• Minimalist Narrow-Bezel Outward-Opening Casement Window
  • Minimalist Narrow-Bezel Outward-Opening Casement Window

Minimalist Narrow-Bezel Outward-Opening Casement Window

No.90 ChuangGao
Large-format windows with ultra-narrow bezels maximize the introduction of outdoor views, significantly improving natural light and visual openness, making them ideal for creating panoramic floor-to-ceiling windows or large curtain wall windows. Suitable for high-end residences, villas, commercial spaces, and building projects with stringent requirements for window performance.
  • Minimalist Narrow-Bezel Outward-Opening Casement Window

Description

Product details are as follows:

  • Ultra-Narrow Bezel & Expansive View

—Utilizing an 88mm ultra-narrow bezel design, significantly reducing visual obstruction, improving lighting efficiency and spatial transparency, with a simple and modern appearance.


  • Comprehensive Protection, Stable and Secure

—Possessing excellent water tightness (700Pa), air tightness (0.3m³/(m·h)), and wind pressure resistance (5.0kPa), it effectively resists wind, rain, and dust, ensuring a dry and safe indoor environment.


  • Superior Energy Saving, Constant Temperature and Quiet Environment

—Thermal insulation: Adopting a "thermal break aluminum profile and 5mm+27A+5mm double-glazed glass" structure, with a U-value of 0.35, significantly reduces heat transfer, achieving energy saving and consumption reduction.

—High-efficiency sound insulation: With a sound insulation level of up to 35dB, it effectively blocks external noise, creating a quiet and comfortable indoor environment.


  • Robust and Durable, High-Quality Configuration

—The main material is made of 6063-T5 high-strength aluminum alloy, with a profile wall thickness of 1.8mm. It is equipped with German HOPO and German Wehag hardware systems, ensuring a stable and durable product structure.


  • Flexible Ventilation, Multiple Opening Options

— It supports various opening methods such as top-hung and swing-out to meet the ventilation and safety needs of different scenarios.