Abstract:
An aisle containment apparatus having a pair of spaced apart upper rails and a pair of spaced apart lower rails positioned spaced apart from and below the pair of upper rails. A side blanking panel is secured to one of the pair of upper rails and to one of the pair of lower rails and a ceiling spans between the pair of upper rails. A fixed panel is secured to the pair of upper rails and to the pair of lower rails and a moveable panel is releasably secured to the pair of upper rails and is adjustably positioned along the pair of upper rails so as to position the moveable panel a predetermined distance from the first panel.
Abstract:
A hinge assembly is disclosed herein. An example includes a first knuckle including a first wall that defines a first cavity and second knuckle including a second wall that defines a second cavity. The example also includes a friction element disposed in both the first cavity defined by the first wall of the first knuckle and the second cavity defined by the second wall of the second knuckle to both rotatably and resistively couple the first knuckle to the second knuckle by application of a force directed toward the first wall and the second wall, the friction element including a third wall that defines a third cavity. Modifications and additions to, as well as other examples of, the hinge assembly are also disclosed herein.
Abstract:
Die Erfindung betrifft ein Gelenkband (1 ), insbesondere für Glaspendeltüren, mit einem festen Bandteil, einem um das feste Bandteil schwenkbaren Flügelbandteil (2), einer das feste Bandteil und das Flügelbandteil (2) durchfassenden Schwenkachse, an der eine Nocke (7a) mit mindestens einer Vertiefung (7b) angeordnet ist und einer kraftbeaufschlagten Rolle (22), die mit der Nocke (7) zusammenwirkt. Um eine genaue Einstellbarkeit der Nullstellung der Tür zu erreichen, wird vorgeschlagen, dass die Rolle (22) orthogonal zur Längsachse des Gelenkbandes (X-X) verstellbar angeordnet ist.
Abstract:
A hinge construction, in particular for a wing mirror unit for a motor vehicle, comprising a first hinge part for mounting on the motor vehicle and a second hinge part, pivotably connected therewith via a base shaft, for supporting a mirror support of the wing mirror unit, wherein the base shaft is translatably connected with one hinge part and wherein the other hinge part is arranged pivotably about the base shaft, and wherein the hinge parts cooperate via a track guide which causes the hinge parts upon pivoting to rotate and translate relative to each other.
Abstract:
Es wird ein elektroschweißbares Federscharnier mit einem einen Hohlraum, insbesondere eine zylindrische ausnehmung (5) aufweisenden Gehäuse (2), in den ein Scharnierelement (31) einbringbar ist vorgeschlagen. Dieses zeichnet sich dadurch aus, dass ein Stützkörper (3;3' ;3";3"") in den Hohlraum einbringbar ist.
Abstract:
A hinge structure (80, 80A, 80B) is provided for connecting two members (50, 70; 50A, 70A; 50B, 70B), such as a container closure base (50, 50A, 50B) and lid (70, 70A, 70B), so as to accommodate movement between an open position and a closed position. An elastomeric element (104, 104A, 104B) extends from one of the members to the other of the members. The elastomeric element (104, 104A, 104B) has an outer surface that is outwardly exposed when the two members are in the closed position as well as when the two members are in the open position. The elastomeric element (104, 104A, 104B) exerts a force to urge the two members from the closed position toward the open position. In one embodiment, the elastomeric element has two lateral margins (121, 122; 121A, 122A; 121B, 122B), and the hinge structure (80, 80A, 80B) is free of structure laterally of the elastomeric element (104, 104A, 104B) so that the two lateral margins are laterally exposed when the two members are in the closed position as well as when the two members are in the open position. The elastomeric element outer surface (106, 106A, 106B) is in tension when the two members are in the closed position.
Abstract:
A hinge for use in inorganically filled composite materials is provided. The hinge has an inorganically filled structural matrix comprising a water-dispersable organic polymer binder, an aggregate material, and a fibrous material. The hinge allows inorganically filled materials to be bent along a line without breakage of the material. The hinge is preferably formed by scoring a formed sheet of inorganically filled material (50). The hinge is particularly useful in containers that require bending of various container parts, such as in food containers and boxes made from inorganically filled materials.
Abstract:
A hinge (10) for mounting a door (14) on a piece of furniture, comprising a hinge arm (12) fixable to a fixed part (11) of the piece of furniture and a box (13) fixable to a door (14) of the piece of furniture, swingably connected to each other; connected to the box (13) there is a decelerating device (22) comprising an actuating element (24) movable along a decelerating stroke between an initial position and a final position, return spring means (25) loadable during the decelerating stroke from a released condition to a loaded condition, and deactivating means (39) for deactivating the decelerating device (22) and comprising a blocking member (39) acting on the return spring means (25) so as to block the same spring means (25).
Abstract:
An overhead door with spring-loaded roller hinges to push the door against its frame or weather stripping to provide an effective weather seal and thermal seal when closed. The spring-loaded roller hinges are readily retrofit to overhead doors with conventional roller hinges that pivotally join adjacent door panels. Each spring-loaded roller hinge is rigidly secured to the inside surfaces of two adjacent door panels.
Abstract:
A swinging door hinge has a panel (116) and a frame (112). The frame includes a horizontal portion (112), and the horizontal portion has an aperture (140) therethrough. An elongated pivot pin (120) is vertically disposed through the aperture (140). The pivot pin (120) is coupled to the panel such that the pivot pin and the panel rotate about a longitudinal axis of the pivot pin relative to the horizontal portion of the frame. A gripper feature (146) is located on a surface of the pivot pin. The gripper feature engages a corresponding surface on the panel such that when the panel is rotated, a resulting torsional force transferred to the pivot pin is spread over a contact area between the gripper feature and the surface of the panel. Because the torque is transferred over a greater area, stress concentrations in the panel are reduced and the panel is not deformed.