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Thermal insulation material composition, thermal insulation material, thermal insulation board, sandwich thermal insulation board and application
The invention relates to the technical field of thermal insulation materials, and provides a thermal insulation material composition, a thermal insulation material, a thermal insulation board, a sandwich thermal insulation board and application, and the thermal insulation material composition is prepared from the following raw materials in parts by weight: 20-70 parts of glass beads, 2-30 parts of glass fibers, 5-11 parts of a foaming agent and 5-75 parts of foamed concrete; the particle size of the glass beads is 50-90 microns, the internal hollow ratio is 50-65%, the dry volume weight is 150-300 kg/m < 3 >, and the bead forming rate is 70-98%. In the thermal insulation material composition provided by the invention, the glass beads have a relatively large internal hollow ratio, and the glass beads, the glass fibers and other functional additives can be foamed under the action of the foaming agent to form a thermal insulation material with a multi-stage honeycomb-shaped air cavity pore structure; the thermal insulation material has the advantages of low heat conductivity coefficient, light volume weight and good heat storage effect.
本发明涉及保温材料技术领域,提供了一种保温材料组合物、保温材料、保温板材、夹芯保温板及应用,其中,所述保温材料组合物,以重量份记,包括如下原料:20~70重量份的玻化微珠、2~30重量份的玻璃纤维、5~11重量份的发泡剂、5~75重量份的发泡混凝土;所述玻化微珠的粒径为50~90μm,内部中空比率为50~65%,干容重为150~300kg/m3,成珠率为70~98%。本发明提供的保温材料组合物中,玻化微珠具有较大的内部中空比率,而且玻化微珠、玻璃纤维与其他功能性添加剂能够在发泡剂的作用下,发泡形成具有多级蜂巢状空气腔孔结构的保温材料,使得保温材料具有较低的导热系数、较轻的容重和较好的储热效果。
Thermal insulation material composition, thermal insulation material, thermal insulation board, sandwich thermal insulation board and application
The invention relates to the technical field of thermal insulation materials, and provides a thermal insulation material composition, a thermal insulation material, a thermal insulation board, a sandwich thermal insulation board and application, and the thermal insulation material composition is prepared from the following raw materials in parts by weight: 20-70 parts of glass beads, 2-30 parts of glass fibers, 5-11 parts of a foaming agent and 5-75 parts of foamed concrete; the particle size of the glass beads is 50-90 microns, the internal hollow ratio is 50-65%, the dry volume weight is 150-300 kg/m < 3 >, and the bead forming rate is 70-98%. In the thermal insulation material composition provided by the invention, the glass beads have a relatively large internal hollow ratio, and the glass beads, the glass fibers and other functional additives can be foamed under the action of the foaming agent to form a thermal insulation material with a multi-stage honeycomb-shaped air cavity pore structure; the thermal insulation material has the advantages of low heat conductivity coefficient, light volume weight and good heat storage effect.
本发明涉及保温材料技术领域,提供了一种保温材料组合物、保温材料、保温板材、夹芯保温板及应用,其中,所述保温材料组合物,以重量份记,包括如下原料:20~70重量份的玻化微珠、2~30重量份的玻璃纤维、5~11重量份的发泡剂、5~75重量份的发泡混凝土;所述玻化微珠的粒径为50~90μm,内部中空比率为50~65%,干容重为150~300kg/m3,成珠率为70~98%。本发明提供的保温材料组合物中,玻化微珠具有较大的内部中空比率,而且玻化微珠、玻璃纤维与其他功能性添加剂能够在发泡剂的作用下,发泡形成具有多级蜂巢状空气腔孔结构的保温材料,使得保温材料具有较低的导热系数、较轻的容重和较好的储热效果。
Thermal insulation material composition, thermal insulation material, thermal insulation board, sandwich thermal insulation board and application
保温材料组合物、保温材料、保温板材、夹芯保温板及应用
LIU YONGPING (Autor:in)
07.06.2022
Patent
Elektronische Ressource
Chinesisch
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