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Radiation protection wall and construction method thereof
The invention relates to a radiation protection wall and a construction method thereof. The radiation protection wall comprises a wall body, precast blocks and a filling layer. Wherein a cavity is formed in the wall body. The prefabricated block is arranged in the cavity, a gap is formed between the prefabricated block and the cavity wall of the cavity, and the gap between the prefabricated block and the cavity wall of the cavity is filled with the filling layer. According to the anti-radiation wall, the cavity is formed in the wall body, the prefabricated blocks are arranged in the cavity, and the gaps between the prefabricated blocks and the cavity wall of the cavity are filled with the filling layers, so that the whole anti-radiation wall can be manufactured in a layered mode, the thickness of concrete needing to be poured by the wall body is reduced while the overall thickness of the anti-radiation wall is not reduced, and therefore the anti-radiation wall can be manufactured in a layered mode. The hydration temperature in the mass concrete is greatly reduced, and the temperature difference inside and outside the wall body is reduced, so that the cracking risk of the radiation protection wall is effectively reduced, and the protection performance of the radiation protection wall is ensured. And the hydration temperature in the mass concrete is reduced, so that a lot of measures for reducing the hydration heat can be omitted, and the construction difficulty of the radiation protection wall is reduced.
本发明涉及一种防辐射墙及其施工方法,其中防辐射墙包括墙体、预制块以及填充层。其中墙体内设有空腔。预制块设置在空腔中,并且预制块与空腔的腔壁之间具有间隙,填充层填充于预制块与空腔的腔壁之间的间隙中。上述防辐射墙通过在墙体内设置空腔,在空腔内设置预制块,并在预制块与空腔的腔壁之间的间隙内填充填充层,从而使得防辐射墙整体能分层制作,在不减少防辐射墙的整体厚度的同时,减小了墙体所需浇注混凝土的厚度,大大降低大体积混凝土里面的水化温度,减少了墙体内外温差,从而有效降低防辐射墙的开裂风险,保证了防辐射墙的防护性能。降低大体积混凝土里面的水化温度能省去很多降低水化热的措施,从而降低了防辐射墙的施工难度。
Radiation protection wall and construction method thereof
The invention relates to a radiation protection wall and a construction method thereof. The radiation protection wall comprises a wall body, precast blocks and a filling layer. Wherein a cavity is formed in the wall body. The prefabricated block is arranged in the cavity, a gap is formed between the prefabricated block and the cavity wall of the cavity, and the gap between the prefabricated block and the cavity wall of the cavity is filled with the filling layer. According to the anti-radiation wall, the cavity is formed in the wall body, the prefabricated blocks are arranged in the cavity, and the gaps between the prefabricated blocks and the cavity wall of the cavity are filled with the filling layers, so that the whole anti-radiation wall can be manufactured in a layered mode, the thickness of concrete needing to be poured by the wall body is reduced while the overall thickness of the anti-radiation wall is not reduced, and therefore the anti-radiation wall can be manufactured in a layered mode. The hydration temperature in the mass concrete is greatly reduced, and the temperature difference inside and outside the wall body is reduced, so that the cracking risk of the radiation protection wall is effectively reduced, and the protection performance of the radiation protection wall is ensured. And the hydration temperature in the mass concrete is reduced, so that a lot of measures for reducing the hydration heat can be omitted, and the construction difficulty of the radiation protection wall is reduced.
本发明涉及一种防辐射墙及其施工方法,其中防辐射墙包括墙体、预制块以及填充层。其中墙体内设有空腔。预制块设置在空腔中,并且预制块与空腔的腔壁之间具有间隙,填充层填充于预制块与空腔的腔壁之间的间隙中。上述防辐射墙通过在墙体内设置空腔,在空腔内设置预制块,并在预制块与空腔的腔壁之间的间隙内填充填充层,从而使得防辐射墙整体能分层制作,在不减少防辐射墙的整体厚度的同时,减小了墙体所需浇注混凝土的厚度,大大降低大体积混凝土里面的水化温度,减少了墙体内外温差,从而有效降低防辐射墙的开裂风险,保证了防辐射墙的防护性能。降低大体积混凝土里面的水化温度能省去很多降低水化热的措施,从而降低了防辐射墙的施工难度。
Radiation protection wall and construction method thereof
防辐射墙及其施工方法
YUAN ZUOCHUN (Autor:in) / HE YUAN (Autor:in) / ZENG CHUNLIANG (Autor:in) / ZHU NAIWEI (Autor:in) / ZHAO SONGLIN (Autor:in) / WANG SONGFAN (Autor:in) / YANG TIAN (Autor:in) / XIONG XUEXIANG (Autor:in) / MA LINGYUN (Autor:in) / ZENG ZHUOZHENG (Autor:in)
15.07.2022
Patent
Elektronische Ressource
Chinesisch
IPC:
E04B
Allgemeine Baukonstruktionen
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GENERAL BUILDING CONSTRUCTIONS
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