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Offshore wind power ZR-X03 novel solidified soil anti-scouring high-loss-resistance formwork and pouring method
The invention discloses an offshore wind power ZR-X03 novel solidified soil anti-scouring high-loss-resistance formwork and a pouring method. The pouring method comprises a high-loss-resistance formwork mounting method, a high-loss-resistance formwork construction method and an anti-scouring material pouring method. The invention discloses an easy-to-assemble high-loss-resistance formwork which is composed of a formwork table body (1) and a splicing device. The template platform body (1) is composed of two shallow platform bodies with semicircular top parts and inclined side surfaces, and the two shallow platform bodies can be simply spliced into a whole on a transport ship through lock catches (4) and hinges (5); a water pumping opening (pumping opening) is reserved in the top of the shallow platform body, and a steel corbel (3) is welded to the platform body to serve as a lifting point support. According to the high-loss-resistance formwork, the prefabricated formwork table body (1) and the lock catches (4) and the hinges (5) which are easy to connect are adopted, the high-loss-resistance formwork is simple in structure and easy to assemble, it is indicated that the loss resistance of materials can be remarkably improved through the construction method of the high-loss-resistance formwork according to the embodiment and comparison, and therefore the early solidification strength of the materials is guaranteed, and the construction period is shortened. The material loss is reduced.
一种海上风电ZR‑X03新型固化土防冲刷的高抗流失模板及浇筑方法,包括高抗流失模板安装方法、施工方法以及防冲刷材料浇筑方法;本发明的易于拼装的高抗流失模板是由模板台体(1)、拼接装置组成;所述的模板台体(1)由两个顶部为半圆环型,侧面为带有倾角的斜面浅型台体组成,两个半浅型台体在运输船上通过锁扣(4)与铰链(5)简易拼接即可成为一个整体;浅型台体顶部留有抽水口(泵送口),在台体上焊接钢牛腿(3)作为吊点支撑;本发明一种采用预制成型的模板台体(1)和易于连接的锁扣(4)与铰链(5),高抗流失模板结构简单、易于拼装,通过实施例与对比例比较来说明使用高抗流失模板施工方法可以使得材料显著提高抗流失性能,从而保证了材料的早期凝固强度,减少材料损失。
Offshore wind power ZR-X03 novel solidified soil anti-scouring high-loss-resistance formwork and pouring method
The invention discloses an offshore wind power ZR-X03 novel solidified soil anti-scouring high-loss-resistance formwork and a pouring method. The pouring method comprises a high-loss-resistance formwork mounting method, a high-loss-resistance formwork construction method and an anti-scouring material pouring method. The invention discloses an easy-to-assemble high-loss-resistance formwork which is composed of a formwork table body (1) and a splicing device. The template platform body (1) is composed of two shallow platform bodies with semicircular top parts and inclined side surfaces, and the two shallow platform bodies can be simply spliced into a whole on a transport ship through lock catches (4) and hinges (5); a water pumping opening (pumping opening) is reserved in the top of the shallow platform body, and a steel corbel (3) is welded to the platform body to serve as a lifting point support. According to the high-loss-resistance formwork, the prefabricated formwork table body (1) and the lock catches (4) and the hinges (5) which are easy to connect are adopted, the high-loss-resistance formwork is simple in structure and easy to assemble, it is indicated that the loss resistance of materials can be remarkably improved through the construction method of the high-loss-resistance formwork according to the embodiment and comparison, and therefore the early solidification strength of the materials is guaranteed, and the construction period is shortened. The material loss is reduced.
一种海上风电ZR‑X03新型固化土防冲刷的高抗流失模板及浇筑方法,包括高抗流失模板安装方法、施工方法以及防冲刷材料浇筑方法;本发明的易于拼装的高抗流失模板是由模板台体(1)、拼接装置组成;所述的模板台体(1)由两个顶部为半圆环型,侧面为带有倾角的斜面浅型台体组成,两个半浅型台体在运输船上通过锁扣(4)与铰链(5)简易拼接即可成为一个整体;浅型台体顶部留有抽水口(泵送口),在台体上焊接钢牛腿(3)作为吊点支撑;本发明一种采用预制成型的模板台体(1)和易于连接的锁扣(4)与铰链(5),高抗流失模板结构简单、易于拼装,通过实施例与对比例比较来说明使用高抗流失模板施工方法可以使得材料显著提高抗流失性能,从而保证了材料的早期凝固强度,减少材料损失。
Offshore wind power ZR-X03 novel solidified soil anti-scouring high-loss-resistance formwork and pouring method
海上风电ZR-X03新型固化土防冲刷的高抗流失模板及浇筑方法
GUAN YOUHAI (Autor:in) / LIANG KAIXIN (Autor:in) / LIU SHAOJIAN (Autor:in) / YANG ZHAOHUI (Autor:in) / LYU HUANYU (Autor:in) / WANG YAHONG (Autor:in) / HU JINCHENG (Autor:in) / ZHAO MENG (Autor:in)
14.05.2024
Patent
Elektronische Ressource
Chinesisch
IPC:
E02D
FOUNDATIONS
,
Gründungen
Europäisches Patentamt | 2024
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