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    • 5. 发明授权
    • Door lite frame with nestable frame components
    • 门框框架可嵌套框架组件
    • US08904733B2
    • 2014-12-09
    • US14264797
    • 2014-04-29
    • Masonite Corporation
    • Douglas Thompson
    • E04B1/00E06B3/96E06B3/968
    • E06B3/5892E06B1/36E06B3/5864E06B3/9636E06B3/9642E06B3/968E06B3/9681E06B3/9684E06B2003/6217
    • A door lite frame comprises a first frame component comprising first screw bosses and first grip sockets, and a second frame component comprising second screw bosses and second grip sockets. The first and second frame components are constructed to permit arrangement of the first and second frame components in an assembled state and a nested state with respect to one another. In the assembled state, the first screw bosses are correspondingly aligned with the second screw bosses, and the first and second frame components are secured to each other. In the nested state, at least one of the first screw bosses of the first frame component is mated with at least one of the second grip sockets of the second frame component.
    • 门框架包括第一框架部件,其包括第一螺钉凸台和第一夹紧插槽,以及包括第二螺钉凸台和第二夹紧插槽的第二框架部件。 第一和第二框架部件被构造成允许第一和第二框架部件相对于彼此以组装状态和嵌套状态的布置。 在组装状态下,第一螺钉凸台相应地与第二螺钉凸台对准,并且第一和第二框架部件彼此固定。 在嵌套状态下,第一框架部件的第一螺钉凸台中的至少一个与第二框架部件的第二把手插孔中的至少一个配合。
    • 9. 发明授权
    • GERAHMTES FLÄCHENTRAGELEMENT SOWIE RAHMENPROFIL FÜR EIN DERARTIGES GERAHMTES FLÄCHENTRAGELEMENT
    • 外框的区域支撑元件和框架型材这样的外框的区域支撑元件
    • EP1987220B1
    • 2011-04-13
    • EP07722841.9
    • 2007-02-19
    • REHAU AG + Co
    • BECKER, Stephan
    • E06B3/22E06B3/54E06B3/62
    • E06B3/5409E06B3/6621E06B2003/26332E06B2003/6217
    • A framed planar load-bearing element (3) has a profile frame (2) peripherally surrounding it. A peripheral edge portion (6) of the planar load-bearing element (3) is received in a receiving portion (7). The edge portion (6) is peripherally spaced apart from bounding walls (11 to 13) of the receiving portion (7) both parallel and perpendicular to a load-bearing element plane (14) pre-defined by the planar load-bearing element (3). Consequently, a peripheral receiving chamber (15) is formed between the edge portion (6) and the bounding walls (11 to 13) of the profile frame (2). Arranged opposite one another on both sides of the load-bearing element plane (14) are sealing profiles (16, 17) which seal visible sides (18, 19) of the profile frame (2) with respect to the edge portion (6). Arranged separately to the sealing profiles (16, 17) is a peripherally bearing sealing element (21) made of a material which is soft as compared with a frame profile (1) of the profile frame (2). The sealing element (21) seals at least one of the bounding walls (12) peripherally with respect to the planar load-bearing element (3). The receiving chamber (5) is thus divided into at least two chamber portions (27, 28) in a plane of separation (26) which extends parallel to the load-bearing element plane (14). A thickness (S) of the sealing element (21) at the point where said element separates the chamber portions (27, 28) from one another is less than half as much as a thickness (D) of the edge portion (6) of the planar load-bearing element (3) perpendicular to the load-bearing element plane (14). The result is a framed planar load-bearing element whose heat-insulating effect is improved by virtue of the convection-inhibiting sealing element.
    • 10. 发明公开
    • GERAHMTES FLÄCHENELEMENT SOWIE RAHMENPROFIL FÜR EIN DERARTIGES GERAHMTES FLÄCHENTRAGELEMENT
    • 外框的区域支撑元件和框架型材这样的外框的区域支撑元件
    • EP1987220A1
    • 2008-11-05
    • EP07722841.9
    • 2007-02-19
    • REHAU AG + Co
    • BECKER, Stephan
    • E06B3/22E06B3/54E06B3/62
    • E06B3/5409E06B3/6621E06B2003/26332E06B2003/6217
    • A framed planar load-bearing element (3) has a profile frame (2) peripherally surrounding it. A peripheral edge portion (6) of the planar load-bearing element (3) is received in a receiving portion (7). The edge portion (6) is peripherally spaced apart from bounding walls (11 to 13) of the receiving portion (7) both parallel and perpendicular to a load-bearing element plane (14) pre-defined by the planar load-bearing element (3). Consequently, a peripheral receiving chamber (15) is formed between the edge portion (6) and the bounding walls (11 to 13) of the profile frame (2). Arranged opposite one another on both sides of the load-bearing element plane (14) are sealing profiles (16, 17) which seal visible sides (18, 19) of the profile frame (2) with respect to the edge portion (6). Arranged separately to the sealing profiles (16, 17) is a peripherally bearing sealing element (21) made of a material which is soft as compared with a frame profile (1) of the profile frame (2). The sealing element (21) seals at least one of the bounding walls (12) peripherally with respect to the planar load-bearing element (3). The receiving chamber (5) is thus divided into at least two chamber portions (27, 28) in a plane of separation (26) which extends parallel to the load-bearing element plane (14). A thickness (S) of the sealing element (21) at the point where said element separates the chamber portions (27, 28) from one another is less than half as much as a thickness (D) of the edge portion (6) of the planar load-bearing element (3) perpendicular to the load-bearing element plane (14). The result is a framed planar load-bearing element whose heat-insulating effect is improved by virtue of the convection-inhibiting sealing element.