Abstract:
A balustrade support for an escalator or moving walk is located in a deflection area of the balustrade handrail. The support has a mounting region for mounting a handrail deflection wheel, a first fixing section for mounting the support to a framework of the escalator or moving walk, and a second fixing section for mounting the support to the balustrade. The rigidity of the support's mounting region for the deflection wheel is increased by the mounting of the support to the framework as well as to the balustrade.
Abstract:
The invention refers to an Elevator door arrangement having at least one door leaf comprising a support structure and at least one door panel having a back part facing away from the public and a front part facing the public, which door panel is supported in the support structure of the door leaf. The door panel is configured to be supported in the support structure either with its back part or front part facing the public, as desired. This invention allows a protected use of a door panel during construction time use.
Abstract:
In an elevator refurbishing method in which a hydraulic elevator in which a hydraulic jack is installed in an equipment installation zone is refurbished into a machine-roomless elevator that uses a two-to-one (2:1) roping method, the equipment installation zone being a region inside a hoistway on either a left side or a right side of a car when viewed from directly above, at least one guide rail from a pair of counterweight guide rails is installed in the equipment installation zone while leaving the hydraulic jack in position, the hydraulic jack is removed from the hoistway, the hoisting machine is installed in a lower portion of the equipment installation zone using a space that is created by removal of the hydraulic jack, and a car return sheave and a counterweight return sheave are installed on an upper portion of the counterweight guide rails.
Abstract:
The invention relates to a transparent balustrade (12) of an escalator (1) or of a moving walk, comprising a balustrade skirt (13), at least one glass panel (33), and a handrail guide (15) with a handrail (14). The at-least one glass panel (33) has an upper edge (9) and a lower end (6) and, at its lower end (6), is gripped in a mounting (18) in the balustrade skirt (13) in locationally fixed manner. The transparent balustrade (12) contains at least one support (20), which is tightly joined to the balustrade skirt (13). The glass panel (33) is deformable perpendicular to its planar extent and therefore in lateral direction. Through its elastic deformability, to absorb lateral forces (F) the glass panel (33) displays lateral displaceability within a permissible deformation play (s), lateral displaceability within the permissible deformation play (s) being limited by the support (20).
Abstract:
The invention relates to a device (2) for driving a handrail (6) for an escalator (40) or for driving a handrail (6) for a moving walkway, the device comprising a drive belt (1) guided along a contact zone (10) and deflected on a deflection roller (7) after passing through the contact zone (10). The handrail (6) can be guided resting against the drive belt (1) along the entire contact zone (10) and can be driven by the drive belt (1) by means of friction between drive belt (1) and handrail (6). The device (2) comprises a deflection element (16), which deflection element (16) ensures that a lift-off point (18) of the handrail (6) from the drive belt (1) delimiting the contact zone (10) is arranged upstream of the deflection region of the drive belt (1) on the deflection roller (7). According to the invention, an escalator (40) or a moving walkway can be modernized with such a device (2).
Abstract:
A track module of an escalator or a moving walkway comprises at least two support structures and at least one guide rail. Each support structure includes at least two supports and at least one cross strut, wherein the cross strut is arranged between the at least two supports and connects these together. Each support has a foot fastening region which, in the installed state, is fastened to a carrying structure. Moreover, a balustrade fastening region, to which in the installed state at least a part of a balustrade is fastened, is formed at each support, so that static and dynamic loads acting on the balustrade are transmissible directly to the carrying structure by way of the supports.
Abstract:
A method for renovating an existing elevator includes connecting a new group supervising apparatus that is connected to new landing operating panels to an existing elevator controlling apparatuses by a relaying apparatus that includes a relay panel and an input/output panel to enable existing elevator cars to be operated by the new group supervising apparatus. The existing group supervising apparatus is removed with the landing operating panels. New elevator cars and new elevator controlling apparatuses are substituted for the existing elevator controlling apparatuses together with the existing elevator cars. The new elevator controlling apparatuses are connected to the relaying apparatus to enable the new elevator cars to be operated by the new group supervising apparatus. The renovating method enables substitution of a new system of group supervised elevators without losing overall elevator service during a refurbishment transition period, and enables an elevator to be refurbished without losing elevator operating efficiency.
Abstract:
The invention relates to a device and system for underground transport of ore, material and people, which includes electrical and mechanical drive systems, a plurality of hoisting devices, head ropes and balance ropes. The mass per meter of the balance ropes is significantly smaller than the mass per meter of the head ropes.
Abstract:
A method for modernizing an elevator installation includes installing story terminals for input of a destination story on the stories of the building, which terminals are so coupled with an elevator control device connected with an input device in the elevator cage that, at least in a standard mode, after input of the destination story call detected by means of the story terminal, the cage automatically travels to the selected destination story, and in that case a story selection in the cage by use of the input device is no longer possible. The indicating means for representing selected stories of the input device are so incorporated in the control system that the indicating means, after input of a story call by way of the story terminal, are activated.
Abstract:
A method and an arrangement is provided for determining the location and/or speed of an object configured to move along a controlled trajectory, in connection with which object is fitted a measuring device measuring at least the magnetic field acting on the object in its different locations, which measuring device comprises a device configured to measure the magnetic field, from the measuring data received from which device a magnetic footprint describing the magnetic field acting on the object in its different locations is formed, which magnetic footprint is recorded in connection with a teaching run, or with self-learning, for later use. The location of the object after a teaching run is determined by measuring in essentially real-time in the direction of the three coordinates X, Y, Z of the magnetic field acting on the object moving along a controlled trajectory and by comparing the measurement results to a magnetic footprint recorded in advance and also by deducing as a result of the comparison the exact location of the object on its path of travel.