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Photovoltaic micropore cast-in-place pile center pillar fixing device and construction method thereof
The invention discloses a photovoltaic micropore cast-in-place pile middle stand column fixing device and a construction method thereof. The photovoltaic micropore cast-in-place pile middle stand column fixing device comprises a fixing shaft, at least four hinge arms are rotationally connected, the bottom of the fixing shaft is connected with a bearing disc, the bearing disc is supported at one ends of the at least four hinge arms, and first locking pieces used for locking the hinge arms are installed on the bearing disc; the height-adjustable supporting leg is installed at the other end of the hinge arm in a turnover mode, and a supporting rod is detachably connected between the supporting leg and the hinge arm; the two auxiliary column lantern rings are used for being sleeved with a middle stand column of the photovoltaic micropore cast-in-place pile and are adjustable in size, the auxiliary column lantern rings are arranged below the supporting disc, the auxiliary column lantern rings and the fixing shaft are coaxially arranged, at least four inclined suspension arms are hinged to the auxiliary column lantern rings, and the other ends of the inclined suspension arms are adjustably installed on the hinged arms. The problem that an existing method for temporarily fixing the photovoltaic supporting stand column in the photovoltaic micropore cast-in-place pile is low in efficiency and poor in stability is solved.
本发明公开了一种光伏微孔灌注桩中立柱固定装置及其施工方法,包括:固定轴,转动连接有至少四铰接臂,固定轴的底部连接有支承盘,支承盘支撑于至少四铰接臂的一端部,支承盘安装有用于锁定铰接臂的第一锁止件;高度可调的支脚,可翻转地安装于铰接臂的另一端,支脚与铰接臂之间可拆卸地连接有支撑杆;用于套设光伏微孔灌注桩中立柱且尺寸可调的两附柱套环,附柱套环设置于支承盘的下方,附柱套环与固定轴同轴设置,附柱套环铰接有至少四斜吊臂,斜吊臂的另一端位置可调地安装于每一铰接臂。本发明解决了现有的光伏支撑立柱在光伏微孔灌注桩中临时固定方法存在效率低且稳定性差的问题。
Photovoltaic micropore cast-in-place pile center pillar fixing device and construction method thereof
The invention discloses a photovoltaic micropore cast-in-place pile middle stand column fixing device and a construction method thereof. The photovoltaic micropore cast-in-place pile middle stand column fixing device comprises a fixing shaft, at least four hinge arms are rotationally connected, the bottom of the fixing shaft is connected with a bearing disc, the bearing disc is supported at one ends of the at least four hinge arms, and first locking pieces used for locking the hinge arms are installed on the bearing disc; the height-adjustable supporting leg is installed at the other end of the hinge arm in a turnover mode, and a supporting rod is detachably connected between the supporting leg and the hinge arm; the two auxiliary column lantern rings are used for being sleeved with a middle stand column of the photovoltaic micropore cast-in-place pile and are adjustable in size, the auxiliary column lantern rings are arranged below the supporting disc, the auxiliary column lantern rings and the fixing shaft are coaxially arranged, at least four inclined suspension arms are hinged to the auxiliary column lantern rings, and the other ends of the inclined suspension arms are adjustably installed on the hinged arms. The problem that an existing method for temporarily fixing the photovoltaic supporting stand column in the photovoltaic micropore cast-in-place pile is low in efficiency and poor in stability is solved.
本发明公开了一种光伏微孔灌注桩中立柱固定装置及其施工方法,包括:固定轴,转动连接有至少四铰接臂,固定轴的底部连接有支承盘,支承盘支撑于至少四铰接臂的一端部,支承盘安装有用于锁定铰接臂的第一锁止件;高度可调的支脚,可翻转地安装于铰接臂的另一端,支脚与铰接臂之间可拆卸地连接有支撑杆;用于套设光伏微孔灌注桩中立柱且尺寸可调的两附柱套环,附柱套环设置于支承盘的下方,附柱套环与固定轴同轴设置,附柱套环铰接有至少四斜吊臂,斜吊臂的另一端位置可调地安装于每一铰接臂。本发明解决了现有的光伏支撑立柱在光伏微孔灌注桩中临时固定方法存在效率低且稳定性差的问题。
Photovoltaic micropore cast-in-place pile center pillar fixing device and construction method thereof
光伏微孔灌注桩中立柱固定装置及其施工方法
WANG ZHIZHUANG (Autor:in) / WANG GUOXIN (Autor:in) / WANG PENGHUI (Autor:in)
24.11.2023
Patent
Elektronische Ressource
Chinesisch
IPC:
H02S
GENERATION OF ELECTRIC POWER BY CONVERSION OF INFRA-RED RADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, E.G. USING PHOTOVOLTAIC [PV] MODULES
,
Erzeugung elektrischer Energie durch Umwandlung von Infrarot-Strahlung, sichtbarem Licht oder ultraviolettem Licht, z.B. unter Verwendung von Photovoltaik [PV]-Modulen
/
E02D
FOUNDATIONS
,
Gründungen
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