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Zasnova in testiranje oblikovnega spajanja z zaskočko iz polipropilena
ID Lenarčič, Dejan (Author), ID Pepelnjak, Tomaž (Mentor) More about this mentor... This link opens in a new window

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MD5: D6832030B5CA795065CBF0680C044DD4
PID: 20.500.12556/rul/a4d770c1-2db4-4c71-ba04-c976d1063d29

Abstract
Zaskočke so najenostavnejši, najhitrejši in najbolj cenovno učinkovit postopek sestavljanja dveh delov. Pravilno konstruirane izdelke lahko z uporabo tega načina spajanja večkrat sestavimo in razstavimo brez večjih neželenih učinkov na sestav. Zaskočke so tudi okolju najbolj prijazen način sestave, saj lahko zaradi enostavne demontaže sestav različnih materialov enostavno razstavimo in recikliramo. Čeprav so lahko zaskočke konstruirane iz različnih materialov, so zaradi svoje visoke fleksibilnosti najbolj optimalni termoplastični materiali, njihovo brizganje v komplicirane oblike pa je tudi s stroškovnega vidika precej ugodno. Pomembne lastnosti termoplastičnih materialov so tudi velik relativni raztezek, nizek koeficient trenja ter zadostna togost in trdnost, da termoplastične zaskočke izpolnjujejo večino zahtev v vseh aplikacijah. Prav zaradi širokega spektra uporabe zaskočk smo se odločili za analizo zaskočke pri montaži dveh delov sestava. Pri znanem upogibu zaskočke merimo montažno silo in analiziramo napetosti, ki se pojavijo v procesu spajanja dveh elementov v sestavu.

Language:Slovenian
Keywords:zaskočke, termoplasti, trdnostna analiza, upogib, montažna sila
Work type:Master's thesis/paper
Organization:FS - Faculty of Mechanical Engineering
Year:2017
PID:20.500.12556/RUL-94961 This link opens in a new window
Publication date in RUL:11.09.2017
Views:1338
Downloads:406
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Secondary language

Language:English
Title:Design and testing a polypropylene snap fit joint assembly
Abstract:
Snap fit joints are the simplest, the quickest and the most cost-effective assembly of two components. Properly designed products can be assembled and disassembled without major undesirable side effects. Due to its simple disassembly, snap fit joints are also environmentally friendly and can be easily recycled. Snap fit joints can be made from a variety of materials and moulded into different (sometimes complicated) shapes but are still the most optimal and the most economical products due to their high flexibility. Some of the advantages of thermoplastic materials are a large relative extension, a low coefficient of friction, sufficient rigidity and solidity that meet the requirements in all applications. Also, due to their frequent usage it was decided to analyse the assembly of the two snap fit joint parts. Knowing the bending of the snap fit joint, the tensile strength was measured. Strains and stresses that occur in the process of joining the two components together of the assembly were also analysed.

Keywords:snap fit joints, thermoplastics, stress–strain analysis, bending, assembly force

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