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Inorganic artificial stone repairing material and preparation method thereof
The invention discloses an inorganic artificial stone repairing material and a preparation method thereof.The repairing material comprises a repairing component and a regulating component, the repairing component comprises, by mass, 40%-80% of a magnesium material and 20%-60% of a phosphorus material, the regulating component is additionally added on the basis that the mass of the repairing component is 100%, and the regulating component is added on the basis of the total mass of the repairing component. The mixing amounts of the components are as follows: 2%-10% of the retarding material, 2%-10% of the inorganic active additive material, 0%-60% of the aggregate, 0%-2% of the color matching material and 12%-25% of the water for mixing. The repairing material is a chemically bonded magnesium phosphate-based inorganic cementing material, compared with a traditional cement-based repairing material, the carbon emission is greatly reduced, the energy consumption and the repairing cost are remarkably reduced, meanwhile, the repairing material has extremely high compatibility with the inorganic artificial stone, the interface bonding strength is high, an obvious weak area cannot be formed, and the repairing material has a good repairing effect. And the repairing material can be condensed and hardened in a short time to form strength and start to serve, and the regulation and control components in the repairing material can further enhance the service performance and attractiveness of the repairing material under the synergistic effect.
本发明公开了一种无机人造石修补材料及其制备方法,该修补材料包括修补组分和调控组分,所述修补组分以质量百分比计量,包括:镁质材料40%‑80%以及磷质材料20%‑60%,按修补组分质量为100%计,额外加入调控组分,各组分的掺量包括:缓凝材料2%‑10%,无机活性添加材料2%‑10%,骨料0%‑60%,调色材料0%‑2%以及拌合用水12%‑25%。该修补材料是一种化学键合的磷酸镁基无机胶凝材料,较传统水泥基修补材料碳排放量极大降低,显著减少了能源的消耗以及修补的成本,同时该修补材料与无机人造石之间有极强的兼容性,界面粘结强度高,不会形成明显薄弱区,且本发明的修补材料能在短时间内凝结硬化形成强度并开始服役,其中的调控组分在协同作用下,可进一步加强修补材料的服役性能和美观性。
Inorganic artificial stone repairing material and preparation method thereof
The invention discloses an inorganic artificial stone repairing material and a preparation method thereof.The repairing material comprises a repairing component and a regulating component, the repairing component comprises, by mass, 40%-80% of a magnesium material and 20%-60% of a phosphorus material, the regulating component is additionally added on the basis that the mass of the repairing component is 100%, and the regulating component is added on the basis of the total mass of the repairing component. The mixing amounts of the components are as follows: 2%-10% of the retarding material, 2%-10% of the inorganic active additive material, 0%-60% of the aggregate, 0%-2% of the color matching material and 12%-25% of the water for mixing. The repairing material is a chemically bonded magnesium phosphate-based inorganic cementing material, compared with a traditional cement-based repairing material, the carbon emission is greatly reduced, the energy consumption and the repairing cost are remarkably reduced, meanwhile, the repairing material has extremely high compatibility with the inorganic artificial stone, the interface bonding strength is high, an obvious weak area cannot be formed, and the repairing material has a good repairing effect. And the repairing material can be condensed and hardened in a short time to form strength and start to serve, and the regulation and control components in the repairing material can further enhance the service performance and attractiveness of the repairing material under the synergistic effect.
本发明公开了一种无机人造石修补材料及其制备方法,该修补材料包括修补组分和调控组分,所述修补组分以质量百分比计量,包括:镁质材料40%‑80%以及磷质材料20%‑60%,按修补组分质量为100%计,额外加入调控组分,各组分的掺量包括:缓凝材料2%‑10%,无机活性添加材料2%‑10%,骨料0%‑60%,调色材料0%‑2%以及拌合用水12%‑25%。该修补材料是一种化学键合的磷酸镁基无机胶凝材料,较传统水泥基修补材料碳排放量极大降低,显著减少了能源的消耗以及修补的成本,同时该修补材料与无机人造石之间有极强的兼容性,界面粘结强度高,不会形成明显薄弱区,且本发明的修补材料能在短时间内凝结硬化形成强度并开始服役,其中的调控组分在协同作用下,可进一步加强修补材料的服役性能和美观性。
Inorganic artificial stone repairing material and preparation method thereof
一种无机人造石修补材料及其制备方法
YUAN CHUNLONG (Autor:in) / ZHAO BAOJUN (Autor:in) / WU CHEN (Autor:in) / ZHANG ZONGJUN (Autor:in) / ZOU CHANGGEN (Autor:in) / WANG QIONG (Autor:in) / YIN ZHENG (Autor:in) / JIN KE (Autor:in) / ZHANG TINGTING (Autor:in) / SONG JILAI (Autor:in)
03.01.2025
Patent
Elektronische Ressource
Chinesisch
IPC:
C04B
Kalk
,
LIME
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