Publication:
Action load on the rectangular tube foam , using finite element analysis method

datacite.subject.fosoecd::Engineering and technology::Mechanical engineering
dc.contributor.authorJamal, Shahriman
dc.date.accessioned2024-09-24T07:50:26Z
dc.date.available2024-09-24T07:50:26Z
dc.date.issued2002-03-01
dc.description.abstractThis project is focused on the analyse the deformable behaviour of hollow tube when subjected to impractive loading. The value of impacted objected is depending on the impacted force that accord on the hollow tube. Quasi – static is produced when the impacted loading is accord on it. The tube is the hollow tube. It is made from mild steel. The model of the hollow tube is structured and drawn according to the dimension that had been given. The shape of the dimension is rectangle size, that is 101.6mm(0.1016m) long and 50.8mm(0.0508m)width. The thick of the hollow tube is 0.85mm(0.00085m) and the height of the hollow 305mm(0.305m). The model consists of 1578 nodes and 772 elements. Then, a different hollow tube is filled with one of the polymer, that is polyurethane. This kind of polymer can be frozen when it is pured into the hollow tube. Polyurethane is divided into difference of density. Although it has a difference of density but the element size is the same, that is 305mm (0.0305m). the model containing 53kg/m3 have 860 node and 421 element. The model of 80kg/m3 have 852 node and 415 element. The model 131kg/m3 having 850 node dan 414 element. Lastly, the model 182kg/m3 have 852 node dan 415 element. The process of modeling, meshing task and simulation process are done in the IDEAS. The structural performance is evaluated in the animation plotted. Graph load versus compression is plotted and the total of energy absorbed, also the average of load is can be known from the wide of the graph. Difference is studied between the result from the experiment and the result from Finite Element Analysis Method (FEAM). At the end of this report, several suggestion are stated for further investigation.
dc.identifier.urihttps://erepo.usm.my/handle/123456789/20544
dc.language.isoen
dc.titleAction load on the rectangular tube foam , using finite element analysis method
dc.typeResource Types::text::report
dspace.entity.typePublication
oairecerif.author.affiliationUniversiti Sains Malaysia
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