Abstract:
L'invention a pour objet: - un vitrage monolithique ou feuilleté (1), boulonné ou pincé par un cadre (4) lui-même boulonné sur ou à travers une structure (3), caractérisé en ce que dans une partie au moins de la périphérie du vitrage de souplesse maximale ou de raideur minimale vis-à-vis du phénomène de flambement, ledit boulonnage est réalisé au moyen d'au moins un boulon (2) inséré dans une douille (7) concentrique au boulon (2), ou remplacé par l'insertion d'une douille (7) ou d'un pion (7), chaque douille (7) ou chaque pion (7) étant monté(e) sans jeu sur le vitrage (1) ou sur le cadre (4), et sur ou à travers la structure (3); - l'application de ce vitrage (1) comme vitrage aéronautique.
Abstract:
The invention provides an IG unit comprising two panes and a between-pane space between the two panes. A desired surface of one of the two panes bears a coating comprising both a transparent conductive oxide film, and an overcoat film located over the transparent conductive oxide film. The IG unit further comprises a bus bar and a transparent conductor bridge each located over the desired surface. The bus bar is spaced apart from the coating and is connected electrically to the transparent conductive oxide film by virtue of the transparent conductor bridge extending from the bus bar to a top surface of the overcoat film. In some embodiments, the IG unit further comprises a frit located over the desired surface and extending around a perimeter thereof. The bus bar is located over the frit. Certain embodiments provide a refrigerator having a door comprising such an IG unit.
Abstract:
An easy-to-install-and-dismantle door device and a bearing device (11) for a pivotal mechanism for the door device (11) are provided. The door device (11) includes a door frame (231) and a door (295) pivotably mounted to the door frame (231). A first pivotal mechanism (337) is mounted to the door (295) and includes a first axle (353) detachably coupled in a pivotal hole (253) of the door frame (231). A second pivotal mechanism (378) is detachably coupled to a support seat (277) of the door frame (231). At least one adjusting piece (294) can be added to adjust the height of the door (295). The second pivotal mechanism (378) includes a second axle (395) aligned with the first axle (353) in a vertical direction and a bearing device (413) for supporting the second axle (395).
Abstract:
An insulated door panel comprises a shell having spaced first and second exterior panels and frame members adjacent edges of the panels, a plurality of stiffeners in a shell interior portion extending along a length or width of the panels, and a hardenable insulation material creating a bond between the exterior panels, stiffeners, and frame members in the shell interior portion. The stiffeners comprise a thermally non- conductive fiber reinforced polymer. The hardenable insulation fills substantially all of the space between the adjacent exterior panels, stiffeners, and frame members. The door panel also comprises end cap members composed of thermoplastic polycarbonate material, and has openings therein to receive the ends of the stiffeners.
Abstract:
An apparatus and method is provided for forming a spacer frame assembly used in the construction of insulating glass unit windows. The apparatus comprises a head arrangement having a body with first and second ends, the first end for coupling to a cylinder that advances and retracts the head arrangement in a reciprocating motion during operation. The second end includes an annular wedge-shaped ridge for coupling to a second annular wedge-shaped ridge of a die support, collectively the wedge-shaped ridge and second wedge-shaped ridge form a contact region to form a torus surface. The die support has at least one die for engaging a spacer frame assembly during operation. The apparatus further comprises a collar having a torus-shaped recess corresponding with the torus surface to nest and couple the body to the die support.
Abstract:
본 발명은 비간섭 전면개폐형 프레임의 구조에 관한 것으로서, 커버프레임을 고정프레임을 간편하게 직하결합시킬 수 있어 상기 커버프레임과 고정프레임의 조립이 매우 용이할 뿐만 아니라 외부충격에 의해 상기 커버프레임이 상기 고정프레임으로부터 분리되는 것을 보다 용이하게 방지할 수 있음은 물론 상기 커버프레임의 회전축의 하부와 압착편의 하부 사이의 상하폭을 대폭 줄여 슬림화할 수 있는 효과가 있다. 또한, 본 발명은 상기 커버프레임이 상기 고정프레임의 간섭없이 원활하게 상기 고정프레임을 개폐할 수 있을 뿐만 아니라 상기 커버프레임이 상기 고정프레임을 개폐하는 과정 중에 상기 축홈으로부터 상기 회전축이 이탈되는 것을 방지할 수 있고, 나아가 상기 고정프레임과 상기 커버프레임의 조립하는데 탄성부재가 방해요소로 작용할 우려가 없을 뿐만 아니라 상기 커버프레임이 상기 고정프레임을 폐쇄한 상태를 보다 더욱 용이하게 유지할 수 있는 효과가 있다. 또한, 본 발명은 상기 커버프레임이 상기 고정프레임을 개방할 경우 상기 커버프레임이 건축물 벽체 등의 구조물과 접하면서 간섭받을 우려없이 상기 커버프레임이 상기 고정프레임을 보다 더욱 용이하게 개방할 수 있기 때문에 액자프레임, 도어프레임 등의 산업재의 금속가구 또는 건축 창호프레임 등에 확장적용하기가 매우 용이한 효과가 있다.
Abstract:
본 발명은 기재; 저방사 코팅층; 및 최상부 코팅층을 포함하고, 상기 최상부 코팅층은 상기 저방사 코팅층으로부터 금속층, 금속 산화물층 및 금속 산화질화물층을 순차적으로 포함하는 다층 구조인 저방사 코팅막, 이의 제조방법 및 이를 포함하는 창호용 기능성 건축 자재에 관한 것이다.
Abstract:
A method for forming a flush architectural wooden door using at least one post-consumer material includes collecting a previously-used door from a collection site. The previously-used door includes a core having a first major surface, a second major surface opposite to the first major surface, and a perimeter extending around the opposing major surfaces. The core is extracted from the previously-used door. Rails and styles are applied to a perimeter of the extracted core. A first skin is applied over the first major surface of the extracted core and applied rails and styles. The extracted core, rails, styles, and first skin have a collective weight. The extracted core forms over half of that collective weight.