Abstract:
Bei einem Drahtseil mit wenigstens einer Kunststoffseele (11) und mehreren um diese herum verseilten Drahtlitzen (15) ist am Umfang der Kunststoffseele (11) für jede Drahtlitze (15) jeweils eine wendelförmige Nut (20) durch spanabhebende Bearbeitung erzeugt. Diese wendelförmigen Nuten (20) sind im Querschnitt jeweils dem Aussendurchmesser der Drahtlitzen (15) angepasst. Die Kunststoffseele (11) wird unmittelbar bevor die Drahtlitzen (15) auf diese aufgewickelt werden durch diese spanabhebende Bearbeitung mit den wendelförmigen Nuten (20) für die Aufnahme der Drahtlitzen (15) versehen. Durch diese Ausbildung des Drahtseils mit dieser spanabhebenden Bearbeitung zur Erzeugung von wendelförmigen Nuten der Kunststoffseele wird eine optimale Führung der Drahtlitzen im verseilten Zustand erzielt und damit entstehen Verbesserungen der Eigenschaften des Drahtseils insgesamt.
Abstract:
There is disclosed a method of stranding together a plurality of strands (7) of sectorial cross-section around an optical fiber unit (2) which serves as a central wire material. First, a rigid type stranding machine is used to impart spiral twist to each strand (7). Subsequently, the twisted strand (7) is heat-treated to remove its strains. These strands are then fed to a planetary type stranding machine which provides planetary motion in which they make orbital rotation around the optical fiber unit (2) without making own-axis rotation, whereby they are stranded together on the optical fiber unit (2).
Abstract:
A method of stranding profile strands comprises the steps of stranding a plurality of profile strands (7) together around an optical fiber unit (2) which serves as a central wire material while imparting twist to each profile strand by the use of a rigid type stranding machine, and heat-treating them along with the optical fiber unit (2) so as to remove the strains.
Abstract:
An elevator system with a car or platform to transport passengers and/or goods as well as with a counterweight, which are arranged as traversable or movable along a travel path, and which are coupled and/or with a drive by a suspension element interrelating their motion. The suspension element is guided and/or driven by a traction sheave and/or a drive shaft and/or a deflecting pulley. The suspension element is sheathed and/or belt-type, with a first layer made of a first plasticizable and/or elastomeric material, containing a first exterior surface, and with at least one tension member—rope-type, tissue-type, or comprising a multitude of partial elements—that is embedded in the first layer of the suspension element. A manufacturing procedure for one of the suspension elements is provided.
Abstract:
A load bearing member (22) useful in an elevator system (10) includes at least one elongated tension member (36), a conversion coating (46) on the elongated tension member (36), and a polymer jacket (34) at least partially surrounding the coated elongated tension member (36). In one example, the conversion coating (46) includes at least one of an oxide, a phosphate, or a chromate.