A two-way folding synchronous electrically driven flexible window system
Patent Information
- Application Number
- CN202610719109.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-05-24
- Publication Date
- 2026-08-07
AI Technical Summary
[0003]本发明提供一种双向折叠同步电驱柔性窗系统,旨在解决现有折叠窗重心不稳、同步性差、维护困难及防水性能不足的问题
[0003]本发明提供一种双向折叠同步电驱柔性窗系统,旨在解决现有折叠窗重心不稳、同步性差、维护困难及防水性能不足的问题。系统以中部中轴分界线为基准,左右对称设置收纳条,高透光可折叠柔性窗可向中部双向折叠收拢,保持视觉平衡;上下设同步电驱夹持牵引机构,沿导向滑轨运行,确保窗体在展开和折叠过程中始终保持垂直平整;中轴内置可拆卸电池组件,通过快拆锁止机构固定,并配有防水密封圈,方便用户取下充电且不漏雨;底部设感应器,遇障碍物自动停机;智能控制模块统一管理运动逻辑与安全保护。
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Abstract
Description
Technical Field
[0001] This invention relates to the fields of building doors and windows, flexible windows for balconies / RVs, and smart home control, specifically a bidirectional folding synchronous electric drive flexible window system. Background Technology
[0002] Traditional folding windows are mostly driven from one side. When large windows are folded, the center of gravity shifts, which can easily lead to wear on the pulleys and jamming. Ordinary sliding windows take up a lot of space and have a ventilation rate of only 50%. Existing electric windows mostly rely on fixed wiring, which is complicated to install and lacks emergency power. Flexible windows are prone to wrinkling and tearing if the upper and lower parts are not synchronized during operation. In addition, outdoor window frames have high requirements for waterproof performance, and existing removable battery structures often cannot balance convenience and sealing. Summary of the Invention
[0003] This invention provides a bidirectional folding synchronous electric-driven flexible window system, aiming to solve the problems of unstable center of gravity, poor synchronization, difficult maintenance, and insufficient waterproof performance of existing folding windows. The system uses the central axis dividing line as a reference, with symmetrical storage strips on both sides. The high-transmittance foldable flexible window can be folded in both directions towards the center, maintaining visual balance. Synchronous electric-driven clamping and traction mechanisms are located at the top and bottom, running along guide rails to ensure the window remains vertical and flat during unfolding and folding. A removable battery assembly is built into the central axis, secured by a quick-release locking mechanism and equipped with a waterproof sealing ring, allowing for easy removal for charging without leakage. A sensor at the bottom automatically stops the system upon encountering an obstacle. An intelligent control module manages the motion logic and safety protection. Attached Figure Description
[0004] Figure 1 is a schematic diagram of the overall structure of the present invention; wherein: 1 - bidirectional folding storage mechanism; 2 - central axis dividing line; 3 - battery assembly; 4-1 - left storage strip; 4-2 - right storage strip; 5 - high light transmittance foldable flexible window; 6-1 - top synchronous electric drive clamping and traction mechanism; 6-2 - bottom synchronous electric drive clamping and traction mechanism; 7 - sensor; 8 - quick-release locking mechanism; 9 - intelligent control module; 10-1 - top guide rail; 10-2 - bottom guide rail. Detailed Implementation
[0005] During installation, the central axis dividing line (2) is fixed in the middle of the window opening, the upper and lower guide rails are fixed to the upper and lower parts of the window frame, and the left and right storage strips are arranged on both sides. The left and right edges of the high-transmittance foldable flexible window (5) are provided with rigid reinforcing ribs, which are respectively engaged with the clamps of the top and bottom clamping and traction mechanisms (6-1, 6-2). During operation, the top and bottom electric drive mechanisms receive instructions from the intelligent control module (9) and move synchronously to the sides or the middle through synchronous belt drive. When moving to the middle, the flexible window is folded in both directions towards the central axis dividing line (2) like an accordion through the folding and storage mechanism (1).
[0006] The battery assembly (3) is located in a waterproof battery compartment inside the central shaft and can be popped out for replacement by pressing the quick-release locking mechanism (8). The bottom sensor (7) scans the area below in real time, and immediately sends a signal to the control module to stop the motor once a human body or object is detected blocking it.
Claims
1. A bidirectional folding synchronous electrically driven flexible window system, characterized in that, include: Two-way folding storage mechanism (1), central axis dividing line (2), battery assembly (3), left storage strip (4-1), right storage strip (4-2), high light transmittance foldable flexible window (5), top synchronous electric drive clamping and traction mechanism (6-1), bottom synchronous electric drive clamping and traction mechanism (6-2), sensor (7), quick release locking mechanism (8), intelligent control module (9), top guide slide rail (10-1), bottom guide slide rail (10-2); The central axis dividing line (2) is located in the middle of the window sash, and the left and right sides are respectively arranged with the left storage strip (4-1) and the right storage strip (4-2). A high-transmittance foldable flexible window (5) is connected between storage strips and is folded towards the center in both directions through a two-way folding storage mechanism (1); The top synchronous electric drive clamping and traction mechanism (6-1) and the bottom synchronous electric drive clamping and traction mechanism (6-2) run along the top guide slide rail (10-1) and the bottom guide slide rail (10-2) respectively, clamping and driving the flexible window to slide and fold synchronously. The battery assembly (3) is located at the central axis position and can be quickly disassembled and assembled through the quick-release locking mechanism (8). The battery compartment is equipped with a waterproof sealing structure. The sensor (7) is arranged at the bottom to detect obstacles and trigger the shutdown protection. The intelligent control module (9) is electrically connected to the electric drive mechanism, sensor, and battery assembly to control opening and closing and provide safety protection.
2. The bidirectional folding synchronous electric-driven flexible window system according to claim 1, characterized in that, The high-transmittance foldable flexible window (5) uses polycarbonate (PC) folding board, TPU composite film or flexible polymer material, and has the characteristics of being foldable and storageable, high light transmittance, waterproof and weather resistant.
3. The bidirectional folding synchronous electric-driven flexible window system according to claim 1, characterized in that, The top and bottom electric drive mechanisms operate synchronously via a synchronous belt or linkage shaft, ensuring that the flexible window is subjected to uniform force from top to bottom, thus preventing twisting and jamming.
4. The bidirectional folding synchronous electric-driven flexible window system according to claim 1, characterized in that, The quick-release locking mechanism (8) is a press-type elastic buckle. After pressing, it automatically unlocks and pops out the battery assembly (3), allowing for replacement and charging without tools.
5. The bidirectional folding synchronous electric-driven flexible window system according to claim 1, characterized in that, The sensor (7) is an infrared or contact sensor that stops immediately when it encounters an obstacle to prevent pinching or damage to the structure.