convection radiator, which are suitable for construction and mounting of curtain wall radiators in large buildings, and realize up-down, front-back and left-right three-dimensional adjustment and positioning of horizontal planes and vertical planes of a convection cover front panel, a convection cover top panel and a partition plate through a U-shaped clamping groove fine adjustment device. A gap of 5-15 mm is reserved between the partition plate and the curtain wall radiator module to compensate the accumulated deviation of the curtain wall length so as to meet the installation precision requirement of the curtain wall radiator; the upper end of the convection channel partition plate is in butt joint with an air outlet of the frameless grid to form an independent convection channel, inlet air flow completely flows out through the convection channel, and the heat exchange efficiency of the curtain wall radiator is improved. The frame-type structural framework is a high-strength frame formed by welding square thick-wall hot-dip galvanized steel pipes and galvanized angle steel, and the frame-type structural framework bears personnel and other loads. No grille air inlet is formed in the bottom, a vertical skirting board is arranged in the side air inlet grille and used for shielding and fixing exposed parts such as bottom feet, and the problem that accumulated dust of the side air inlet grille is not easy to clean is solved.
本发明涉及一种可三维调节的幕墙对流散热器制作工艺及安装方法,适用于大型建筑中幕墙散热器的施工安装,通过U型卡槽微调装置实现对流罩前面板、对流罩顶面板和分区隔板的水平面和垂直面上下、前后、左右三维调节定位,分区隔板和幕墙散热器模块之间留出5‑15mm缝隙,补偿幕墙长度的累计偏差,以满足幕墙散热器的安装精度要求;对流通道隔板的上端与无边框格栅出风口对接,形成独立对流通道,进风气流完全经过对流通道流出,提高幕墙散热器的换热效率;框架式结构骨架采用方型厚壁热镀锌钢管和镀锌角钢焊接成高强度框架,承受人员及其他荷载;底部无格栅进风口,内置立式踢脚板,用于遮挡固定底脚等外露部件,解决侧进风格栅积尘不易清理的问题。
Manufacturing process and mounting method of three-dimensionally adjustable curtain wall convection radiator
The invention relates to a manufacturing process and a mounting method of a three-dimensionally adjustable curtain wall convection radiator, which are suitable for construction and mounting of curtain wall radiators in large buildings, and realize up-down, front-back and left-right three-dimensional adjustment and positioning of horizontal planes and vertical planes of a convection cover front panel, a convection cover top panel and a partition plate through a U-shaped clamping groove fine adjustment device. A gap of 5-15 mm is reserved between the partition plate and the curtain wall radiator module to compensate the accumulated deviation of the curtain wall length so as to meet the installation precision requirement of the curtain wall radiator; the upper end of the convection channel partition plate is in butt joint with an air outlet of the frameless grid to form an independent convection channel, inlet air flow completely flows out through the convection channel, and the heat exchange efficiency of the curtain wall radiator is improved. The frame-type structural framework is a high-strength frame formed by welding square thick-wall hot-dip galvanized steel pipes and galvanized angle steel, and the frame-type structural framework bears personnel and other loads. No grille air inlet is formed in the bottom, a vertical skirting board is arranged in the side air inlet grille and used for shielding and fixing exposed parts such as bottom feet, and the problem that accumulated dust of the side air inlet grille is not easy to clean is solved.
本发明涉及一种可三维调节的幕墙对流散热器制作工艺及安装方法,适用于大型建筑中幕墙散热器的施工安装,通过U型卡槽微调装置实现对流罩前面板、对流罩顶面板和分区隔板的水平面和垂直面上下、前后、左右三维调节定位,分区隔板和幕墙散热器模块之间留出5‑15mm缝隙,补偿幕墙长度的累计偏差,以满足幕墙散热器的安装精度要求;对流通道隔板的上端与无边框格栅出风口对接,形成独立对流通道,进风气流完全经过对流通道流出,提高幕墙散热器的换热效率;框架式结构骨架采用方型厚壁热镀锌钢管和镀锌角钢焊接成高强度框架,承受人员及其他荷载;底部无格栅进风口,内置立式踢脚板,用于遮挡固定底脚等外露部件,解决侧进风格栅积尘不易清理的问题。
Manufacturing process and mounting method of three-dimensionally adjustable curtain wall convection radiator
一种可三维调节的幕墙对流散热器制作工艺及安装方法
ZHANG WENFENG (author)
2022-05-27
Patent
Electronic Resource
Chinese
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