Anti-derailing device for sliding door

    公开(公告)号:US11492831B2

    公开(公告)日:2022-11-08

    申请号:US16913481

    申请日:2020-06-26

    IPC分类号: E05D15/06 E06B3/02

    摘要: An anti-derailing device for a sliding door, including slide rollers on upper edges of two sides of the sliding door, anti-bounce rollers below the slide rollers, rail supporting bases on a fixed door in front of the sliding door, and a rail fixed on opposite outer sides of the sliding door and the fixed door and clamped between the rollers. Each roller includes a fixed part and a first adjusting part which includes a first eccentric roller combined with the fixed part, each roller includes a fixing part and a second adjusting part which includes a second eccentric roller combined with the fixing part, and each rail supporting base includes a positioning part and a holding part for holding the rail. By adjusting positions of the rollers and without pre-machined holes, the sliding door can operate balanced and smoothly and prevent the rail from derailing.

    REINFORCED STRUCTURE AT BOTTOM OF GLASS DOOR

    公开(公告)号:US20220316266A1

    公开(公告)日:2022-10-06

    申请号:US17700718

    申请日:2022-03-22

    发明人: Chun-Chou KAO

    IPC分类号: E06B7/28 E06B3/02 E05B65/00

    摘要: A reinforced structure at a bottom of a glass door is provided. The bottom of the glass door is assembled with a reinforced structure comprising a reset device assembled on a side thereof; two cushioning materials connected and fixed on one side of the reset device respectively, wherein the two cushioning materials are respectively provided with a locking portion on one side opposite to the direction of the reset device; and two outer protective covers sleeved on outer surfaces of the reset device and the two cushioning materials respectively. The bottom of the glass door is protected, reinforced and cushioned by the reinforced structure from kicking by user's foot when walking or moving objects or colliding by the wheelchair to break the glass of the glass door or cause an easy bend by wind, and the reinforced structure can be applied to a wider glass door.

    Modular glass door assembly
    88.
    发明授权

    公开(公告)号:US11346144B2

    公开(公告)日:2022-05-31

    申请号:US17088866

    申请日:2020-11-04

    申请人: Wen-Shan Ko

    发明人: Wen-Shan Ko

    摘要: A modular glass door assembly includes a door, an inner frame, and an outer frame. The door has a glass door leaf and a doorframe mounted to the outer periphery of the glass door leaf. The inner frame is attached to the outer periphery of the doorframe and connected to the doorframe by two hinges up and down. The outer frame has four frame strips arranged around the outer periphery of the inner frame and each provided with a concave portion engaged with one respective convex portion of the inner frame. By this way, the inner frame and the outer frame can be directly assembled with each other or a fixed window panel can be added between the inner frame and the outer frame. Thus, the modular glass door assembly of the present invention has advantages of easy assembly and high scalability.

    FRAME SOLUTION COMPRISING COMPRESSED SUSPENSION ELEMENTS

    公开(公告)号:US20220098867A1

    公开(公告)日:2022-03-31

    申请号:US17422525

    申请日:2020-01-13

    申请人: VKR HOLDING A/S

    摘要: The present disclosure relates to a vacuum insulated glass (VIG) unit frame assembly (10), wherein said vacuum insulated glass unit frame assembly (10) comprises: —a vacuum insulated glass unit (1), and —a frame (20) comprising elongated frame profile arrangements (20a-20d) which frames said vacuum insulated glass unit (1) in a frame opening (21). One or more of said frame profile arrangements (20a-20d) comprises a holding part (28), wherein said holding part (28) holds the vacuum insulated glass unit (2) between first and second holding members (22, 23 28a, 28b,) arranged at opposite outwardly facing surfaces (4a, 4b, 15, 35a) of the vacuum insulated glass unit (1), and one or more resilient suspension elements (45a, 45b) is compressed between a first of said holding members (22, 23 28a, 28b) and one of said opposite outwardly facing surfaces (4a, 4b), and wherein one or more resilient suspension elements (45a, 45b) is compressed between a second of said holding members (22, 23 28a, 28b) and the other of said opposite outwardly facing surfaces (4a, 4b). Said compressed, resilient suspension elements (45a, 45b) provides a holding force (F1, F2) towards said opposite outwardly facing surfaces (4a, 4b, 15, 35a) of the vacuum insulated glass unit (1) so as to suspend the vacuum insulated glass unit (1) between said first and second holding members (28a, 28b), and each of said compressed, resilient suspension elements (45a, 45b) are configured to be further compressed or expand in response to a thermal deflection of the edge (8a-8d) of the VIG unit (1) due to a temperature difference (AT=71−72) between the two glass sheets (2a, 2b). The disclosure additionally relates to a vacuum insulated glass unit and a retrofitting frame system.

    BUILDING APERTURE COVER WITH VIG UNIT CONNECTED TO FIXATION PROFILE

    公开(公告)号:US20220081958A1

    公开(公告)日:2022-03-17

    申请号:US17422495

    申请日:2020-01-13

    申请人: VKR HOLDING A/S

    摘要: The present disclosure relates to an aperture covering, such as a building aperture covering. The aperture covering comprises a VIG unit 3 and a frame. The frame (2) comprises elongated fixation profiles (6) each of which are fixed to and arranged parallel to an elongated structural frame member (8). The fixation profile (6) comprises a fixation wall (6a) which extends opposite to an exterior major surface (S1) of the vacuum insulated glass unit (3) and is fixed to the exterior major surface (S1) of the vacuum insulated glass unit (3) by means of a bonding seal (9). The fixation profile (6) comprises a connection member (6b) extending from the fixation wall (6a), wherein the connection member (6b) is fixed to the elongated, structural frame member (8). The elongated structural member (8) faces the opposite interior major surface (S2) of the vacuum insulated glass unit (3) placed opposite to the exterior major surface (S1) of the vacuum insulated glass unit.