FIRE RESISTANT VACUUM INSULATING GLAZING
    4.
    发明申请

    公开(公告)号:WO2021073904A1

    公开(公告)日:2021-04-22

    申请号:PCT/EP2020/077749

    申请日:2020-10-02

    摘要: The present invention relates to a fire resistant vacuum insulating glazing assembly comprising: i. at least one vacuum insulating glazing unit comprising: a. a first glass pane, GP1, having an inner pane face and an outer pane face and a second glass pane, GP2, having an inner pane face and an outer pane face; b. a set of discrete pillars positioned between the first and second glass panes, maintaining a distance between the first and the second glass panes; c. a hermetically bonding seal sealing the distance between the first and second glass panes over a perimeter thereof; d. an internal volume, V, defined by the first and second glass panes and closed by the hermetically bonding seal, wherein there is a vacuum of absolute pressure of less than 0.1 mbar; and wherein the inner pane faces face the internal volume, V; and ii. at least one intumescent unit comprising: - a layer of intumescent material; - an intumescent unit glass pane, GPiu; - an intumescent unit peripheral spacer extending over a perimeter of the intumescent unit glass pane; wherein the intumescent unit glass pane and the intumescent unit peripheral spacer define an intumescent unit volume, Vi, encompassing the layer of intumescent material, and wherein the layer of intumescent material and the intumescent unit peripheral spacer are facing one of the outer pane faces of the first or second glass pane.

    ASYMMETRICAL VACUUM-INSULATED GLAZING UNIT
    5.
    发明申请

    公开(公告)号:WO2020187588A1

    公开(公告)日:2020-09-24

    申请号:PCT/EP2020/055882

    申请日:2020-03-05

    IPC分类号: E06B3/66

    摘要: The present invention concerns a vacuum insulating glazing unit (10) extending along a plane, P, defined by a longitudinal axis, X, and a vertical axis, Z, provided with one infrared reflecting coating, having a length L with 300 mm ≤L ≤ 4000 mm, and a width W, with 300 mm ≤ W ≤ 1500 mm, and comprising: a. a first glass pane (1) having an inner pane face (12) and an outer pane face (13), having a thickness Z1, the coated first glass pane having an energetical absorptance EA1 and b. a second glass pane (2) having an inner pane face (22) and an outer pane face (23) and having a thickness, Z2, and bearing the infrared reflective coating on its inner pane face wherein the thicknesses are measured in the direction normal to the plane, P, the coated second glass pane having an energetical absorptance EA2; c. a set of discrete spacers (3) positioned between the first and second glass panes, maintaining a distance between the first and the second glass panes and forming an array having a pitch λ, the pitch, λ being comprised between 10 mm and 35 mm; d. a hermetically bonding seal (4) sealing the distance between the first and second glass panes over a perimeter thereof; e. an internal volume, V, defined by the first and second glass panes and the set of discrete spacers and closed by the hermetically bonding seal and wherein there is a vacuum of absolute pressure of less than 0.1 mbar, and f. wherein the inner pane faces of the first and second glass panes face the internal volume, V; g. characterized in that the first glass pane is thicker than the second glass pane (Z1>Z2), and in that ΔEA ≤0.0033 ΔZ² /mm² - 0.0468 ΔZ/mm + 0.7702; wherein ΔEA = EA1 – 2*EA2, and in that Z1 ≥ 5 mm, Z2 ≥ 3 mm, and ΔZ = Z1 - Z2 ≥ 1 mm, and in that 10 mm ≤ λ ≤ 35 mm.

    GLAZING UNIT WITH FREQUENCY SELECTIVE COATING AND METHOD

    公开(公告)号:WO2020165167A1

    公开(公告)日:2020-08-20

    申请号:PCT/EP2020/053468

    申请日:2020-02-11

    IPC分类号: C03C17/36 H01Q15/00 H01Q1/12

    摘要: The present invention discloses a glazing unit (1) improved a glazing unit comprising a glass panel which is low in reflectance for RF radiation, a coating system which is high in reflectance for RF radiation disposed on the said glass panel. The glazing unit also comprises at least one frequencies selective decoated portion (30) of the coating system extending along a plane, P, defined by a longitudinal axis, X, and a vertical axis, Z; having a width, DW, measured along the longitudinal axis, X, and a length, DL, measured along the vertical axis, Z, creating onto the glazing unit a bandpass filter. The at least one frequencies selective decoated portion comprises comprising at least one decoated element allowing determined frequencies to pass thought the glazing unit.

    GLAZING ASSEMBLY FOR A CURTAIN WALL GLAZING SYSTEM

    公开(公告)号:WO2020002132A1

    公开(公告)日:2020-01-02

    申请号:PCT/EP2019/066413

    申请日:2019-06-20

    IPC分类号: E06B3/58 E04B2/96

    摘要: The present invention concerns a glazing assembly for a curtain wall glazing system comprising a glazing unit and a frame structure formed by a plurality of glazing profiles. Each of the plurality of glazing profiles comprises a main structural frame part and a removable clamping part. The removable clamping parts when removed from the structural frame parts unclamp the glazing unit and open a clearance allowing to remove the glazing unit in a direction of a first area. At least one of the main structural frame parts comprises a structural portion and a mobile clamping portion. When removing the mobile clamping portion from the structural frame portions a clearance is opened allowing to perform maintenance activities to an edge region of the glazing unit from the second area.

    METHOD FOR PREPARING CATALYTIC NANOPARTICLES, CATALYST SURFACES, AND/OR CATALYSTS

    公开(公告)号:WO2019238700A1

    公开(公告)日:2019-12-19

    申请号:PCT/EP2019/065239

    申请日:2019-06-11

    IPC分类号: C23C14/48 B01J37/34

    摘要: The invention relates to a method for preparing catalyst particles, comprising the steps of: - providing a catalyst starting material; - providing an ion beam, - providing an electrostatic charge reduction device selected from a source of UV light, a source of X-rays, an electron beam, and an electrically grounded catalytic starting material carrier, - implanting the catalyst starting material with an ion beam dose primarily comprising monocharged or monocharged and multicharged ions with an energy of the monocharged ions in the ion beam from at least 10 keV to at most 100 keV; thereby obtaining a catalyst The invention further relates to the obtained catalyst particles and the use of such particles in NOx, CO, and/or HC emission reduction devices, fuel cells, or catalyst in chemical, in particular petrochemical, reactions.