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Study Of Automatic Warehouse And Its Stacker

Posted on:2013-11-09Degree:MasterType:Thesis
Country:ChinaCandidate:Y LiFull Text:PDF
GTID:2232330395986882Subject:Mechanical design and theory
Abstract/Summary:PDF Full Text Request
Along with the science and technology develop rapidly, land resource of theincreasingly nervous and human resource costs rise gradually, more and moreenterprises make the automation of manufacturing and logistics distributionsystem as the key investment fields, in order to improve production efficiencyand save the production cost. Automatic warehouse which is a collection ofmechanical, electrical, software in an integrated system is widely used inmanufacture, tobacco, medicine, food, logistics and distribution and otherindustries, what more and more get the favour of all kinds of enterprises. As aresult, according to the actual situation of different enterprise production,reasonable planning layout of the automatic warehouse and designing the keyequipment for automated warehouse which has the important practicalsignificance to automatic warehouse playing the comprehensive benefit.In this thesis,we reasonable plan the layout of the automatic warehouse for adrift factory in Jiangsu Nantong,which is according to its actual situation ofbuilding structure and production. Especially, we design the stacker which is thekey equipment of automatic warehouse and calculate mechanics of the majorcomponent for stacker.we use a3D software to put up the single pillar stackerparametric entity modeling and put the model into ANSYS for the statics anddynamics analysis of pillar and for the fork deflection analysis. In multibodydynamics software ADAMS, we carried out dynamics simulation of the stacker.Through a complete set of design process, we designed a automaticwarehouse which is comply with the enterprise actual need.We tested the stackerwith finite element theory and virtual prototype technology,which offers acomplete mature design method for automatic warehouse and stacker.Thismethod has a great significance to shorten the design cycle and guiding thestorehouse design.
Keywords/Search Tags:automatic warehouse, stacker, finite element analysis, kinematicssimulation
PDF Full Text Request
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