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    • 1. 发明公开
    • Panel system
    • Panelsystem
    • EP1647647A2
    • 2006-04-19
    • EP05256321.0
    • 2005-10-11
    • Spinlock Structures Limited
    • Billings, Sean
    • E04B2/88
    • E04B7/14E04B2/885E04D3/14E06B3/5427E06B3/5445
    • Fibre linear tensile elements 2 are strung between the floor slab 11 and the roof 12 of a building 1. Each fibre linear tensile element has a structural core 21 of polymeric fibres or filaments which can accommodate the tensioning of the fibre linear tensile element. The core 21 is covered by a sheath 22 of polymeric material. The fibre linear tensile elements 2 carry clamping devices 3 which enable glass panels 4 to be secured in position. Each clamping device 3 clamps in position the corners of four adjacent panels 4 at a particular connection node of the glass wall 80, as shown in Fig. 6. Gaskets 78 are applied to fill the inter-panel joints.
      Each fibre linear tensile element 2 may include a central optical fibre 23 for detecting any reduction in the tension during use. The tension of the fibre linear tensile elements 2 is monitored by a monitoring device 81 which can produce an appropriate alarm signal.
      Because of the polymeric structural nature of the fibre linear tensile elements 2, they will permit the curtain wall 80 to flex to some extent and their tensioning will only vary slightly in response to changes in ambient temperature. The polymeric material is also good at resisting surface corrosion.
      The fibre linear tensile elements 2 with the clamping devices 3 prefitted are delivered to site on pallets 71, so as to reduce the amount of work required on site. A laser level 74 may be used to ensure that the clamping devices 3 are positioned at their correct heights, before the glass panels 4 are fitted.
    • 纤维线性拉伸元件2被串在建筑物1的地板坯件11和屋顶12之间。每个纤维线性拉伸元件具有可以适应纤维线性拉伸元件张紧的聚合物纤维或长丝的结构芯21。 芯21由聚合材料的护套22覆盖。 纤维线性拉伸元件2携带夹持装置3,其使得玻璃面板4能够固定就位。 每个夹紧装置3在玻璃壁80的特定连接节点处将四个相邻面板4的角部夹紧就位,如图3所示。 应用垫圈78以填充板间接头。 每个纤维线性拉伸元件2可以包括用于在使用期间检测张力的任何降低的中心光纤23。 纤维线性拉伸元件2的张力由能够产生适当报警信号的监视装置81监视。 由于纤维线性拉伸元件2的聚合物结构性质,它们将允许幕墙80在一定程度上弯曲,并且它们的张紧仅响应于环境温度的变化而稍微变化。 聚合物材料也能抵抗表面腐蚀。 具有预先夹紧装置3的纤维线性拉伸元件2被输送到托盘71上的现场,以便减少现场所需的工作量。 在安装玻璃面板4之前,可以使用激光水平仪74来确保夹紧装置3位于其正确的高度。
    • 2. 发明公开
    • Panel system
    • Panelsystem
    • EP1647647A3
    • 2007-08-01
    • EP05256321.0
    • 2005-10-11
    • Spinlock Structures Limited
    • Billings, Sean
    • E04B2/88
    • E04B7/14E04B2/885E04D3/14E06B3/5427E06B3/5445
    • Fibre linear tensile elements 2 are strung between the floor slab 11 and the roof 12 of a building 1. Each fibre linear tensile element has a structural core 21 of polymeric fibres or filaments which can accommodate the tensioning of the fibre linear tensile element. The core 21 is covered by a sheath 22 of polymeric material. The fibre linear tensile elements 2 carry clamping devices 3 which enable glass panels 4 to be secured in position. Each clamping device 3 clamps in position the corners of four adjacent panels 4 at a particular connection node of the glass wall 80, as shown in Fig. 6. Gaskets 78 are applied to fill the inter-panel joints.
      Each fibre linear tensile element 2 may include a central optical fibre 23 for detecting any reduction in the tension during use. The tension of the fibre linear tensile elements 2 is monitored by a monitoring device 81 which can produce an appropriate alarm signal.
      Because of the polymeric structural nature of the fibre linear tensile elements 2, they will permit the curtain wall 80 to flex to some extent and their tensioning will only vary slightly in response to changes in ambient temperature. The polymeric material is also good at resisting surface corrosion.
      The fibre linear tensile elements 2 with the clamping devices 3 prefitted are delivered to site on pallets 71, so as to reduce the amount of work required on site. A laser level 74 may be used to ensure that the clamping devices 3 are positioned at their correct heights, before the glass panels 4 are fitted.