A platform for research: civil engineering, architecture and urbanism
Novel crack-resistant and high-temperature-resistant basalt fiber wall
The invention discloses a novel crack-resistant and high-temperature-resistant basalt fiber wall which comprises a crack-resistant wall body formed by pouring concrete and high-temperature-resistant fireproof cloth attached to the wall surface of the crack-resistant wall body. The concrete comprises the following components in parts by weight: 190-220 parts of water, 400-430 parts of cement, 610-640 parts of fine aggregate, 1100-1200 parts of coarse aggregate and 13-18 parts of basalt chopped fibers. The high-temperature-resistant fireproof cloth comprises basalt fiber cloth, the surface of the basalt fiber cloth is coated with slurry and an adhesive to form the high-temperature-resistant fireproof cloth, and then the high-temperature-resistant fireproof cloth is attached to the inner wall face of the crack-resistant wall body. According to the novel anti-cracking and high-temperature-resistant basalt fiber wall, the fracture performance is improved, when a fire disaster happens, the damage degree of the concrete structure is obviously reduced, the overall structure of the wall is stable, and the concrete wall is not prone to breaking and falling off when the wall is nailed or partially cut and damaged. The novel crack-resistant and high-temperature-resistant basalt fiber wall is applicable to the technical field of constructional engineering.
本发明公开了一种新型抗裂和耐高温玄武岩纤维墙体,包括由混凝土浇筑而成的抗裂墙体和贴于抗裂墙体墙面的耐高温防火布,混凝土中各组分按重量份数配比如下:水190~220份,水泥400~430份,细骨料610~640份,粗骨料1100~1200份,玄武岩短切纤维13~18份;所述耐高温防火布包括玄武岩纤维布,玄武岩纤维布表面涂抹浆料和粘合剂制成耐高温防火布,后贴于抗裂墙体的内墙面,本发明提供的一种新型抗裂和耐高温玄武岩纤维墙体其断裂性能有所改善及在火灾发生时,混凝土结构所受损伤程度有明显降低,且墙面的整体结构稳定,钉入东西或者局部切除破坏时,混凝土墙面不易碎化脱落,适用于建筑工程技术领域。
Novel crack-resistant and high-temperature-resistant basalt fiber wall
The invention discloses a novel crack-resistant and high-temperature-resistant basalt fiber wall which comprises a crack-resistant wall body formed by pouring concrete and high-temperature-resistant fireproof cloth attached to the wall surface of the crack-resistant wall body. The concrete comprises the following components in parts by weight: 190-220 parts of water, 400-430 parts of cement, 610-640 parts of fine aggregate, 1100-1200 parts of coarse aggregate and 13-18 parts of basalt chopped fibers. The high-temperature-resistant fireproof cloth comprises basalt fiber cloth, the surface of the basalt fiber cloth is coated with slurry and an adhesive to form the high-temperature-resistant fireproof cloth, and then the high-temperature-resistant fireproof cloth is attached to the inner wall face of the crack-resistant wall body. According to the novel anti-cracking and high-temperature-resistant basalt fiber wall, the fracture performance is improved, when a fire disaster happens, the damage degree of the concrete structure is obviously reduced, the overall structure of the wall is stable, and the concrete wall is not prone to breaking and falling off when the wall is nailed or partially cut and damaged. The novel crack-resistant and high-temperature-resistant basalt fiber wall is applicable to the technical field of constructional engineering.
本发明公开了一种新型抗裂和耐高温玄武岩纤维墙体,包括由混凝土浇筑而成的抗裂墙体和贴于抗裂墙体墙面的耐高温防火布,混凝土中各组分按重量份数配比如下:水190~220份,水泥400~430份,细骨料610~640份,粗骨料1100~1200份,玄武岩短切纤维13~18份;所述耐高温防火布包括玄武岩纤维布,玄武岩纤维布表面涂抹浆料和粘合剂制成耐高温防火布,后贴于抗裂墙体的内墙面,本发明提供的一种新型抗裂和耐高温玄武岩纤维墙体其断裂性能有所改善及在火灾发生时,混凝土结构所受损伤程度有明显降低,且墙面的整体结构稳定,钉入东西或者局部切除破坏时,混凝土墙面不易碎化脱落,适用于建筑工程技术领域。
Novel crack-resistant and high-temperature-resistant basalt fiber wall
一种新型抗裂和耐高温玄武岩纤维墙体
RONG MIREN (author) / DING CHUANHAI (author) / RONG HUREN (author) / WANG YU (author) / ZHANG WANXIN (author) / CUI CHAO (author) / ZHENG LIANG (author) / LI XIAO (author) / HUI XINYANG (author) / LUO ZILI (author)
2021-08-03
Patent
Electronic Resource
Chinese
High-strength impact-resistant basalt fiber concrete plate
European Patent Office | 2023
|Freeze-thaw-resistant high-content bunchy basalt fiber reinforced concrete
European Patent Office | 2024
|High-strength anti-aging corrosion-resistant basalt fiber composite building material
European Patent Office | 2024
|