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Honeycomb structure ceramic heat preservation and insulation composite material and manufacturing method thereof
The invention discloses a honeycomb structure ceramic heat preservation and insulation composite material with a heat preservation and insulation effect and a manufacturing method thereof, and mainlysolves the technical problem that the actual application range of a heat preservation and insulation material disclosed in the prior art is limited. The honeycomb structure ceramic heat preservation and insulation composite material is prepared from the following raw materials in parts by mass: 50-80 parts of vitrified microbeads, 10-45 parts of sepiolite fabric, 1-10 parts of aluminum silicate wool, 3-10 parts of bentonite, 1-3 parts of glass fibers, 3-5 parts of a penetrant and 0.1-0.5 part of an additive. The manufacturing method comprises the following steps: mixing and dispersing the vitrified microbeads, the zirconium-containing aluminum silicate wool in water, the glass fibers and the penetrant, adding the sepiolite fabric to form slurry, adding the bentonite into the slurry, performing mixing, finally adding the additive, performing mixing to form slurry, and performing drying to obtain a finished product. The composite material has the beneficial effects of more excellent thermal insulation property at higher temperature or lower temperature and the like.
本发明公开了具有保温绝热效果的蜂巢结构陶瓷保温绝热复合材料及其制造方法,主要解决的技术问题在于现有技术中公开的保温绝热材料的实际应用范围受限的问题。该蜂巢结构陶瓷保温绝热复合材料,按照质量份数计,包括如下原料:玻化微珠50‑80份,海泡石绒10‑45份,硅酸铝棉1‑10份,膨润土3‑10份,玻璃纤维1‑3份,渗透剂3‑5份,添加剂0.1‑0.5份。其制造方法包括:玻化微珠与水中含锆型硅酸铝棉和玻璃纤维与渗透剂混合分散后,加入海泡石绒形成浆,将膨润土加入到浆中混合,最后加入添加剂混合成浆料,经过干燥后制成成品。本发明具有在更高温度或更低温度下保温性能更优异等有益效果。
Honeycomb structure ceramic heat preservation and insulation composite material and manufacturing method thereof
The invention discloses a honeycomb structure ceramic heat preservation and insulation composite material with a heat preservation and insulation effect and a manufacturing method thereof, and mainlysolves the technical problem that the actual application range of a heat preservation and insulation material disclosed in the prior art is limited. The honeycomb structure ceramic heat preservation and insulation composite material is prepared from the following raw materials in parts by mass: 50-80 parts of vitrified microbeads, 10-45 parts of sepiolite fabric, 1-10 parts of aluminum silicate wool, 3-10 parts of bentonite, 1-3 parts of glass fibers, 3-5 parts of a penetrant and 0.1-0.5 part of an additive. The manufacturing method comprises the following steps: mixing and dispersing the vitrified microbeads, the zirconium-containing aluminum silicate wool in water, the glass fibers and the penetrant, adding the sepiolite fabric to form slurry, adding the bentonite into the slurry, performing mixing, finally adding the additive, performing mixing to form slurry, and performing drying to obtain a finished product. The composite material has the beneficial effects of more excellent thermal insulation property at higher temperature or lower temperature and the like.
本发明公开了具有保温绝热效果的蜂巢结构陶瓷保温绝热复合材料及其制造方法,主要解决的技术问题在于现有技术中公开的保温绝热材料的实际应用范围受限的问题。该蜂巢结构陶瓷保温绝热复合材料,按照质量份数计,包括如下原料:玻化微珠50‑80份,海泡石绒10‑45份,硅酸铝棉1‑10份,膨润土3‑10份,玻璃纤维1‑3份,渗透剂3‑5份,添加剂0.1‑0.5份。其制造方法包括:玻化微珠与水中含锆型硅酸铝棉和玻璃纤维与渗透剂混合分散后,加入海泡石绒形成浆,将膨润土加入到浆中混合,最后加入添加剂混合成浆料,经过干燥后制成成品。本发明具有在更高温度或更低温度下保温性能更优异等有益效果。
Honeycomb structure ceramic heat preservation and insulation composite material and manufacturing method thereof
蜂巢结构陶瓷保温绝热复合材料及其制造方法
2021-03-19
Patent
Electronic Resource
Chinese
IPC:
C04B
Kalk
,
LIME
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