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Deformation Mechanism Analysis And Computer Imitation Of Granule Materials Structure Under Static Load

Posted on:2010-06-11Degree:MasterType:Thesis
Country:ChinaCandidate:L L LiFull Text:PDF
GTID:2132360275980522Subject:Geotechnical engineering
Abstract/Summary:PDF Full Text Request
Granule materials structure is one of the most extensive matter in nature and project application. But physics and mechanical property of granule materials structure is very complicated. People's recognization to granule materials structure is located in primary step. For the past few years, many scientific operator pay attention to investigation and development for mechanics of granule materials structure. On the base of reading and analyzing a lot of literature cite,do many experiments of granule materials structure under static load,and analyze those results. It has a wide prospect of engineering application and fundamental science significance.The text researchs granule materials structure from theories and experiments. On the base of granule materials structure movement property, applies the lab orthogonal tests, uses self-manufactured press box, the effect of higtht of structure,size of granule,and speed of load on self-organize phenomenon was studied. In the text,different kinds of granule materials structure have different properties, such as shape, surface roughness concentration, strength and so on. their self-organize phenomenon under static load are different. In the same condition their self-organize trends is identical. Based on analyzing influence factor of granule materials structure pile, carry out computer imitation to it. The text do computer imitation by 3ds-MAX for roundness granule materials structure pile under static load.The content that was studied in this paper may pile up one kind of necessary complement of characteristic property of granule material. As well, it hope that what the gains conclusion and method that we use is able to play arrive at certain reference role to actual project.
Keywords/Search Tags:granule materials structure, shearing resistance, sedimentation, self-organize phenomenon, random theory, imitation
PDF Full Text Request
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