一种降低热损失的玻璃幕墙结构
By introducing a vacuum insulation layer, honeycomb ceramic sheets, and staggered thermal insulation strips and plastic spacers into the glass curtain wall, the problem of high heat loss in glass curtain walls has been solved, achieving the effect of reducing heat loss and energy consumption.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HUAMING DESIGN GROUP CO LTD
- Filing Date
- 2025-07-16
- Publication Date
- 2026-07-17
AI Technical Summary
Traditional glass curtain walls suffer from significant heat loss, especially in cold regions or seasons with large temperature differences, leading to increased heat exchange between indoors and outdoors and high energy consumption.
The combination of a vacuum insulation layer, honeycomb ceramic sheets, and staggered thermal insulation strips and plastic spacers forms a thermal barrier component, which enhances the thermal insulation effect of the glass curtain wall and reduces heat loss.
It effectively reduces heat loss from glass curtain walls, maintains stable indoor temperature, and reduces energy consumption.
Smart Images

Figure CN224514499U_ABST
Abstract
Claims
1. A glass curtain wall structure with reduced heat loss, characterized in that, include: Two support frames (1), each of the two support frames (1) has an internal cavity (2) on its opposite side. A heat insulation mechanism (3) is disposed between the two support frames (1), and the surface of the heat insulation mechanism (3) extends into the interior of the internal cavity (2); The heat insulation mechanism (3) includes a heat barrier component (33) disposed between the two support frames (1). The surface of the heat barrier component (33) extends into the interior of the internal cavity (2). An inner glass layer (31) is disposed on one side of the heat barrier component (33), and an outer glass layer (32) is disposed on the side of the heat barrier component (33) away from the inner glass layer (31). The inner glass layer (31) and the outer glass layer (32) are respectively installed on the inner wall of the adjacent internal cavity (2). The heat barrier assembly (33) includes a heat insulation frame (332) fixedly connected between the two support frames (1), and a vacuum insulation layer (331) is fixedly connected to the inner wall of the heat insulation frame (332). The vacuum insulation layer (331) is located between the inner glass layer (31) and the outer glass layer (32), and a honeycomb ceramic sheet (333) is fixedly connected to the surface of the vacuum insulation layer (331) near the heat insulation frame (332). The honeycomb ceramic sheet (333) is located inside the heat insulation frame (332), and multiple heat insulation strips (334) are fixedly connected to the surface of the honeycomb ceramic sheet (333) away from the vacuum isolation layer (331).
2. The glass wall structure of claim 1, wherein, The heat insulation frame (332) has multiple plastic partitions (335) fixedly connected to the inner wall away from the honeycomb ceramic sheet (333), and the multiple plastic partitions (335) are evenly distributed along the inner wall of the heat insulation frame (332).
3. The glass wall structure of claim 2, wherein, The surface of the heat insulation strip (334) extends into the interior of the heat insulation frame (332), and a plurality of the heat insulation strips (334) are evenly distributed along the surface of the honeycomb ceramic sheet (333).
4. The glass wall structure of claim 3, wherein, The surface of the plastic spacer (335) extends between adjacent heat insulation strips (334), and the plastic spacer (335) and heat insulation strips (334) are staggered.