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Heat storage layer for floor heating and paving method thereof
The invention relates to the technical field of heat storage materials, in particular to a heat storage layer for floor heating and a paving method of the heat storage layer. The heat storage layer comprises the following raw material components in parts by weight: an inorganic phase change material; water; phosphorylated starch glue; a water-absorbing resin; ultrafine graphite powder; diatomite;gypsum; cement; zirconium slag; and sand; the inorganic phase change material is any one or more of acetate and sulfate; the paving method comprises the following steps: uniformly mixing an inorganicphase-change material with water, zirconium slag and ultrafine graphite powder to prepare an inorganic phase-change material compound; uniformly mixing an inorganic phase-change material compound withdiatomite, gypsum and phosphate esterification starch glue to prepare an inorganic phase-change material coating body, and drying the inorganic phase-change material coating body until particles arenot adhered; uniformly stirring the inorganic phase change coating body with cement, sand and water to obtain heat storage layer mortar; and filling the surface of the heating system with heat storagelayer mortar to form a heat storage layer. The heat storage layer prepared by the method can effectively improve the heat storage performance of the heat storage layer.
本申请涉及蓄热材料的技术领域,具体涉及一种地暖用蓄热层及其摊铺方法;所述蓄热层包含以下重量份的原料组分:无机相变材料;水;磷酸酯化淀粉胶;吸水树脂;超细石墨粉;硅藻土;石膏;水泥;锆渣;砂子;所述无机相变材料为醋酸盐、硫酸盐中的任意一种或多种;所述摊铺方法为:利用无机相变材料与水、锆渣和超细石墨粉混匀,制得无机相变材料复合物;利用无机相变材料复合物与硅藻土、石膏和磷酸酯化淀粉胶混匀,制得无机相变材料包覆体,并干燥至颗粒不黏连;利用无机相变包覆体与水泥、砂子和水搅匀,即得蓄热层砂浆;将蓄热层砂浆填充在加热系统的表面形成蓄热层。利用本申请制备的蓄热层能够有效提高蓄热层的蓄热性能。
Heat storage layer for floor heating and paving method thereof
The invention relates to the technical field of heat storage materials, in particular to a heat storage layer for floor heating and a paving method of the heat storage layer. The heat storage layer comprises the following raw material components in parts by weight: an inorganic phase change material; water; phosphorylated starch glue; a water-absorbing resin; ultrafine graphite powder; diatomite;gypsum; cement; zirconium slag; and sand; the inorganic phase change material is any one or more of acetate and sulfate; the paving method comprises the following steps: uniformly mixing an inorganicphase-change material with water, zirconium slag and ultrafine graphite powder to prepare an inorganic phase-change material compound; uniformly mixing an inorganic phase-change material compound withdiatomite, gypsum and phosphate esterification starch glue to prepare an inorganic phase-change material coating body, and drying the inorganic phase-change material coating body until particles arenot adhered; uniformly stirring the inorganic phase change coating body with cement, sand and water to obtain heat storage layer mortar; and filling the surface of the heating system with heat storagelayer mortar to form a heat storage layer. The heat storage layer prepared by the method can effectively improve the heat storage performance of the heat storage layer.
本申请涉及蓄热材料的技术领域,具体涉及一种地暖用蓄热层及其摊铺方法;所述蓄热层包含以下重量份的原料组分:无机相变材料;水;磷酸酯化淀粉胶;吸水树脂;超细石墨粉;硅藻土;石膏;水泥;锆渣;砂子;所述无机相变材料为醋酸盐、硫酸盐中的任意一种或多种;所述摊铺方法为:利用无机相变材料与水、锆渣和超细石墨粉混匀,制得无机相变材料复合物;利用无机相变材料复合物与硅藻土、石膏和磷酸酯化淀粉胶混匀,制得无机相变材料包覆体,并干燥至颗粒不黏连;利用无机相变包覆体与水泥、砂子和水搅匀,即得蓄热层砂浆;将蓄热层砂浆填充在加热系统的表面形成蓄热层。利用本申请制备的蓄热层能够有效提高蓄热层的蓄热性能。
Heat storage layer for floor heating and paving method thereof
一种地暖用蓄热层及其摊铺方法
SHI SONGLIN (author) / PENG ZHANYUAN (author) / YI HUAYONG (author) / ZHANG XIAOMEI (author)
2021-02-19
Patent
Electronic Resource
Chinese
IPC:
C04B
Kalk
,
LIME
/
E04F
FINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
,
Ausbau von Bauwerken, z.B. Treppen, Fußböden
/
F24D
DOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS
,
Haus- oder Raumheizungssysteme, z.B. Zentralheizungssysteme
/
F28D
Wärmetauscher, soweit in keiner anderen Unterklasse vorgesehen, in denen die Wärmetauschmittel nicht in direkte Berührung miteinander kommen
,
HEAT-EXCHANGE APPARATUS, NOT PROVIDED FOR IN ANOTHER SUBCLASS, IN WHICH THE HEAT-EXCHANGE MEDIA DO NOT COME INTO DIRECT CONTACT
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