Abstract:
A step of an escalator or a pallet of a moving walk has a supporting body with a base and at least one tread-element with a tread-surface wherein, on an underside that faces away from the tread-surface, the at-least one tread-element has at least one fastening protrusion. In the assembled state, the at-least one fastening protrusion protrudes through an opening in the base. Arranged on the side of the base that faces away from the tread-element, at least partly between the base and the fastening protrusion, is at least one fixing element. The fixing element fixes the tread-element against the base in a pretensioned manner.
Abstract:
Guide rail for an escalator of a moving walkway, comprising at least one planar base surface with a guide surface for rollers, particularly for guide rollers of a step belt or plate belt of an escalator or a moving walkway, and at least one guide strip with a guide flank for lateral guidance of these rollers, wherein the guide strip is a separate component.
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:
The invention relates to an escalator with a step belt or to a moving walkway with a plate belt. The step belt or plate belt has a link chain which contains engagement points arranged in succession at theoretically equal engagement spacings. The escalator or moving walkway has a first deflecting region and a second deflecting region with chainwheels. The link chain is arranged to circulate between the deflecting regions and the engagement points engage in tooth gaps of the chainwheels. The chainwheels have a pitch circle with a pitch which is referred to the tooth gaps and corresponds with half an engagement spacing of the link chain.
Abstract:
This application relates to a method for installing a support structure for a passenger transport system in a construction. The support structure comprises a framework made of load-bearing framework components connected to each other. The method includes placing a plurality of individual framework components, having connection openings designed therein, at an installation position within the construction; and assembling the framework on or near the installation position within the construction by connecting the framework components to each other by way of load-bearing connector components, in that a respective connector component is arranged to reach through adjacently arranged connection openings of at least two adjacent framework components and is then deformed in respect of the outside geometry thereof, such that they completely fill out the connection openings they reach through, without play.
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 plate belt of a moving walkway has plates arranged in succession in a movement direction and between two mutually parallel link chains formed by chain links of different widths. Each chain link is connected with one of the plates by at least one fastening device. The fastening devices include a fastening bolt and a cup washer, wherein the cup washer has a cup base ring and a cup collar encircling the cup base ring. The inner height of the cup collar corresponds with the thickness of at least one chain link strap of the chain link and the inner diameter of the cup collar is greater than the outer diameter of the region of the fastening bolt bearing against the cup base ring in the mounted state.
Abstract:
An escalator or a moving walkway has at least one interior space that is delimited relative to the environment of the escalator or the moving walkway by at least one cladding component. The at least one cladding component includes at least one multi-layer composite steel plate, wherein the at least one composite steel plate has at least one load-bearing layer of low-alloy steel and at least one cover layer of corrosion-resistant steel. The at least one cover layer is arranged at one of two side surfaces of the at least one composite steel plate. The at least one cover layer of the at least one cladding component when mounted on the escalator or the moving walkway is oriented towards the environment.
Abstract:
A transport-monitoring module for monitoring a transport of a transport unit of a passenger-transportation device is arranged on the transport unit. The transport-monitoring module has a sensor and localization devices. During the transport, through an interface unit, a connection with a data memory of the device is created. The interface unit is configured so that transport-monitoring data that are to be stored, which are based on sensor data of the sensor and localization data of the localization devices, are permanently stored in the data memory. In this way, the transport-monitoring module is simplified, so that it is no longer an item that is worth stealing. In addition, a reliable access to the stored transport-monitoring data after the end of the transport is secured.