Szczegóły publikacji

Opis bibliograficzny

Method and device for passive diagnosis of rope lashings of building structures / Akademia Górniczo-Hutnicza im. Stanisława Staszica w Krakowie ; wynalazca: KWAŚNIEWSKI Jerzy, MOLSKI Szymon, MAZUREK Paweł. — Int.Cl.: G01M 5/00(2006.01). — European Patent Office. — Opis zgłoszeniowy wynalazku ; EP4682500A1 ; Opubl. 2026-01-21. — Zgłosz. nr  EP24202550A z dn. 2024-09-25

Autorzy (3)

Dane bibliometryczne

ID BaDAP165975
Data dodania do BaDAP2026-03-23
Tekst źródłowyURL
Rok publikacji2026
Typ publikacjizgłoszenie patentowe
Otwarty dostęptak

Abstract

Device for passive diagnostics of rope lashings (1) of building structures comprising a diagnostic module (13), which includes an arrangement of passive sensors (7) positioned around the rope lashing (1) under test on elastic sliding elements (2) elastically fixed to a ring (10) with the possibility of its opening thanks to a hinge (12), and comprising a travelling module (14) with an arrangement of two rollers (4), according to the invention is characterised in that the ring (10) of the diagnostic module (13) is rigidly connected by means of a connector (3) to the arrangement of rollers (4) of the travelling module (14) driven via a tension member (5) by a drone (6) constituting the drive of the travelling module (14) and moving along the rope lashing (1), the upper roller (4) of which has an in-built encoder (15) for measuring the travelled distance and the travel speed of movement of the travelling module (14). Method for passive diagnostics of rope lashings (1) of building structures by means of a diagnostic module (13) comprising an arrangement of passive sensors (7) positioned around the rope lashing (1) under test on elastic sliding elements (2) elastically fixed to a ring (10), this ring (10) opening thanks to a hinge (12), and comprising a travelling module (14) with an arrangement of two rollers (4), according to the invention is characterised in that the arrangement of rollers (4) of the travelling module (14), which is rigidly connected to the ring (10) of the diagnostic module by means of a connector (3), is driven by a drone (6) via a tension member (5), whereby the drone (6) moving along the rope lashing (1) is used as the drive of the travelling module (14) and, moreover, an encoder (15) integrated in the upper roller (4) is used to measure the travelled distance and the travel speed of the travelling module (14).

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