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Statična in trdnostna analiza nosilne konstrukcije balvanske plezalne stene
ID Zajc, Žiga (Author), ID Brojan, Miha (Mentor) More about this mentor... This link opens in a new window, ID Jerman, Boris (Comentor)

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Abstract
Športno plezanje postaja pri nas in po svetu vse bolj priljubljeno. S tem se povečuje povpraševanje po umetnih plezalnih stenah, ki jih delimo na težavnostne, hitrostne in balvanske. V okviru diplomskega dela je v prvem delu dela predstavljena idejna zasnova balvanske plezalne stene, ter izračun njenega nosilnega stebra, pri čemer upoštevamo standard SIST EN 12572-2. Pri zasnovi smo se osredotočili na oblikovanje nosilnega stebra, ker je ključen element celotne konstrukcije, saj prevzema glavnino obremenitev, ki nastanejo med uporabo plezalne stene. V drugem delu je opravljen analitični izračun notranjih obremenitev v stebru. Ravno tako je opravljena trdnostna analiza stebra in varjenih spojev. S pomočjo programa Ansys smo izvedli še računalniško simulacijo obravnavanega stebra. Za zaključek smo naredili primerjavo rezultatov. Ugotovili smo, da bi plezalna stena izdelana po tej zasnovi zdržala vse predvidene obremenitve.

Language:Slovenian
Keywords:plezanje, plezalna stena, balvansko plezanje, statika, trdnost, princip virtualnega dela, nosilna konstrukcija
Work type:Bachelor thesis/paper
Organization:FS - Faculty of Mechanical Engineering
Year:2024
Publication date in RUL:07.09.2024
Views:10
Downloads:1
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Secondary language

Language:English
Title:Static and strength analysis of the load-bearing structure of a bouldering climbing wall
Abstract:
Sport climbing is becoming increasingly popular both in our country and around the world. As a result, the demand for artificial climbing walls, which are categorized into lead, speed, and bouldering walls, is growing. In the first part of this thesis, the conceptual design of a bouldering climbing wall is presented, along with the calculation of its supporting column, taking into account the SIST EN 12572-2 standard. The design focuses on the supporting column, as it is the key element of the entire structure, bearing the majority of the loads that occur during the use of the climbing wall. In the second part, an analytical calculation of the internal loads within the column is performed. Additionally, a strength analysis of the column and welded joints is conducted. Using the Ansys software, a computer simulation of the column was carried out. Finally, we compared the results and found that the climbing wall designed according to this concept would withstand all the expected loads.

Keywords:climbing, climbing wall, bouldering, statics, strenght, principle of virtual work, load-bearing structure

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