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基于AMESim的充填支架液压系统仿真研究 Title:SimulationResearchontheHydraulicSystemofaFillingFramebasedonAMESim Abstract: Inthisstudy,weexplorethesimulationofahydraulicsystemforafillingframeusingAMESimsoftware.Thefillingframeplaysavitalroleintheindustrialsector,especiallyinmanufacturingprocessessuchasmaterialloadingandunloading,aswellasproductassembly.Theobjectiveofthisresearchistoanalyzethehydraulicsystem'sperformanceandensureitsoptimalfunctioning.Byinvestigatingvariousparameters,includingfluidflow,pressure,andcontrolstrategies,weaimtoenhancetheefficiencyandreliabilityofthefillingframesystem.Thispaperpresentsthesimulationresearchonthehydraulicsystemofafillingframe,highlightingthemethodology,keyfindings,andpotentialimplicationsforfuturesystemimprovements. 1.Introduction 1.1FillingFrameandItsImportance 1.2SignificanceofHydraulicSystemSimulation 2.Methodology 2.1SelectionofSimulationSoftware(AMESim) 2.2HydraulicSystemModelDevelopment 2.3SystemBoundaryConditionsandParameters 3.SimulationResultsandAnalysis 3.1FluidFlowAnalysis 3.2PerformanceEvaluationofHydraulicComponents 3.3PressureAnalysis 3.4ControlStrategyOptimization 4.Discussion 4.1ComparisonwithExperimentalResults 4.2SystemPerformanceEnhancements 4.3LimitationsandFutureResearchDirections 5.Conclusion 5.1SummaryofKeyFindings 5.2ImplicationsforIndustrialApplications 5.3RecommendationsforSystemImprovements 1.Introduction 1.1FillingFrameandItsImportance Thefillingframeisacrucialcomponentinvariousindustrialprocesses,enablingefficientmaterialloading,unloading,andproductassembly.Itspreciseandreliableoperationisparamountforensuringoverallproductivityandquality. 1.2SignificanceofHydraulicSystemSimulation Hydraulicsystemsplayacriticalroleinthefunctioningoffillingframesbypoweringtherequiredmotionsandprovidingcontroloverfluidflowandpressure.Therefore,simulatingandanalyzingthehydraulicsystem'sperformancecanhelpoptimizeitsefficiency,reliability,andsafety. 2.Methodology 2.1SelectionofSimulationSoftware(AMESim) AMESim,anadvancedsimulationsoftwar