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How does the broken bridge casement window perform in terms of wind pressure resistance?

Publish Time: 2025-05-22
The performance of the broken bridge casement window in terms of wind pressure resistance is one of the important reasons why it is favored as a modern building door and window system. With the continuous increase in the height of urban buildings and the frequent occurrence of extreme weather, the structural stability and safety performance of windows in the face of strong wind impact have become the focus of attention of consumers and architectural designers. The broken bridge casement window has demonstrated excellent performance in terms of wind pressure resistance through its unique material structure and process design.

From the perspective of structural design, the broken bridge casement window adopts the method of connecting the inner and outer sections of the profile through insulation strips. This "broken bridge" structure not only effectively blocks the transfer of heat, but also greatly enhances the overall rigidity of the window frame. Compared with traditional aluminum alloy windows, the broken bridge technology makes the profile less likely to deform when subjected to external pressure, thereby improving the mechanical stability of the entire window. Especially in high-rise buildings, when the windows are exposed to wind pressure for a long time, this high-strength structure can better resist the deformation risk caused by wind force and ensure safety and comfort during use.

In addition, broken bridge casement windows usually use a multi-point locking system, which is also one of the key factors for their good wind pressure resistance. This locking system can firmly fix the window sash and window frame together in the closed state, forming multiple force support points, thereby effectively dispersing the concentrated pressure caused by wind on the window. Even in strong winds, the window can remain stable and not shake, avoiding problems such as sealing failure or window loosening caused by excessive wind pressure.

The choice of glass also directly affects the performance of broken bridge casement windows in terms of wind pressure resistance. This type of window is usually equipped with double or even triple-layer hollow tempered glass, which not only has good thermal insulation and sound insulation effects, but also has much higher strength than ordinary glass. Tempered glass itself has strong impact resistance and is not easy to splash after breaking. Therefore, in the face of strong winds accompanied by foreign objects, it can still remain stable and will not be easily damaged, thereby further enhancing the safety performance of the entire window.

In addition to the advantages in materials and structure, the installation method of broken bridge casement windows also determines the level of its wind pressure resistance to a certain extent. Because it is a flat opening type, the window sash is tightly connected to the window frame through a hinge, and the overall sealing is stronger when closed. Under the action of wind, it will fit the window frame more closely, forming a "negative pressure adsorption" effect, thereby improving its stability in strong wind environments. In contrast, sliding windows are more likely to slide out of position or even fall off when facing strong winds, while broken bridge casement windows can avoid these problems well.

In daily use, it is often difficult for users to intuitively feel the ability of windows to resist wind pressure, but it is this "invisible" performance that ensures the safety and tranquility of the living environment. Whether in coastal areas that face typhoons all year round, or in inland urban buildings with high-rise buildings and obvious wind channel effects, broken bridge casement windows can effectively resist various challenges brought by wind with their stable structure and excellent design.

It is worth mentioning that while improving its ability to resist wind pressure, broken bridge casement windows do not sacrifice their beauty and practicality. On the contrary, with its modern and simple line design, transparent vision and flexible opening method, it has become the first choice for more and more high-end residential and commercial buildings. This feature of combining functionality and decoration makes the broken bridge casement window not only meet people's needs for residential safety, but also improve the quality of the overall space.

In summary, the performance of the broken bridge casement window in terms of wind pressure resistance is due to its scientific structural design, high-quality material selection, advanced locking system and reasonable installation method. These factors work together to enable it to maintain a stable, safe and reliable use experience in the face of complex and changing natural environments. For modern families pursuing high-quality life and urban builders who pay attention to building safety, the broken bridge casement window is undoubtedly a trustworthy choice.
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