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Special cement-based ceramic binder for indoor floor heating and preparation method of cement-based ceramic binder
The invention relates to a special cement-based ceramic binder for indoor floor heating and a preparation method of the special cement-based ceramic binder. The special cement-based ceramic binder is mainly prepared from the following components: cement, heat-conducting fillers with various meshes, heat-conducting soft metal wires with various lengths and diameters, rubber powder, cellulose ether, starch ether, a water reducing agent and an early strength agent. The invention overcomes the defects of low heat conductivity coefficient, slow heat conduction, large heat loss and the like due to the fact that no cement-based ceramic binder special for floor heating exists in the market at present and a common cement-based ceramic binder is mostly adopted to lay ceramic tiles on the floor heating. Cement is used as a cementing material, heat conduction fillers and heat conduction soft metal wires with higher heat conductivity coefficients are added, the preferable mesh number of the heat-conducting filler, the preferable length and diameter of the heat-conducting soft metal wires and the dosage ratio of the heat-conducting fillers to the heat-conducting soft metal wires are adopted together with preferable additives and a preferable dosage ratio thereof, so that the special cement-based ceramic binder has the advantages of high heat-conducting coefficient, high heat-conducting rate, small heat-conducting loss, energy conservation, environmental protection, capability of reducing energy consumption, good tensile adhesive property and the like.
本发明涉及一种室内地暖专用水泥基陶瓷粘结剂及其制备方法,主要由以下组分制备而成:水泥、各目数的导热填料、各长度和直径的导热软金属丝、胶粉、纤维素醚、淀粉醚、减水剂、早强剂。该发明克服了现有市面上没有地暖专用的水泥基陶瓷粘结剂,多采用普通的水泥基陶瓷粘结剂在地暖上铺贴瓷砖,存在导热系数低、导热速率慢、热损耗量大等缺点,以水泥为胶凝材料,添加导热系数较高的导热填料和导热软金属丝,通过导热填料的优选目数、导热软金属丝的优选长度和直径及两者用量比例的搭配,并辅以优选助剂及其用量比例,具有导热系数高、导热速率快、导热损耗量小、节能环保、能降低能源消耗,且拉伸粘结性能佳等优点。
Special cement-based ceramic binder for indoor floor heating and preparation method of cement-based ceramic binder
The invention relates to a special cement-based ceramic binder for indoor floor heating and a preparation method of the special cement-based ceramic binder. The special cement-based ceramic binder is mainly prepared from the following components: cement, heat-conducting fillers with various meshes, heat-conducting soft metal wires with various lengths and diameters, rubber powder, cellulose ether, starch ether, a water reducing agent and an early strength agent. The invention overcomes the defects of low heat conductivity coefficient, slow heat conduction, large heat loss and the like due to the fact that no cement-based ceramic binder special for floor heating exists in the market at present and a common cement-based ceramic binder is mostly adopted to lay ceramic tiles on the floor heating. Cement is used as a cementing material, heat conduction fillers and heat conduction soft metal wires with higher heat conductivity coefficients are added, the preferable mesh number of the heat-conducting filler, the preferable length and diameter of the heat-conducting soft metal wires and the dosage ratio of the heat-conducting fillers to the heat-conducting soft metal wires are adopted together with preferable additives and a preferable dosage ratio thereof, so that the special cement-based ceramic binder has the advantages of high heat-conducting coefficient, high heat-conducting rate, small heat-conducting loss, energy conservation, environmental protection, capability of reducing energy consumption, good tensile adhesive property and the like.
本发明涉及一种室内地暖专用水泥基陶瓷粘结剂及其制备方法,主要由以下组分制备而成:水泥、各目数的导热填料、各长度和直径的导热软金属丝、胶粉、纤维素醚、淀粉醚、减水剂、早强剂。该发明克服了现有市面上没有地暖专用的水泥基陶瓷粘结剂,多采用普通的水泥基陶瓷粘结剂在地暖上铺贴瓷砖,存在导热系数低、导热速率慢、热损耗量大等缺点,以水泥为胶凝材料,添加导热系数较高的导热填料和导热软金属丝,通过导热填料的优选目数、导热软金属丝的优选长度和直径及两者用量比例的搭配,并辅以优选助剂及其用量比例,具有导热系数高、导热速率快、导热损耗量小、节能环保、能降低能源消耗,且拉伸粘结性能佳等优点。
Special cement-based ceramic binder for indoor floor heating and preparation method of cement-based ceramic binder
室内地暖专用水泥基陶瓷粘结剂及其制备方法
ZHONG CHONGLEI (Autor:in) / CHEN JIE (Autor:in) / LI XIAOLIANG (Autor:in) / CHENG JINLONG (Autor:in)
18.06.2021
Patent
Elektronische Ressource
Chinesisch
IPC:
C04B
Kalk
,
LIME
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