Abstract:
A carriage, which serves for holding and shifting a separating element in a running direction along a rail, includes a carriage body that holds at least one running element and a mounting body that is slidably connected to the carriage body and is connectable to the separating element. A coupling member includes a first and second coupling element connected via a bridge member, wherein the first coupling element is slidably held in the carriage body and the second is slidably held in the mounting body. The bridge member has a first coupling surface inclined relative to the running direction which supports the carriage body or the mounting body, so that with a movement of the coupling member the carriage and mounting bodies are shifted relative to one another. The shifting device includes two inventive carriages that are guided in a rail and that are connected to a separating element.
Abstract:
The foldable sliding wall includes at least a first and a second wall element that are pivotally connected to one another and pivotally held by a first and a second head carriage, which are displaceably supported in a head rail. A first head fitting is mounted at the upper side of the first wall element and is connected to a first shaft, which is supported in a first carriage body of the first head carriage and a second head fitting is mounted at the upper side of the second wall element and is connected to a second shaft, which is supported in a second carriage body of the second head carriage.
Abstract:
The method serves for operating a system with a foldable element that is provided with a control unit including at least two foldable elements, that are connected each via connecting shafts to related carriages, which are slidably supported in a running rail and of which at least the carriage connected to the front-sided foldable element is provided with a drive motor, the method including the step of executing a learning drive, with which the system with foldable elements is transferred from at least a first into a second position and related information is captured. According to the invention at least at the front-sided carriage data of the acting load and related position data are captured and therefrom status data of the installed system with foldable elements are determined and provided to an operating program, that controls the at least one drive motor depending on to the determined status data.
Abstract:
Mounting device includes a connecting bolt, plate-shaped sliding element connectable to a carriage held displaceable in a running rail. Mounting device includes holding rail, mountable in recess at upper side of the sliding element, and holding device held releasably in the holding rail, includes bearing device, adjustment screw is rotatably held, adjustment screw includes a screw shaft, aligned along screw axis, engages in threaded member of track body, movable along screw axis and includes two track walls aligned parallel to one another and include each a track element, which guide elements are engaged that are connected to connecting bolt, held in guide member displaceable along guide axis. Track sledge is equipped on opposite sides with guide elements engaged in track element of track body and connecting bolt includes first connecting part held in track sledge, second connecting part held in guide member and third connecting part connectable to carriage.
Abstract:
The guiding device, which serves for guiding a sliding element, such as a sliding door provided with a door leaf, with which a room opening of a building part can be closed at least approximately tightly, comprises a running rail having a longitudinal axis and at least one carriage that is guided along the running rail and that comprises a carriage body that is connected to a coupling device that is coupled or can be coupled with the sliding element.
Abstract:
The displacement device includes a guide carriage that is slidable along a running rail and that is pivotally connectable to a first separation element. The guide carriage includes a carriage body with a carriage head and a carriage foot, which carriage head and carriage foot are connected with one another by a connecting beam, wherein the carriage head holds at least one support wheel and at least two guide wheels and wherein the carriage foot is connected torque proof with a first end piece of a hinge lever, whose second end piece is pivotally held by a hinge shaft that is connectable to a sidewall of the first separation element.
Abstract:
The displacement device includes a guide carriage that is slidable along a running rail and that is pivotally connectable to a first separation element. The guide carriage includes a carriage body with a carriage head and a carriage foot, which carriage head and carriage foot are connected with one another by a connecting beam, wherein the carriage head holds at least one support wheel and at least two guide wheels and wherein the carriage foot is connected torque proof with a first end piece of a hinge lever, whose second end piece is pivotally held by a hinge shaft that is connectable to a sidewall of the first separation element.