OPERATING SYSTEM FOR AN ARCHITECTURAL-STRUCTURE COVERING

    公开(公告)号:EP3461987A2

    公开(公告)日:2019-04-03

    申请号:EP18196087.3

    申请日:2018-09-21

    IPC分类号: E06B9/34

    摘要: An improved operating system for use in an architectural-structure covering for extending and retracting a covering portion is disclosed. The operating system including an operating element for raising the covering portion and for transitioning the operating system between a retraction mode to raise the covering and an extension mode to lower the covering. To transition between the retraction and extension modes, an operator may move the operating element in a preset direction, such as, in the manner akin to a switch. For example, moving the operating element in a first direction (e.g., a rearward direction away from the operator) shifts the operating system into the retraction mode, while moving the operating element in a second direction (e.g., a forward motion toward the operator) shifts the operating system into the extension mode. In one embodiment, the first and second directions may be transverse to a longitudinal axis of the architectural-structure covering.

    HOLLOW GLASS BUILT-IN SUN-SHADING APPARATUS
    5.
    发明授权
    HOLLOW GLASS BUILT-IN SUN-SHADING APPARATUS 有权
    空心玻璃内置式太阳遮光装置

    公开(公告)号:EP2894287B1

    公开(公告)日:2017-12-13

    申请号:EP12881242.7

    申请日:2012-07-24

    发明人: ZHANG, Xuezhong

    IPC分类号: E06B9/32 E06B9/264 E06B3/22

    摘要: The present invention relates to a built-in sun-shading device of hollow glass. The built-in sun-shading device comprises a cord-winding mechanism, a transmission mechanism controlling the rotation of the cord-winding mechanism and a sun-shading mechanism connected onto the cord-winding mechanism. The cord-winding mechanism comprises a cord-winding shaft, a group of cord-winding propellers are arranged on the cord-winding shaft, the transmission mechanism is connected with the cord-winding mechanism, and the sun-shading mechanism is connected onto the cord-winding propellers. The built-in sun-shading device of the hollow glass, which uses a single cord-winding shaft, can wind a plurality of cords and enable the sun-shading mechanism to be folded and unfolded in a balanced mode. The single cord-winding shaft does not need to move back and forth, is simple in terms of structure and has high assembling efficiency. In addition, the built-in sun-shading device of the hollow glass uses the cords to limit slats from moving to and fro, which thus enables the slats to stack up orderly, reduces contact between the slats and hollow glass, protects the coating film on the surface of the hollow glass and reduces friction. Furthermore, the built-in sun-shading device of the hollow glass uses a handle with frictional damping in one direction and overcomes a phenomenon that the large sun-shading mechanism may easily decline itself due to the large self-weight after being lifted.