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Low-energy-consumption phase change energy storage connecting piece
The invention discloses a low-energy-consumption phase change energy storage connecting piece, and belongs to the field of fabricated building energy conservation. On the premise that the connecting piece meets the standard requirements of mechanics, fire resistance, durability and the like in the assembly type multifunctional integrated wall, in order to effectively solve the'thermal bridge 'influence of the connecting piece and further reduce energy consumption, the high-strength and high-heat-conduction characteristics of a metal material are fully utilized, the structural form of the connecting piece is innovated, and the energy consumption is reduced. And the energy storage potential of the phase change material is fully exerted while the light weight and high strength of the connecting piece are realized. The mechanical property of the connecting piece is improved, meanwhile, the influence of a thermal bridge of the connecting piece is avoided, and the low-energy-consumption target is achieved. In the invention, the idea that the cavity shell is combined with the high-heat-conductivity-coefficient blades and the high-phase-change-latent-heat phase-change material can be applied to all types of connecting pieces. And moreover, the phase-change material and the connecting piece construction form can be selected according to the geographical environment and the four-season change, the application range is wide, the adjusting capacity is high, and wide engineering applicability is achieved.
一种低能耗相变储能连接件,属于装配式建筑节能领域。保证连接件在装配式多功能一体化墙体中满足力学、耐火、耐久等规范要求的前提下,为了有效解决连接件的“热桥”影响,进而降低能耗,本发明充分利用金属材质的高强高导热特点,且通过创新连接件的构造形式,在实现连接件轻质高强的同时,充分发挥了相变材料的蓄能潜力。在提高连接件力学性能的同时,解决了连接件的“热桥”影响,实现低能耗目标。本发明中,空腔外壳结合高导热系数叶片和高相变潜热相变材料的思路,可适用于所有类型的连接件。并且,可根据地理环境、四季变化进行相变材料和连接件构造形式的选择,适用范围广、调节能力强,具有广泛的工程适用性。
Low-energy-consumption phase change energy storage connecting piece
The invention discloses a low-energy-consumption phase change energy storage connecting piece, and belongs to the field of fabricated building energy conservation. On the premise that the connecting piece meets the standard requirements of mechanics, fire resistance, durability and the like in the assembly type multifunctional integrated wall, in order to effectively solve the'thermal bridge 'influence of the connecting piece and further reduce energy consumption, the high-strength and high-heat-conduction characteristics of a metal material are fully utilized, the structural form of the connecting piece is innovated, and the energy consumption is reduced. And the energy storage potential of the phase change material is fully exerted while the light weight and high strength of the connecting piece are realized. The mechanical property of the connecting piece is improved, meanwhile, the influence of a thermal bridge of the connecting piece is avoided, and the low-energy-consumption target is achieved. In the invention, the idea that the cavity shell is combined with the high-heat-conductivity-coefficient blades and the high-phase-change-latent-heat phase-change material can be applied to all types of connecting pieces. And moreover, the phase-change material and the connecting piece construction form can be selected according to the geographical environment and the four-season change, the application range is wide, the adjusting capacity is high, and wide engineering applicability is achieved.
一种低能耗相变储能连接件,属于装配式建筑节能领域。保证连接件在装配式多功能一体化墙体中满足力学、耐火、耐久等规范要求的前提下,为了有效解决连接件的“热桥”影响,进而降低能耗,本发明充分利用金属材质的高强高导热特点,且通过创新连接件的构造形式,在实现连接件轻质高强的同时,充分发挥了相变材料的蓄能潜力。在提高连接件力学性能的同时,解决了连接件的“热桥”影响,实现低能耗目标。本发明中,空腔外壳结合高导热系数叶片和高相变潜热相变材料的思路,可适用于所有类型的连接件。并且,可根据地理环境、四季变化进行相变材料和连接件构造形式的选择,适用范围广、调节能力强,具有广泛的工程适用性。
Low-energy-consumption phase change energy storage connecting piece
一种低能耗相变储能连接件
DONG XIANZHANG (author) / XIAO HUIGANG (author) / LIU MIN (author)
2022-10-25
Patent
Electronic Resource
Chinese
IPC:
E04B
Allgemeine Baukonstruktionen
,
GENERAL BUILDING CONSTRUCTIONS
/
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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